WO2020183227A1 - Treating influenza using substituted polycyclic pyridone derivatives and prodrugs thereof in a subject having influenza and a complication risk factor - Google Patents
Treating influenza using substituted polycyclic pyridone derivatives and prodrugs thereof in a subject having influenza and a complication risk factor Download PDFInfo
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- WO2020183227A1 WO2020183227A1 PCT/IB2019/052012 IB2019052012W WO2020183227A1 WO 2020183227 A1 WO2020183227 A1 WO 2020183227A1 IB 2019052012 W IB2019052012 W IB 2019052012W WO 2020183227 A1 WO2020183227 A1 WO 2020183227A1
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- 0 *C(C(C=C1)=O)=C(C(N2C3COCC2)=O)N1N3[C@@]1c2ccccc2SCc2c1ccc(F)c2F Chemical compound *C(C(C=C1)=O)=C(C(N2C3COCC2)=O)N1N3[C@@]1c2ccccc2SCc2c1ccc(F)c2F 0.000 description 2
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- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61K—PREPARATIONS FOR MEDICAL, DENTAL OR TOILETRY PURPOSES
- A61K31/00—Medicinal preparations containing organic active ingredients
- A61K31/33—Heterocyclic compounds
- A61K31/395—Heterocyclic compounds having nitrogen as a ring hetero atom, e.g. guanethidine or rifamycins
- A61K31/535—Heterocyclic compounds having nitrogen as a ring hetero atom, e.g. guanethidine or rifamycins having six-membered rings with at least one nitrogen and one oxygen as the ring hetero atoms, e.g. 1,2-oxazines
- A61K31/5375—1,4-Oxazines, e.g. morpholine
- A61K31/5383—1,4-Oxazines, e.g. morpholine ortho- or peri-condensed with heterocyclic ring systems
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- A61K47/06—Organic compounds, e.g. natural or synthetic hydrocarbons, polyolefins, mineral oil, petrolatum or ozokerite
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- A61K47/06—Organic compounds, e.g. natural or synthetic hydrocarbons, polyolefins, mineral oil, petrolatum or ozokerite
- A61K47/26—Carbohydrates, e.g. sugar alcohols, amino sugars, nucleic acids, mono-, di- or oligo-saccharides; Derivatives thereof, e.g. polysorbates, sorbitan fatty acid esters or glycyrrhizin
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- A61K9/00—Medicinal preparations characterised by special physical form
- A61K9/0012—Galenical forms characterised by the site of application
- A61K9/0019—Injectable compositions; Intramuscular, intravenous, arterial, subcutaneous administration; Compositions to be administered through the skin in an invasive manner
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- A61K9/0012—Galenical forms characterised by the site of application
- A61K9/0053—Mouth and digestive tract, i.e. intraoral and peroral administration
- A61K9/0056—Mouth soluble or dispersible forms; Suckable, eatable, chewable coherent forms; Forms rapidly disintegrating in the mouth; Lozenges; Lollipops; Bite capsules; Baked products; Baits or other oral forms for animals
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- A61P31/00—Antiinfectives, i.e. antibiotics, antiseptics, chemotherapeutics
- A61P31/12—Antivirals
- A61P31/14—Antivirals for RNA viruses
- A61P31/16—Antivirals for RNA viruses for influenza or rhinoviruses
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- A61K9/14—Particulate form, e.g. powders, Processes for size reducing of pure drugs or the resulting products, Pure drug nanoparticles
- A61K9/16—Agglomerates; Granulates; Microbeadlets ; Microspheres; Pellets; Solid products obtained by spray drying, spray freeze drying, spray congealing,(multiple) emulsion solvent evaporation or extraction
- A61K9/1605—Excipients; Inactive ingredients
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- A61K9/703—Transdermal patches and similar drug-containing composite devices, e.g. cataplasms characterised by shape or structure; Details concerning release liner or backing; Refillable patches; User-activated patches
- A61K9/7038—Transdermal patches of the drug-in-adhesive type, i.e. comprising drug in the skin-adhesive layer
Definitions
- the present disclosure relates generally to treating an influenza virus infection in a subject having an influenza virus infection and a complication risk factor, using a substituted polycyclic pyridone derivative having cap-dependent endonuclease inhibitory activity, a prodrug thereof, and a pharmaceutical composition including the same.
- Influenza causes considerable morbidity and mortality with the greatest incidence of influenza-related complications, hospitalization and death in high risk groups including persons > 50 years of age and those with underlying medical conditions (Non-Patent Documents 1-2).
- Non-Patent Documents 3-6 oseltamivir is less active in vitro for influenza type B than type A viruses and appears to be less effective in treating influenza type B than type A virus infections.
- Non-Patent Documents 9-14 While observational studies, some including high risk patients, have found that timely oseltamivir therapy is associated with reduced risks of influenza- associated pneumonia, hospitalization, mortality, and cardiovascular events, few randomized, placebo-controlled trials (RCTs) of NAIs in high-risk patients have been published (Non-Patent Documents 9-14).
- Non-Patent Document 15 Baloxavir marboxil (BXM) is the small-molecule prodrug of baloxavir that has antiviral activity against influenza type A and type B viruses, including those resistant to current antivirals (Non-Patent Document 16). BXM was recently approved for treatment of uncomplicated influenza in otherwise healthy individuals > 12 years old. BXM was associated with more rapid reductions in infectious virus titers than placebo or oseltamivir (Non-Patent Document 17). Therefore, it is desired to expand application of BXM to treatment in adult and adolescent outpatients with acute influenza who are at high risk of influenza-related complications.
- Patent Document 1-6 describe BXM and/or compounds having similar structures to substituted polycyclic pyridone derivatives.
- Patent Document 1 W02010/147068
- Patent Document 2 WO2012/039414
- Patent Document 3 WO2016/175224
- Patent Document 4 WO2017/104691
- Patent Document 5 WO2017/221869
- Patent Document 6 WO2018/030463
- Non-Patent Document 1 Grohskopf LA, Sokolow LZ, Broder KR, Walter EB, Fry AM, Jernigan DB. Prevention and Control of Seasonal Influenza with Vaccines: Recommendations of the Advisory Committee on Immunization Practices-United States, 2018-19 Influenza Season. MMWR Recomm Rep 2018;67: 1-20
- Non-Patent Document 2 Molinari NA, Ortega-Sanchez IR, Messonnier ML, et al. The annual impact of seasonal influenza in the US: measuring disease burden and costs. Vaccine 2007;25:5086-96
- Non-Patent Document 3 Memoli MJ, Athota R, Reed S, et al. The natural history of influenza infection in the severely immunocompromised vs nonimmunocompromised hosts.
- Non-Patent Document 4 Hurt AC, Chotpitayasunondh T, Cox NJ, et al. Antiviral resistance during the 2009 influenza type A H1N1 pandemic: public health, laboratory, and clinical perspectives. Lancet Infect Dis 2012;12:240-8
- Non-Patent Document 5 Li TC, Chan MC, Lee N. Clinical Implications of Antiviral Resistance in Influenza. Viruses 2015;7:4929-44
- Non-Patent Document 6 Hu Y, Lu S, Song Z, et al. Association between adverse clinical outcome in human disease caused by novel influenza type A H7N9 virus and sustained viral shedding and emergence of antiviral resistance. 2013;381 :2273-9
- Non-Patent Document 7 Lee N, Hui DS, Zuo Z, et al. A prospective intervention study on higher-dose oseltamivir treatment in adults hospitalized with influenza type A and type B infections. Clin Infect Dis 2013;57: 1511-9
- Non-Patent Document 8 Sugaya N, Mitamura K, Yamazaki M, et al. Lower clinical effectiveness of oseltamivir against influenza type B contrasted with influenza type A infection in children. Clin Infect Dis 2007;44: 197-202
- Non-Patent Document 9 Madjid M, Curkendall S, Blumentals WA. The influence of oseltamivir treatment on the risk of stroke after influenza infection. Cardiology 2009; 113:98-107
- Non-Patent Document 10 Dobson J, Whitley RJ, Pocock S, Monto AS. Oseltamivir treatment for influenza in adults: a meta-analysis of randomised controlled trials. Lancet
- Non-Patent Document 11 Lalezari J, Campion K, Keene O, Silagy C. Zanamivir for the treatment of influenza type A and type B infection in high-risk patients: a pooled analysis of randomized controlled trials. Arch Intern Med 2001;161 :212-7
- Non-Patent Document 12 Murphy KR, Evindson A, Pauksens K, et al. Efficacy and Safety of Inhaled Zanamivir for the Treatment of Influenza in Patients with Asthma or Chronic
- Non-Patent Document 13 Johnston SL, Ferrero F, Garcia ML, Dutkowski R. Oral oseltamivir improves pulmonary function and reduces exacerbation frequency for influenza- infected children with asthma. Pediatr Infect Dis J 2005;24:225-32
- Non-Patent Document 14 Kaiser L, Wat C, Mills T, Mahoney P, Ward P, Hayden F. Impact of oseltamivir treatment on influenza-related lower respiratory tract complications and hospitalizations. Arch Intern Med 2003;163: 1667-72
- Non-Patent Document 15 McKimm-Breschkin JL, Jiang S, Hui DS, Beigel JH, Govorkova EA, Lee N.
- Prevention and treatment of respiratory viral infections Presentations on antivirals, traditional therapies and host-directed interventions at the 5th ISIRV Antiviral Group conference.
- Non-Patent Document 16 Uehara T, Shishido T, Ishibashi T, et al. S-033188, a Small Molecule Inhibitor of Cap-dependent Endonuclease of Influenza type A and type B Virus, Leads to Rapid and Profound Viral Load Reduction. Options IXfor the Control of Influenza Chicago, Illinois2016
- Non-Patent Document 17 Hayden LG, Sugaya N, Hirotsu N, et al. Baloxavir Marboxil for Uncomplicated Influenza in Adults and Adolescents. N Engl J Med 2018;379:913-23
- a method for treating an influenza virus infection generally involves administering an effective amount of a compound to a subject in order to treat the influenza virus infection, where the subject has (1) an influenza virus infection, and (2) at least one complication risk factor.
- the amount of the compound administered is effective such that reduction of the time to improvement of at least one symptom of an influenza virus infection in the subject as compared to that of a non-treated subject is statistically significant.
- the amount of the compound administered is effective such that avoidance and/or reduction in the incidence of an influenza-related complication in the subject as compared to that of a non-treated subject is statistically significant.
- the amount of the compound administered is effective such that reduction of the time to cessation of viral shedding by a virus titer in the subject as compared to that of a non-treated subject is statistically significant. In one example, the amount of the compound administered is effective such that reduction of the virus titer count in the subject as compared to that of a non-treated subject is statistically significant.
- the non-treated subject is a subject that has not been administered the compound.
- the compound has one of the following formulae:
- a p-value indicating the statistical significance of the reduction of the time to improvement of at least one symptom of the influenza virus infection is less than 0.05, alternately less than 0.005, preferably less than 0.05. In one example, a p-value indicating the statistical significance of the avoidance and/or reduction in an incidence of an influenza-related complication is less than 0.05, alternately less than 0.005, preferably less than 0.05. In one example, a p-value indicating the statistical significance of the reduction of the time to cessation of viral shedding by a virus titer is less than 0.05, alternately less than 0.005, preferably less than 0.05. In one example, a p-value indicating the statistical significance of the reduction of a virus titer count is less than 0.05, alternately less than 0.005, preferably less than 0.05.
- the complication risk factor can include one or more of chronic lung diseases, endocrine disorders, being an age that is 65 or older, a current resident of a long-term care facility, metabolic disorders, a compromised immune system, neurological disorders, neurodevelopmental disorders, heart diseases, blood disorders, being a female who is within two weeks postpartum and is not breastfeeding, having American Indian or Alaskan native heritage, and morbid obesity.
- the complication risk factor can include one or more of chronic lung diseases, endocrine disorders, being an age that is 65 or older, heart diseases and morbid obesity.
- an influenza-related complication can include death, hospitalization, or one or more of disorder selected from the group consisting of sinusitis, otitis media, bronchitis and pneumonia.
- influenza virus is a type B influenza virus.
- the time to improvement of at least one symptom is a time from the initial administration of the compound to an improvement of at least one of the symptoms of an influenza virus infection (influenza symptoms), as compared to the respective symptoms before the administration of the compound, where the improvement of at least one symptom lasts for at least 21.5 hours.
- at least one of the influenza symptoms is improved within at most 86 hours from the first administration of the compound, as compared to the respective symptoms before the administration of the comound.
- At least one of the influenza symptoms is a systemic symptom or a respiratory symptom.
- a systemic symptom includes one or more symptoms of headache, feverishness, chills, muscular pain, joint pain, and fatigue.
- a respiratory symptom includes one or more symptoms of coughing, sore throat, and nasal congestion.
- the virus titer in the treated subject is reduced by at least about 2.8 logio TCID5o/mL, alternately at least about 3.3 logio TCIDso/mL, relative to that of when the compound is first administered to the subject.
- the reduction in the virus titer is measured on Day 2 after the compound is first administered to the subject. “Day 2” means one day after the compound is first administered to the subject.
- the number of times the compound is administered is not particularly limited. In another example, the compound can be administered only once. In another example, the compound can be administered only two times. In another example, the compound can be administered only three times. In one example, the effective amount of the compound is in a range from at or about 0.1 to at or about 3000 mg. In another example, the effective amount of the compound is in a range from about at or 0.1 to at or about 240 mg. In another example, the effective amount of the compound is in a range from about at or 3 to at or about 80 mg. In yet another example, the effective amount of the compound is in a range from at or about 40 to at or about 80 mg.
- the effective amount is in a range from at or about 3 to at or about 80 mg per dose. In yet another example, the effective amount is in a range from at or about 10 to at or about 80 mg per dose. In a more preferred example, the effective amount of the compound is in a range from at or about 40 to at or about 80 mg per dose.
- the compound is administered based on the weight of the subject. In one example, the compound can be administered as a weight-based dose. In one example, about 40 mg is administered to a subject weighing about 40kg to less than about 80 kg. In one example, about 80 mg is administered to a subject weighing above at or above 80 kg.
- ASPECTS ASPECTS
- a method for treating an influenza virus infection comprising:
- the complication risk factor is at least one factor selected from the group consisting of a chronic lung disease, an endocrine disorder, being an age that is 65 or older , a current resident of a long-term care facility, a metabolic disorder, a compromised immune system, a neurological disorder, a neurodevelopmental disorder, a heart disease, a blood disorder, being a female who is within two weeks postpartum and is not breastfeeding, having American Indian or Alaskan native heritage, and morbid obesity.
- the complication risk factor is a chronic lung disease.
- the influenza-related complication is at least one complication selected from the group consisting of death, hospitalization, sinusitis, otitis media, bronchitis and pneumonia.
- influenza virus causing the influenza virus infection is a type B influenza virus.
- time to improvement of symptoms is the time from the initial administration of the compound to an improvement of influenza symptoms, as compared to the respective symptoms before the administration of the compound, and wherein the improvement of symptoms lasts for at least 21.5 hours.
- symptom is the systemic symptom and the systemic symptom includes at least one of headache, feverishness, chills, muscular pain, joint pain, and fatigue.
- the symptom is the respiratory symptom and the respiratory symptom includes at least one selected from the group consisting of coughing, sore throat, and nasal congestion.
- a method for treating influenza comprising: reading a dosage instruction on a package insert or in a package for a pharmaceutical formulation comprising a compound having one of the following formulae:
- a pharmaceutically acceptable salt thereof for preparation of a medicament for treating a subject having an influenza virus, wherein the treatment includes administering an effective amount of the compound to a subject having:
- a pharmaceutical composition useful for treating a subject having:
- the amount administered is effective in the subject such that at least one of the following occurs as compared to that of a non-treated subject:
- a package comprising a pharmaceutical formulation comprising a compound having one of the following formulae:
- a dosage instruction on a package insert or in a package for administering an effective amount of the compound to a subject having:
- Fig. 1 is a graph showing the experimental results of the changes in plasma concentration of compound III (baloxavir or“BXA”) where different amounts of prodrug compound II-6 (baloxavir marboxyl or“BXM”) were administered to rats under non-fasting conditions.
- compound III baloxavir or“BXA”
- prodrug compound II-6 baloxavir marboxyl or“BXM”
- Fig. 2 is a table showing the experimental results of measuring the plasma concentration of BXM, after oral administration to rats under non-fasting conditions.
- Figure 3 is a table showing a summary of results of a time to improvement of symptoms of an influenza virus infection in a clinical trial where subjects were randomized to receive a single oral dose of 40 mg or 80 mg of BXM according to body weight, oseltamivir 75 mg twice daily for 5 days, or placebo.
- Figure 4 is a Kaplan-Meier curve of the results of a time to improvement of symptoms in the clinical trial of Figure 3.
- Figure 5 is a table showing a summary of results of a time to improvement of symptoms in the clinical trial of Figure 3 for patients having influenza virus type B.
- Figure 6 is a Kaplan-Meier curve of the results of a time to improvement of symptoms for patients in the clinical trial of Figure 3 having influenza virus type B.
- Figure 7 is a table showing the results of a time to improvement of symptoms for patients having a certain complication risk factor in the clinical trial of Figure 3.
- Figure 8 is a table showing the results of incidences of influenza-related complications in the clinical trial of Figure 3.
- Figure 9 is a table showing the results of the time to cessation of viral shedding by a virus titer in the clinical trial of Figure 3.
- Figure 10 is a table showing a summary of the statistical results of a change from baseline in an influenza virus titer [logl0(TCID50/mL)] by time in the clinical trial of Figure 3.
- Figure 11 is a table showing a summary of the statistical results of a change from baseline in an influenza virus titer [logl0(TCID50/mL)] by time for patients having influenza virus type B in the clinical trial of Figure 3.
- influenza virus infection can be treated in patients with at least one complication risk factor using the compounds disclosed herein, including Compound II-6 and Compound III.
- the amount of the compound administered is effective such that at least one of reduction of a time to improvement of at least one symptom of the influenza virus infection, reduction in an incidence of an influenza-related complication, a time to cessation of viral shedding by a virus titer, and reduction of a virus titer count, in the subject is statistically significant.
- group to form a prodrug is a group selected from the following formula:
- L is straight or branched lower alkylene
- P R0 is alkyl
- P R2 is alkyl
- P R3 is each independently hydrogen
- P R4 is alkyl
- the compound that can be used in the disclosed method has a formula:
- high risk patient refers to a patient who is infected with an influenza virus and who also has a complication risk factor.
- the term“complication risk factor” refers to at least one condition selected from the group consisting of chronic lung diseases, endocrine disorders, being an age that is 65 or older, a current resident of a long-term care facility, metabolic disorders, a compromised immune system, neurological disorders, neurodevelopmental disorders, heart diseases, blood disorders, being a female who is within two weeks postpartum and is not breastfeeding, having American Indian or Alaskan native heritage, and morbid obesity.
- the complication risk factor can include one or more of chronic lung diseases, endocrine disorders, being an age that is 65 or older, heart diseases and morbid obesity
- P R is a group to form a prodrug, or its pharmaceutically acceptable salt.
- P R is selected from the group consisting of:
- L is straight or branched lower alkylene
- P R0 is alkyl
- P R2 is alkyl
- P R3 is each independently hydrogen
- P R4 is alkyl
- P R is a group to form a prodrug, a hydroxy group in the formula (III) or its
- Parenter compound in the present description means a compound to be a source before synthesizing the "prodrug” and/or a compound released from the "prodrug” by the reaction by enzymes, a gastric acid, and the like under physiological conditions in vivo, and specifically means a compound shown by the formula (III), or pharmaceutically acceptable salt thereof or a solvate thereof.
- alkyl includes a Cl to Cl 5, alternatively a Cl to CIO, alternatively a Cl to C6, alternatively a Cl to C4, linear or branched hydrocarbon group.
- Examples of“alkyl” include methyl, ethyl, n-propyl, isopropyl, n-butyl, isobutyl, sec-butyl, tert-butyl, n-pentyl, isopentyl, neopentyl, n-hexyl, isohexyl, n-heptyl, isoheptyl, n-octyl, isooctyl, n-nonyl, n-decyl and the like.
- “alkyl” is methyl, ethyl, n-propyl, isopropyl, n-butyl, isobutyl, sec- butyl, tert-butyl or n-pentyl.
- Another embodiment of“alkyl” is methyl, ethyl, n-propyl, isopropyl or tert-butyl.
- alkylene includes a Cl to C15, alternately a Cl to CIO, alternately a Cl to C6 and alternately a Cl to C4 linear or branched bivalent hydrocarbon group. Examples include methylene, ethylene, trimethylene, propylene, tetramethylene, pentamethylene, hexamethylene and the like.
- One or more hydrogen, carbon and/or other atoms in the compounds used in the present invention may be replaced with isotopes of hydrogen, carbon and/or other atoms respectively.
- isotopes include hydrogen, carbon, nitrogen, oxygen, phosphorus, sulfur, fluorine, iodine and chlorine, such as 2 H, 3 H, n C, 13 C, 14 C, 15 N, 18 0, 17 0, 31 P, 32 P, 35 S, 18 F, 123 I and 36 C1 respectively.
- the compounds used in the present invention include compounds replaced with these isotopes.
- the compounds replaced with the above isotopes are useful as medicines and include radiolabeled compounds of the compound used in the present invention.
- A“method of radiolabeling” in the manufacture of the“radiolabeled compounds” is encompassed by the present invention, and the“radiolabeled compounds” are useful for studies on metabolized drug pharmacokinetics, studies on binding assay and/or diagnostic tools.
- a radiolabeled compound used in the present invention can be prepared using well- known methods in the field of this invention.
- a tritium-labeled compound used in the present invention can be prepared by introducing a tritium to a certain compound used in the present invention, through a catalytic dehalogenation reaction using a tritium. This method comprises reacting with an appropriately-halogenated precursor of the compound used in the present invention with tritium gas in the presence of an appropriate catalyst, such as Pd/C, and in the presence or absent of a base.
- an appropriate catalyst such as Pd/C
- the other appropriate methods of preparing a tritium-labeled compound can be found in“Isotopes in the Physical and Biomedical Sciences, Vol. 1, Labeled Compounds (Part A), Chapter 6 (1987)”.
- a 14 C-labeled compound can be prepared by using a raw material having 14 C.
- the pharmaceutically acceptable salts of the compounds used in the present invention include, for example, salts with alkaline metal (e.g., lithium, sodium, potassium or the like), alkaline earth metal (e.g., calcium, barium or the like), magnesium, transition metal (e.g., zinc, iron or the like), ammonia, organic bases (e.g., trimethylamine, triethylamine,
- salts with inorganic acids e.g., hydrochloric acid, sulfuric acid, nitric acid, carbonic acid, hydrobromic acid, phosphoric acid, hydroiodic acid or the like
- organic acids e.g., formic acid, acetic acid, propionic acid, trifluoroacetic acid, citric acid, lactic acid, tartaric acid, oxalic acid, maleic acid, fumaric acid, mandelic acid, glutaric acid, malic acid, benzoic acid, phthalic acid, ascorbic acid, benzenesulfonic acid, p-toluenesulfonic acid, methanesulfonic acid, ethanesulfonic acid or the like).
- salts with hydrochloric acid, sulfuric acid, phosphoric acid, tartaric acid, methanesulfonic acid and the like are included.
- the compounds used in the present invention or its pharmaceutically acceptable salts may form solvates (e.g., hydrates or the like) and/or crystal polymorphs.
- the present invention encompasses those various solvates and crystal polymorphs.
- “Solvates” may be those wherein any numbers of solvent molecules (e.g., water molecules or the like) are coordinated with the compounds used in the present invention.
- Recrystallization of the compounds used in the present invention or its pharmaceutically acceptable salts may produce crystal polymorphs.
- the group to form a prodrug is converted into OH group by action of drug-metabolizing enzymes, hydrolases, gastric acids, and/or enterobacteria, after in vivo administration (for example, oral administration).
- a prodrug shows bioavailability and/or AUC (area under the blood concentration curve) in in vivo administration that is improved compared to that of the compound represented by formula (III).
- a prodrug is efficiently absorbed into the body in the stomach and/or intestines after in vivo administration (for example, oral administration), and then is converted into the compound represented by formula (III).
- the prodrug shows an effect of treating and/or preventing influenza virus infection higher than the compound represented by formula (III).
- Examples of one embodiment of the group to form a prodrug include a group selected from the following formulae
- P R3 is hydrogen; and P R4 is alkyl.
- Examples of an embodiment of a particularly preferable substituent of the group to form a prodrug include following groups.
- Synthesis of the compound used in the present invention can be carried out referring to the procedures known in the art.
- a salt of the compound used in the present invention in the case where the compound used in the present invention is obtained in a form of a salt, it may be purified as it is and, in the case where the compound used in the present invention is obtained in a free form, a salt may be formed by a normal method by dissolving or suspending the compound in a suitable organic solvent, and adding an acid or a base.
- P R is a group to form a prodrug.
- Compound (II) can be obtained by the general method including converting a hydroxyl group of Compound (III) into an ester group or ether group.
- the active agent (Compound (III)) can be used to make its prodrugs (i.e., compounds having the formula of Compound (II)).
- the parent compound used in the present invention has cap-dependent endonuclease inhibitory activity and the parent compound and its prodrugs are useful as a therapeutic or preventive agent for influenza virus infection.
- the compounds used in the present invention may be administered orally as a powder, a granule, tablets, capsules, pills, a liquid and the like or parenterally as an injection, suppositories, a percutaneous drug, an inhalant and the like.
- the effective doses of the present compounds may be mixed with excipients suitable for the dosage form, such as fillers, binders, humectants, disintegrators, and lubricants, as appropriate, to form pharmaceutical preparations.
- sterilization is performed with a suitable carrier.
- the pharmaceutical compositions used in the present invention can be administered either orally or parenterally.
- oral administration commonly used dosage forms, such as tablets, granule, powder, and capsules, may be prepared according to conventional methods.
- parenteral administration any commonly used dosage form, such as an injection, may be suitably used.
- the compounds according to the present invention can be suitably used as oral preparations because of their high oral absorbability.
- the dose depends on the condition of the disease, administration route, or age or weight of the patient.
- the usual oral dose for adults is 0.1 to 100 mg/kg per day, alternately 1 to 20 mg/kg per day.
- patients weighing 40 kg to less than 80 kg receive a single dose of 40 mg.
- patients weighing at least 80 kg receive a single dose of 80 mg.
- the compound used in the present invention can be used in combination with other drugs or the like (hereinafter referred to as combination drugs) to increase the activity of the compound, reduce the dose of the compound, or the like.
- combination drugs e.g., Oseltamivir, Zanamivir, Peramivir, Inabiru and the like
- RNA-dependent RNA polymerase inhibitor e.g., Favipiravir
- M2 protein inhibitor e.g., Amantadine
- PB2 Cap binding inhibitor e.g., VX-787
- anti-HA antibody e.g., MHAA4549A
- Immune agonists e.g., Nitazoxanide
- the timing of administration for a compound used in the present invention and the combination drug is not limited. They can be administered to the subjects to be treated, at the same time or at different times. Furthermore, a compound used in the present invention and the combination drug can be administered as two or more formulations independently comprising each active ingredient or a single formulation comprising all the active ingredients of the compound of the present inventipon and the combination drug.
- the dose for combination drugs may be appropriately selected in reference to the clinical dose.
- administered drugs may be appropriately selected depending on the subject to be treated, administration route, disease to be treated, symptoms, combination of the drugs and the like.
- 1 part by weight of the compounds used in the present invention may be used in combination with 0.01 to 100 parts by weight of co-administered drugs.
- the complication risk factor is one or more of chronic lung diseases, endocrine disorders, being an age that is 65 or older, heart diseases, and morbid obesity.
- the complication risk factor is a chronic lung disease.
- the chronic lung disease can include chronic obstructive pulmonary disease (COPD), emphysema, tuberculosis, asthma, interstitial pulmonary disease and cystic fibrosis.
- COPD chronic obstructive pulmonary disease
- emphysema emphysema
- tuberculosis emphysema
- cystic fibrosis fibrosis
- the complication risk factor is pneumonia.
- pneumonia can include aspiration pneumonia.
- the complication risk factor is bronchitis.
- the complication risk factor is an immune disorder due to a disease or medication.
- an immune disorder due to a disease or medication can include HIV, AIDS, cancer, T-cell immune deficiency and steroid treatment.
- the complication risk factor is a heart disease.
- the heart disease can include congenital heart disease, congestive heart failure and coronary artery disease.
- the complication risk factor is a renal disease.
- a renal disease can include chronic renal failure and hemodialysis.
- the complication risk factor is a metabolic disorder.
- a metabolic disorder can include inherited metabolic disorders and mitochondrial disorders.
- the complication risk factor is pleural inflammation.
- the complication risk factor is a blood disorder, endocrine disorders, and diabetes.
- a blood disorder can include severe anemia including sickle cell disease.
- the complication risk factor is a liver disorder.
- the complication risk factor is being an age younger than 19 years and receiving long-term aspirin therapy.
- the complication risk factor is morbid obesity (for example, body mass index [BMI] of 40 or more).
- the complication risk factor is a neurological and neurodevelopmental condition.
- a neurological and neurodevelopmental condition can include cerebral palsy, epilepsy, stroke, intellectual disability, moderate to severe developmental delay, muscular dystrophy, spinal cord injury.
- the complication risk factor is a neuromuscular disorder.
- a neuromuscular disorder can include muscular dystrophy, ALS, motor paralysis, spasm, dysphagia, and related neuromuscular diseases.
- the complication risk factor is the age of the subject. In one example, an age factor can include 65 year of age or older. In one example, the complication risk factor is a race of the subject. In one example, a race factor can include being of Native American heritage, being an Alaskan native, or being an Europe and Torres Strait Islander.
- the complication risk factor can be one or more of the complication risk factors listed above.
- the complication risk factor is one or more of chronic lung diseases, endocrine disorders, being an age that is 65 or older, a current resident of a long-term care facility, metabolic disorders, a compromised immune system, neurological disorders, neurodevelopmental disorders, heart diseases, blood disorders, being a female who is within two weeks postpartum and is not breastfeeding, having American Indian or Alaskan native heritage, and morbid obesity.
- the complication risk factor can include one or more of chronic lung diseases, endocrine disorders, being an age that is 65 or older, heart diseases and morbid obesity.
- the amount of the compound administered is effective such that a reduction in a time to improvement of at least one symptom of an influenza virus infection in the subject is statistically significant as compared to that of a non-treated subject.
- the amount of the compound administered is effective such that a reduction in a time to improvement of symptoms of an influenza virus infection (coughing, sore throat, headache, nasal congestion, feverishness or chills, muscular or joint pain, and fatigue) in the subject is statistically significant as compared to that of a non-treated subject.
- a non- treated subject is a subject that has been administered the placebo of the compound or a subject that has not been administered the compound.
- the time to improvement of at least one symptom in the subject where the compound is administered is a time from the first administration of the compound to an improvement of influenza symptoms, as compared to the respective symptoms before the administration of the compound, for at least 24 hours.
- the time to improvement of at least one symptom in the subject where the placebo is administered or the compound is not administered is a time from the initial administration of the placebo; or if the compond is not administered the corresponding time point in view of the disease process of influenza to an improvement of influenza symptoms, as compared to the respective symptoms before the administration of the placebo; or if the compond is not administered the corresponding time point in view of the disease process of influenza.
- the time to improvement of at least one symptom in the subject is a time from the initial administration of the compound to an improvement of influenza symptoms, as compared to the respective symptoms before the administration of the compound, for at least 48 hours.
- the time to improvement of at least one symptom in the subject is a time from the initial administration of the compound to an improvement of influenza symptoms, as compared to the respective symptoms before the administration of the compound, for at least 72 hours.
- the time to improvement of at least one symptom in the subject is a time from the initial administration of the compound to an improvement of influenza symptoms, as compared to the respective symptoms before the administration of the compound, for at most 86 hours.
- a reduction in the time to improvement of at least one symptom of the influenza infection is statistically significant relative to that of a non- treated subject, where a p- value indicating the statistical significance is less than 0.05, alternately 0.03 or less, alternately 0.02 or less, alternately 0.003 or less, alternately 0.001 or less, alternately 0.001 or less.
- a symptom of an influenza virus infection in a subject is a systemic symptom or a respiratory symptom.
- a systemic symptom includes one or more of headache, feverishness, chills, muscular pain, joint pain, and fatigue.
- a respiratory symptom includes one or more of coughing, sore throat, and nasal congestion.
- the phrase“improvement of a symptom of an influenza virus infection” refers to a self- evaluation of the subject’s influenza symptoms using a 4-point scale [0: none, 1 : mild, 2:
- influenza symptoms are evaluated, which are cough, sore throat, headache, nasal congestion, feverishness or chills, muscular or joint pain, and fatigue.
- Improvement occurs when all seven influenza symptoms (cough, sore throat, headache, nasal congestion, feverishness or chills, muscular or joint pain, fatigue) become lower relative to the time the compound or the placebo is initially administered; or if the compond is not administered to the corresponding time point in view of the disease process of influenza.
- improvement of any particular influenza symptom refers to when the influenza symptom returns to the patient’s baseline level; a self-evaluation point reduces by at least by 1 level if pre existing symptoms are worsened at baseline by influenza; and/or a self-evaluation point is not changed if pre-existing symptoms are not worsened at baseline by influenza.
- the subject has a type B influenza virus.
- the time to improvement of symptoms is statistically significant relative to that of a subject that has been administered oseltamivir.
- a p- value indicating the statistical significance of the time to
- improvement of at least one symptom of the influenza virus infection where the subject has a type B influenza virus is less than 0.05, alternately 0.03 or less, alternately 0.02 or less, alternately 0.003 or less, alternately 0.001 or less, alternately 0.001 or less.
- the amount of the compound administered is effective such that an avoidance and/or a reduction in an incidence of an influenza-related complication in the subject is statistically significant as compared to that of a non-treated subject.
- a p- value indicating the statistical significance of the reduction in an incidence of an influenza-related complication is less than 0.05, alternately 0.03 or less, alternately 0.02 or less, alternately 0.003 or less, alternately 0.001 or less, alternately 0.001 or less.
- influenza-related complication is death. In one example, the influenza-related complication is hospitalization. In one example, the influenza-related complication is sinusitis. In one example, the influenza-related complication is otitis media. In one example, the influenza-related complication is bronchitis. In one example, the influenza- related complication is pneumonia. In one example, the influenza-related complication is one or more of those listed above. In one example, the influenza-related complication is one or more of the group consisting of sinusitis and bronchitis.
- the amount of the compound administered is effective such that a reduction in a time to cessation of viral shedding by a virus titer in the subject is statistically significant as compared to that of a non-treated subject.
- the time to cessation of viral shedding by a virus titer means a time between the initial administration of the compound or the placebo to the subject having an influenza virus infection; or if the compond is not administered the corresponding time point in view of the disease process of influenza and the first time when the virus titer or viral ribonucleic acid (RNA) of the subject as measured by reverse transcription polymerase chain reaction (RT-PCR) is less than the lower limit of quantification.
- the lower limit of quantification is a baseline at certain timepoints.
- the time to cessation of viral shedding by a virus titer means a time between the initial administration of the compound or the placebo to the subject having at least one symptom of an influenza virus infection; or if the compond is not administered the corresponding time point in view of the disease process of influenza and the time when no viral shedding from the subject is detected for the first time after the initial administration of the compound, with the virus titer or viral RNA virus titer or viral ribonucleic acid (RNA) of the subject as measured by reverse transcription polymerase chain reaction (RT-PCR).
- RT-PCR reverse transcription polymerase chain reaction
- a p-value indicating the statistical significance of the reduction in a time to cessation of viral shedding by a virus titer in the subject is less than 0.05, alternately 0.03 or less, alternately 0.02 or less, alternately 0.003 or less, alternately 0.001 or less, alternately 0.001 or less.
- the amount of the compound administered amount is effective such that a reduction of a virus titer in the subject is statistically significant as compared to that of a non- treated subject.
- the virus titer in the subject is reduced by at least about 2.8 logio TCID5o/mL, alternately at least about 3.3 logio TCIDso/mL, relative to that of when the compound is first administered to the subject.
- the reduction in the virus titer is measured on Day 2 after the compound is first administered to the subject. “Day 2” means one day after the compound is first administered to the subject.
- a subject that is first administered with the compound has a virus titer sufficient to cause a symptom of an influenza virus infection to be exhibited in the subject.
- the virus titer sufficient to cause a symptom of influenza virus infection to be exhibited in the subject is 0.7 logio TCIDso/mL.
- a p-value indicating the statistical significance of the reduction of a virus titer in the subject is less than 0.05, alternately 0.03 or less, alternately 0.02 or less, alternately 0.003 or less, alternately 0.001 or less, alternately 0.001 or less.
- the effective amount of the compound is in a range from about 0.1 mg to about 3000 mg. In another example, the effective amount of the compound is in a range from about 0.1 to about 240 mg. In another example, the effective amount of the compound is in a range from about 3 mg to about 80 mg. In yet another example, the effective amount of the compound is in a range from about 40 mg to about 80 mg. In yet another example, the effective amount is in a range from about 3 mg to about 80 mg per dose.
- the subject is a human patient.
- the compound is administered based on the weight of the subject. In one example, the compound can be administered as a weight-based dose. In one example, about 40 mg is administered to a subject weighing from about 40 kg to under about 80 kg. In one example, about 80 mg is administered to a subject weighing 80 kg or more. In one example, the compound is administered on the first day of onset of at least one symptom of an influenza virus infection and three days after the first day of administration upon onset of at least one symptom of an influenza virus infection. In one example, the compound is administered once.
- the compound is administered six days after the first day of
- improvement means a lower score in seven of the influenza symptoms (cough, sore throat, headache, nasal congestion, feverishness or chills, muscular or joint pain, and fatigue) using a 4-point scale [0: none, 1 : mild, 2: moderate, 3: severe] relative to the time the compound is initially administered.
- improvement of any particular influenza symptom refers to returning of the influenza symptom to the patient’s baseline level.
- improvement means: a reduction in a self-evaluation point at least by one level if pre-existing symptoms are worsened by influenza compared with a baseline; a self- evaluation point is not changed if pre-existing symptoms are not worsened by influenza compared with a baseline; and a self-evaluation point becomes mild or absent if symptoms are not pre-existing.
- the compound is administered orally. In another example, the compound is administered parenterally.
- the compound is administered through at least one route selected from the group consisting of orally, dermally, subcutaneously, intravenously, intraarterially, intramuscularly, intraperitoneally, transmucosally, via inhalation, transnasally, ophthalmically, via an inner ear and vaginally.
- the compound can be administered with any material in any amounts that are suitable for use with the compound.
- the compound is administered in combination with at least one material selected from the group consisting of a neuraminidase inhibitor, an RNA-dependent RNA polymerase inhibitor, an M2 protein inhibitor, a PB2 Cap binding inhibitor, a HA maturation inhibitor, a recombinant sialidase, a re-assemble inhibitor, RNA interference compound, a receptor of hemagglutinin binding inhibitor, a membrane of HA fusion inhibitor, a NP nuclear translocation inhibitor, a CXCR inhibitor, a CRM1 inhibitor, an anti-HA antibody and an immunological agent.
- the compound is administered in combination with one or more of oseltamivir, zanamivir, peramivir, laninamivir, favipiravir, amantazine, flumazine,
- the compound is administered in at least one form selected from the group consisting of a tablet, powder, a granule, a capsule, a pill, a film, a suspension, an emulsion, an elixir, a syrup, lemonade, spirit, aromatic water, extract, decoction and tincture.
- the compound is administered in a tablet.
- the compound is administered in at least one form selected from the group consisting of a sugar-coated tablet, a film-coated tablet, an enteric-coated tablet, a sustained-release tablet, a troche tablet, a sublingual tablet, a buccal tablet, a chewable tablet, an orally disintegrated tablet, a dry syrup, a soft capsule, a micro capsule or a sustained-release capsule.
- the compound is administered in at least one form selected from the group consisting of an injection, an infusion, an eye drop, a nose drop, an ear drop, an aerosol, an inhalation, a lotion, an impregnation, a liniment, a mouthwash, an enema, an ointment, a plaster, a jelly, a cream, a patch, a cataplasm, an external powder or a suppository.
- RT represents a retention time at LC/MS: liquid chromatography/mass spectrometry, and was measured under the following conditions.
- UV detection wavelength 254nm
- Compound II-4 and II-6 were synthesized from commercially available compounds according to the method described in WO2016/175224.
- Test Example 1 BA test
- mice or SD rats were fasted and were allowed free access to sterilized tap water.
- Oral administration was performed mandatory into the stomach by oral sonde.
- Intravenous administration was performed from caudal vein by syringes with needle.
- Figures 1 and 2 show a result of measuring the plasma concentration of Compound III and Compound II-6, respectively, after oral administration of prodrug Compound II-6 to rats under non-fasting conditions.
- the concentration of Compound II-6 in all plasma samples was below the limit of quantification ( ⁇ 0.500 ng/mL) for all time points tested (0.25 h, 0.5 h, 1 h, 2 h, 4 h, 6 h, 8 h, 10 h, and 24 h) and for all doses tested (0.3 mg/kg, 1 mg/kg, 3 mg/kg, and 10 mg/kg). Therefore, prodrug Compound II-6 was found to have metabolized promptly to Compound III in vivo after administration.
- the prodrug compounds used in the present example also showed excellent oral absorbability. Therefore, the prodrug compounds used in the present example, including Compound II-6, can be useful agents for treatment and/or prevention of symptom and/or disease induced by infection with influenza virus.
- the efficacy and safety of a single oral administration of BXM (40 mg or 80 mg) was evaluated in patients who were infected with influenza virus and were symptomatic for no more than 48 hours, and had a complication risk factor.
- the patients were evaluated by a randomized, double-blind, multicenter, placebo- and active-controlled global study designed to evaluate the efficacy and safety of a single oral dose of BXM compared with placebo or oseltamivir, in adult and adolescent subjects aged 12 to 17 years with both influenza virus infection and a
- a total of 2,184 high risk subjects were randomized to receive a single oral dose of 40 mg or 80 mg of BXM according to body weight (patients who weighed from 40 kg to less than 80 kg received 40 mg and patients who weighed more than or equal to 80 kg received 80 mg), oseltamivir 75 mg twice daily for 5 days, or placebo.
- the predominant influenza viruses in this study were the subtype A/H3N2 (47.9%) and type B (41.6%).
- the primary efficacy endpoint was a time to improvement of influenza symptoms (cough, sore throat, headache, nasal congestion, feverishness or chills, muscle or joint pain, and fatigue).
- a positive rapid influenza diagnostic test (RIDT) result or a patient with a negative RIDT may be enrolled if the patient reports contact with a person known to have influenza virus infection within 7 days prior to the treatment and if all other inclusion criteria are met,
- At least one each of the following general and respiratory symptoms associated with influenza virus infection with a severity of moderate or greater is present:
- the time interval between the onset of symptoms and the predose examinations is 48 hours or less, where the onset of the symptoms is defined as either
- Asthma or chronic lung disease such as chronic obstructive pulmonary disease or cystic fibrosis
- Compromised immune system including patients receiving corticosteroids not exceeding 20 mg of prednisolone or equivalent, and patients being treated for human immunodeficiency virus [HIV] infection with a CD4 count > 350 cells/mm 3 within the last 6 months),
- Neurological and neurodevelopmental disorders including disorders of the brain, spinal cord, peripheral nerve, and muscle, e.g., cerebral palsy, epilepsy [seizure disorders], stroke, muscular dystrophy, or spinal cord injury),
- Heart diseases such as congenital heart disease, congestive heart failure, or coronary artery disease, excluding hypertension without any other heart-related symptoms
- Metabolic disorders such as inherited metabolic disorders and mitochondrial disorders
- k Morbid obesity (body mass index > 40 kg/m 2 )
- Eligible patients were randomly allocated to a group receiving a single administration of BXM (40 or 80 mg depending on the body weight), a group receiving 75 mg Oseltamivir twice a day for 5 days, and a placebo group in a ratio of 1 : 1 : 1.
- the dosage of BXM was 40 mg for subjects weighing less than 80 kg, and 80 mg for subjects weighing 80 kg or more.
- the term“Day 1” indicates the first day of administration.
- the term“Day 2 to Day 5” indicates the second day to the fifth day as counted from the first day of
- Single dose of 40 mg Tablets of BXM was administered orally to patients who weighed between 40 kg and up to 80 kg (Two 20 mg tablets).
- Single dose of 80 mg Tablets of BXM was administered orally to patients who weighed greater than or equal to 80 kg (Four 20 mg tablets).
- Placebo capsules for Oseltamivir were administered orally twice a day (morning, evening), one capsule per administration.
- Placebo capsules for Oseltamivir were administered orally twice a day (morning, evening), one capsule per administration.
- Placebo tablets for BXM were administered orally.
- 75 mg Capsules of Oseltamivir were administered orally twice a day (morning, evening), one capsule per administration.
- Capsules of Oseltamivir were administered orally twice a day (morning, evening), one capsule per administration.
- Placebo tablets for BXM were administered orally (2 tablets or 4 tablets depending on the body weight).
- Placebo capsules for Oseltamivir were administered orally twice a day (morning, evening), one capsule per administration.
- Placebo capsules for Oseltamivir were administered orally twice a day (morning, evening), one capsule per administration.
- the main efficacy endpoint is the time to alleviation of influenza symptoms, which is the time from the beginning of administration until improvement of influenza symptoms for at least 21.5 hours.
- Improvement of influenza symptoms refers to when all 7 influenza symptoms (cough, sore throat, headache, nasal congestion, feverishness or chills, muscular or joint pain, and fatigue) become "0: none” or "1 : mild” in the patient diary that the subject keeps, and this condition continues at least 21.5 hours (24 hours - 10%).
- improvement of any particular influenza symptom refers to when the influenza symptom returns to the patient’s baseline level.
- the baseline severity is the severity of the symptoms immediately before administering the compound to the patient.
- the baseline severity is assessed as severe, moderate, mild or none. If the baseline severity is severe, then it is necessary to administer the compound so that the baseline severity is moderate, mild, or none.
- preexisting symptoms At baseline (i.e., the predose examinations), patients only is asked whether preexisting symptoms existed (within the last 30 days) and whether they were worsened by influenza virus infection. Patients are asked to rate the severity at baseline that is the severity that needs to improve. To avoid recall bias, patients will not be asked to rate the severity of preexisting symptoms prior to influenza.
- Preexisting symptoms i.e., cough, fatigue, or muscle/joint pain that existed prior to developing influenza
- the baseline i.e., the predose examinations
- Maintaining the baseline severity means that the baseline severity is neither worsened nor improved.
- At least one of the efficacy endpoints is satisfied.
- the secondary efficacy endpoint is as follows:
- the virus titer was measured in the following manner:
- a standard strain influenza virus AH3N2, A/Victoria/361/2011, storage condition: -80°C, origin: National Institute of Infectious Diseases
- a sample collected from high risk patients in Phase III clinical test of BXM and stored in an ultra-low-temperature freezer
- a medium for cell control are diluted 101 to 107 folds by a 10-fold serial dilution method.
- CPE CytoPathic Effect
- the intend on-to-treat infected (IT ⁇ , defined as RT-PCR positive for influenza) set was the primary efficacy analysis population in the study.
- the per-protocol set (PPS) was used to support the primary analyses for efficacy.
- Statistical testing was performed at the 2-sided significance level of 0.05 unless stated otherwise.
- the stratified generalized Wilcoxon test was applied to the primary endpoint with some stratification factors, namely baseline symptom score ( ⁇ 14, > 15), preexisting and worsened symptom (Yes, No), and region (Asia, North America/Europe, Southern Hemisphere), to evaluate the efficacy of BXM compared with placebo.
- Hemisphere were included as stratification factors. Summary statistics were calculated by a time point and by a treatment group.
- the primary efficacy endpoint is a time to improvement of influenza symptoms (TTIIS), which is defined as the time from the start of treatment to the time when all seven influenza- related symptoms were rated by the patients as improved (reduced by at least by 1 level if pre existing symptoms were worsened at baseline by influenza, not changed if pre-existing symptoms were not worsened at baseline by influenza, or mild or absent if symptoms were not pre-existing).
- TTIIS time to improvement of influenza symptoms
- BXM was statistically signicantly superior to placebo with respect to sinusitis and bronchitis.
- investigational drug were evaluated according to the influenza virus titer using a nasal or throat swab.
- lactose and calcium stearate are mixed uniformly to obtain powder medicines in the form of powders or fine granules.
- the powder medicines are filled into capsule containers to give capsules.
- lactose and calcium stearate are mixed uniformly and the mixture is compressed and molded. Then, it is crushed, granulated and sieved to give suitable sizes of granules.
- the compounds used in the present invention and crystalline cellulose are mixed, granulated and tablets are made to give orally disintegrated tablets.
- the compounds used in the present invention and lactose are mixed, crushed, granulated and sieved to give suitable sizes of dry syrups.
- the compounds used in the present invention and phosphate buffer are mixed to give injection.
- the compounds used in the present invention and phosphate buffer are mixed to give injection.
- the compound used in the present invention and lactose are mixed and crushed finely to give inhalations.
- Formulation Example 10 Patches The compounds used in the present invention and base such as adhesive plaster or the like are mixed to give patches.
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Priority Applications (10)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CA3133189A CA3133189A1 (en) | 2019-03-12 | 2019-03-12 | Methods of treating influenza in subjects with influenza and a complication risk factor |
| KR1020217032268A KR20210137140A (en) | 2019-03-12 | 2019-03-12 | Influenza treatment with substituted polycyclic pyridone derivatives and prodrugs thereof in subjects with influenza and risk factors for complications |
| JP2021553309A JP7158808B2 (en) | 2019-03-12 | 2019-03-12 | Treatment of influenza with substituted polycyclic pyridone derivatives and their prodrugs in subjects with influenza and complication risk factors |
| MX2021010884A MX2021010884A (en) | 2019-03-12 | 2019-03-12 | Treating influenza using substituted polycyclic pyridone derivatives and prodrugs thereof in a subject having influenza and a complication risk factor. |
| PCT/IB2019/052012 WO2020183227A1 (en) | 2019-03-12 | 2019-03-12 | Treating influenza using substituted polycyclic pyridone derivatives and prodrugs thereof in a subject having influenza and a complication risk factor |
| AU2019433734A AU2019433734B2 (en) | 2019-03-12 | 2019-03-12 | Treating influenza using substituted polycyclic pyridone derivatives and prodrugs thereof in a subject having influenza and a complication risk factor |
| SG11202109050WA SG11202109050WA (en) | 2019-03-12 | 2019-03-12 | Treating influenza using substituted polycyclic pyridone derivatives and prodrugs thereof in a subject having influenza and a complication risk factor |
| US16/814,669 US20200289522A1 (en) | 2019-03-12 | 2020-03-10 | Treating influenza using substituted polycyclic pyridone derivatives and prodrugs thereof in a subject having influenza and a complication risk factor |
| US18/152,449 US20230158038A1 (en) | 2019-03-12 | 2023-01-10 | Treating influenza using substituted polycyclic pyridone derivatives and prodrugs thereof in a subject having influenza and a complication risk factor |
| US18/525,177 US20240238306A1 (en) | 2019-03-12 | 2023-11-30 | Treating influenza using substituted polycyclic pyridone derivatives and prodrugs thereof in a subject having influenza and a complication risk factor |
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| MX (1) | MX2021010884A (en) |
| SG (1) | SG11202109050WA (en) |
| WO (1) | WO2020183227A1 (en) |
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| US20220008429A2 (en) * | 2019-03-22 | 2022-01-13 | Shionogi & Co., Ltd. | Treating influenza using substituted polycyclic pyridone derivatives and prodrugs thereof in a subject having influenza and a severe influenza condition |
| EP3714889A1 (en) * | 2019-03-29 | 2020-09-30 | F. Hoffmann-La Roche AG | Baloxavir for the prevention of transmission of influenza virus |
| CN116284048B (en) * | 2023-05-18 | 2023-08-15 | 长沙晶易医药科技股份有限公司 | Compound and preparation method, pharmaceutical composition and application thereof |
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| US20180118760A1 (en) * | 2015-04-28 | 2018-05-03 | Shionogi & Co., Ltd. | Substituted polycyclic pyridone derivatives and prodrugs thereof |
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| US8927710B2 (en) | 2009-06-15 | 2015-01-06 | Shionogi & Co., Ltd. | Substituted polycyclic carbamoylpyridone derivative |
| DK2620436T3 (en) | 2010-09-24 | 2018-07-30 | Shionogi & Co | Substituted polycyclic carbamoylpyridone derivative prodrug |
| SG11201804348SA (en) | 2015-12-15 | 2018-06-28 | Shionogi & Co | Medicine for treating influenza characterized by comprising combination of cap-dependent endonuclease inhibitor with anti-influenza drug |
| US11261198B2 (en) | 2016-06-20 | 2022-03-01 | Shionogi & Co., Ltd. | Process for preparing substituted polycyclic pyridone derivative and crystal thereof |
| KR20190018469A (en) * | 2016-08-10 | 2019-02-22 | 시오노기세야쿠 가부시키가이샤 | Substituted polycyclic pyridone derivative and pharmaceutical composition containing prodrug thereof |
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Patent Citations (1)
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|---|---|---|---|---|
| US20180118760A1 (en) * | 2015-04-28 | 2018-05-03 | Shionogi & Co., Ltd. | Substituted polycyclic pyridone derivatives and prodrugs thereof |
Non-Patent Citations (3)
| Title |
|---|
| "Phase III CAPSTONE-2 study showed that baloxavir marboxil reduced symptoms in people at high risk of complications from the flu", MEDIA RELEASE (ROCHE, 17 July 2018 (2018-07-17), pages 1 - 4, XP055740884, Retrieved from the Internet <URL:https://www.roche.com/dam/jcr:c2492061-77cb-4ecd-8108-2066fldf6c7f/en/180717_IR_BaloxavirMarboxilCAPSTONE2en.pdf> [retrieved on 20190425] * |
| "Study of S-033188(Baloxavir Marboxil) Compared With Placebo or Oseltamivir in Patients With Influenza at High Risk of Influenza Complications", CLINICALTRIALS.GOV ARCHIVE, 20 July 2018 (2018-07-20), Retrieved from the Internet <URL:http:clinicaltrials.gov/ct2/history/NCT02949011?V_7=View> [retrieved on 20190425] * |
| ISON, M. G. ET AL.: "Phase 3 Trial of Baloxavir Marboxil in High-Risk Influenza Patients (CAPSTONE-2 Study", OPEN FORUM INFECTIOUS DISEASE, vol. 5, no. 1, 2018, pages S764 - S765, XP055740880, ISSN: 2328-8957 * |
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| CA3133189A1 (en) | 2020-09-17 |
| JP2022515570A (en) | 2022-02-18 |
| US20200289522A1 (en) | 2020-09-17 |
| AU2019433734A1 (en) | 2021-09-30 |
| KR20210137140A (en) | 2021-11-17 |
| US20230158038A1 (en) | 2023-05-25 |
| MX2021010884A (en) | 2022-01-19 |
| JP7158808B2 (en) | 2022-10-24 |
| US20240238306A1 (en) | 2024-07-18 |
| AU2019433734B2 (en) | 2025-08-28 |
| SG11202109050WA (en) | 2021-09-29 |
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