EP4630063A1 - Method of treating prostate cancer - Google Patents
Method of treating prostate cancerInfo
- Publication number
- EP4630063A1 EP4630063A1 EP23822457.0A EP23822457A EP4630063A1 EP 4630063 A1 EP4630063 A1 EP 4630063A1 EP 23822457 A EP23822457 A EP 23822457A EP 4630063 A1 EP4630063 A1 EP 4630063A1
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- European Patent Office
- Prior art keywords
- psma
- treatment
- ardt
- months
- arpi
- Prior art date
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- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61K—PREPARATIONS FOR MEDICAL, DENTAL OR TOILETRY PURPOSES
- A61K51/00—Preparations containing radioactive substances for use in therapy or testing in vivo
- A61K51/02—Preparations containing radioactive substances for use in therapy or testing in vivo characterised by the carrier, i.e. characterised by the agent or material covalently linked or complexing the radioactive nucleus
- A61K51/04—Organic compounds
- A61K51/0402—Organic compounds carboxylic acid carriers, fatty acids
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61K—PREPARATIONS FOR MEDICAL, DENTAL OR TOILETRY PURPOSES
- A61K51/00—Preparations containing radioactive substances for use in therapy or testing in vivo
- A61K51/02—Preparations containing radioactive substances for use in therapy or testing in vivo characterised by the carrier, i.e. characterised by the agent or material covalently linked or complexing the radioactive nucleus
- A61K51/04—Organic compounds
- A61K51/0497—Organic compounds conjugates with a carrier being an organic compounds
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61K—PREPARATIONS FOR MEDICAL, DENTAL OR TOILETRY PURPOSES
- A61K51/00—Preparations containing radioactive substances for use in therapy or testing in vivo
- A61K51/02—Preparations containing radioactive substances for use in therapy or testing in vivo characterised by the carrier, i.e. characterised by the agent or material covalently linked or complexing the radioactive nucleus
- A61K51/04—Organic compounds
- A61K51/08—Peptides, e.g. proteins, carriers being peptides, polyamino acids, proteins
- A61K51/088—Peptides, e.g. proteins, carriers being peptides, polyamino acids, proteins conjugates with carriers being peptides, polyamino acids or proteins
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61P—SPECIFIC THERAPEUTIC ACTIVITY OF CHEMICAL COMPOUNDS OR MEDICINAL PREPARATIONS
- A61P35/00—Antineoplastic agents
Definitions
- the present disclosure relates to a method of treating prostate-specific membrane antigen (PSMA)-positive progressive metastatic castration-resistant prostate cancer (mCRPC) by administering to a taxane-na ⁇ ve patient, who has progressed after receiving a second- generation ARPI, a therapeutically effective amount of a PSMA-binding radioligand therapeutic (RLT) agent, preferably [ 177 Lu]Lu-PSMA-617 (lutetium ( 177 Lu) vipivotide tetraxetan).
- PSMA prostate-specific membrane antigen
- mCRPC progressive metastatic castration-resistant prostate cancer
- Prostate cancer is the second leading cause of cancer mortality in United States (US) and the third leading cause of cancer-related death in Europe in men (Malvezzi et al 2019, Siegel et al 2017). An estimated 1.1 million men worldwide were diagnosed and 307,000 died due to prostate cancer in 2012. Almost 70% of the diagnosed cases are in more developed regions due to the use of prostate-specific antigen (PSA) testing, but there is only modest variation in mortality rates globally which is driven by metastatic, and often castration-resistant disease (Bray et al 2012). There is an urgent need for more effective treatments to improve outcomes for participants with metastatic castration-resistant prostate cancer (mCRPC).
- PSA prostate-specific antigen
- the median age at diagnosis of mCRPC is 70 years (Flaig et al 2016). Once participants reach the mCRPC stage, their expected overall survival is low as was seen in the randomized phase 3 study of cabozantinib vs prednisone in men with mCRPC who had received prior docetaxel and abiraterone acetate and/or enzalutamide; the median overall survival of the prednisone control arm was 9.8 months PAT059452-WO-PCT - 2 - (Smith et al 2016). In addition, there are significant comorbidities associated with mCRPC.
- ARDTs i.e., abiraterone and enzalutamide
- taxanes docetaxel and cabazitaxel
- immunotherapy sipuleucel-T
- bone-targeted radiopharmaceutical radium 223 dichloride
- the rPFS for participants that change ARDTs ranges from 3.6 to 15 months and OS from 11 to 23 months (de Bono et al 2020, de ⁇ Wit ⁇ et ⁇ al ⁇ 2019, Komura et al 2019).
- many participants do not receive chemotherapy primarily because of preexisting medical conditions or associated toxic effects. (Harris et al 2011, Engel Nitz et al 2011, Lissbrant et al 2013, Zielinski et al 2014).
- Sipuleucel-T is best used in mildly asymptomatic small volume disease; and radium 223 is used to treat men with bone-only disease.
- PARP inhibitors are an emerging drug class in mCRPC, but their use is restricted in a subgroup of mCRPC participants with homologous recombination repair gene mutations [PROfound (de Bono et al 2020, Hussain et al 2019) and TRITON2 (Abida et al 2019) studies].
- Prostate-specific membrane antigen Prostate-specific membrane antigen (PSMA) is a transmembrane protein, also known as folate hydrolase or glutamate carboxypeptidase II.
- PSMA is highly overexpressed in nearly all prostate cancers, but has restricted and several hundred-fold lower expression in some normal PAT059452-WO-PCT - 3 - tissues such as the duodenal mucosa, proximal renal tubules, and salivary glands (Bostwick et al 1998, Ghosh et al 2004), (Mannweiler et al 2009). Additionally, PSMA overexpression also correlates with advanced, high-grade, metastatic, androgen-independent disease (Ross et al 2003). The differential expression of PSMA from tumor to non-tumor tissue has resulted in numerous targeted strategies involving both disease localization using radioactive imaging as well as therapeutic intervention, and therefore may be an attractive target for men with mCRPC.
- PSMA In addition to the expression pattern, the functionality of PSMA plays an equally important role in its value as a tumor-specific targeting mechanism. Specifically, the binding of a high affinity ligand to PSMA, such as the targeting moiety in 177Lu-PSMA-617, leads to internalization through endocytosis and a sustained retention of the ligand and its bound radioactive cargo within the cancer cell (Rajasekaran et al 2003). This functional feature of PSMA allows for the development of low-molecular-weight targeted radiopharmaceuticals with favorable pharmacokinetic and tumor penetration properties, rather than being restricted to antibody- based targeting strategies (Haberkorn et al 2016).
- 177Lu-PSMA-617 The novel PSMA-targeted radioligand therapy 177Lu-PSMA-617 consists of the PSMA-binding ligand glutamate-urea-lysine and a DOTA-chelator, which are connected by a naphthyl and cyclohexyl containing linker. By design, 177Lu-PSMA-617 exhibits high PSMA binding affinity and internalization, prolonged tumor retention, and rapid kidney clearance (Benesova et al 2015).
- PSMA-617 was uniquely developed for both imaging and radio ligand therapy of prostate cancer and can be radiolabeled with gallium-68 (68Ga), lutetium-177 (177Lu), indium- 111, copper-64, scandium-44, actinium-225, or yttrium-90.
- 177Lu the radioactive cargo being delivered by PSMA-617, has physical properties that make it an appropriate radionuclide for the treatment of mCRPC.
- 177Lu is a medium energy P emitter (490 ke V) with a maximum energy of 0.5 Me V and a maximal tissue penetration of ⁇ 2 mm.
- 177Lu provides better irradiation of small tumors, in contrast to the longer P-range of 90Y (Emmett et al 2017).
- the shorter path length also acts to direct the energy within the tumor rather than in the surrounding normal tissues, while the path length is PAT059452-WO-PCT - 4 - still sufficient to create bystander and crossfire effects within the tumor lesion.
- 177Lu has a relatively long physical half-life of 6.6 days that combines with the intratumoral retention of 177Lu-PSMA-617 to reduce the necessary dosing frequency. It is these physical properties, and the benefit of PSMA targeting, that allow for the delivery of effective activities of 177Lu to prostate cancer cells.
- 177Lu-PSMA-617 for metastatic castration-resistant prostate cancer
- the novel therapeutic drug 177Lu-PSMA-617 was developed by the German Cancer Research Center, Deutsches Krebs Stammstechnik (DKFZ) in collaboration with University Hospital Heidelberg for the treatment of participants with metastatic prostate cancer (Hillier et al 2009, Kratochwil et al 2015, Kulkarni et al 2018c). PSMA binding affinity and compound internalization, prolonged tumor uptake, rapid kidney clearance, and high tumor-to-background ratio, 177Lu-PSMA-617 proceeded into clinical development at investigative sites in Germany.
- nephrotoxicity has not been notable in any safety series. There are no reports of Grade 3/4 nephrotoxicity in the literature. The exposure to normal bone marrow tissue is predictably low as it does not express PSMA and corresponds with normal plasma clearance. There was some evidence of reversible hematological toxicity that occurred following 177Lu- PSMA-617 treatment that manifested as leukopenia and thrombocytopenia, with rates of 0 to 40% and 4% to 67% respectively. The first published clinical series of 177Lu-PSMA-617 consisted of 10 participants (Ahmadzadehfar et al 2015) treated between Nov-2013 and Jan-2014, with 5.6 GBq/150 mCi (4.1-6.1 GBq/110-165 mCi).
- the level of PSA decline > 50% has remained remarkably consistent across several clinical series when 2 or more doses of ⁇ 6 GBq/160 mCi are given.
- Hofman presented the first prospective open-label, single-arm, non- randomized Phase 2 study of 177Lu-PSMA-617 in 50 metastatic castration-resistant prostate cancer participants dosed with up to 4 cycles of 4-8 GBq/110-220 mCi administered every 6 weeks (Hofman et al 2018, Hofman et al 2019).
- the primary endpoints of this study were to evaluate both safety and efficacy, as measured by PSA response, bone pain score, quality of life measurements, imaging response and survival.
- 70% were identified as PSMA-positive via PET imaging and eligible for treatment. Participants had been exposed to at least 1 taxane chemotherapy and either abiraterone or enzalutamide in the mCRPC setting.
- Efficacy has been demonstrated on multiple clinically significant endpoints, including PSA response, soft tissue lesion response measured by RECIST, progression-free survival (PFS), OS, pain and quality of life. No standard dose and schedule have been developed.
- VISION NCT03511664
- NCT03511664 a phase III trial evaluating best standard of care with or without 177Lu-PSMA-617 in men who had metastatic castration-resistant prostate cancer previously treated with at least one androgen-receptor–pathway inhibitor and one or two taxane regimens and who had PSMA-positive Gallium (68Ga) gozetotide ([68Ga]Ga-PSMA-11) positron emission tomographic–computed scans.
- VISION was designed as a registration trial for 177Lu-PSMA-617 with alternate primary endpoints of radiographic progression-free or overall survival. Key secondary endpoints were objective response, disease control, and time to symptomatic skeletal events. 177Lu-PSMA-617 plus standard care significantly prolonged (Sartor et al 2021), as compared with standard care, both imaging-based progression-free survival (median, 8.7 vs.3.4 months; hazard ratio for progression or death, 0.40; 99.2% confidence interval [CI], 0.29 to 0.57; P ⁇ 0.001) and overall survival (median, 15.3 vs.11.3 months; hazard ratio for death, 0.62; 95% CI, 0.52 to 0.74; P ⁇ 0.001).
- Treatment-emergent adverse events 519 patients (98.1%) and 170 (82.9%) reported at Treatment-emergent adverse events (TEAEs), in the 177Lu-PSMA-617 group and the control group, respectively.
- the incidence of adverse events of grade 3 or above was higher with 177Lu-PSMA-617 group than control group (52.7% vs. 38.0%), but quality of life was not adversely affected.
- the most common treatment-emergent adverse events (TEAEs) being reported in ⁇ 12% of patients who received at least 1 dose of study therapy were fatigue (43.1% vs.22.9%), dry mouth (38.8% vs. 0.5%), nausea (35.3% vs. 16.6%), anemia (31.8% vs. 13.2%), back pain (23.4% vs.
- Pluvicto demonstrated a statistically significant and clinically meaningful improvement in radiographic progression-free survival (rPFS) in patients with PSMA–positive metastatic castration-resistant prostate cancer (mCRPC) after treatment with androgen-receptor pathway inhibitor (ARPI) therapy, compared to a change in ARPI.
- rPFS radiographic progression-free survival
- mCRPC metastatic castration-resistant prostate cancer
- ARPI androgen-receptor pathway inhibitor
- the PSMAfore results continue to support the important role of Pluvicto in treating patients with prostate cancer.
- the present disclosure provides the first and interim Phase III data of PSMAfore. Based on the data of the present disclosure, Pluvicto becomes the first PSMA-targeted radioligand therapy to demonstrate significant and clinically meaningful benefits for people living with this type of prostate cancer who have not received taxane-based chemotherapy. Again, Pluvicto becomes the first PSMA-targeted radioligand therapy to demonstrate clinical benefit in mCRPC patients before receiving taxane-based chemotherapy, addressing a significant unmet need.
- PSMA prostate-specific membrane antigen
- mCRPC metastatic castration-resistant prostate cancer
- said radioligand therapeutic agent is [177Lu]Lu-PSMA-617 (lutetium (177Lu) vipivotide tetraxetan).
- PAT059452-WO-PCT - 9 - BRIEF DESCRIPTION OF THE DRAWINGS FIG.1 shows the design of the PSMAfore clinical trial.
- FIG.2A shows the Kaplan-Meier plot of radiographic progression-free survival based on independent central review (Full analysis set, at early DCO date) with no. of subjects still at risk after a time from randomization of 0, 2, 4, 6, 8, 10, 12, 14 months for [ 177 Lu]Lu-PSMA-617: 233, 180, 119, 65, 36, 14, 2, 0; and for ARDT: 234, 161, 84, 39, 24, 6, 0, 0.
- FIG. 2B shows the Kaplan-Meier plot of radiographic progression-free survival based on independent central review (Full analysis set, at later DCO date) with no.
- FIG.3A shows the Forest plot of Hazard Ratio with 95% confidence interval for radiographic progression-free survival based on independent central review from sensitivity analyses (Full analysis set) at earlier and later data-cut-offs (DCO). From top to bottom the Hazard ratios relate to the following numerical values and are based on the following events:
- PAT059452-WO-PCT - 10 Hazard ratio of [177Lu]Lu-PSMA-617 vs ARDT obtained from stratified Cox PH model.
- 'a' COVID-19 related deaths are censored at the last adequate tumor assessment prior to death.
- 'b' COVID-19 related deaths are censored at the date of death.
- Stratification factors from IRT data prior ARDT use in CRPC vs HSPC; asymptomatic or mildly symptomatic (score of 0-3 on item 3 of the Brief Pain Inventory Short Form (BPI-SF) questionnaire vs symptomatic (score >3 on item 3 of the BPI-SF questionnaire).
- FIG.3B shows the Forest plot of Hazard Ratio with 95% confidence interval for radiographic progression-free survival based on independent central review from sensitivity analyses (Full analysis set) at earlier and later data-cut-offs (DCO). From top to bottom the Hazard ratios relate to the following numerical values and are based on the following events: PAT059452-WO-PCT - 11 - Hazard ratio of [177Lu]Lu-PSMA-617 vs ARDT obtained from stratified Cox PH model. 'a': COVID-19 related deaths are censored at the last adequate tumor assessment prior to death. 'b': COVID-19 related deaths are censored at the date of death.
- FIG.4 shows the Kaplan-Meier plot of overall survival – Interim (Full analysis set) with no.
- FIG.5 shows the OS analysis adjusted for crossover and by ITT Interim OS analysis (DCO: June 2023) PAT059452-WO-PCT - 12 -
- FIG.6 shows that the PSA response was more frequent with 177Lu-PSMA-617 versus ARPI change among evaluable patients (Waterfall plots of best percentage change from baseline in PSA) Interim OS analysis (DCO: June 2023) (a)Patients with PSA values at baseline and post baseline.
- FIG.9A and 9B show that the time to worsening in composite(a) health-related quality of life and pain measures were longer with 177Lu-PSMA-617 versus ARPI change Interim OS analysis (DCO: June 2023) FIG.
- FIG. 9A FACT-P total score, HR: 0.59 (95% CI: 0.47, 0.72), Median time to worsening,(a) months (95% CI)(a): 7.46 (6.08, 8.51) vs 4.27 (3.48, 4.53)
- FIG. 9B BPI-SF pain intensity scale, HR: 0.69 (95% CI: 0.56, 0.85), Median time to worsening,(a) months (95% CI): 5.03 (4.40, 6.87) vs 3.71 (3.09, 4.37) (a)Composite of worsening score, clinical disease progression or death.
- ARDT androgen receptor-directed therapy
- ARPI androgen receptor pathway inhibition
- ARAT androgen receptor axis-targeted therapy
- the present disclosure can be formulated as in the following embodiments: 1a.
- a method of treating prostate-specific membrane antigen (PSMA)-positive [particularly: progressive] metastatic castration-resistant prostate cancer (mCRPC), comprising administering to a patient in need thereof a therapeutically effective amount of a PSMA- binding radioligand therapeutic (RLT) agent, or a pharmaceutically acceptable salt, PAT059452-WO-PCT - 15 - solvate, hydrate, co-crystal, crystalline form, amorphous form, stereoisomer, or tautomer thereof; wherein said patient has progressed [preferably: only once] after receiving a second-generation ARPI, but has not been previously treated with taxane-based chemotherapy.
- RLT radioligand therapeutic
- a method of treating prostate-specific membrane antigen (PSMA)-positive [particularly: progressive] metastatic castration-resistant prostate cancer (mCRPC), comprising administering to a taxane-na ⁇ ve patient, who has progressed [preferably: only once] after receiving a second-generation ARPI, a therapeutically effective amount of a PSMA- binding radioligand therapeutic (RLT) agent, or a pharmaceutically acceptable salt, solvate, hydrate, co-crystal, crystalline form, amorphous form, stereoisomer, or tautomer thereof.
- PSMA prostate-specific membrane antigen
- mCRPC metastatic castration-resistant prostate cancer
- the method of treatment of any one of the previous embodiments wherein said treatment is characterized by an increase of the radiographic progression-free survival (rPFS) in months of at least 40% / preferably 50% / more preferably 60% / even more preferably 65 / even more preferably 66%, compared to a continued or alternate treatment with the previously used or different ARDT/ARPI/ARAT.
- rPFS radiographic progression-free survival
- the method of treatment of any one of the previous embodiments wherein said treatment is characterized by an at least 15% / preferably 20% / more preferably 25% / even more preferably 28% reduction of Grade ⁇ 3 Adverse Events (AE) compared to a continued or alternate treatment with the previously used or different ARDT/ARPI/ARAT. 6.
- AE Grade ⁇ 3 Adverse Events
- the RLT agent comprises at least two components: (1) a radionuclide component; and (2) a ligand component; wherein said radionuclide component (1) comprises: (a) at least one radionuclide, preferably selected from the group consisting of alpha particle-emitting radionuclide, beta-minus electron-emitting radionuclide and Auger electron-emitting radionuclide, more preferably a beta-minus electron- emitting radionuclide ; and wherein said ligand component (2) comprises: (b) at least one PSMA-binding moiety; (c) optionally at least one chelator for chelating the radionuclide or a salt comprising the radionuclide, or a prosthetic group residue from a radiohalogenation reaction; (d) optionally at least one linker connecting the PSMA-binding moiety (b) with the chelator or prosthetic group component (c), preferably said linker is a chemical
- an oligo- or polyoxyethylene -(-CH2-CH2- O-)n- with n 2 – 100, or is an albumin-binding moiety (e.g. Evans blue, 4-(p- iodophenyl)butyric acid, 4-(p-methylphenyl)butyric acid, ibuprofen). 8.
- radionuclide is selected from the group consisting of Lu-177, Tb-161, I-131, Tc-99m, Y-90, Sc-47, Cu-67, Re-188, Pb- PAT059452-WO-PCT - 17 - 212, Bi-213, Ac-255, and Th-227, preferably selected from the group consisting of Lu- 177 and Tb-161.
- radionuclide is a beta-minus electron emitting radionuclide with an half-life of from about 2 to about 10 days, preferably from about 5 to about 10 days, more preferably from about 6 to about 8 days , even more preferably about 6 or about 7 days; and a beta-minus electron maximum energy of from about 0.3 to about 1.0 MeV, preferably from about 0.5 to about 0.8 MeV, more preferably about 0.5, 0.6, 0.7 or 0.8 MeV, even more preferably about 0.5 or about 0.6 MeV. 10.
- radionuclide is a beta-minus electron emitting radionuclide with an absorbed electron energy fraction per decay of from 100 to 300 keV/decay, from 120 to 250 keV/decay, from about 150 keV/decay (e.g. for Lu-177: 147 keV) to about 200 keV/decay (e.g. for Tb-161: 196 keV/decay). 11.
- any one of the embodiments 7 to 10 wherein the ligand is selected from the group consisting of PSMA-617, PSMA I&T, PSMA-R2, MIP-1095, MIP- 1545, MIP-1555, MIP-1557, MIP-1558, CTT1403, FC705, BAY-2315497, TLX592, PSMA-TCC, rhPSMA, rhPSMA-7, rhPSMA-7.3, rhPSMA-10.1, Ludotadipep, PNT2001, PNT2002, PSMA-7 I&T, EB-PSMA-617, PSMA-ALB-02, PSMA-ALB-053, PSMA-ALB- 056, P16-093, PSMA-93, RPS-074, RPS-072, NG001, ADVC00, PMI-21, HTK03121, IBU DAB PSMA, PSMA CM, or mcl-alb-M-PSMA, preferably selected from the groupd consisting of PSMA-617,
- PSMA- binding moiety comprises at least two amino acids connected via an urea or phosphoramide group, preferably glutamate-urea-lysine (GUL), or an antibody or fragment thereof, e.g. TLX591, J591, rosopatamab, IAB2M, GCP-05, 1H8H5, SP29, or FOLHl. 13.
- GUL glutamate-urea-lysine
- radioligand therapeutic agent is selected from the group consisting of [177Lu]Lu-PSMA-617 PAT059452-WO-PCT - 18 - (lutetium (177Lu) vipivotide tetraxetan), [177Lu]Lu-EB-PSMA-617 (Evans Blue modified [177Lu]Lu-PSMA-617), and [177Lu]Lu-PSMA I&T (lutetium (177Lu) zadavotide guraxetan), [161Tb]Tb-PSMA-617 (terbium (161Tb) vipivotide tetraxetan), [161Tb]Tb- EB-PSMA-617 (Evans Blue modified [161Tb]Tb-PSMA-617), and [161Tb]Tb-PSMA I&T (terbium (161Tb) zadavotide
- GUL glutamate-urea-lysine
- the radioligand therapeutic agent is administered at a dose of from about 6 to about 8 GBq, preferably about 6.5 to about 7.8 GBq, more preferably 7.4 ( ⁇ 10%) GBq, once every about 5 to about 10 weeks, preferably about 6 to about 8 weeks, more preferably 6 ( ⁇ 1) weeks (i.e.1 cycle) for up to about 4 to about 6 cycles, preferably about 6 cycles.
- the radioligand therapeutic agent is administered at a dose of 7.4 ( ⁇ 10%) GBq once every 6 ( ⁇ 1) weeks (i.e.1 cycle) for up to 6 cycles. 17.
- the PSMA- posivity of the mCRPC is determined by positron emission tomography (PET) with a PSMA-binding radioligand diagnostic or imaging agent
- said radioligand imaging agent comprises: (1) a radionuclide component; and (2) a ligand component; PAT059452-WO-PCT - 19 -
- said radionuclide component (1) comprises: (a) at least one positron-emitting radionuclide; and wherein said ligand component (2) comprises: (b) at least one PSMA-binding moiety; (c) optionally at least one chelator for chelating the radionuclide or a salt comprising the radionuclide, or a prosthetic group residue from a radiohalogenation reaction; (d) optionally at least one linker connecting the PSMA binding moiety (b) with the chelator/prosthetic group component (c), preferably said linker is a chemical moiety or
- radionuclide is selected from the group consisting of F-18, Ga-67, Ga-68, and Cu-64.
- said ligand component is selected from the group consisting of PSMA-11 (gozetotide), DCPyL (if labeled with 18F available as PYLARIFY, INN: piflufolastat F-18, also referred to shortly as PyL), MIP-1404, rhPSMA 07, PSMA-1007, THP-PSMA, iPSMA, P16-093, PSMA-93, rhPSMA, rhPSMA-7, rhPSMA-7.3, PSMA-7, and PSMA I&T.
- ARDT androgen receptor-directed therapy
- the method (of treatment) of any one of the preceding embodiments wherein said treatment is characterized by less than 40% / preferably 35% / more preferably 30% / even more preferably 25% / even more preferably 24% patients out of a respective patient population to show radiographic progression within the first about 7, 8, 9, 10, 11, 12 months from start of treatment.
- said treatment is characterized by an increase of the radiographic progression-free survival (rPFS) in months of at least 40% / preferably 50% / more preferably 60% / even more preferably 65 / even more preferably 66%, compared to a continued or alternate treatment with the previously used or different ARDT/ARPI/ARAT.
- rPFS radiographic progression-free survival
- the method of the present disclosure is formulated in the following way: E3.a A method of decreasing the rate of radiographic progression of prostate cancer in patients in need thereof, in particular within the first 7, 8, 9, 10, 11, 12 months from start of the method, compared to a continued or alternate treatment with the previously used or different ARDT/ARPI/ARAT, said method comprising administering to said patient a therapeutically effective amount of a no-carrier added (n.c.a.) Lutetium-177 ( 177 Lu) labeled prostate-specific membrane antigen (PSMA) binding radioligand therapeutic (RLT) agent, or a PAT059452-WO-PCT - 21 - pharmaceutically acceptable salt, solvate, hydrate, co-crystal, crystalline form, amorphous form, stereoisomer, conformer, or tautomer thereof; wherein said prostate cancer is a prostate-specific membrane antigen (PSMA) positive (+) metastatic castration-resistant prostate cancer (mCRPC); wherein the patient had been previously
- said decrease of rate in radiographic progression is by at least 10%, 20%, 30%, 40%, 50%, 60%, 70%, 80%, 90%, or 100%.
- said treatment is characterized by treatment-related Grade ⁇ 3 adverse events to occur in less than 25% patients of the respective patient population.
- E4.1 The method (of treatment) of any one of the previous embodiments, wherein said treatment is characterized by an at least 15% / preferably 20% / more preferably 25% / even more preferably 28% reduction of Grade ⁇ 3 Adverse Events (AE) compared to a continued or alternate treatment with the previously used or different ARDT/ARPI/ARAT.
- AE Adverse Events
- the method of the present disclosure is formulated in the following way: E4.a A method of reducing the rate of suffering from Grade ⁇ 3 Adverse Events (AE) for patients in need of prostate cancer treatment, compared to a continued or alternate treatment with the previously used or different ARDT/ARPI/ARAT, said method comprising administering to said patient a therapeutically effective amount of a no-carrier added (n.c.a.) Lutetium-177 ( 177 Lu) labeled prostate-specific membrane antigen (PSMA) binding radioligand therapeutic (RLT) agent, or a pharmaceutically acceptable salt, solvate, hydrate, co-crystal, crystalline form, amorphous form, stereoisomer, conformer, or tautomer thereof; PAT059452-WO-PCT - 22 - wherein said prostate cancer is a prostate-specific membrane antigen (PSMA) positive (+) metastatic castration-resistant prostate cancer (mCRPC); wherein the patient had been previously treated with androgen receptor-directed
- PSMA prostate-specific
- said reduction of rate of suffering from Grade ⁇ 3 Adverse Events (AE) is by at least 10%, 15%, 20%, 25%, 30%, 35%, 40%, 50%, 60%, 70%, 80%, 90%, or 100%.
- AE Grade ⁇ 3 Adverse Events
- said treatment is characterized by treatment-related Grade ⁇ 3 serious adverse events to occur in less than 15% patients of the respective patient population.
- E5.1 The method (of treatment) of any one of the previous embodiments, wherein said treatment is characterized by an at least 15% / preferably 20% / more preferably 25% reduction of Grade ⁇ 3 Serious Adverse Events (AE) compared to a continued or alternate treatment with the previously used or different ARDT/ARPI/ARAT.
- E5.a A method of reducing the rate of suffering from Grade ⁇ 3 Adverse Events (AE) for patients in need of prostate cancer treatment, compared to a continued or alternate treatment with the previously used or different ARDT/ARPI/ARAT, said method comprising administering to said patient a therapeutically effective amount of a no-carrier added (n.c.a.) Lutetium-177 ( 177 Lu) labeled prostate-specific membrane antigen (PSMA) binding radioligand therapeutic (RLT) agent, or a pharmaceutically acceptable salt, solvate, hydrate, co-crystal, crystalline form, amorphous form, stereoisomer, conformer, or tautomer thereof; wherein said prostate cancer is a prostate-specific membrane antigen (PSMA) positive (+) metastatic castration-resistant prostate cancer (mCRPC); wherein the patient had been previously treated with androgen receptor-directed therapy (ARDT), androgen receptor pathway inhibition (ARPI) or androgen receptor axis- PAT059452-WO-PCT -
- said reduction of rate of suffering from Grade ⁇ 3 Serious Adverse Events is by at least 10%, 15%, 20%, 25%, 30%, 35%, 40%, 50%, 60%, 70%, 80%, 90%, or 100%.
- AE Serious Adverse Events
- E10 The method (of treatment) of any one of the preceding embodiments, wherein the radioligand therapeutic agent is administered at a dose of 7.4 ( ⁇ 10%) GBq once every 6 ( ⁇ 1) weeks (i.e.1 cycle) for up to 6 cycles.
- E12 The method (of treatment) of any one of the preceding embodiments, wherein said treatment is characterized by an increase in time of the radiographic progression-free survival (rPFS) period in months of at least 40%, compared to a continued or alternate ARDT/ARPI/ARAT treatment with the previously used or different ARDT/ARPI/ARAT, respectively.
- rPFS radiographic progression-free survival
- E13 The method (of treatment) of any one of the preceding embodiments, wherein said treatment is characterized by treatment-related Grade ⁇ 3 adverse events to occur in less than 25% patients of the respective patient population.
- E14 The method (of treatment) of any one of the preceding embodiments, wherein said treatment is characterized by treatment-related Grade ⁇ 3 serious adverse events to occur in less than 15% patients of the respective patient population.
- the method (of treatment) of any one of the preceding embodiments wherein said treatment is characterized by an at least 15% reduction of Grade ⁇ 3 Serious Adverse Events (AE), compared to a continued or alternate ARDT/ARPI/ARAT treatment with the previously used or different ARDT/ARPI/ARAT, respectively.
- AE Serious Adverse Events
- the radioligand therapeutic agent is administered at a dose of from about 6 to about 8 GBq, preferably about 6.5 to about 7.8 GBq, more preferably 7.4 ( ⁇ 10%) GBq, once every 5 to 10 weeks, preferably 6 to 8 weeks, more preferably 6 ( ⁇ 1) weeks (i.e.1 cycle) for up to 4 to 6 cycles, preferably 6 cycles.
- n.c.a. 1 77 Lu-labeled PSMA-binding RLT agent or a pharmaceutically acceptable salt, solvate, hydrate, co-crystal, crystalline form, amorphous form, stereoisomer, conformer, or tautomer thereof, comprises the components: (1) the beta-minus electron-emitting radionuclide 177 Lu in n.c.a.
- a ligand component comprising: (a) at least one PSMA-binding moiety; (b) at least one chelator moiety suitable for chelating the radionuclide; (c) at least one linker moiety connecting the PSMA-binding moiety (a) with the chelator component (b); PAT059452-WO-PCT - 26 - (d) optionally at least one additional moiety that alters the systemic circulation time, tumor uptake, and/or biodistribution of the RLT agent, preferably said altering moiety comprises oxyethylene units, e.g.
- an oligo- or polyoxyethylene -(-CH2-CH2- O-)n- with n 2 – 100, or is an albumin-binding moiety (e.g. Evans blue, 4-(p- iodophenyl)butyric acid, 4-(p-methylphenyl)butyric acid, ibuprofen), and said altering moiety is preferably covalently bound to the linker component (c).
- the PSMA- binding moiety (a) comprises at least two amino acids connected via an urea or phosphoramide group, preferably glutamate-urea-lysine (GUL), or an antibody or fragment thereof, e.g.
- linker (c) including the functional groups that bind the linker with the PSMA-binding moiety, e.g. the amide bond connecting the lysine of the binding moiety with the linker comprises the at least one hydrophobic side-chain, e.g. a side-chain comprising aromatic units, e.g. optionally substituted phenyl, optionally substituted benzyl, or optionally substituted naphthyl.
- linker (c) comprises the residues of (2-naphthyl)-L-alanine and trans-4-aminomethyl- cyclohexanecarboxylic acid or the linker comprises the residues of an optionally substituted phenyl-alanine and/or optionally substituted tyrosine, preferably, a phenyl- alanine and a subtstituted tyrosine, more preferably a phenyl-alanine and a iodo- substituted tyrosine, even more preferably a D-phenyl-alanine and a iodo-substituted D- tyrosine.
- the RLT agent is selected from the group consisting of [ 177 Lu]Lu-PSMA-617 (lutetium ( 177 Lu) vipivotide tetraxetan), [ 177 Lu]Lu-EB-PSMA-617 (Evans Blue modified [ 177 Lu]Lu-PSMA- 617), and [ 177 Lu]Lu-PSMA I&T (lutetium ( 177 Lu) zadavotide guraxetan).
- the RLT agent is selected from the group consisting of [ 177 Lu]Lu-PSMA-617 (lutetium ( 177 Lu) vipivotide tetraxetan), [ 177 Lu]Lu-EB-PSMA-617 (Evans Blue modified [ 177 Lu]Lu-PSMA- 617), and [ 177 Lu]Lu-PSMA I&T (lutetium ( 177 Lu) zadavotide guraxetan).
- the RLT agent is selected from the group consisting of [
- the PSMA- positivity of the mCRPC is determined by positron emission tomography (PET) with a PSMA-binding radioligand diagnostic or imaging (RLI) agent
- said radioligand imaging agent comprises: (1) a radionuclide component; and (2) a ligand component; wherein said radionuclide component (1) comprises: (a) at least one positron-emitting radionuclide; and wherein said ligand component (2) comprises: (b) at least one PSMA-binding moiety; (c) optionally at least one chelator for chelating the radionuclide or a salt comprising the radionuclide, or a prosthetic group residue from a radiohalogenation reaction; (d) optionally at least one linker connecting the PSMA binding moiety (b) with the chelator/prosthetic group component (c), preferably said linker is a chemical moiety or a covalent bond.
- RLI agent is selected from the group consisting of [ 68 Ga]Ga-PSMA-11 (gallium ( 68 Ga) gozetotide, available as LOCAMETZ by Novartis or Advanced Accelerator Applications, or as ILLUCCIX by Telix), 18 F-DCPyL (piflufolastat ( 18 F), available as PYLARIFY by PAT059452-WO-PCT - 28 - Lantheus, or PYLCLARI by Curium), 18 F-PSMA-1007 (available as RADELIUM by ABX), 1 8 F-CTT1057 (vidoflufolastat ( 18 F)), 18 F/ nat Ga-rhPSMA-7.3 (flotufolastat ( 18 F), available as POSLUMA by Blue Earth), [ 68 Ga]Ga-PSMA-R2, and [ 64 Cu]Cu-PSMA-R2.
- a method of reducing the risk of radiographic progression of or death by prostate cancer in a patient in need thereof comprising administering to said patient a therapeutically effective amount of a no-carrier added (n.c.a.) Lutetium-177 ( 177 Lu) labeled prostate-specific membrane antigen (PSMA) binding radioligand therapeutic (RLT) agent, or a pharmaceutically acceptable salt, solvate, hydrate, co-crystal, crystalline form, amorphous form, stereoisomer, conformer, or tautomer thereof; wherein said prostate cancer is a prostate-specific membrane antigen (PSMA) positive (+) metastatic castration-resistant prostate cancer (mCRPC); wherein the patient had been previously treated with androgen receptor-directed therapy (ARDT), androgen receptor pathway inhibition (ARPI) or androgen receptor axis- targeted therapy (ARAT); under the proviso that said patient has not been previously treated with taxane-based chemotherapy or in case of
- a method of prolonging the time period of radiographic progression-free survival (rPFS) of a patient in need of prostate cancer treatment comprising administering to said patient a therapeutically effective amount of a no-carrier added (n.c.a.) Lutetium-177 ( 177 Lu) labeled prostate-specific membrane antigen (PSMA) binding radioligand therapeutic (RLT) agent, or a pharmaceutically acceptable salt, solvate, hydrate, co-crystal, crystalline form, amorphous form, stereoisomer, conformer, or tautomer thereof; wherein said prostate cancer is a prostate-specific membrane antigen (PSMA) positive (+) metastatic castration-resistant prostate cancer (mCRPC); wherein the patient had been previously treated with androgen receptor-directed therapy (ARDT), androgen receptor pathway inhibition (ARPI) or androgen receptor axis- targeted therapy (ARAT); under the proviso that said patient has not been previously treated with taxane-based chemotherapy or in case of a previous taxane-exposure
- a method of increasing overall survival (OS) of a patient in need of prostate cancer treatment comprising administering to said patient a therapeutically effective amount of a no-carrier added (n.c.a.) Lutetium-177 ( 177 Lu) labeled prostate-specific membrane antigen (PSMA) binding radioligand therapeutic (RLT) agent, or a pharmaceutically acceptable salt, solvate, hydrate, co-crystal, crystalline form, amorphous form, stereoisomer, conformer, or tautomer thereof; wherein said prostate cancer is a prostate-specific membrane antigen (PSMA) positive (+) metastatic castration-resistant prostate cancer (mCRPC); wherein the patient had been previously treated with androgen receptor-directed therapy (ARDT), androgen receptor pathway inhibition (ARPI) or androgen receptor axis- PAT059452-WO-PCT - 30 - targeted therapy (ARAT); under the proviso that said patient has not been previously treated with taxane-based chemotherapy or in case of a previous taxan
- CR complete response
- PR partial response
- said method comprising administering to said patient a therapeutically effective amount of a no-carrier added (n.c.a.) Lutetium-177 ( 177 Lu) labeled prostate-specific membrane antigen (PSMA) binding radioligand therapeutic (RLT) agent, or a pharmaceutically acceptable salt, solvate, hydrate, co-crystal, crystalline form, amorphous form, stereoisomer, conformer, or tautomer thereof; wherein said prostate cancer is a prostate-specific membrane antigen (PSMA) positive (+) metastatic castration-resistant prostate cancer (mCRPC); wherein the patient had been previously treated with androgen receptor-directed therapy (ARDT), androgen receptor pathway inhibition (ARPI) or androgen receptor axis- targeted therapy (ARAT); under the proviso that said patient has not been previously treated with taxane-based chemotherapy or in case of a previous taxane-exposure at least 12 months have
- OS may be defined as the time from a first date (e.g., a date when the treatment for cancer begins or, alternatively, a date when the treatment for cancer ends) to a date of death due to any cause.
- HRQoL health-related quality of life
- FACT-P Functional Assessment of Cancer Therapy-Prostate
- a method of improving the health-related quality of life (HRQoL) (determined for example by the Functional Assessment of Cancer Therapy-Prostate (FACT-P) of a patient in need of prostate cancer treatment; said method comprising administering to said patient a therapeutically effective amount of a no-carrier added (n.c.a.) Lutetium-177 ( 177 Lu) labeled prostate-specific membrane antigen (PSMA) binding radioligand therapeutic (RLT) agent, or a pharmaceutically acceptable salt, solvate, hydrate, co-crystal, crystalline form, amorphous form, stereoisomer, conformer, or tautomer thereof; wherein said prostate cancer is a prostate-specific membrane anti
- a method of increasing the PSA response of a patient in need of prostate cancer treatment comprising administering to said patient a therapeutically effective amount of a no-carrier added (n.c.a.) Lutetium-177 ( 177 Lu) labeled prostate-specific membrane antigen (PSMA) binding radioligand therapeutic (RLT) agent, or a pharmaceutically acceptable salt, solvate, hydrate, co-crystal, crystalline form, amorphous form, stereoisomer, conformer, or tautomer thereof; wherein said prostate cancer is a prostate-specific membrane antigen (PSMA) positive (+) metastatic castration-resistant prostate cancer (mCRPC); wherein the patient had been previously treated with androgen receptor-directed therapy (ARDT), androgen receptor pathway inhibition (ARPI) or androgen receptor axis- targeted therapy (ARAT); under the proviso that said patient has not been previously treated with taxane-based chemotherapy or in case of a previous taxane-exposure at least 12 months have elapsed since completion (
- a method of delaying the time to symptomatic skeletal event (SSE) of a patient in need of prostate cancer treatment comprising administering to said patient a therapeutically effective amount of a no-carrier added (n.c.a.) Lutetium-177 ( 177 Lu) labeled prostate-specific membrane antigen (PSMA) binding radioligand therapeutic (RLT) agent, or a PAT059452-WO-PCT - 33 - pharmaceutically acceptable salt, solvate, hydrate, co-crystal, crystalline form, amorphous form, stereoisomer, conformer, or tautomer thereof; wherein said prostate cancer is a prostate-specific membrane antigen (PSMA) positive (+) metastatic castration-resistant prostate cancer (mCRPC); wherein the patient had been previously treated with androgen receptor-directed therapy (ARDT), androgen receptor pathway inhibition (ARPI) or androgen receptor axis- targeted therapy (ARAT); under the proviso that said patient has not been previously treated with taxane-based chemotherapy
- the delay in time to SSE is about 50% longer, about 60% longer, about 70% longer, about 80% longer, about 90% longer, compared to a continued or alternate ARDT/ARPI/ARAT treatment with the previously used or different ARDT/ARPI/ARAT, respectively. e18.
- a method of reducing risk of a symptomatic skeletal event (SSE) of a patient in need of prostate cancer treatment comprising administering to said patient a therapeutically effective amount of a no-carrier added (n.c.a.) Lutetium-177 ( 177 Lu) labeled prostate-specific membrane antigen (PSMA) binding radioligand therapeutic (RLT) agent, or a pharmaceutically acceptable salt, solvate, hydrate, co-crystal, crystalline form, amorphous form, stereoisomer, conformer, or tautomer thereof;
- said prostate cancer is a prostate-specific membrane antigen (PSMA) positive (+) metastatic castration-resistant prostate cancer (mCRPC); wherein the patient had been previously treated with androgen receptor-directed therapy (ARDT), androgen receptor pathway inhibition (ARPI) or androgen receptor axis- targeted therapy (ARAT); under the proviso that said patient has not been previously treated with taxane-based chemotherapy or in case of a previous taxane-exposure at
- the risk is reduced by at least about 50%, about 55%, about 60%, about 65%, or about 70%, compared to a continued PAT059452-WO-PCT - 34 - or alternate ARDT/ARPI/ARAT treatment with the previously used or different ARDT/ARPI/ARAT, respectively.
- e20. The method of treatment of any one of the preceding embodiments, wherein said treatment is safer and more tolerable, compared to a continued or alternate ARDT/ARPI/ARAT treatment with the previously used or different ARDT/ARPI/ARAT, respectively.
- the method of treatment of any one of the preceding embodiments, wherein the n.c.a. 1 77 Lu-labeled PSMA-binding RLT agent, or a pharmaceutically acceptable salt, solvate, hydrate, co-crystal, crystalline form, amorphous form, stereoisomer, conformer, or tautomer thereof, comprises the components: (1) the beta-minus electron-emitting radionuclide 177 Lu in n.c.a.
- a ligand component comprising: (a) at least one PSMA-binding moiety; (b) at least one chelator moiety suitable for chelating the radionuclide; and PAT059452-WO-PCT - 35 - (c) at least one linker moiety connecting the PSMA-binding moiety (a) with the chelator component (b).
- the PSMA- binding moiety (a) comprises the amino acids glutamic acid and lysine connected via an urea group, for example glutamate-urea-lysine (GUL); wherein the chelator moiety (b) comprises a residue of DOTA or a residue of DOTAGA; and wherein the linker (c) (including the functional groups that bind the linker with the PSMA-binding moiety, e.g. the amide bond connecting the lysine of the binding moiety with the linker) comprises at least one hydrophobic side-chain selected from the group consisting of an optionally substituted phenyl, optionally substituted benzyl, or optionally substituted naphthyl.
- GUL glutamate-urea-lysine
- the RLT agent is selected from the group consisting of [ 177 Lu]Lu-PSMA-617 (lutetium ( 177 Lu) vipivotide tetraxetan), [ 177 Lu]Lu-PSMA I&T (lutetium ( 177 Lu) zadavotide guraxetan), and [ 177 Lu]Lu-PSMA-R2. e28.
- the RLT agent is selected from the group consisting of [ 177 Lu]Lu-PSMA-617 (lutetium ( 177 Lu) vipivotide tetraxetan), and [ 177 Lu]Lu-PSMA I&T (lutetium ( 177 Lu) zadavotide guraxetan). e29.
- the RLT agent is [ 177 Lu]Lu-PSMA-617 (lutetium ( 177 Lu) vipivotide tetraxetan).
- the PSMA- positivity of the mCRPC is determined by positron emission tomography (PET) with a PSMA-binding radioligand diagnostic or imaging (RLI) agent, wherein said radioligand imaging is selected from the group consisting of [ 68 Ga]Ga-PSMA-11 (gallium ( 68 Ga) gozetotide), 18 F-DCPyL (piflufolastat ( 18 F)), 18 F-PSMA-1007, 18 F-CTT1057 (vidoflufolastat ( 18 F)), 18 F/ nat Ga-rhPSMA-7.3 (flotufolastat ( 18 F)), [ 68 Ga]Ga-PSMA-R2, and [ 64 Cu]Cu-PSMA-R2.
- PTT positron emission tomography
- RLI radioligand diagnostic or imaging
- the method of treatment is a method of reducing the risk of radiographic progression of or death by prostate cancer in a patient in need thereof.
- the method of treatment comprises administering to said patient a therapeutically effective amount of a no-carrier added (n.c.a.) Lutetium-177 ( 177 Lu) labeled prostate-specific membrane antigen (PSMA) binding radioligand therapeutic (RLT) agent, or a pharmaceutically acceptable salt, solvate, hydrate, co-crystal, crystalline form, amorphous form, stereoisomer, conformer, or tautomer thereof.
- a no-carrier added n.c.a.
- PSMA prostate-specific membrane antigen binding radioligand therapeutic
- the prostate cancer is a prostate-specific membrane antigen (PSMA) positive (+) metastatic castration-resistant prostate cancer (mCRPC).
- PSMA prostate-specific membrane antigen
- mCRPC metastatic castration-resistant prostate cancer
- the patient had been previously treated with androgen receptor- directed therapy (ARDT), androgen receptor pathway inhibition (ARPI) or androgen receptor axis-targeted therapy (ARAT)
- ARDT androgen receptor- directed therapy
- ARPI androgen receptor pathway inhibition
- ARAT androgen receptor axis-targeted therapy
- the patient has not been previously treated with taxane-based chemotherapy.
- the patient has not been previously treated with taxane-based chemotherapy, or in case of a previous taxane-exposure at least 12 months have elapsed since completion (i.e. last dose administration) of said chemotherapy.
- the method of treatment is characterized by an at least 50%, 51%, 52%, 53%, 54%, 55%, 56%, 57%, 58%, 59%, 60%, 61%, 62%, 63%, 64%, 65%, 66%, 67%, 68%, 69%, or 70% reduction in risk of radiographic progression of the prostate cancer or death, compared to a continued or alternate ARDT/ARPI/ARAT treatment with the previously used or different ARDT/ARPI/ARAT, respectively, corresponding to a Hazard Ratio (HR) of not more than 50%, 49%, 48%, 47%, 46%, 45%, 44%, 43%, 42%, 41%, 40%, 39%, 38%, 37%, 36%, 35%, 34%, 33%, 32%, 31%, or 30%.
- HR Hazard Ratio
- the method of treatment is characterized by less than 25% patients out of a respective patient population to show radiographic progression within the first about PAT059452-WO-PCT - 37 - 7 months, 8 months, 9 months, 10 months, 11 month, 12 month, 13 months, 14 months, 15 months, 16 months, 17, months, 18, months, 19 months, 20 months, 21 months, 22 months, 23 months, or 24 months, from start of treatment.
- the method of treatment is characterized by less than 24% patients out of a respective patient population to show radiographic progression within the first about 7 months, 8 months, 9 months, 10 months, 11 month, 12 month, 13 months, 14 months, 15 months, 16 months, 17, months, 18, months, 19 months, 20 months, 21 months, 22 months, 23 months, or 24 months, from start of treatment.
- the method of treatment is characterized by less than 23% patients out of a respective patient population to show radiographic progression within the first about 7 months, 8 months, 9 months, 10 months, 11 month, 12 month, 13 months, 14 months, 15 months, 16 months, 17, months, 18, months, 19 months, 20 months, 21 months, 22 months, 23 months, or 24 months, from start of treatment.
- the method of treatment is characterized by less than 22% patients out of a respective patient population to show radiographic progression within the first about 7 months, 8 months, 9 months, 10 months, 11 month, 12 month, 13 months, 14 months, 15 months, 16 months, 17, months, 18, months, 19 months, 20 months, 21 months, 22 months, 23 months, or 24 months, from start of treatment.
- the method of treatment is characterized by less than 21% patients out of a respective patient population to show radiographic progression within the first about 7 months, 8 months, 9 months, 10 months, 11 month, 12 month, 13 months, 14 months, 15 months, 16 months, 17, months, 18, months, 19 months, 20 months, 21 months, 22 months, 23 months, or 24 months, from start of treatment.
- the method of treatment is characterized by less than 20% patients out of a respective patient population to show radiographic progression within the first about 7 months, 8 months, 9 months, 10 months, 11 month, 12 month, 13 months, 14 months, 15 months, 16 months, 17, months, 18, months, 19 months, 20 months, 21 months, 22 months, 23 months, or 24 months, from start of treatment.
- the method of treatment is characterized by less than 19% patients out of a respective patient population to show radiographic progression within the first about 7 months, 8 months, 9 months, 10 months, 11 month, 12 month, 13 months, 14 months, 15 months, 16 months, 17, months, 18, months, 19 months, 20 months, 21 months, 22 months, 23 months, or 24 months, from start of treatment.
- the method of treatment is characterized by less than 18% patients out of a respective patient population to show radiographic progression within the first about 7 months, 8 months, 9 months, 10 months, 11 month, 12 month, 13 months, 14 months, 15 months, 16 months, 17, months, 18, months, 19 months, 20 months, 21 months, 22 months, 23 months, or 24 months, from start of treatment.
- the method of treatment is characterized by less than 17% patients out of a respective patient population to show radiographic progression within the first about 7 months, 8 months, 9 months, 10 months, 11 month, 12 month, 13 months, 14 months, 15 months, 16 months, 17, months, 18, months, 19 months, 20 months, 21 months, 22 months, 23 months, or 24 months, from start of treatment.
- the method of treatment is characterized by less than 16% patients out of a respective patient population to show radiographic progression within the first about 7 months, 8 months, 9 months, 10 months, 11 month, 12 month, 13 months, 14 months, 15 months, 16 months, 17, months, 18, months, 19 months, 20 months, 21 months, 22 months, 23 months, or 24 months, from start of treatment.
- the method of treatment is characterized by less than 15% patients out of a respective patient population to show radiographic progression within the first about 7 months, 8 months, 9 months, 10 months, 11 month, 12 month, 13 months, 14 months, 15 months, 16 months, 17, months, 18, months, 19 months, 20 months, 21 months, 22 months, 23 months, or 24 months, from start of treatment.
- the method of treatment is characterized by less than 10% patients out of a respective patient population to show radiographic progression within the first about 7 months, 8 months, 9 months, 10 months, 11 month, 12 month, 13 months, 14 months, 15 months, 16 months, 17, months, 18, months, 19 months, 20 months, 21 months, 22 months, 23 months, or 24 months, from start of treatment.
- the method of treatment is characterized by less than 5% patients out of a respective patient population to show radiographic progression within the first about 7 months, 8 months, 9 months, 10 months, 11 month, 12 month, 13 months, 14 months, 15 months, 16 months, 17, months, 18, months, 19 months, 20 months, 21 months, 22 months, 23 months, or 24 months, from start of treatment.
- PAT059452-WO-PCT - 39 - the method of treatment is a method of prolonging the time period of radiographic progression-free survival (rPFS) of a patient in need of prostate cancer treatment.
- the method of treatment is characterized by an increase in time of the radiographic progression-free survival (rPFS) period in months of at least 40%, 41%, 42%, 43%, 44%, 45%, 46%, 47%, 48%, 49%, 50%, 55%, 60%, 70%, 80%, 90%, 100%, 150%, or 200%, compared to a continued or alternate ARDT/ARPI/ARAT treatment with the previously used or different ARDT/ARPI/ARAT, respectively.
- the method of treatment is a method of increasing overall survival (OS) of a patient in need of prostate cancer treatment.
- the method of treatment reduces the risk of death corresponding to a hazard ratio of less than 1, of about 0.95 or lower, of about 0.9 or lower, of about 0.85 or lower, of about 0.8 or lower, of about 0.75 or lower, of about 0.7 or lower, of about 0.65 or lower, of about 0.6 or lower, of about 0.55 or lower, or of aobut 0.5 or lower, when the risk is calculated relative to patients receiving a continued or alternate ARDT/ARPI/ARAT treatment with the previously used or different ARDT/ARPI/ARAT, respectively.
- the method of treatment is a method of increasing the overall response rate (ORR) (i.e.
- the ORR in soft tissue is increased by at least 100%, at least by 150%, at least by 200%, at least by 250%, or at least 300%, compared to a continued or alternate ARDT/ARPI/ARAT treatment with the previously used or different ARDT/ARPI/ARAT, respectively.
- the complete response (CR) rate in soft tissue is increased by at least 100% (increase by a factor of 1), at least by 150%, at least by 200%, at least by 250%, at least by 300%, at least by 350%, at least by 400%, at least by 450%, or at least by PAT059452-WO-PCT - 40 - 500%, compared to a continued or alternate ARDT/ARPI/ARAT treatment with the previously used or different ARDT/ARPI/ARAT, respectively.
- the Overall survival (OS) may relate to the length of time that a patient survives, which can include death from any cause, regardless of whether the breast cancer has recurred or spread.
- the method of treatment is a method of improving the health-related quality of life (HRQoL) (determined for example by the Functional Assessment of Cancer Therapy-Prostate (FACT-P) of a patient in need of prostate cancer treatment.
- HRQoL health-related quality of life
- FACT-P Functional Assessment of Cancer Therapy-Prostate
- the method of treatment of the preceding embodiment wherein the time to worsening in composite HRQoL is about 50% longer, about 60% longer, or about 70% longer, compared to a continued or alternate ARDT/ARPI/ARAT treatment with the previously used or different ARDT/ARPI/ARAT, respectively.
- the risk of worsening in composite HRQoL is reduced by at least 25%, at least 30%, at least 35%, or at least 40%, when the risk is calculated relative to patients receiving a continued or alternate ARDT/ARPI/ARAT treatment with the previously used or different ARDT/ARPI/ARAT, respectively, (corresponsding to HR of up to 0.75, up to 0.70, up to 0.65%, or up to 0.60).
- the method of treatment is a method of increasing the PSA response of a patient in need of prostate cancer treatment.
- the PSA response is a confirmed PSA decrease of at least 50% is about at least 50%, 60%, 70%, 80%, 90%, 100%, 110%, 120%, 130%, 140%, 150%, 160%, 170%, 180%, 190%, or at least 200%, compared to a continued or alternate ARDT/ARPI/ARAT treatment with the previously used or different ARDT/ARPI/ARAT, respectively.
- the method of treatment is a method of delaying the time to symptomatic skeletal event (SSE) of a patient in need of prostate cancer treatment.
- the delay in time to SSE is about 50% longer, about 60% longer, about 70% longer, about 80% longer, about 90% longer, compared to a continued or alternate ARDT/ARPI/ARAT treatment with the previously used or different ARDT/ARPI/ARAT, respectively.
- the method of treatment is a method of reducing risk of a symptomatic skeletal event (SSE) of a patient in need of prostate cancer treatment.
- the SSE risk is reduced by at least about 50%, about 55%, about 60%, about 65%, or about 70%, compared to a continued or alternate ARDT/ARPI/ARAT treatment with the previously used or different ARDT/ARPI/ARAT, respectively.
- the method of treatment is a treatment that is safer and more tolerable, compared to a continued or alternate ARDT/ARPI/ARAT treatment with the previously used or different ARDT/ARPI/ARAT, respectively.
- the treatment is characterized by treatment-related Grade ⁇ 3 adverse events to occur in less than 25%, 24%, 23%, 22%, 21%, 20%, 19%, 18%, 17%, 16%, 15%, 10%, or 5% patients of the respective patient population.
- the treatment is characterized by treatment-related Grade ⁇ 3 serious adverse events to occur in less than 15%, 14%, 13%, 12%, 11%, 10%, 9%, 8%, 7%, 6%, or 5% patients of the respective patient population.
- the radioligand therapeutic agent is administered at a dose of from about 6 to about 8 GBq once every 6 to 8 weeks (i.e.1 cycle) for up to 4 to 6 cycles. In some embodiments, the radioligand therapeutic agent is administered at a dose of 7.4 ( ⁇ 10%) GBq once every 6 ( ⁇ 1) weeks (i.e.1 cycle) for up to 6 cycles. PAT059452-WO-PCT - 42 - In some embodiments, the n.c.a.
- 177 Lu-labeled PSMA-binding RLT agent or a pharmaceutically acceptable salt, solvate, hydrate, co-crystal, crystalline form, amorphous form, stereoisomer, conformer, or tautomer thereof, comprises the components: (1) the beta-minus electron-emitting radionuclide 177 Lu in n.c.a. quality; (2) a ligand component; wherein said ligand component (2) comprises: (a) at least one PSMA-binding moiety; (b) at least one chelator moiety suitable for chelating the radionuclide; and (c) at least one linker moiety connecting the PSMA-binding moiety (a) with the chelator component (b).
- the PSMA-binding moiety (a) comprises the amino acids glutamic acid and lysine connected via an urea group, for example glutamate-urea-lysine (GUL); wherein the chelator moiety (b) comprises a residue of DOTA or a residue of DOTAGA; and wherein the linker (c) comprises at least one hydrophobic side-chain selected from the group consisting of an optionally substituted phenyl, optionally substituted benzyl, or optionally substituted naphthyl.
- GUL glutamate-urea-lysine
- the PSMA-binding moiety (a) comprises the amino acids glutamic acid and lysine connected via an urea group, for example glutamate-urea-lysine (GUL); wherein the chelator moiety (b) comprises a residue of DOTA or a residue of DOTAGA; and wherein the linker (c) including the functional groups that bind the linker with the PSMA-binding moiety, e.g. the amide bond connecting the lysine of the binding moiety with the linker, comprises at least one hydrophobic side-chain selected from the group consisting of an optionally substituted phenyl, optionally substituted benzyl, or optionally substituted naphthyl.
- GUL glutamate-urea-lysine
- the RLT agent is selected from the group consisting of [ 177 Lu]Lu-PSMA- 617 (lutetium ( 177 Lu) vipivotide tetraxetan), [ 177 Lu]Lu-PSMA I&T (lutetium ( 177 Lu) zadavotide guraxetan), and [ 177 Lu]Lu-PSMA-R2.
- the RLT agent is selected from the group consisting of [ 177 Lu]Lu-PSMA- 617 (lutetium ( 177 Lu) vipivotide tetraxetan), and [ 177 Lu]Lu-PSMA I&T (lutetium ( 177 Lu) zadavotide guraxetan). In some embodiments, the RLT agent is [ 177 Lu]Lu-PSMA-617 (lutetium ( 177 Lu) vipivotide tetraxetan).
- the PSMA-positivity of the mCRPC is determined by positron emission tomography (PET) with a PSMA-binding radioligand diagnostic or imaging (RLI) agent, wherein said radioligand imaging is selected from the group consisting of [ 68 Ga]Ga- PSMA-11 (gallium ( 68 Ga) gozetotide), 18 F-DCPyL (piflufolastat ( 18 F)), 18 F-PSMA-1007, 1 8 F-CTT1057 (vidoflufolastat ( 18 F)), 18 F/ nat Ga-rhPSMA-7.3 (flotufolastat ( 18 F)), [ 68 Ga]Ga- PSMA-R2, and [ 64 Cu]Cu-PSMA-R2.
- PTT positron emission tomography
- RLI radioligand diagnostic or imaging
- the present disclosure provides for a method of treating patients with prostate-specific membrane antigen (PSMA)-positive metastatic castration-resistant prostate cancer (mCRPC), whose cancer is progressing after receiving or having received a second-generation ARPI, with a therapeutically effective amount of a PSMA-binding radioligand therapeutic (RLT) agent, or a pharmaceutically acceptable salt, solvate, hydrate, co-crystal, crystalline form, amorphous form, stereoisomer, or tautomer thereof.
- PSMA prostate-specific membrane antigen
- mCRPC metastatic castration-resistant prostate cancer
- RLT radioligand therapeutic
- the methods of treatments as described herein in the various embodiments are also characterized in that they provide a higher, at least 50% higher, at least 75% higher, at least 100% higher, at least 150% higher, at least 200% higher, at least two-times higher, at least three-times higher rORR (radiographic Overall Response Rate) compared to a continued or alternate ARDT/ARPI/ARAT treatment with the previously used or different ARDT/ARPI/ARAT, respectively.
- rORR Radiographic Overall Response Rate
- the methods of treatments as described herein in the various embodiments are also characterized in that they provide a higher, at least 20%, 30%, 40%, 50%, higher rDCR PAT059452-WO-PCT - 44 - (radiographic Disease Control Rate) compared to a continued or alternate ARDT/ARPI/ARAT treatment with the previously used or different ARDT/ARPI/ARAT, respectively.
- the methods of treatments as described herein in the various embodiments are also characterized in that they provide an at least three-times higher rORR (radiographic Overall Response Rate) compared to a continued or alternate ARDT/ARPI/ARAT treatment with the previously used or different ARDT/ARPI/ARAT, respectively.
- the ligand may be selected from the group consisting of PSMA-617 (vipivotide tetraxetan), PSMA I&T (zadavotide guraxetan), PSMA-R2, MIP-1095, MIP-1545, MIP, MIP-1555, MIP-1557, MIP-1558, CTT1403, FC705, BAY-2315497, TLX592, PSMA-TCC, rhPSMA, rhPSMA-7, rhPSMA-7.3, PSMA-7 I&T, EB-PSMA-617, PSMA- ALB-02, PSMA-ALB-053, PSMA-ALB-056, P16-093, PSMA-93, and RPS-074, preferably selected from the group consisting of PSMA-617, PSMA I&T, and PSMA-R2, more preferably PSMA-617 or PSMA I&T, most preferably PSMA-617.
- PSMA-617 vipivotide tetraxetan
- the ligand may be selected from the group consisting of PSMA-617, PSMA I&T, PSMA-R2, MIP-1095, MIP-1545, MIP-1555, MIP-1557, MIP-1558, CTT1403, FC705, BAY-2315497, TLX592, PSMA-TCC, rhPSMA, rhPSMA-7, rhPSMA-7.3, rhPSMA-10.1, Ludotadipep, PNT2001, PNT2002, PSMA-7 I&T, EB-PSMA-617, PSMA-ALB-02, PSMA-ALB-053, PSMA-ALB-056, P16-093, PSMA-93, RPS-074, RPS-072, NG001, ADVC00, PMI-21, HTK03121, IBU DAB PSMA, PSMA CM, or mcl-alb-M-PSMA.
- the radionuclide may be selected from the group consisting of Lu-177, Tb-161, I-131, Tc-99m, Y-90, Sc-47, Cu-67, Re-188, Pb-212, Bi-213, Ac- 255, and Th-227, preferably selected from the group consisting of Lu-177 and Tb-161, most preferably Lu-177.
- the 177Lu radionuclide can be of the quality “carrier added” (c.a. 177Lu, e.g.
- the radionuclide 177Lu is of the quality n.c.a.
- the prostate-specific membrane antigen (PSMA) positive (+) metastatic castration-resistant prostate cancer (mCRPC) is a PSMA+ mCRPC that is progressive or progressing after a first ARDT (e.g.
- the cancer progresses under or after treatment with second generation ARDT, such as abiraterone, enzalutamide, darolutamide, and apalutamide).
- second generation ARDT such as abiraterone, enzalutamide, darolutamide, and apalutamide.
- DRUG being the RLT agent (alone or in combination with other agents)
- INDICATION being the mCRPC as specified in the embodiments above
- FEATURES being those characterizing features as mentioned in the embodiments above:
- the present invention provides [DRUG] or any pharmaceutically acceptable salt thereof for use in the treatment of [INDICATION], characterized in that [FEATURES].
- the present invention provides a method for the treatment of [INDICATION] in human patients in need of such treatment which comprises administering an effective amount of [DRUG] or any pharmaceutically acceptable salt thereof, wherein said treatment is characterized in that [FEATURES].
- the present invention provides the use of [DRUG] or any pharmaceutically acceptable salt thereof for the preparation of a medicament for the treatment of [INDICATION], characterized in that [FEATURES].
- the present invention provides the use of [DRUG] or any pharmaceutically acceptable salt thereof for the treatment of [INDICATION], characterized in that [FEATURES].
- the present invention provides a medicament for the treatment of [INDICATION] comprising [DRUG] or any pharmaceutically acceptable salt thereof, characterized in that [FEATURES].
- the therapy, drug, medicament, or the use of it is for a patient who has not been previously treated with taxane-based chemotherapy [i.e. a taxane-na ⁇ ve patient].
- said patient has never been previously treated with taxane- based chemotherapy.
- said patient may have been treated with taxane- based chemotherapy in the past, but in case of a previous taxane-exposure at least 12 months have elapsed since completion (i.e.
- the patient has neither been previously treated with 223 Ra therapy.
- DEFINITIONS “about” in respect of a value means ⁇ 25%, preferably ⁇ 20%, more preferably ⁇ 15%, even more preferably ⁇ 10%, even more preferably ⁇ 5%. “about” in respect of a weeks or cycles means ⁇ 2, preferably ⁇ 1.
- radionuclide and radioisotopes can be exchanged in this disclosure and its embodiments. Where it is technically meaningful, the term radiometal and radiohalogen can be also used as alternative. Instead of indicating the radionuclide in the form of e.g. 177 Lu or Lu-177 or Lutetium-177, the form 177Lu is used as alternative herein.
- PSMA-617 or vipivotide tetraxetan means the “cold” ligand (ligand without radionuclide) of PLUVICTO, i.e.
- INN lutetium (177Lu) vipivotide tetraxetan
- PAT059452-WO-PCT - 47 - PSMA I&T means the “cold” ligand (ligand without radionuclide) of [177Lu]Lu-PSMA I&T (INN: lutetium (177Lu) zadavotide guraxetan), and is commercially available by ABX, Radeberg, Germany, and may be represented by formula (II).
- the drug substance, the product and methods to produce a drug product for clinical use with this RLT agent are described in US 11,129,912 B1 and US 11,491,246 B2, and WO 2002/013610.
- the glutamic acid/glutamate residue in PSMA I&T can be in the L- or in the D- configuation, or a mixture of both (e.g. a racemic mixture, or an optically enriched mixture of either the L-configuration in excess or the D-configuration in accesss.
- PSMA-R2 may be represented by formula (III), preferably with the glutamic acid and the lysine adjacent to the urea in the L-configuration: PAT059452-WO-PCT - 48 - Any radionuclides, e.g.
- radiometals such like 177Lu
- DOTA or DOTAGA residue can be complexed by the DOTA or DOTAGA residue, the latter acting as chelators for the radiometal. This will then lead to the 177Lu-labeled RLT agent.
- [68Ga]Ga-PSMA-11 (INN: gallium (68Ga) gozetotide, drug names: LOCAMETZ, ILLUCCIX) may be represented by formula (IV).
- 18F-DCFPyL INN: piflufolastat (18F), drug names; PYLARIFY, PYLCLARI
- V piflufolastat
- Taxanes are a class of diterpenes typically contain a taxadiene core. Paclitaxel (Taxol) and docetaxel (Taxotere) are widely used as chemotherapy agents. Cabazitaxel was FDA approved to treat hormone-refractory prostate cancer.
- Hormonal therapy may including any androgen directed treatment such as finasteride, dutasteride, bicalutamide, apalutamide, abiraterone, enzalutamide, or combinations thereof.
- Taxane based chemotherapy may include docetaxel or cabazitaxel, or combinations thereof.
- Other cancer drugs used in the context of the present disclosure may include abiraterone, orteronel, galeterone, seviteronal, apalutamide, enzalutamide, or combinations thereof.
- cancer drugs used in the context of the present disclosure may include palifosfamide, 5-flourouracil, capecitabine, pemetrexed, cisplatin, carboplatin, gemcitabine, paclitaxel, vinorelbine, eribuline, docetaxel, cyclophosphamide, doxorubicin, regorafenib, or combinations thereof.
- No-carrier added NCA, nca, n.c.a.
- NCA No-carrier added (NCA, nca, n.c.a.): A preparation of a radioactive isotope which is essentially free from stable isotopes of the element in question. The production of n.c.a.
- 177 Lu is known and may be done for example from 176 Yb via 177 Yb, e.g.176Yb (n,gamma) 177Yb, the latter undergoing beta-minus decay to 177Lu (sometimes referred to as “indirect” reactor production route).
- the method involves radiochemical separation steps to isolate the desired PAT059452-WO-PCT - 50 - n.c.a.177Lu from Yb isotopes. No-carrier added is sometimes also referred to as carrier- free.
- Example 1 CLINICAL TRIAL The clinical phase 3 trial with the title “ 177 Lu-PSMA-617 vs.
- PSMAfore Androgen Receptor-directed Therapy in the Treatment of Progressive Metastatic Castrate Resistant Prostate Cancer
- PAT059452-WO-PCT - 59 - (PSMAfore)” is described at ClinicalTrials.gov with the Identifier: NCT04689828 (the entire disclosure of that webpage as accessible at the filing date is incorporated herein by reference).
- the trial is also described as: PSMAfore: A phase III, Open-label, Multi-Center, Randomized Study Comparing 177 Lu-PSMA- 617 vs. a Change of androgen receptor-directed therapy in the Treatment of Taxane Na ⁇ ve Men with Progressive Metastatic Castrate Resistant Prostate Cancer, CAAA617B12302. Study design: See FIG.1.
- the study aims at evaluating the superiority of 177 Lu-PSMA-617 over a change of ARDT treatment in prolonging rPFS.
- the primary endpoint of rPFS will be assessed via blinded independent centralized review of radiographic images provided by the treating physician and as outlined in PCWG3 Guidelines.
- the study will also evaluate whether 177 Lu-PSMA-617 improves the overall survival (OS) in participants with progressive PSMA-positive mCRPC compared to participants treated with a change in ARDT treatment.
- OS is defined as the time from randomization to death due to any cause.
- Screening period PAT059452-WO-PCT - 62 - Screening procedures are carried out after signature of informed consent and within 28 days prior to randomization in Interactive Response Technology (IRT) system.
- IRT Interactive Response Technology
- ARDT abiraterone or enzalutamide
- the treating physician will make a choice of which ARDT (abiraterone or enzalutamide) will be administered to the participant should they get randomized to the ARDT arm. If the participant gets randomized to receive 177 Lu-PSMA-617, the choice of change of ARDT treatment will be discarded. Randomization period Randomization occurs within the 28 days screening period once all eligibility criteria are met. The participants will be randomized 1:1 to receive 177 Lu-PSMA-617 or a change of the ARDT treatment. The ARDT change will include approved Androgen Receptor (AR) axis targeted therapy (abiraterone or enzalutamide).
- AR Androgen Receptor
- EOT End of Treatment
- ⁇ ARDT treatment arm For participants randomized to the ARDT treatment arm, the change of ARDT treatment for each participant will be selected by the treating physician prior to randomization and will be administered per the physician’s orders. Best supportive care, including ADT, may be used.
- End of Treatment Randomized treatment may be discontinued if: ⁇ The participant, sponsor or investigator chooses to discontinue treatment ⁇ Toxicity ⁇ Completion of the 6 cycles of 177 Lu-PSMA-617 ⁇ Serious non-compliance to the protocol PAT059452-WO-PCT - 64 - ⁇ BICR-determined progression It is important that the scheduled imaging assessments continue until BICR-determined progression.
- PSA progression is strongly discouraged as a criterion for initiation of a new neoplastic therapy prior to BICR- determined progression.
- PCWG3 guidelines should be followed to guide discontinuation of treatment End of Treatment visit must be performed ⁇ 7 days after the last day of study treatment period.
- EOT is to occur before the participant is to enter the post-treatment Follow-up period of the study and before the initiation of any subsequent anticancer treatment, outside of what is allowed in the study. If a participant withdraws consent for the treatment period of the study, an EOT must be done and the participant will enter the Post-treatment Follow-up unless he specifically withdraws post-treatment Follow-up.
- ⁇ 3 x ULN is permitted o Alanine aminotransferase (ALT) or aspartate aminotransferase (AST) ⁇ 3.0 x ULN OR ⁇ 5.0 x ULN for patients with liver metastases ⁇ Renal: o eGFR ⁇ 50 mL/min/1.73m 2 using the Modification of Diet in Renal Disease (MDRD) equation ⁇ Agreement to continue with the study visit schedule
- MDRD Modification of Diet in Renal Disease
- 177 Lu-PSMA-617 will be administered with the same dose/schedule as for participants who were initially randomized to receive 177 Lu-PSMA-617 as described above.
- rPFS2 second radiographic progression
- the participants After the last day of study treatment period of 177 Lu-PSMA-617 or upon second radiographic progression (rPFS2), the participants must have a second End of Treatment (EOT2) visit performed ⁇ 7 days and enter the Post-treatment Follow-up. The participant can receive any other therapy per the discretion of the treating physician in the Post-treatment Follow- up.
- tumor assessments In any participant entering long term follow-up discontinuing for reasons other than BICR-determined radiographic progression, tumor assessments must be performed every 8 weeks after first dose of study treatment for the first 24 weeks (week 9, 17, 25) and then every 12 weeks (week 37, 49, etc) until confirmation of radiographic progression by BICR
- the long-term follow-up period will also include the collection of survival information and other assessments.
- Other data collected during long-term follow-up includes blood sampling for hematology, chemistry testing, coagulation, DNA and tumor samples for biomarkers.
- the visits will be carried out every 12 weeks ( ⁇ 28 days) until death, lost to follow-up, withdrawal of consent (WoC) / opposition to use data/biological samples or accrual of the number of events required for the planned analyses for OS for the study, whichever occurs first.
- This follow-up will allow to collect information on medically significant long-term toxicities such as long- PAT059452-WO-PCT - 67 - term radiotoxicity. Duration of long term follow-up is expected to continue till end of study. If the participant withdraws consent for the collection of blood samples, physical exams PROs and imaging assessments during the long-term follow-up, information on survival, AEs related to study treatment and post-treatment antineoplastic therapy will be collected.
- Participants must be 68 Ga-PSMA-11 PET/CT scan positive, and eligible as determined by the sponsor’s central reader 6. Participants must have a castrate level of serum/plasma testosterone ( ⁇ 50 ng/dL or ⁇ 1.7 nmol/L) 7a. Participants must have progressed only once on prior second generation ARDT (abiraterone, enzalutamide, darolutamide, or apalutamide).
- first generation androgen receptor inhibitor therapy e.g. bicalutamide
- PAT059452-WO-PCT - 68 - ⁇ second generation ARDT must be the most recent therapy received 8. Participants must have progressive mCRPC.
- Serum/plasma PSA progression defined as 2 increases in PSA measured at least 1 week apart.
- the minimal start value is 2.0 ng/mL; 1.0 ng/mL is the minimal starting value if confirmed rise in PSA is the only indication of progression.
- Soft-tissue progression defined [PCWG3-modified RECIST v1.1 (Eisenhauer et al 2009, Scher et al 2016)]
- Progression of bone disease two new lesions; only positivity on the bone scan defines metastatic disease to bone (PCWG3 criteria (Scher et al 2016)) 9a.
- Participants must have ⁇ 1 metastatic lesion that is present on baseline CT, MRI, or bone scan imaging obtained prior to randomization 10. Participants must have recovered to ⁇ Grade 2 from all clinically significant toxicities related to prior therapies (i.e. prior chemotherapy, radiation, etc.) except alopecia 11. Participants must have adequate organ function: ⁇ Bone marrow reserve: ⁇ ANC ⁇ 1.5 x 10 9 /L ⁇ Platelets ⁇ 100 x 10 9 /L ⁇ Hemoglobin ⁇ 9 g/dL ⁇ Hepatic: ⁇ Total bilirubin ⁇ 2 x the institutional upper limit of normal (ULN).
- Prior treatment with cytotoxic chemotherapy for castration resistant or castrate sensitive prostate cancer e.g., taxanes, platinum, estramustine, vincristine, methotrexate, etc.
- immunotherapy or biological therapy [including monoclonal antibodies].
- Taxane exposure (maximum 6 cycles) in the adjuvant or neoadjuvant setting is allowed if 12 months have elapsed since completion of this adjuvant or neoadjuvant therapy.
- Participants with CNS metastases are eligible if received therapy (surgery, radiotherapy, gamma knife), asymptomatic and neurologically stable without corticosteroids. Participants with epidural disease, canal disease and prior cord involvement are eligible if those areas have been treated, are stable, and not neurologically impaired. 9. Symptomatic cord compression, or clinical or radiologic findings indicative of impending cord compression 10. History or current diagnosis of the following ECG abnormalities indicating significant risk of safety for study participants: ⁇ Concomitant clinically significant cardiac arrhythmias, e.g.
- sustained ventricular tachycardia complete left bundle branch block
- high-grade AV block e.g., bifascicular block, Mobitz type II and third degree AV block
- MI myocardial infarction
- angina pectoris or CABG within 6 months PAT059452-WO-PCT - 71 - prior to starting study treatment 11a.
- Concurrent serious (as determined by the Principal Investigator) medical conditions including, but not limited to New York Heart Association class III or IV congestive heart failure, history of congenital prolonged QT syndrome, uncontrolled infection, known active hepatitis B or C or other significant co-morbid conditions that in the opinion of the investigator would impair study participation or cooperation.
- ⁇ HIV-infected participants who are at a low risk of AIDS-related outcomes may participate in this trial.
- Participants with an active documented COVID-19 infection (any grade of disease severity) at time of informed consent may be included only when completely recovered (in accordance with local guidance). 12a. Diagnosed with other malignancies that are expected to alter life expectancy or may interfere with disease assessment.
- Ha1 (alternative hypotheses): ⁇ ⁇ 0, where ⁇ is the log hazard ratio of rPFS in the 177 Lu-PSMA-617 (investigational) arm vs. a change of ARDT treatment (control) arm.
- the primary efficacy analysis to test this hypothesis and compare rPFS, the primary efficacy variable, between the two treatment groups will be using a stratified log-rank test at an overall one-sided 2.5% level of significance in favor of the 177 Lu-PSMA-617 arm.
- the stratification will be based on following randomization stratification factors (prior ARDT PAT059452-WO-PCT - 74 - use: CRPC vs.
- HSPC setting asymptomatic or mildly symptomatic (score of 0-3 on Brief Pain Inventory Short Form (BPI-SF) questionnaire) vs symptomatic (score >3 on BPI-SF questionnaire).
- Analyses will be based on the FAS population according to the randomized treatment group and strata assigned at randomization.
- the rPFS distribution will be estimated using the Kaplan-Meier method, and Kaplan-Meier curves, median and associated 95% confidence intervals will be presented for each treatment group.
- the hazard ratio for rPFS will be calculated, along with its 95% confidence interval, from a stratified Cox model using the same stratification factors as for the log- rank test.
- the primary rPFS analysis will only be carried out after all participants have been randomized and 156 events have been observed.
- OS Interim and Final Analysis OS as the key secondary variable, will be formally statistically tested, if the primary variable rPFS is statistically significant.
- the key secondary efficacy analysis is to compare the two treatment groups and will consist of a stratified log-rank test at an overall one- sided 2.5% level of significance using randomization stratification factors (prior ARDT use: CRPC vs. HSPC setting; and symptomatology: asymptomatic or mildly symptomatic vs symptomatic).
- the key secondary efficacy variable, OS will be analyzed at the interim analysis and final analysis of a 3-look group sequential design with a Lan- DeMets (O’Brien-Fleming) alpha spending function using information fractions of (0.25,0.75, 1).
- the first interim will occur when the rPFS primary analysis is performed and is expected to occur at approximately 0.25 information fraction.
- the second interim analysis will be performed at 0.75 information fraction.
- the interim analyses are planned after approximately 74 and 223 of the approximately 297 targeted OS events have been observed.
- the primary intent of the interim analyses is to stop early for superior efficacy. There is no intent to assess futility at these interim analyses.
- the first interim analysis (at the time of primary rPFS analysis) will only PAT059452-WO-PCT - 75 - be carried out after all participants have been randomized. Analyses will be based on the full analysis set (FAS) population according to the randomized treatment group and strata assigned at randomization. The OS distribution will be estimated using the Kaplan- Meier method, and Kaplan-Meier curves, median and associated 95% confidence intervals will be presented for each treatment group. The hazard ratio for OS will be calculated, along with its 95% confidence interval, from a stratified Cox model using the same stratification factors as for the log-rank test.
- SSE Symptomatic skeletal events
- ORR Objective Response Rate
- DCR Disease Control Rate
- duration of response Proportion of participants who are have achieved a ⁇ 50% decrease from baseline that is confirmed by a second PSA measurement ⁇ 4 weeks (PSA50 response), time to PSA progression, and Health-Related Quality of Life (HRQoL) (FACT-P, BPI-SF, EQ-5D-5L) will also be analyzed. Detailed statistical methodology for these analyses will be provided in the statistical analysis plan.
- the key secondary objective is to evaluate whether 177Lu-PSMA-617 improves the overall survival (OS) compared to participants treated with a change in ARDT treatment. Eligible participants will be randomized to one of two treatment arms. Randomization will be stratified to avoid bias in treatment selection. Treatment will be open-label. Upon confirmation PAT059452-WO-PCT - 76 - of rPFS by BICR, participants randomized to the ARDT arm will be allowed to cross over to receive 177Lu-PSMA-617. The preliminary clinical evidence indicates that 177Lu-PSMA-617 may demonstrate clinical benefit for men with mCRPC, improving rPFS and OS compared with a change in ARDT.
- 177Lu-PSMA-617 Rationale for dose/regimen and duration of treatment
- the basic principle of 177Lu-PSMA-617 radioligand therapy is to systemically deliver low dose rate radiation specifically to multiple PSMA positive prostate cancer lesions, while sparing normal tissues.
- 177Lu-PSMA-617 is well tolerated according to the clinical experience that has been documented in over 53 publications, summarizing the safety and or efficacy information from over 1280 participants.
- PAT059452-WO-PCT - 77 - Across these studies doses have ranged from 1.1 - 12.0 GBq, and schedules have typically followed an administration schedule of once every 4 to 12 weeks, for 1 - 9 cycles.
- the German Society of Nuclear Medicine 2016 recommended a 6.0 GBq dose every 8 weeks for 3 cycles, the majority of these publications have used a regimen of 4 cycles of 6 GBq every 8 weeks.
- ARDTs i.e., abiraterone and enzalutamide
- taxanes docetaxel and cabazitaxel
- immunotherapy sipuleucel-T
- bone-targeted radiopharmaceutical radium 223 dichloride
- PAT059452-WO-PCT - 78 - Sipuleucel-T is best used in mildly asymptomatic small volume disease; and radium 223 is used to treat men with bone-only disease.
- PARP inhibitors are an emerging drug class in mCRPC, but their use is restricted in a subgroup of mCRPC participants with homologous recombination repair gene mutations [PROfound (de Bono et al 2020, Hussain et al 2019) and TRITON2 (Abida et al 2019) ESMO 2019 studies].
- ARDTs such as abiraterone and enzalutamide have shown efficacy and are approved for treatment of mCRPC among participants who have not previously been treated with taxane- based chemotherapy, and are a relevant comparator for this study.
- STUDY DRUGS The second generation ARDT abiraterone, enzalutamide, darolutamide, and apalutamide (all four drug names are rINN) are commercially available as registered drug products.
- the radioligand imaging agent 68 Ga-PSMA-11 rINN: gallium ( 68 Ga) gozetotide
- the radioligand therapeutic agent 177 Lu-PSMA-617 (rINN: lutetium (177Lu) vipivotide tetraxetan) is commercially available under the drug product brand name PLUVICTO.
- the content of the drug labels of all those drug products is herewith incorporated by reference.
- PAT059452-WO-PCT - 80 - Study CAAA617B12302 (PSMAfore) is a randomized, Phase III, open-label, active- controlled, global multi-center study comparing safety and efficacy of [177Lu]Lu-PSMA-617 to a change in androgen receptor-directed therapy (ARDT) in PSMA-positive mCRPC participants previously treated with an ARDT, where it is considered appropriate to delay taxane-based chemotherapy.
- the first interpretable results (FIR) of the primary endpoint analysis of rPFS and includes results of the first interim analysis for the key secondary endpoint OS are described.
- the data cut-off for the analysis was 02-Oct-2022.
- Key efficacy and safety results are presented without any clinical interpretation.
- the duration of study (from randomization to data cut-off) is 7.26 months for [177Lu]Lu-PSMA-617 arm vs 7.28 months for ARDT arm.
- the median follow-up for rPFS is 3.6 months (from randomization to censoring or rPFS event as per BICR).
- the minimum – maximum rPFS follow-up was 0 – 12.3 months.
- a total of 121 (51.9%) in [177Lu]Lu-PSMA-617 arm vs 93 (39.7%) patients in ARDT arm are censored as ‘Ongoing without event’ prior to the median duration of study in each arm.
- the median OS follow-up was 6.08 months (from randomization to death or last contact date).
- the median (min – max) duration of exposure to study treatment was 4.25 months (0.3 – 10.3) in the [177Lu]Lu-PSMA-617 arm and 3.9 months (0.0 – 13.3) in the ARDT arm (prior to crossover and from start of treatment to last treatment as per data cut-off date).
- the median duration of exposure was 4.2 months (0.0 – 12.4) in Abiraterone, 3.55 months (0.0 – 13.3) in Enzalutamide and 2.8 months (0.4 – 9.6) in the crossover [177Lu]Lu-PSMA-617 subjects.
- the median (min-max) relative dose intensity was 97.6 GBq (59.2 – 103.1) in the randomized [177Lu]Lu-PSMA-617 arm and 100% (25.0 – 100) in the ARDT arm.
- the median relative dose intensity (min-max) was 100% (53.9 – 100) in Abiraterone, 100% (25.0 – 100) in Enzalutamide and 98.0 GBq (57.4 – 101.6) in the crossover [177Lu]Lu-PSMA-617 subjects.
- rPFS radiographic progression-free survival
- the median rPFS (95% CI) were 9.3 months (6.77, NE) and 5.59 months (4.11, 5.98), respectively.
- the key secondary endpoint, overall survival (OS) was not mature but showing no detriment.
- the first interim analysis of OS reported in this FIR is based on 40 (13.5%) of the targeted 297 events/deaths.
- the median OS was not reached for any arm.
- the estimated OS probabilities at 6 months are 94.4% (89.4, 97.1) for [177Lu]Lu-PSMA-617 vs.94.4% (89.7, 96.9) for ARDT arm, respectively.
- the main cause of death during the study was study indication with 4.4% (10 deaths) on [177Lu]Lu-PSMA-617 arm versus 7.3% (17 death) on ARDT arm, respectively.
- Two subjects randomized to [177Lu]Lu-PSMA-617 arm died but before starting study treatment.
- a total of 4 (1.8%) and 7 (3.0%) subjects died during on-treatment period in the [177Lu]Lu- PSMA-617 and ARDT arms, respectively.
- the main cause of on-treatment deaths was Study indication with 0 vs.1.7% in the [177Lu]Lu-PSMA-617 and ARDT arms, respectively.
- Radiographic progression-free survival (rPFS) based on independent central review as per PCWG3 criteria is the primary endpoint and overall survival (OS) is the key secondary endpoint for the study.
- the statistical design of the study is such that, to be declared positive, the study would be required to reach statistical significance on the primary analysis of rPFS.
- the primary analysis of rPFS and the first interim analysis of OS were performed using all patients randomized on or before the data cutoff date of 2 Oct 2022 using a one-sided alpha level of 2.5%.
- One randomized and treated patient was excluded from Full Analysis Set due to informed consent not obtained per due process (INCL1A PD).
- OS is hierarchically tested based on a three-look group sequential design using a Lan DeMets (O’Brien Flemming) alpha spending function.
- the final OS analysis was not planned to be performed at the time of the interim rPFS analysis, which is reported in this FIR.
- OS was tested once rPFS was statistically significant.
- the one-sided alpha level ( ⁇ 0.000000001012) required for a significant OS difference in this first interim analysis was calculated from the pre-specified alpha spending function and the number of events observed at the time of rPFS analysis. Results in terms of the OS at the time of the first interim OS analysis are based on 13.5 % (40/297 deaths).
- the second interim analysis for OS is planned after additional follow up when approximately 75% (223/297) of the targeted number of deaths/events have occurred. If OS is not statistically significant at the second interim analysis, a final analysis is planned when approximately 297 deaths have been recorded.
- Preferred terms are sorted by descending frequency in [177Lu]Lu-PSMA-617 'All grades' column. Summary of adverse events that occurred on or after first dose of study treatment to the earlier of below dates - 1.) latest of end of treatment disposition date + 30 days or (last dose date of ARDT + 30 days or last dose date of [177Lu]Lu-PSMA-617 + 41 days), as applicable; 2.) the day before start of crossover treatment, if applicable. MedDRA version 25.1, CTCAE version V5.0.
- Safety topics are sorted by descending frequency in [177Lu]Lu-PSMA-617 'All grades' column. Summary of adverse events that occurred on or after first dose of study treatment to the earlier of below dates - 1.) latest of end of treatment disposition date + 30 days or (last dose date of ARDT + 30 days or last dose date of [177Lu]Lu-PSMA-617 + 41 days), as applicable; 2.) the day before start of crossover treatment, if applicable. MedDRA version 25.1, CTCAE version V5.0, Case Retrieval Strategy version released 2022-11-15. The number of myelosuppression and renal toxicity events so far observed is surprisingly low for radioligand therapy.
- the duration of study was 7.26 months for the [177Lu]Lu-PSMA-617 arm vs 7.28 months for the ARDT arm.
- the median follow-up for rPFS was 3.38 months (from randomization to censoring or rPFS event as per BICR).
- the minimum – maximum rPFS follow-up was 0.03-12.62 months.
- a total of 125 (53.6%) participants in the [177Lu]Lu-PSMA-617 arm vs 97 (41.5%) participants in the ARDT arm were censored as ‘Ongoing without event’ prior to the median duration of study in each arm.
- DCO 2nd interim analysis
- the duration of study was 15.87 months for the [177Lu]Lu-PSMA-617 arm vs 15.89 months for the ARDT arm.
- the median follow-up for rPFS was 5.98 months (from randomization to censoring or rPFS event as per BICR).
- the minimum – maximum rPFS follow-up was 0.03-20.30 months.
- a total of 76 (32.5%) participants in the [177Lu]Lu-PSMA-617 arm vs 29 (12.4%) participants in the ARDT arm were censored as ‘Ongoing without rPFS event’ prior to the median duration of study in each arm.
- the median duration of exposure was 6.36 months (0.69 – 20.99) for participants who received abiraterone, 6.59 months (0.03 – 20.99) for participants who received enzalutamide and 4.67 months (0.49-11.04) for participants who were randomized to the ARDT arm who crossed over to [177Lu]Lu- PSMA-617 (hereafter referred to as [177Lu]Lu-PSMA-617 crossover participants).
- the median (min-max) relative dose intensity was 97.6% (78.5 – 102.9) in the randomized [177Lu]Lu-PSMA-617 arm and 100 % (51.6 – 100) in the ARDT arm.
- the median (min-max) relative dose intensity was 100% (53.9 – 100) for participants who received abiraterone, 100% (51.6 – 100) for participants who received enzalutamide and 97.5% (76.0 – 105.4) for [177Lu]Lu-PSMA-617 crossover participants.
- rPFS radiographic progression-free survival
- rPFS Median rPFS (95% CI) wase 9.30 months (6.77, NE) and 5.55 months (4.04, 5.95), respectively ( Table 5-1a).
- rPFS results were consistent across all preplanned sensitivity analyses and across demographic and prognostic subgroups.
- Stratification factors from IRT data prior ARDT use in CRPC vs HSPC; asymptomatic and mildly symptomatic (score of 0-3 on item 3 of the Brief Pain Inventory Short Form (BPI-SF) questionnaire) vs symptomatic (score >3 on item 3 of the BPI-SF questionnaire).
- BPI-SF Brief Pain Inventory Short Form
- the DCO of 21-Jun-2023 from the 2nd interim analysis was used for an updated analysis of rPFS as an exploratory analysis with a nominal p-value. See also Fig.3B.
- ARPI androgen receptor pathway inhibitor
- CI confidence interval
- DCO data cut-off
- HR hazard ratio
- ITT intention-to-treat
- NE not estimable
- OS overall survival
- PSMA prostate-specific membrane antigen, Interim OS analysis
- the prespecified primary analysis method for OS was rank-preserving structural failure time (RPSFT) to adjust for crossover: Rank-preserving structural failure time 1,2 ⁇ Accepted model-based method to adjust for crossover in clinical trials ⁇ Adjusts survival times for patients randomized to ARPI change who crossed over to 1 77 Lu-PSMA-617 ⁇ Assumes each patient progresses through disease towards death at their own speed (accelerated failure time model) ⁇ Assumes that 177 Lu-PSMA-617 slows/quickens this speed by the same factor (X) whether 177 Lu-PSMA-617 is given at randomization or at crossover - Uses a grid search to find the value of X that balances survival times between arms ⁇ Multiplies observed survival times by X to obtain adjusted survival times for all patients who received 177 Lu-PSMA-617 - Uses a re-censoring algorithm to maintain assumption of independent random censoring required for unbiased estimation ⁇ Observed survival times in 177 Lu-PSMA-617 arm are
- Adverse events with missing relationship to study treatment are counted as ‘Treatment-related'. Summary of adverse events that occurred on or after first dose of study treatment to the earlier of below dates 1) latest of end of treatment disposition date + 30 days or (last dose date of ARDT + 30 days or last dose date of [177Lu]Lu-PSMA-617 + 41 days), as applicable; 2) the day before start of crossover treatment, if applicable. MedDRA version 26.0, CTCAE version V5.0.
- Preferred terms are sorted by descending frequency in [177Lu]Lu-PSMA-617 'All grades' column. Summary of adverse events that occurred on or after first dose of study treatment to the earlier of below dates 1) latest of end of treatment disposition date + 30 days or (last dose date of ARDT + 30 days or last dose date of [177Lu]Lu-PSMA-617 + 41 days), as applicable; 2) the day before start of crossover treatment, if applicable. MedDRA version 26.0, CTCAE version V5.0.
- Preferred terms are sorted by descending frequency in [177Lu]Lu-PSMA-617 'All grades' column. Summary of adverse events that occurred on or after first dose of study treatment to the earlier of below dates 1) latest of end of treatment disposition date + 30 days or (last dose date of ARDT + 30 days or last dose date of [177Lu]Lu-PSMA-617 + 41 days), as applicable; 2) the day before start of crossover treatment, if applicable. MedDRA version 26.0, CTCAE version V5.0. Incidences of grade ⁇ 3 AEs, serious AEs and AEs leading to dose adjustment were lower with 177Lu-PSMA-617 versus ARPI change as can be seen from the following table.
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