TWI784213B - 雜環化合物 - Google Patents
雜環化合物 Download PDFInfo
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- TWI784213B TWI784213B TW108143201A TW108143201A TWI784213B TW I784213 B TWI784213 B TW I784213B TW 108143201 A TW108143201 A TW 108143201A TW 108143201 A TW108143201 A TW 108143201A TW I784213 B TWI784213 B TW I784213B
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- Prior art keywords
- cancer
- compound
- substituted
- pyridin
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Classifications
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- C—CHEMISTRY; METALLURGY
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- C07D—HETEROCYCLIC COMPOUNDS
- C07D487/00—Heterocyclic compounds containing nitrogen atoms as the only ring hetero atoms in the condensed system, not provided for by groups C07D451/00 - C07D477/00
- C07D487/02—Heterocyclic compounds containing nitrogen atoms as the only ring hetero atoms in the condensed system, not provided for by groups C07D451/00 - C07D477/00 in which the condensed system contains two hetero rings
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- 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
- A61K31/435—Heterocyclic compounds having nitrogen as a ring hetero atom, e.g. guanethidine or rifamycins having six-membered rings with one nitrogen as the only ring hetero atom
- A61K31/4353—Heterocyclic compounds having nitrogen as a ring hetero atom, e.g. guanethidine or rifamycins having six-membered rings with one nitrogen as the only ring hetero atom ortho- or peri-condensed with heterocyclic ring systems
- A61K31/4375—Heterocyclic compounds having nitrogen as a ring hetero atom, e.g. guanethidine or rifamycins having six-membered rings with one nitrogen as the only ring hetero atom ortho- or peri-condensed with heterocyclic ring systems the heterocyclic ring system containing a six-membered ring having nitrogen as a ring heteroatom, e.g. quinolizines, naphthyridines, berberine, vincamine
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- A61K31/33—Heterocyclic compounds
- A61K31/395—Heterocyclic compounds having nitrogen as a ring hetero atom, e.g. guanethidine or rifamycins
- A61K31/435—Heterocyclic compounds having nitrogen as a ring hetero atom, e.g. guanethidine or rifamycins having six-membered rings with one nitrogen as the only ring hetero atom
- A61K31/44—Non condensed pyridines; Hydrogenated derivatives thereof
- A61K31/4427—Non condensed pyridines; Hydrogenated derivatives thereof containing further heterocyclic ring systems
- A61K31/444—Non condensed pyridines; Hydrogenated derivatives thereof containing further heterocyclic ring systems containing a six-membered ring with nitrogen as a ring heteroatom, e.g. amrinone
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- A61K31/33—Heterocyclic compounds
- A61K31/395—Heterocyclic compounds having nitrogen as a ring hetero atom, e.g. guanethidine or rifamycins
- A61K31/495—Heterocyclic compounds having nitrogen as a ring hetero atom, e.g. guanethidine or rifamycins having six-membered rings with two or more nitrogen atoms as the only ring heteroatoms, e.g. piperazine or tetrazines
- A61K31/50—Pyridazines; Hydrogenated pyridazines
- A61K31/5025—Pyridazines; Hydrogenated pyridazines ortho- or peri-condensed with heterocyclic ring systems
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- A61K9/2004—Excipients; Inactive ingredients
- A61K9/2013—Organic compounds, e.g. phospholipids, fats
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- A—HUMAN NECESSITIES
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- C—CHEMISTRY; METALLURGY
- C07—ORGANIC CHEMISTRY
- C07D—HETEROCYCLIC COMPOUNDS
- C07D471/00—Heterocyclic compounds containing nitrogen atoms as the only ring hetero atoms in the condensed system, at least one ring being a six-membered ring with one nitrogen atom, not provided for by groups C07D451/00 - C07D463/00
- C07D471/02—Heterocyclic compounds containing nitrogen atoms as the only ring hetero atoms in the condensed system, at least one ring being a six-membered ring with one nitrogen atom, not provided for by groups C07D451/00 - C07D463/00 in which the condensed system contains two hetero rings
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Landscapes
- Chemical & Material Sciences (AREA)
- Health & Medical Sciences (AREA)
- Organic Chemistry (AREA)
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- Biophysics (AREA)
- Molecular Biology (AREA)
- Pharmaceuticals Containing Other Organic And Inorganic Compounds (AREA)
- Nitrogen Condensed Heterocyclic Rings (AREA)
- Plural Heterocyclic Compounds (AREA)
- Nitrogen And Oxygen Or Sulfur-Condensed Heterocyclic Ring Systems (AREA)
- Medicinal Preparation (AREA)
Abstract
Description
本發明係關於可具有MALT1(黏膜相關淋巴組織蛋白質1(Mucosa associated lymphoid tissue protein 1))阻礙作用,被期待有用於作為癌症等之預防或治療藥之雜環化合物。
在擔負細胞性免疫之主要的T細胞、B細胞中,T細胞受體訊息及B細胞受體訊息在其機能中扮演重要的角色,此訊息傳遞異常成為以癌或炎症性疾患為代表之多種疾患的原因。實際上,在癌症之例中,已報導藉由屬於難治性淋巴瘤之一的ATL(成人T細胞白血病淋巴瘤)等源自T細胞之白血病淋巴瘤的患者的基因解析,在T細胞受體訊息/NF-κB路徑中可確認基因異常,此外,已報導在ABC型DLBCL(瀰漫性大細胞型B細胞淋巴瘤)及MCL(被套細胞淋巴瘤)等其他B細胞淋巴瘤中,B細胞受體訊息路徑/NF-κB路徑亦持續性地活化。
此等T細胞及B細胞受體訊息進行匯合之CBM蛋白質複合體係由支架蛋白質CARD11、轉接蛋白質BCL10及具有副半胱天冬酶(paracaspase)活性之MALT1所構成。CBM蛋白質複合體係受到T細胞受體訊息及B細胞受體訊息所促進形成,誘導MALT1所具有之副半胱天冬酶活性的亢進,活化轉錄因子NF-κB。
因此,阻礙MALT1的活性之阻礙劑被期待能夠修正T細胞受體訊息或B細胞受體訊息的異常所引發之MALT1活性亢進,被認為有用於作為起因於MALT1活性之癌症或炎症性疾患等之預防或治療藥。
本發明化合物被期待有用於預防或治療有受到MALT1影響之可能性之疾患(本文中有時略記為「MALT1相關疾患」。)。不限定於以下疾患,其被期待有用於預防或治療例如癌症[例如大腸癌(例如結腸癌、直腸癌、肛門癌、家族性大腸癌、遺傳性非息肉性大腸癌、消化管間質腫瘤等)、肺癌(例如非小細胞肺癌、小細胞肺癌、惡性中皮瘤等)、中皮瘤(mesothelioma)、胰臟癌(例如胰管癌、胰內分泌腫瘤等)、咽頭癌、喉頭癌、食道癌、胃癌(例如乳頭腺癌、黏液性腺癌、腺鱗狀上皮癌等)、十二指腸癌、小腸癌、乳癌(例如浸潤性乳管癌、非浸潤性乳管癌、炎症性乳癌等)、卵巢癌(例如上皮性卵巢癌、性腺外胚細胞腫瘤、卵巢性胚細胞腫瘤、卵巢低惡性度腫瘤等)、睪丸腫瘤、前列腺癌(例如激素依存性前列腺癌、激素非依存性前列腺癌、去勢療法抗性前列腺癌等)、肝臟癌(例如肝細胞癌、原發性肝癌、肝外膽管癌等)、甲狀腺癌(例如甲狀腺髓樣癌等)、腎臟癌(例如腎細胞癌(例如透明細胞型腎細胞癌等)、腎盂及輸尿管的移行上皮癌)、子宮癌(例如子宮頸部癌、子宮體部癌、子宮肉瘤等)、妊娠性絨毛癌、腦腫瘤(例如髓母細胞瘤、神經膠瘤、松果體星細胞腫瘤、毛樣細胞性星細胞瘤、瀰漫性星細胞瘤、退行性星細胞瘤、腦下垂體腺瘤等)、網膜母細胞瘤、皮膚癌(例如基底細胞瘤、惡性黑色素瘤(黑色素瘤)等)、肉瘤(例如橫紋肌肉瘤、平滑肌肉瘤、軟部肉瘤、紡錘細胞肉瘤、骨肉瘤等)、惡性骨腫瘤、膀胱癌、血液癌(例如多發性骨髓瘤、白血病(例如急性骨髓性白血病、急性淋巴球性白血病等)等)、惡性淋巴瘤(例如瀰漫性大細胞型B細胞淋巴瘤、被套細胞淋巴瘤、成人T細胞白血病淋巴瘤、慢
性骨髓增殖性疾患等)、霍奇金氏症(Hodgkin’s disease)、原發不明癌等],阻礙癌症的增殖,抑制轉移,促進細胞凋亡,或者預防或治療癌前病變(例如骨髓異型性症候群等)。此外,本發明化合物被期待有用於預防或治療自體免疫性疾患及/或炎症性疾患(例如腦脊髓炎、大腸炎、異位性疾患、類風濕性關節炎、多發性硬化症、全身性紅斑性狼瘡等)、骨疾患、代謝性疾患、神經學的疾患及神經變性疾患、癌症、循環器官疾患、過敏及氣喘、阿茲海默症(Alzheimer`s Disease)以及激素相關疾患炎症性疾患、病毒感染症(例如人類免疫不全病毒感染症等)、細菌感染症(例如敗血症等)。
在專利文獻1中,作為具有MALT1阻礙作用,有用於治療類風濕性關節炎、多發性硬化症、全身性紅斑性狼瘡、血管炎狀態等自體免疫性障礙及炎症性疾患、包含慢性骨髓性白血病、骨髓性白血病、非霍奇金氏淋巴瘤(non-Hodgkin's lymphoma)及其他B細胞淋巴瘤之源自造血系統之癌症或固態腫瘤等之化合物,已揭示下述化合物。
[式中,各記號係如該文獻所定義。]
在專利文獻2中,作為具有MALT1阻礙作用,有用於治療類風濕性關節炎、多發性硬化症、乾癬、薛格連氏症候群(Sjogren’s syndrome)、全身性紅斑性狼瘡、血管炎狀態等自體免疫性障礙及炎症性疾患、包含慢性骨髓性白血病、骨
髓性白血病、非霍奇金氏淋巴瘤及其他B細胞淋巴瘤之源自造血系統之癌症或固態腫瘤等之化合物,已揭示下述化合物。
[式中,各記號係如該文獻所定義。]
在專利文獻3中,作為具有MALT1阻礙作用,有用於治療自體免疫性障礙及炎症性疾患、癌症等之化合物,已揭示下述化合物。
[式中,各記號係如該文獻所定義。]
在專利文獻4中,作為具有阻礙MALT1及藉由補充E3泛素連接酶之促進MALT1蛋白質的分解兩種作用,有用於治療血液癌、淋巴性惡性疾患、白血病、淋巴瘤、多發性骨髓瘤等癌症等之化合物,已揭示下述化合物。
[式中,各記號係如該文獻所定義。]
[先前技術文獻]
[專利文獻]
[專利文獻1]WO2015/181747
[專利文獻2]WO2017/081641
[專利文獻3]WO2018/020474
[專利文獻4]WO2018/085247
本發明之目的為提供可具有MALT1阻礙作用,被期待有用於作為癌症等之預防或治療藥之新穎化合物,及含有該等之醫藥。
本發明者等人為了解決上述課題而致力檢討之結果,發現下述式(I)所示之化合物可具有優異的MALT1阻礙作用,遂完成本發明。
即,本發明係如下。
[1]一種式(I)所示之化合物或其鹽,或者其共結晶、水合物或溶媒合物(本說明書中,有時略記為「化合物(I)」):
(式中,
A表示
R1表示1)氫原子,2)鹵素原子,3)氰基,4)可經1~3個鹵素原子取代之C1-3烷基,5)C1-3烷氧基,6)C3-6環烷基,或7)苯基;
R2表示1)氫原子,或2)鹵素原子;
R3表示1)可經選自C1-3烷氧基、羥基及鹵素原子之1~3個取代基取代之C1-6烷基,2)可經選自C1-3烷基及鹵素原子之1~3個取代基取代之吡唑基,3)C3-6環烷基,4)經C1-3烷基二取代之胺基,或5)可經1~3個鹵素原子取代之苯基;
R4及R6表示1)氫原子,2)鹵素原子,3)可經選自下列者之1~3個取代基取
代之C1-3烷基:a)羥基、b)可經4-甲氧基苯基取代之C1-3烷氧基及c)鹵素原子,或4)可經1~3個鹵素原子取代之C1-3烷氧基;
R5、R7及R9表示1)可經1~3個C1-3烷氧基取代之C1-6烷基,或2)可經1~3個鹵素原子取代之苯基;
R8表示C1-3烷基;
B表示
1)可經選自下列者之1~3個取代基取代之苯基:a)鹵素原子、b)氰基、c)可經1~3個鹵素原子取代之C1-3烷氧基及d)三唑基,
2)可經選自下列者之1~3個取代基取代之C3-6環烷基:a)可經1~3個鹵素原子取代之C1-3烷基及b)鹵素原子,
3)可經選自下列者之1~3個取代基取代之吡啶基:a)鹵素原子、b)氰基、c)可經1~3個鹵素原子取代之C1-3烷基、d)可經選自鹵素原子及C1-3烷氧基之1~3個取代基取代之C1-3烷氧基、e)可經1~3個C1-3烷基取代之吡唑基、f)可經1~3個C1-3烷基取代之咪唑基、g)可經1~3個C1-3烷基取代之三唑基,該1~3個C1-3烷基可經選自C1-3烷氧基及鹵素原子之1~3個取代基取代、h)氮雜環丁基、i)吡咯啶酮基(pyrrolidonyl),j)可經1~3個C1-3烷基取代之四唑基、k)嘧啶基及l)唑基,
4)可經選自下列者之1~3個取代基取代之吡唑基:a)可經1~3個鹵素原子取代之C1-3烷基、b)可經1~3個鹵素原子取代之C1-3烷氧基、c)氰基及d)鹵素原子,或
5)可經1~3個鹵素原子取代之咪唑并吡啶基)。
[2]如[1]所記載之化合物,其中,A為
[3]如[1]所記載之化合物,其中,A為
[4]如[1]所記載之化合物,其中,A為
R1為1)鹵素原子,或2)C1-3烷基;
R2為氫原子;
R3為可經1~3個C1-3烷氧基取代之C1-6烷基;
R4為1)鹵素原子,或2)C1-3烷基;
R5為可經1~3個C1-3烷氧基取代之C1-6烷基;
B為可經選自下列者之1~3個取代基取代之吡啶基:a)鹵素原子、b)氰基、c)可經1~3個鹵素原子取代之C1-3烷基、d)可經1~3個鹵素原子取代之C1-3烷
氧基及e)三唑基。
[5]如[1]所記載之化合物,其係
[8]一種醫藥,其係含有[1]所記載之化合物或其鹽,或者其共結晶、水合物或溶媒合物而成者。
[9]如[8]所記載之醫藥,其係MALT1阻礙藥。
[10]如[8]所記載之醫藥,其係癌症之預防或治療藥。
本發明之化合物可具有MALT1阻礙作用,可有用於作為例如癌症等之預防或治療藥等醫藥。
以下,針對本說明書中所使用之各取代基的定義進行詳述。在沒有特別註記之前提下,各取代基具有以下定義。
本說明書中,作為「鹵素原子」,可列舉例如氟、氯、溴、碘。
本說明書中,作為「C1-6烷基」,可列舉例如甲基、乙基、丙基、異丙基、丁基、異丁基、第二丁基、第三丁基、戊基、異戊基、新戊基、1-乙基丙基、己基、異己基、1,1-二甲基丁基、2,2-二甲基丁基、3,3-二甲基丁基、2-乙基丁基。
本說明書中,作為「C3-6環烷基」,可列舉例如環丙基、環丁基、環戊基、環己基。
本說明書中,作為「C1-3烷氧基」,可列舉例如甲氧基、乙氧基、丙氧基、異丙氧基。
本說明書中,作為「經C1-3烷基二取代之胺基」,可列舉例如二甲基胺基、乙基甲基胺基、二乙基胺基、乙基丙基胺基、二丙基胺基。
本說明書中,作為「C1-3烷基」,可列舉上述「C1-6烷基」中之碳數為1~3個者。
以下,針對式(I)中之各記號的定義進行詳述。
A表示
。A較佳為
在本發明之一適合的實施態樣中,A為
,在本發明之另一適合的實施態樣中,A為
。
R1表示1)氫原子,2)鹵素原子(例如氯原子、溴原子),3)氰基,4)可經1~3個鹵素原子(例如氟原子)取代之C1-3烷基(例如甲基),5)C1-3烷氧基(例如甲氧基),6)C3-6環烷基(例如環丙基),或7)苯基。
R1更佳為1)鹵素原子(例如氯原子),或2)C1-3烷基(例如甲基)。
R2表示1)氫原子,或2)鹵素原子(例如氟原子、氯原子)。
R2較佳為氫原子。
R3表示1)可經選自C1-3烷氧基(例如甲氧基)、羥基及鹵素原子(例如氟原子)之1~3個取代基取代之C1-6烷基(例如乙基、異丙基、第二丁基),2)可經選自C1-3烷基(例如甲基)及鹵素原子(例如氯原子)之1~3個取代基取代之吡唑基(例如4-吡唑基),3)C3-6環烷基(例如環丙基),4)經C1-3烷基(例如甲基)二取代之胺基,或5)可經1~3個鹵素原子(例如氯原子)取代之苯基。
R3較佳為可經1~3個C1-3烷氧基(例如甲氧基)取代之C1-6烷基(例如乙基、異丙基)。
R4及R6表示1)氫原子,2)鹵素原子(例如氯原子),3)可經選自下列者之1~3個取代基取代之C1-3烷基(例如甲基、乙基):a)羥基、b)可經4-甲氧基苯基取代之C1-3烷氧基(例如甲氧基)及c)鹵素原子(例如氟原子),或4)可經1~3個鹵素原子(例如氟原子)取代之C1-3烷氧基(例如甲氧基、乙氧基)。
R4較佳為1)鹵素原子(例如氯原子),或2)C1-3烷基(例如甲基)。
R6較佳為1)氫原子,2)鹵素原子(例如氯原子),3)C1-3烷基(例如甲基),或4)C1-3烷氧基(例如甲氧基)。
R5、R7及R9表示1)可經1~3個C1-3烷氧基(例如甲氧基、乙氧基)取代之C1-6烷基(例如乙基、異丙基),或2)可經1~3個鹵素原子(例如氯原子)取代之苯基。
R5較佳為可經1~3個C1-3烷氧基(例如甲氧基)取代之C1-6烷基(例如乙基)。
R7較佳為1)可經1~3個C1-3烷氧基(例如甲氧基)取代之C1-6烷基(例如乙基、異丙基),或2)可經1~3個鹵素原子(例如氯原子)取代之苯基。
R9較佳為可經1~3個C1-3烷氧基(例如甲氧基)取代之C1-3烷基(例如乙基)。
R8表示C1-3烷基(例如甲基)。
B表示
1)可經選自下列者之1~3個取代基取代之苯基:a)鹵素原子(例如氟原子、氯原子)、b)氰基、c)可經1~3個鹵素原子(例如氟原子)取代之C1-3烷氧基(例如甲氧基)及d)三唑基,
2)可經選自下列者之1~3個取代基取代之C3-6環烷基(例如環己基):a)可經1~3個鹵素原子(例如氟原子)取代之C1-3烷基(例如甲基)及b)鹵素原子(例如氟原子),
3)可經選自下列者之1~3個取代基取代之吡啶基:a)鹵素原子(例如氟原子、氯原子、溴原子)、b)氰基、c)可經1~3個鹵素原子(例如氟原子)取代之C1-3烷基(例如甲基)、d)可經選自鹵素原子(例如氟原子)及C1-3烷氧基(例如甲氧基)之1~3個取代基取代之C1-3烷氧基(例如甲氧基、乙氧基)、e)可經1~3個C1-3
烷基(例如甲基)取代之吡唑基、f)可經1~3個C1-3烷基(例如甲基)取代之咪唑基、g)可經1~3個C1-3烷基(例如甲基)取代之三唑基,該1~3個C1-3烷基可經選自C1-3烷氧基(例如甲氧基)及鹵素原子(例如氟原子)之1~3個取代基取代、h)氮雜環丁基、i)吡咯啶酮基、j)可經1~3個C1-3烷基(例如甲基)取代之四唑基、k)嘧啶基及l)唑基,
4)可經選自下列者之1~3個取代基取代之吡唑基:a)可經1~3個鹵素原子(例如氟原子)取代之C1-3烷基(例如甲基、乙基、異丙基)、b)可經1~3個鹵素原子(例如氟原子)取代之C1-3烷氧基(例如甲氧基)、c)氰基及d)鹵素原子(例如氯原子),或
5)可經1~3個鹵素原子(例如氯原子)取代之咪唑并吡啶基。
B較佳為可經選自下列者之1~3個取代基取代之吡啶基:a)鹵素原子(例如氯原子)、b)氰基、c)可經1~3個鹵素原子(例如氟原子)取代之C1-3烷基(例如甲基)、d)可經1~3個鹵素原子(例如氟原子)取代之C1-3烷氧基(例如甲氧基)及e)三唑基。
作為化合物(I)之適合例,可列舉以下化合物。
[化合物I-1]
化合物(I),其中,
A為
;
R1為1)氫原子,2)鹵素原子(例如氯原子、溴原子),3)氰基,4)可經1~3個鹵素原子(例如氟原子)取代之C1-3烷基(例如甲基),5)C1-3烷氧基(例如甲氧基),6)C3-6環烷基(例如環丙基),或7)苯基;
R2為1)氫原子,或2)鹵素原子(例如氟原子、氯原子);
R3為1)可經選自C1-3烷氧基(例如甲氧基)、羥基及鹵素原子(例如氟原子)之1~3個取代基取代之C1-6烷基(例如乙基、異丙基、第二丁基),2)可經選自C1-3烷基(例如甲基)及鹵素原子(例如氯原子)之1~3個取代基取代之吡唑基(例如4-吡唑基),3)C3-6環烷基(例如環丙基),4)經C1-3烷基(例如甲基)二取代之胺基,或5)可經1~3個鹵素原子(例如氯原子)取代之苯基;
R4為1)氫原子,2)鹵素原子(例如氯原子),3)可經選自下列者之1~3個取代基取代之C1-3烷基(例如甲基、乙基):a)羥基、b)可經4-甲氧基苯基取代之C1-3烷氧基(例如甲氧基)及c)鹵素原子(例如氟原子),或4)可經1~3個鹵素原子(例如氟原子)取代之C1-3烷氧基(例如甲氧基、乙氧基);
R5為1)可經1~3個C1-3烷氧基(例如甲氧基、乙氧基)取代之C1-6烷基(例如乙基、異丙基),或2)可經1~3個鹵素原子(例如氯原子)取代之苯基;
R6為1)氫原子,2)鹵素原子(例如氯原子),3)C1-3烷基(例如甲基),或4)C1-3
烷氧基(例如乙氧基);
R7為1)可經1~3個C1-3烷氧基(例如甲氧基)取代之C1-6烷基(乙基、異丙基),或2)可經1~3個鹵素原子(例如氯原子)取代之苯基;
R8為C1-3烷基(例如甲基);
R9為可經1~3個C1-3烷氧基(例如甲氧基)取代之C1-3烷基(例如乙基);
B為
1)可經選自下列者之1~3個取代基取代之苯基:a)鹵素原子(例如氟原子、氯原子)、b)氰基、c)可經1~3個鹵素原子(例如氟原子)取代之C1-3烷氧基(例如甲氧基)及d)三唑基,
2)可經選自下列者之1~3個取代基取代之C3-6環烷基(例如環己基):a)可經1~3個鹵素原子(例如氟原子)取代之C1-3烷基(例如甲基)及b)鹵素原子(例如氟原子),
3)可經選自下列者之1~3個取代基取代之吡啶基:a)鹵素原子(例如氟原子、氯原子、溴原子)、b)氰基、c)可經1~3個鹵素原子(例如氟原子)取代之C1-3烷基(例如甲基)、d)可經選自鹵素原子(例如氟原子)及C1-3烷氧基(例如甲氧基)之1~3個取代基取代之C1-3烷氧基(例如甲氧基、乙氧基)、e)可經1~3個C1-3烷基(例如甲基)取代之吡唑基、f)可經1~3個C1-3烷基(例如甲基)取代之咪唑基、g)可經1~3個C1-3烷基(例如甲基)取代之三唑基,該1~3個C1-3烷基可經選自C1-3烷氧基(例如甲氧基)及鹵素原子(例如氟原子)之1~3個取代基取代、h)氮雜環丁基、i)吡咯啶酮基、j)可經1~3個C1-3烷基(例如甲基)取代之四唑基、k)嘧啶基及l)唑基,
4)可經選自下列者之1~3個取代基取代之吡唑基:a)可經1~3個鹵素原子
(例如氟原子)取代之C1-3烷基(例如甲基、乙基、異丙基)、b)可經1~3個鹵素原子(例如氟原子)取代之C1-3烷氧基(例如甲氧基)、c)氰基及d)鹵素原子(例如氯原子),或
5)可經1~3個鹵素原子(例如氯原子)取代之咪唑并吡啶基。
[化合物I-2]
化合物(I),其中,
A為
;
R1為1)鹵素原子(例如氯原子),或2)C1-3烷基(例如甲基);
R2為氫原子;
R3為可經1~3個C1-3烷氧基(例如甲氧基)取代之C1-6烷基(例如乙基、異丙基);
R4為1)鹵素原子(例如氯原子),或2)C1-3烷基(例如甲基);
R5為可經1~3個C1-3烷氧基(例如甲氧基)取代之C1-6烷基(例如乙基);
B為可經選自下列者之1~3個取代基取代之吡啶基:a)鹵素原子(例如氯原子)、b)氰基、c)可經1~3個鹵素原子(例如氟原子)取代之C1-3烷基(例如甲基)、d)可經1~3個鹵素原子(例如氟原子)取代之C1-3烷氧基(例如甲氧基)及e)三唑基。
[化合物I-3]
化合物(I),其中,
A為
;
R1為C1-3烷基(例如甲基);
R2為氫原子;
R3為經1~3個C1-3烷氧基(例如甲氧基)取代之C1-6烷基(例如乙基、異丙基);
R4為1)鹵素原子(例如氯原子),或2)C1-3烷基(例如甲基);
R5為可經1~3個C1-3烷氧基(例如甲氧基)取代之C1-6烷基(例如乙基);
B為可經選自下列者之1~3個取代基取代之吡啶基:a)鹵素原子(例如氯原子)、b)可經1~3個鹵素原子(例如氟原子)取代之C1-3烷基(例如甲基)、c)可經1~3個鹵素原子(例如氟原子)取代之C1-3烷氧基(例如甲氧基),及d)三唑基。
[化合物I-4]
化合物(I),其中,
A為
;
R1為1)氫原子,2)鹵素原子(例如氯原子、溴原子),3)氰基,4)可經1~3個鹵素原子(例如氟原子)取代之C1-3烷基(例如甲基),5)C1-3烷氧基(例如甲氧基),6)C3-6環烷基(例如環丙基),或7)苯基;
R2為1)氫原子,或2)鹵素原子(例如氟原子、氯原子);
R3為1)可經選自C1-3烷氧基(例如甲氧基)、羥基及鹵素原子(例如氟原子)之1~3個取代基取代之C1-6烷基(例如乙基、異丙基、第二丁基),2)可經選自C1-3烷基(例如甲基)及鹵素原子(例如氯原子)之1~3個取代基取代之吡唑基(例如4-吡唑基),3)C3-6環烷基(例如環丙基),4)經C1-3烷基(例如甲基)二取代之胺基,或5)可經1~3個鹵素原子(例如氯原子)取代之苯基;
B為
1)可經選自下列者之1~3個取代基取代之苯基:a)鹵素原子(例如氟原子、氯原子)、b)氰基、c)可經1~3個鹵素原子(例如氟原子)取代之C1-3烷氧基(例如甲氧基)及d)三唑基,
2)可經選自下列者之1~3個取代基取代之吡啶基:a)鹵素原子(例如氯原子、溴原子)、b)氰基、c)可經1~3個鹵素原子(例如氟原子)取代之C1-3烷基(例如甲基)、d)可經1~3個鹵素原子(例如氟原子)取代之C1-3烷氧基(例如甲氧基)、e)可經1~3個C1-3烷基(例如甲基)取代之吡唑基、f)可經1~3個C1-3烷基(例如甲基)取代之咪唑基、g)可經1~3個C1-3烷基(例如甲基)取代之三唑基,該1~3個C1- 3烷基可經選自C1-3烷氧基(例如甲氧基)及鹵素原子(例如氟原子)之1~3個取代基取代及h)唑基,
3)可經選自下列者之1~3個取代基取代之吡唑基:a)可經1~3個鹵素原子(例如氟原子)取代之C1-3烷基(例如甲基)、b)可經1~3個鹵素原子(例如氟原子)取代之C1-3烷氧基(例如甲氧基)、c)氰基及d)鹵素原子(例如氯原子),或
4)可經1~3個鹵素原子(例如氯原子)取代之咪唑并吡啶基。
[化合物I-5]
化合物(I),其中,
A為
;
R4為1)氫原子,2)鹵素原子(例如氯原子),3)可經選自下列者之1~3個取代基取代之C1-3烷基(例如甲基、乙基):a)羥基、b)可經4-甲氧基苯基取代之C1-3烷氧基(例如甲氧基)及c)鹵素原子(例如氟原子),或4)可經1~3個鹵素原子(例如氟原子)取代之C1-3烷氧基(例如甲氧基、乙氧基);
R5為1)可經1~3個C1-3烷氧基(例如甲氧基、乙氧基)取代之C1-6烷基(例如乙基、異丙基),或2)可經1~3個鹵素原子(例如氯原子)取代之苯基;
B為
1)可經1~3個鹵素原子(例如氟原子)取代之苯基,
2)可經選自下列者之1~3個取代基取代之C3-6環烷基(例如環己基):a)可經1~3個鹵素原子(例如氟原子)取代之C1-3烷基(例如甲基)及b)鹵素原子(例如氟原子),
3)可經選自下列者之1~3個取代基取代之吡啶基:a)鹵素原子(例如氟原子、氯原子、溴原子)、b)氰基、c)可經1~3個鹵素原子(例如氟原子)取代之C1-3烷基(例如甲基)、d)可經選自鹵素原子(例如氟原子)及C1-3烷氧基(例如甲氧基)之1~3個取代基取代之C1-3烷氧基(例如甲氧基、乙氧基)、e)可經1~3個C1-3烷基(例如甲基)取代之三唑基,該1~3個C1-3烷基可經選自C1-3烷氧基(例如甲氧基)及鹵素原子(例如氟原子)之1~3個取代基取代、f)氮雜環丁基、g)吡咯啶酮基、h)可經選自C1-3烷基(例如甲基)之1~3個取代基取代之四唑基、i)嘧啶基及j)唑基,或
4)可經1~3個C1-3烷基(例如甲基、乙基、異丙基)取代之吡唑基,該1~3個C1-3烷基可經1~3個鹵素原子(例如氟原子)取代。
[化合物I-6]
化合物(I),其中,
A為
;
R6為1)氫原子,2)鹵素原子(例如氯原子),3)C1-3烷基(例如甲基),或4)C1-3
烷氧基(例如乙氧基);
R7為1)可經1~3個C1-3烷氧基(例如甲氧基)取代之C1-6烷基(乙基、異丙基),或2)可經1~3個鹵素原子(例如氯原子)取代之苯基;
B為
1)可經1~3個鹵素原子(例如氟原子)取代之苯基,或
2)可經選自下列者之1~3個取代基取代之吡啶基:a)鹵素原子(例如氯原子)、b)氰基、c)可經1~3個鹵素原子(例如氟原子)取代之C1-3烷基(例如甲基)、d)可經1~3個鹵素原子(例如氟原子)取代之C1-3烷氧基(例如甲氧基)及e)三唑基。
[化合物I-7]
化合物(I),其中,
A為
R8為C1-3烷基(例如甲基);
R9為可經1~3個C1-3烷氧基(例如甲氧基)取代之C1-3烷基(例如乙基);
B為可經選自下列者之1~3個取代基取代之吡啶基:a)鹵素原子(例如氯原子)、b)可經1~3個鹵素原子(例如氟原子)取代之C1-3烷基(例如甲基)、c)C1-3烷氧基(例如甲氧基)及d)三唑基。
[化合物I-8]
[化合物I-9]
作為式(I)所示之化合物之鹽,較佳為藥理學上可容許之鹽,作為此種鹽,可列舉例如與無機鹼之鹽、與有機鹼之鹽、與無機酸之鹽、與有機酸之鹽、與鹼性或酸性胺基酸之鹽。
作為與無機鹼之鹽之適合例,可列舉鈉鹽、鉀鹽等鹼金屬鹽;鈣鹽、鎂鹽等鹼土族金屬鹽;鋁鹽;銨鹽。
作為與有機鹼之鹽之適合例,可列舉與三甲基胺、三乙基胺、吡啶、甲吡啶、乙醇胺、二乙醇胺、三乙醇胺、參(羥甲基)胺基甲烷[參(羥基甲基)甲基胺]、第三丁基胺、環己基胺、苄基胺、二環己基胺、N,N-二苄基乙二胺之鹽。
作為與無機酸之鹽之適合例,可列舉與氯化氫、溴化氫、硝酸、硫酸、磷酸之鹽。
作為與有機酸之鹽之適合例,可列舉與甲酸、醋酸、三氟醋酸、酞酸、富馬酸、草酸、酒石酸、馬來酸、檸檬酸、琥珀酸、蘋果酸、甲磺酸、苯磺酸、對甲苯磺酸之鹽。
作為與鹼性胺基酸之鹽之適合例,可列舉與精胺酸、離胺酸、鳥胺酸之鹽。
作為與酸性胺基酸之鹽之適合例,可列舉與天冬胺酸、麩胺酸之鹽。
以下針對本發明化合物之製造法進行說明。
以下製造方法中之各步驟所使用之原料或試劑,以及所獲得之化合物亦可
各自形成鹽。作為此種鹽,可列舉例如與前述本發明化合物之鹽同樣者等。
在各步驟所獲得之化合物為游離化合物之情況,可藉由本身公知的方法,轉換成目標的鹽。相反地,在各步驟所獲得之化合物為鹽之情況,可藉由本身公知的方法,轉換成游離體或目標的其他種類的鹽。
各步驟所獲得之化合物可依反應液原樣,或以粗生成物之形式獲得後,用於下一反應中,或者,可依照常法,藉由濃縮、結晶析出、再結晶、蒸餾、溶媒萃取、分餾、層析等分離手段將各步驟所獲得之化合物自反應混合物中予以單離及/或精製。
在各步驟之原料或試劑的化合物已市售之情況,可依原樣使用市售品。
在各步驟之反應中,反應時間可依所使用之試劑或溶媒而有所不同,在沒有特別記載之情況,通常為1分鐘~48小時,較佳為10分鐘~24小時。
在各步驟之反應中,反應溫度可依所使用之試劑或溶媒而有所不同,在沒有特別記載之情況,通常為-78℃~300℃,較佳為-78℃~150℃。
在各步驟之反應中,壓力可依所使用之試劑或溶媒而有所不同,在沒有特別記載之情況,通常為1氣壓~20氣壓,較佳為1氣壓~3氣壓。
在各步驟之反應中,有時使用例如Biotage公司製Initiator等Microwave合成裝置。反應溫度可依所使用之試劑或溶媒而有所不同,在沒有特別記載之情況,通常為室溫~300℃,較佳為50℃~250℃。反應時間可依所使用之試劑或溶媒而有所不同,在沒有特別記載之情況,通常為1分鐘~48小時,較佳為1分鐘~8小時。
在各步驟之反應中,試劑在沒有特別記載之情況,係相對於基質而言使用0.5當量~20當量,較佳為0.8當量~5當量。在使用試劑作為觸媒之情況,試劑係相對於基質而言使用0.001當量~1當量,較佳為0.01當量~0.2當量。在試劑兼作反應溶媒之情況,試劑係使用溶媒量。
在各步驟之反應中,在沒有特別記載之情況,此等反應係以無溶媒,或者溶解或懸浮於適當的溶媒中而施行。作為溶媒之具體例,可列舉實施例所記載之溶媒,或者以下。醇類:甲醇、乙醇、第三丁基醇、2-甲氧基乙醇等;醚類:二乙基醚、二苯基醚、四氫呋喃、1,2-二甲氧基乙烷等;芳香族烴類:氯苯、甲苯、二甲苯等;飽和烴類:環己烷、己烷等;醯胺類:N,N-二甲基甲醯胺、N-甲基吡咯啶酮等;鹵化烴類:二氯甲烷、四氯化碳等;腈類:乙腈等;亞碸類:二甲基亞碸等;芳香族有機鹼類:吡啶等;酸酐類:醋酸酐等;有機酸類:甲酸、醋酸、三氟醋酸等;無機酸類:鹽酸、硫酸等;酯類:醋酸乙酯等;酮類:丙酮、甲基乙基酮等;水。
上述溶媒亦可以適宜的比例混合使用二種以上。
在各步驟之反應中,在使用鹼之情況,係使用例如以下所示之鹼,或者實施例所記載之鹼。無機鹼類:氫氧化鈉、氫氧化鎂、碳酸鈉、碳酸鈣、碳酸氫鈉等;有機鹼類:三乙基胺、二乙基胺、吡啶、4-二甲基胺基吡啶、N,N-二甲基苯胺、1,4-二氮雜雙環[2.2.2]辛烷、1,8-二氮雜雙環[5.4.0]-7-十一烯、咪唑、哌啶等;金屬烷氧化物類:乙氧化鈉、第三丁氧化鉀等;鹼金屬氫化物類:氫化鈉等;金屬胺類:胺化鈉、二異丙基胺化鋰、六甲基二矽胺化鋰等;有機鋰類:正丁基鋰等。
在各步驟之反應中,在使用酸或酸性觸媒之情況,係使用例如以下所示之酸或酸性觸媒,或者實施例所記載之酸或酸性觸媒。無機酸類:鹽酸、硫酸、硝酸、氫溴酸、磷酸等;有機酸類:醋酸、三氟醋酸、檸檬酸、對甲苯磺酸、10-樟腦磺酸等;路易士酸:三氟化硼二乙基醚錯合物、碘化鋅、無水氯化鋁、無水氯化鋅、無水氯化鐵等。
各步驟之反應在沒有特別記載之前提下,係按照本身公知的方法,例如第5版實驗化學講座,13卷~19卷(日本化學會編);新實驗化學講座,14卷~15卷(日本化學會編);精密有機化學 修訂第2版(L.F.Tietze,Th.Eicher,南江堂);修訂 有機人名反應 其結構及要點(東鄉秀雄著,講談社);ORGANIC SYNTHESES Collective Volume I~VII(John Wiley & Sons Inc);Modern Organic Synthesis in the Laboratory A Collection of Standard Experimental Procedures(Jie Jack
Li著,OXFORD UNIVERSITY出版);Comprehensive Heterocyclic Chemistry III,Vol.1~Vol.14(Elsevier Japan股份有限公司);向人名反應學習之有機合成戰略(富岡清監譯,化學同人發行);Comprehensive Organic Transformations(VCH Publishers Inc.)1989年刊等所記載之方法,或者實施例所記載之方法施行。
在各步驟中,官能基的保護或脫保護反應係按照本身公知的方法,例如Wiley-Interscience公司2007年刊「Protective Groups in Organic Synthesis,4th Ed.」(Theodora W.Greene,Peter G.M.Wuts著);Thieme公司2004年刊「Protecting Groups 3rd Ed.」(P.J.Kocienski著)等所記載之方法,或者實施例所記載之方法施行。
作為醇等之羥基或酚性羥基之保護基,可列舉例如甲氧基甲基醚、苄基醚、第三丁基二甲基矽基醚、四氫哌喃基醚等醚型保護基;醋酸酯等羧酸酯型保護基;甲磺酸酯等磺酸酯型保護基;碳酸第三丁酯等碳酸酯型保護基等。
作為羧基之保護基,可列舉例如甲酯等酯型保護基;N,N-二甲基醯胺等醯胺型保護基等。
作為硫醇基之保護基,可列舉例如苄基硫基醚等醚型保護基;硫代醋酸酯、硫代碳酸酯、硫代胺甲酸酯等酯型保護基等。
作為胺基,或咪唑、吡咯、吲哚等芳香族雜環之保護基,可列舉例如胺甲酸
苄酯等胺甲酸酯型保護基;乙醯胺等醯胺型保護基;N-三苯基甲基胺等烷基胺型保護基、甲烷磺醯胺等磺醯胺型保護基等。
保護基的去除可使用本身公知的方法,例如使用酸、鹼、紫外光、肼、苯基肼、N-甲基二硫代胺甲酸鈉、四丁基銨氟化物、醋酸鈀、三烷基矽基鹵化物(例如三甲基矽基碘化物、三甲基矽基溴化物)之方法或還原法等施行。
在各步驟中,在施行還原反應之情況,作為所使用之還原劑,可列舉氫化鋁鋰、氫化三乙醯氧基硼鈉、氫化氰基硼鈉、氫化二異丁基鋁(DIBAL-H)、硼氫化鈉、氫化三乙醯氧基硼四甲基銨等金屬氫化物類;硼烷四氫呋喃錯合物等硼烷類;雷氏鎳;雷氏鈷;氫;甲酸;三乙基矽烷等。在將碳-碳雙鍵或者三鍵進行還原之情況,有使用鈀-碳或Lindlar觸媒等觸媒之方法。
在各步驟中,在施行氧化反應之情況,作為所使用之氧化劑,可列舉間氯過氧苯甲酸(mCPBA)、過氧化氫、第三丁基氫過氧化物等過酸類;過氯酸四丁基銨等過氯酸鹽類;氯酸鈉等氯酸鹽類;亞氯酸鈉等亞氯酸鹽類;過碘酸鈉等過碘酸類;亞碘醯苯等高原子價碘試劑;二氧化錳、過錳酸鉀等具有錳之試劑;四醋酸鉛等鉛類;氯鉻酸吡啶鎓(PCC)、二鉻酸吡啶鎓(PDC)、瓊斯試劑(Jones reagent)等具有鉻之試劑;N-溴琥珀醯亞胺(NBS)等鹵化合物類;氧;臭氧;三氧化硫/吡啶錯合物;四氧化鋨;二氧化硒;2,3-二氯-5,6-二氰基-1,4-苯醌(DDQ)等。
在各步驟中,在施行自由基環化反應之情況,作為所使用之自由基起始劑,可列舉偶氮雙異丁腈(AIBN)等偶氮化合物;4,4’-偶氮雙-4-氰基戊酸(ACPA)等水溶性自由基起始劑;在空氣或者氧存在下之三乙基硼;過氧化苯甲醯基等。此外,作為所使用之自由基反應試劑,可列舉三丁基錫烷、參三甲基矽基矽烷、1,1,2,2-四苯基二矽烷、二苯基矽烷、碘化釤等。
在各步驟中,在施行Wittig反應之情況,作為所使用之Wittig試劑,可列舉亞烷基正膦類等。亞烷基正膦類可藉由本身公知的方法,例如使鏻鹽與強鹼進行反應而予以調製。
在各步驟中,在施行Horner-Emmons反應之情況,作為所使用之試劑,可列舉二甲基膦醯基醋酸甲酯、二乙基膦醯基醋酸乙酯等膦醯基醋酸酯類;鹼金屬氫化物類、有機鋰類等鹼。
在各步驟中,在施行Friedel-Crafts反應之情況,作為所使用之試劑,可列舉路易士酸與醯氯之組合,或者路易士酸與烷基化劑(例如鹵化烷基類、醇、烯烴類等)之組合。或者,亦可使用有機酸或無機酸來代替路易士酸,亦可使用醋酸酐等酸酐來代替醯氯。
在各步驟中,在施行芳香族親核取代反應之情況,作為試劑,係使用親核劑(例如胺類、咪唑等)及鹼(例如有機鹼類等)。
在各步驟中,在施行經由碳陰離子之親核加成反應、經由碳陰離子之親核1,4-加成反應(Michael加成反應)或者經由碳陰離子之親核取代反應之情況,作為用於產生碳陰離子之鹼,可列舉有機鋰類、金屬烷氧化物類、無機鹼類、有機鹼類等。
在各步驟中,在施行Grignard反應之情況,作為Grignard試劑,可列舉苯基鎂溴化物等芳基鎂鹵化物類;甲基鎂溴化物等烷基鎂鹵化物類。Grignard試劑可藉由本身公知的方法,例如以醚或者四氫呋喃作為溶媒,使鹵化烷基或鹵化芳基與金屬鎂進行反應而予以調製。
在各步驟中,在施行Knoevenagel縮合反應之情況,作為試劑,係使用夾在二個吸電子基中之活性亞甲基化合物(例如丙二酸、丙二酸二乙酯、
丙二腈等)及鹼(例如有機鹼類、金屬烷氧化物類、無機鹼類)。
在各步驟中,在施行Vilsmeier-Haack反應之情況,作為試劑,係使用磷醯氯及醯胺衍生物(例如N,N-二甲基甲醯胺等)。
在各步驟中,在施行醇類、烷基鹵化物類、磺酸酯類之疊氮化反應之情況,作為所使用之疊氮化劑,可列舉二苯基磷酸疊氮化物(DPPA)、三甲基矽基疊氮化物、疊氮化鈉等。例如,在將醇類進行疊氮化之情況,有使用二苯基磷酸疊氮化物(DPPA)及1,8-二氮雜雙環[5.4.0]十一-7-烯(DBU)之方法或使用三甲基矽基疊氮化物及路易士酸之方法等。
在各步驟中,在施行還原性胺基化反應之情況,作為所使用之還原劑,可列舉氫化三乙醯氧基硼鈉、氫化氰基硼鈉、氫、甲酸等。在基質為胺化合物之情況,作為所使用之羰基化合物,可列舉多聚甲醛,除此以外,乙醛等醛類、環己酮等酮類。在基質為羰基化合物之情況,作為所使用之胺類,可列舉氨;甲基胺等一級胺;二甲基胺等二級胺等。
在各步驟中,在施行光延反應之情況,作為試劑,係使用偶氮二羧酸酯類(例如偶氮二羧酸二乙酯(DEAD)、偶氮二羧酸二異丙酯(DIAD)等)及三苯基膦。
在各步驟中,在施行酯化反應、醯胺化反應或脲化反應之情況,作為所使用之試劑,可列舉醯氯、醯溴等鹵化醯基體;酸酐、活性酯體、硫酸酯體等經活化之羧酸類。作為羧酸之活化劑,可列舉1-乙基-3-(3-二甲基胺基丙基)碳二亞胺鹽酸鹽(WSCD)等碳二亞胺系縮合劑;4-(4,6-二甲氧基-1,3,5-三-2-基)-4-甲基嗎啉鎓氯化物-n-水合物(DMT-MM)等三系縮合劑;1,1-羰基二咪唑(CDI)等碳酸酯系縮合劑;二苯基磷酸疊氮化物(DPPA);苯并三唑-1-基氧基-參二甲基
胺基鏻鹽(BOP試劑);碘化2-氯-1-甲基-吡啶鎓(向山試劑);亞硫醯氯;氯甲酸乙酯等鹵甲酸低級烷酯;O-(7-氮雜苯并三唑-1-基)-N,N,N’,N’-四甲基脲鎓六氟磷酸鹽(HATU);硫酸;或者此等之組合等。在使用碳二亞胺系縮合劑情況,亦可進一步將1-羥基苯并三唑(HOBt)、N-羥基琥珀酸醯亞胺(HOSu)、4-二甲基胺基吡啶(DMAP)等添加劑加至反應中。
在各步驟中,在施行偶合反應之情況,作為所使用之金屬觸媒,可列舉醋酸鈀(II)、肆(三苯基膦)鈀(0)、二氯雙(三苯基膦)鈀(II)、二氯雙(三乙基膦)鈀(II)、參(二亞苄基丙酮)二鈀(0)、氯化1,1’-雙(二苯基膦基)二茂鐵鈀(II)等鈀化合物;肆(三苯基膦)鎳(0)等鎳化合物;氯化參(三苯基膦)銠(III)等銠化合物;鈷化合物;氧化銅、碘化銅(I)等銅化合物;鉑化合物等。亦可進一步將鹼加至反應中,作為此種鹼,可列舉無機鹼類等。
在各步驟中,在施行硫代羰基化反應之情況,作為硫代羰基化劑,代表性地,係使用五硫化二磷,除了五硫化二磷以外,亦可使用2,4-雙(4-甲氧基苯基)-1,3,2,4-二硫雜二磷雜環丁烷-2,4-二硫化物(Lawesson試劑)等持有1,3,2,4-二硫雜二磷雜環丁烷-2,4-二硫化物結構之試劑。
在各步驟中,在施行Wohl-Ziegler反應之情況,作為所使用之鹵化劑,可列舉N-碘琥珀酸醯亞胺、N-溴琥珀酸醯亞胺(NBS)、N-氯琥珀酸醯亞胺(NCS)、溴、硫醯氯等。再者,可藉由將熱、光、過氧化苯甲醯基、偶氮雙異丁腈等自由基起始劑加至反應中,而使反應加速。
在各步驟中,在施行羥基之鹵化反應之情況,作為所使用之鹵化劑,可列舉鹵化氫酸與無機酸之醯鹵化物,具體而言,就氯化而言,可列舉鹽酸、亞硫醯氯、氧氯化磷等,就溴化而言,可列舉48%氫溴酸等。此外,亦可使用
藉由三苯基膦與四氯化碳或四溴化碳等之作用,而自醇獲得鹵化烷基體之方法。或者,亦可使用歷經將醇轉換成磺酸酯之後,使其與溴化鋰、氯化鋰或碘化鈉進行反應之二階段反應而合成鹵化烷基體之方法。
在各步驟中,在施行Arbuzov反應之情況,作為所使用之試劑,可列舉溴醋酸乙酯等鹵化烷基類;亞磷酸三乙酯或亞磷酸三(異丙基)酯等亞磷酸酯類。
在各步驟中,在施行磺酸酯化反應之情況,作為所使用之磺醯基化劑,可列舉甲烷磺醯基氯化物、對甲苯磺醯基氯化物、甲烷磺酸酐、對甲苯磺酸酐等。
在各步驟中,在施行水解反應之情況,作為試劑,係使用酸或鹼。此外,在施行第三丁酯之酸水解反應之情況,為了還原性地捕集所副產生之第三丁基陽離子,有時加入甲酸或三乙基矽烷等。
在各步驟中,在施行脫水反應之情況,作為所使用之脫水劑,可列舉硫酸、五氧化二磷、氧氯化磷、N,N’-二環己基碳二亞胺、氧化鋁、聚磷酸等。
在各步驟所獲得之化合物具有胺基,咪唑、吡咯、吲哚等芳香族雜環,羧基,羥基等作為取代基之情況,此等基亦可以如上述所列舉之保護基進行保護。在此情況,可藉由在所期望的階段去除保護基而獲得目標化合物。此等保護基的導入或者去除係藉由與上述記載同樣的方法施行。
再者,在各步驟中,亦可依期望地進一步組合上述所列舉之反應等。
以下,對化合物(I)之製造法進行說明。
以下反應式中之各記號在沒有特別記載之前提下,係表示與前述相同意義。
原料化合物在沒有述及具體的製法之情況,可輕易地購入市售者,或者,可藉由本身公知的方法或以其為準之方法予以製造。
化合物(I)可藉由以下方法自化合物(II)予以製造。
化合物(II)可使用市售品,或者藉由本身公知的方法予以製造。
化合物(IV)可在化合物(III)之鹼或酸存在下,藉由經由羥基胺衍生物之胺基化反應而予以製造。作為羥基胺衍生物,可列舉O-(4-硝基苯甲醯基)羥基胺、羥基胺-O-磺酸、O-二苯基氧膦基羥基胺等。
化合物(V)可藉由使化合物(IV)在鈀觸媒、溴化鋰等無機鹽類的存在下,於氧環境下與丙烯酸酯進行反應而予以製造。作為鈀觸媒,可列舉醋酸鈀(II),作為丙烯酸酯,可列舉丙烯酸甲酯、丙烯酸乙酯等。或者,化合物(V)亦可藉由使化
合物(IV)在酸存在下,與3,3-二甲氧基丙酸甲酯進行反應,接著在鹼存在下,使其進行分子內環化而予以製造。
化合物(VIII)可依原樣使用市售品,或者藉由本身公知的方法或以其為準之方法予以製造。
化合物(I)可藉由使化合物(VII)與化合物(VIII)進行反應而予以製造,該化合物(VII)係藉由使化合物(VI)在二苯基磷酸疊氮化物(DPPA)、依期望地鹼共存下,使用Curtius轉位進行反應所獲得。作為所使用之溶媒,除了上述以外,尚可列舉2-甲基四氫呋喃等。
化合物(IX)可藉由使化合物(VI)在二苯基磷酸疊氮化物(DPPA)、依期望地鹼共存下使用Curtius轉位進行反應而予以製造。作為所使用之溶媒,除了上述以外,尚可列舉2-甲基四氫呋喃等。
化合物(I)可藉由將化合物(IX)及化合物(VIII)在活化劑及依期望地鹼共存下進行脲化而予以製造。在活化劑中,可列舉氯甲酸2,2,2-三氯乙酯、氯甲酸苯酯或氯甲酸對硝基苯酯等氯甲酸酯衍生物、三光氣、光氣、N,N’-羰基二咪唑或N,N’-二琥珀醯亞胺基碳酸酯,較佳為三光氣、氯甲酸2,2,2-三氯乙酯。
在上述步驟中,取代基R1、R2可藉由在所期望的階段施行親電子取代反應、偶合反應或本身公知的方法而轉換成其他種類的取代基。作為例,可藉由對R1為氫原子之化合物(IV)施行親電子取代反應,而製造R1為鹵素原子之化合物(IV)。作為本反應所使用之親電子劑,可列舉N-碘琥珀酸醯亞胺、N-溴琥珀酸醯亞胺(NBS)、N-氯琥珀酸醯亞胺(NCS)、溴、硫醯氯等。此外,可使R1為脫離基(例如鹵素原子)之化合物(V)與有機亞硼酸或有機亞硼酸酯試劑(例如2,4,6-三甲基三硼雜三氧雜環己烷)進行作用而製造R1為C1-3烷基(例如甲基)之化合物(V)。
此反應可在鹼或無機鹽類(例如磷酸三鉀)、前述鈀等金屬錯合物存在下,或膦配位子存在下施行。作為上述膦配位子,可列舉例如2-二環己基膦基-2’,6’-二甲氧基聯苯(SPhos)等。
此外,化合物(V)亦可藉由以下方法予以製造。
化合物(X)可使用市售品,或者藉由本身公知的方法予以製造。
化合物(XI)可藉由化合物(X)之胺基化反應而予以製造。作為胺基化之方法,可列舉與自化合物(III)製造化合物(IV)之方法同樣的方法。
化合物(XIII)可藉由使化合物(XII)在N,N-二甲基甲醯胺二甲基縮醛的存在下進行反應而予以製造。
化合物(XIV)之X1表示鹵素原子。在製造化合物(XIV)時,作為鹵化反應所使用之鹵化劑,除了上述以外,尚可列舉氧基溴化磷等。
化合物(V)可藉由組合偶合反應或取代反應,或者本身公知的方法自化合物(XIV)予以製造。
在上述步驟中,取代基R1、R2可藉由在所期望的階段施行親電子取代反應或本身公知的方法而轉換成其他種類的取代基。
此外,化合物(I)亦可藉由以下方法予以製造。
化合物(XV)可使用市售品,或者藉由本身公知的方法予以製造。X1表示鹵素原子。
化合物(XVII)可藉由使化合物(XVI)與硝基烯胺衍生物在酸的存在下進行親核取代反應而予以製造。作為硝基烯胺衍生物,可列舉(E)-4-(2-硝基乙烯基)嗎啉等。
化合物(XVIII)可藉由化合物(XVII)之分子內環化反應而予以製造。此反應可依期望地在鹼存在下施行。
化合物(XIX)可藉由將化合物(XVIII)進行還原而予以製造。作為還原劑,除了上述以外,尚可列舉鐵、氯化錫(II)或氯化錫(II)二水合物等。
化合物(I)可藉由將化合物(XIX)與化合物(VIII)在活化劑及依期望地鹼共存下進行脲化而予以製造。在活化劑中,可列舉氯甲酸2,2,2-三氯乙酯、氯甲酸苯
酯或氯甲酸對硝基苯酯等氯甲酸酯衍生物、三光氣、光氣、N,N’-羰基二咪唑或N,N’-二琥珀醯亞胺基碳酸酯,較佳為三光氣、氯甲酸2,2,2-三氯乙酯。
在上述步驟中,取代基R4及R5可藉由在所期望的階段組合偶合反應或取代反應,或者本身公知的方法而予以轉換。
此外,化合物(I)亦可藉由以下方法予以製造。
化合物(XX)可使用市售品,或者藉由本身公知的方法予以製造。
化合物(XXI)可藉由使化合物(XX)與硝基烯胺衍生物在酸的存在下進行親核取代反應而予以製造。作為硝基烯胺衍生物,可列舉(E)-4-(2-硝基乙烯基)嗎啉等。
化合物(XXII)可藉由化合物(XXI)之分子內環化反應而予以製造。此反應可依期望地在鹼存在下施行。
化合物(XXIII)之X1表示鹵素原子。在製造化合物(XXIII)時,作為鹵化反應所使用之鹵化劑,除了上述以外,尚可列舉三溴化磷等。
化合物(XVIII)可藉由組合偶合反應或取代反應,或者數個階段的本身公知的方法自化合物(XXIII)予以製造。在製造化合物(XVIII)時,作為偶合反應所使用之觸媒,除了上述以外,尚可列舉PdCl2(Amphos)2等。
化合物(XIX)可藉由將化合物(XVIII)進行還原而予以製造。作為還原劑,除了上述以外,尚可列舉鐵、氯化錫(II)或氯化錫(II)二水合物等。
化合物(I)可藉由將化合物(XIX)與化合物(VIII)在活化劑及依期望地鹼共存下進行脲化而予以製造。在活化劑中,可列舉氯甲酸2,2,2-三氯乙酯、氯甲酸苯酯或氯甲酸對硝基苯酯等氯甲酸酯衍生物、三光氣、光氣、N,N’-羰基二咪唑或N,N’-二琥珀醯亞胺基碳酸酯,較佳為三光氣、氯甲酸2,2,2-三氯乙酯。
在上述步驟中,取代基R4及R5可藉由在所期望的階段組合偶合反應或親核取代反應,或者本身公知的方法而予以轉換。
此外,化合物(I)亦可藉由以下方法予以製造。
化合物(XXIV)可使用市售品,或者藉由本身公知的方法予以製造。
化合物(XXVI)可藉由使化合物(XXV)與3-側氧基丙烷酸衍生物在酸的存在下進行親核取代反應而予以製造。作為3-側氧基丙烷酸衍生物,可列舉3,3-二甲氧基丙酸甲酯等。
化合物(XXVII)可藉由化合物(XXVI)之分子內環化反應而予以製造。此反應可依期望地在鹼存在下施行。
化合物(I)可藉由使化合物(XXIX)與化合物(VIII)進行反應而予以製造,該化合物(XXIX)係藉由使化合物(XXVIII)在二苯基磷酸疊氮化物(DPPA)、依期望地鹼共存下使用Curtius轉位進行反應所獲得。作為所使用之溶媒,除了上述以外,
尚可列舉2-甲基四氫呋喃等。
化合物(XXX)可藉由使化合物(XXVIII)在二苯基磷酸疊氮化物(DPPA)、依期望地鹼共存下使用Curtius轉位進行反應而予以製造。作為所使用之溶媒,除了上述以外,尚可列舉2-甲基四氫呋喃等。
化合物(I)可藉由將化合物(XXX)與化合物(VIII)在活化劑及依期望地鹼共存下進行脲化而予以製造。在活化劑中,可列舉氯甲酸2,2,2-三氯乙酯、氯甲酸苯酯或氯甲酸對硝基苯酯等氯甲酸酯衍生物、三光氣、光氣、N,N’-羰基二咪唑或N,N’-二琥珀醯亞胺基碳酸酯,較佳為三光氣、氯甲酸2,2,2-三氯乙酯。
在上述步驟中,取代基R6及R7可藉由在所期望的階段組合偶合反應或取代反應,或者本身公知的方法而予以轉換。
此外,化合物(I)亦可藉由以下方法予以製造。
化合物(XXXI)可使用市售品,或者藉由本身公知的方法予以製造。
化合物(XXXII)可藉由使化合物(XXXI)與烷氧基亞甲基丙二酸衍生物在酸的存在下進行親核取代反應而予以製造。作為烷氧基亞甲基丙二酸衍生物,可列舉乙氧基亞甲基丙二酸二乙酯等。
化合物(XXXIII)可藉由化合物(XXXII)之分子內環化反應而予以製造。
化合物(XXXIV)可藉由使化合物(XXXIII)在鹼存在下與氯(氯甲基)二甲基矽烷進行反應而予以製造。
化合物(XXXV)可藉由使化合物(XXXIV)與氟化銫進行反應而予以製造。
化合物(XXXVI)之X1表示鹵素原子。在製造化合物(XXXVI)時,作為鹵化反應所使用之鹵化劑,除了上述以外,尚可列舉三溴化磷等。
化合物(I)可藉由使化合物(XXXIX)與化合物(VIII)進行反應而予以製造,該化合物(XXXIX)係藉由使化合物(XXXVIII)在二苯基磷酸疊氮化物(DPPA)、依期望地鹼共存下使用Curtius轉位進行反應所獲得。作為所使用之溶媒,除了上述以外,尚可列舉2-甲基四氫呋喃等。
化合物(XXXX)可藉由使化合物(XXXVIII)在二苯基磷酸疊氮化物(DPPA)、依期望地鹼共存下使用Curtius轉位進行反應而予以製造。作為所使用之溶媒,除了上述以外,尚可列舉2-甲基四氫呋喃等。
化合物(I)可藉由將化合物(XXXX)與化合物(VIII)在活化劑及依期望地鹼共存下進行脲化而予以製造。在活化劑中,可列舉氯甲酸2,2,2-三氯乙酯、氯甲酸苯酯或氯甲酸對硝基苯酯等氯甲酸酯衍生物、三光氣、光氣、N,N’-羰基二咪唑或N,N’-二琥珀醯亞胺基碳酸酯,較佳為三光氣、氯甲酸2,2,2-三氯乙酯。
在上述步驟中,取代基R9可藉由在所期望的階段組合偶合反應或取代反應,或者本身公知的方法而予以轉換。
此外,化合物(I)亦可藉由以下方法予以製造。
化合物(XXXXI)可使用市售品,或者藉由本身公知的方法或與化合物(XXVII)同樣的方法予以製造。
化合物(XXXXIII)可藉由將化合物(XXXXII)在鹼存在下進行烷基化而予以製造。作為鹼,除了上述以外,尚可列舉氫氧化鋰等。
化合物(I)可藉由使化合物(XXXXV)與化合物(VIII)進行反應而予以製造,該化合物(XXXXV)係藉由使化合物(XXXXIV)在二苯基磷酸疊氮化物(DPPA)、依期望地鹼共存下使用Curtius轉位進行反應所獲得。作為所使用之溶媒,除了上述以外,尚可列舉2-甲基四氫呋喃等。
化合物(XXXXVI)可藉由使化合物(XXXXIV)在二苯基磷酸疊氮化物(DPPA)、依期望地鹼共存下使用Curtius轉位進行反應而予以製造。作為所使用
之溶媒,除了上述以外,尚可列舉2-甲基四氫呋喃等。
化合物(I)可藉由將化合物(XXXXVI)與化合物(VIII)在活化劑及依期望地鹼共存下進行脲化而予以製造。在活化劑中,可列舉氯甲酸2,2,2-三氯乙酯、氯甲酸苯酯或氯甲酸對硝基苯酯等氯甲酸酯衍生物、三光氣、光氣、N,N’-羰基二咪唑或N,N’-二琥珀醯亞胺基碳酸酯,較佳為三光氣、氯甲酸2,2,2-三氯乙酯。
在上述步驟中,取代基R8、R9可藉由在所期望的階段組合偶合反應或取代反應,或者本身公知的方法而予以轉換。
亦可藉由對如此所獲得之化合物(I)之取代基應用本身公知的手段來進行轉換(即,取代基的導入或官能基轉換),而製造包含在化合物(I)中之另一化合物或其鹽。
作為取代基的導入或官能基轉換之方法,係使用公知的一般方法,可列舉例如鹵素原子(例如氟、氯、溴、碘)或可經鹵化之C1-6烷基磺醯基-氧基[例如甲烷磺醯基氧基、乙烷磺醯基氧基、三氯甲烷磺醯基氧基、三氟甲烷磺醯基氧基(三氟甲磺酸鹽(酯))]向甲基、環丙基、乙烯基、氰基、甲醯基、羰基、羧基、羥基、胺基、氧硼基等之轉換,甲醯基經由Seyferth-Gilbert增碳反應向乙炔基之轉換,酯經由水解向羧基之轉換,羧基經由醯胺化向胺甲醯基之轉換,羧基經由還原向羥基甲基之轉換,羰基經由還原或烷基化向醇體之轉換,羰基的還原性胺基化,羰基的肟化,胺基的醯基化,胺基的脲化,胺基的磺醯基化,胺基的烷基化,經由胺之活性鹵素的取代或胺基化,羥基的烷基化,羥基的取代或胺基化。
在施行此取代基的導入或官能基轉換時存在會發生目標以外之反應之反應性部位之情況,亦可視需要藉由本身公知的手段對該反應性部位事先導入保護基,在施行目標反應後依然藉由本身公知的手段去除該保護基,而製造包含在本
發明之範圍中之化合物。
例如,在原料化合物或中間體具有胺基、羧基或羥基作為取代基之情況,此等基亦可以如在胜肽化學等中一般所使用之保護基進行保護。在此情況,可藉由在反應後,視需要去除保護基而獲得目標化合物。
藉由上述製造法所獲得之化合物(I)可藉由公知的手段,例如溶媒萃取、溶液的pH轉換、轉溶、結晶析出、再結晶、層析予以單離精製。
在化合物(I)含有光學異構物、立體異構物、位置異構物、旋轉異構物之情況,此等亦作為化合物(I)而被含有,同時可藉由本身公知的合成手法、分離手法以單品之形式獲得各者。例如,在化合物(I)中存在光學異構物之情況,自該化合物所解析出之光學異構物亦含括在化合物(I)中。
在此處,光學異構物可藉由本身公知的方法予以製造。
化合物(I)亦可為結晶。
化合物(I)之結晶(以下,有時略記為本發明之結晶)可藉由對化合物(I)應用本身公知的結晶化法來進行結晶化而予以製造。
本發明之結晶係物理化學性質(例如熔點、溶解度、安定性)及生物學性質(例如體內動態(吸收性、分佈、代謝、排泄)、藥效表現)優異,被期待有用於作為醫藥。
化合物(I)亦可為藥學上可容許之共結晶或共結晶鹽。在此處,所謂共結晶或共結晶鹽,係意味各自持有不同的物理特性(例如結構、熔點、熔解熱、吸濕性、溶解性及安定性),於室溫由二種或其以上獨特的固體所構成之結晶性物質。共結晶或共結晶鹽可依照本身公知的共結晶化法予以製造。
化合物(I)可為水合物,亦可為非水合物,亦可為無溶媒合物,亦可為溶媒合
物。
再者,將1H轉換成2H(D)而得之氘轉換體亦含括在化合物(I)中。
化合物(I)亦可經同位素(例如3H、13C、14C、18F、35S、125I)等標識。經同位素標識或取代之化合物(I)可用作例如在正子放射造影法(Positron Emission Tomography:PET)中所使用之追蹤劑(PET追蹤劑),被期待有用於醫療診斷等領域中。
化合物(I)亦可以前藥之形式使用。
化合物(I)之前藥為在生物體內之生理條件下藉由經由酵素或胃酸等之反應而轉換成化合物(I)之化合物,即,發生酵素性地氧化、還原、水解等而變化成化合物(I)之化合物、因胃酸等發生水解等而變化成化合物(I)之化合物。
作為化合物(I)之前藥,可列舉化合物(I)之胺基經醯基化、烷基化或磷酸化之化合物(例如化合物(I)之胺基經二十醯基化、丙胺醯基化、戊基胺基羰基化、(5-甲基-2-側氧基-1,3-二氧雜環戊烯-4-基)甲氧基羰基化、四氫呋喃化、吡咯啶甲基化、三甲基乙醯基氧基甲基化或第三丁基化之化合物);化合物(I)之羥基經醯基化、烷基化、磷酸化或硼酸化之化合物(例如化合物(I)之羥基經乙醯基化、棕櫚醯基化、丙醯基化、三甲基乙醯基化、琥珀醯基化、富馬醯基化、丙胺醯基化或二甲基胺基甲基羰基化之化合物);化合物(I)之羧基經酯化或醯胺化之化合物(例如化合物(I)之羧基經乙酯化、苯酯化、羧基甲酯化、二甲基胺基甲酯化、三甲基乙醯基氧基甲酯化、乙氧基羰基氧基乙酯化、酞酯化、(5-甲基-2-側氧基-1,3-二氧雜環戊烯-4-基)甲酯化、環己基氧基羰基乙酯化或甲基醯胺化之化合物)等。此等化合物可藉由本身公知的方法自化合物(I)予以製造。
此外,化合物(I)之前藥亦可為如廣川書店1990年刊「醫藥品的開
發」第7卷分子設計163頁至198頁所記載之在生理條件下變化成化合物(I)者。
在本說明書中,前藥亦可形成鹽,作為該種鹽,可列舉前述例示為式(I)所示之化合物之鹽者。
化合物(I)或其前藥(以下,有時僅略記為本發明化合物)可具有MALT1阻礙活性,可有用於作為癌症之預防或治療劑、癌症之增殖阻礙劑、癌症之轉移抑制劑。
本發明之化合物係顯示出對MALT1之選擇性阻礙活性,且本發明化合物在藥效表現、藥物動態(例如吸收性、分佈、代謝、排泄)、溶解性(例如水溶性)、與其他醫藥品之相互作用(例如藥物代謝酵素阻礙作用)、安全性(例如急性毒性、慢性毒性、遺傳毒性、生殖毒性、心臟毒性、癌原性、中樞毒性)、安定性(例如化學安定性、對酵素之安定性)之方面亦優異,因而可有用於作為醫藥。
從而,本發明化合物對哺乳動物(例如小鼠、大鼠、倉鼠、兔、貓、犬、牛、羊、猴、人類)而言,可用於阻礙過量(異常)的MALT1作用。
本發明化合物可依原樣地或者摻合藥理學上可容許之載體,製成醫藥,經口或非經口投予至哺乳動物(較佳為人類)。
以下,針對含有本發明化合物而成之醫藥(有時略記為「本發明之醫藥」)進行詳述。作為本發明之醫藥的劑型,可列舉例如錠劑(例如糖衣錠、膜包衣錠、舌下錠、口頰錠、口腔內速崩錠)、丸劑、顆粒劑、散劑、膠囊劑(例如軟膠囊劑、微膠囊劑)、糖漿劑、乳劑、懸浮劑、膜劑(例如口腔內崩解膜、口腔黏膜貼附膜)等經口劑。此外,作為本發明之醫藥的劑型,亦可列舉例如注射劑、點滴劑、經皮劑(例如離子電滲經皮劑)、栓劑、軟膏劑、經鼻劑、經肺劑、點眼劑等非經口劑。此外,本發明之醫藥亦可為速釋性製劑、緩釋性製劑(例如緩釋性微膠囊)等
釋放調控製劑。
本發明之醫藥可藉由製劑技術領域中一般所使用之公知的製造方法(例如日本藥典所記載之方法)予以製造。此外,在本發明之醫藥中,可視需要適宜適量含有製劑領域中通常所使用之賦形劑、黏合劑、崩解劑、潤滑劑、甜味劑、界面活性劑、懸浮化劑、乳化劑、著色劑、保存劑、芳香劑、矯味劑、安定劑、黏稠劑等添加劑。
作為前述之藥理學上可容許之載體,可列舉此等添加劑。
例如,錠劑可使用賦形劑、黏合劑、崩解劑、潤滑劑等予以製造,丸劑及顆粒劑可使用賦形劑、黏合劑、崩解劑予以製造。此外,散劑及膠囊劑可使用賦形劑等予以製造,糖漿劑可使用甜味劑等予以製造,乳劑或懸浮劑可使用懸浮化劑、界面活性劑、乳化劑等予以製造。
作為賦形劑之例,可列舉乳糖、白糖、葡萄糖、澱粉、蔗糖、微結晶纖維素、甘草末、甘露糖醇、碳酸氫鈉、磷酸鈣、硫酸鈣。
作為黏合劑之例,可列舉5至10重量%澱粉糊液、10至20重量%阿拉伯膠液或明膠液、1至5重量%黃蓍膠液、羧基甲基纖維素液、海藻酸鈉液、甘油。
作為崩解劑之例,可列舉澱粉、碳酸鈣。
作為潤滑劑之例,可列舉硬脂酸鎂、硬脂酸、硬脂酸鈣、精製滑石。
作為甜味劑之例,可列舉葡萄糖、果糖、轉化糖、山梨糖醇、木糖醇、甘油、單糖漿。
作為界面活性劑之例,可列舉月桂基硫酸鈉、聚山梨糖醇酯80、山梨糖醇酐單脂肪酸酯、硬脂酸聚氧酯40。
作為懸浮化劑之例,可列舉阿拉伯膠、海藻酸鈉、羧基甲基纖維素鈉、甲基
纖維素、膨潤土。
作為乳化劑之例,可列舉阿拉伯膠、黃蓍膠、明膠、聚山梨糖醇酯80。
例如,在本發明之醫藥為錠劑之情況,該錠劑可藉由依照本身公知的方法,在本發明化合物中添加例如賦形劑(例如乳糖、白糖、澱粉)、崩解劑(例如澱粉、碳酸鈣)、黏合劑(例如澱粉、阿拉伯膠、羧基甲基纖維素、聚乙烯基吡咯啶酮、羥基丙基纖維素)或潤滑劑(例如滑石、硬脂酸鎂、聚乙二醇6000)並進行壓縮成形,接著依需要,為了味道的掩蓋、腸溶性或持續性之目的而以本身公知的方法進行包衣而予以製造。作為包衣所使用之包衣劑,可使用例如羥基丙基甲基纖維素、乙基纖維素、羥基甲基纖維素、羥基丙基纖維素、聚氧基乙二醇、Tween 80、Pluronic F68、纖維素醋酸酯酞酸酯、羥基丙基甲基纖維素酞酸酯、羥基甲基纖維素醋酸酯琥珀酸酯、Eudragit(Rohm公司製,德國,甲基丙烯酸/丙烯酸共聚物)及色素(例如紅色氧化鐵、二氧化鈦)。
作為前述注射劑,除了靜脈注射劑以外,尚包含皮下注射劑、皮內注射劑、肌肉注射劑、腹腔內注射劑、點滴注射劑等。
該種注射劑係藉由本身公知的方法,即,將本發明化合物溶解、懸浮或乳化於無菌的水性液或油性液中而予以調製。作為水性液,可列舉生理食鹽水、葡萄糖或包含其他輔助藥之等張液(例如D-山梨糖醇、D-甘露糖醇、氯化鈉)等。該水性液亦可包含適當的溶解輔助劑,例如醇(例如乙醇)、多元醇(例如丙二醇、聚乙二醇)、非離子性界面活性劑(例如聚山梨糖醇酯80、HCO-50)。作為油性液,可列舉芝麻油、大豆油等。該油性液亦可包含適當的溶解輔助劑。作為該溶解輔助劑,可列舉安息香酸苄酯、苄基醇等。此外,在該注射劑中亦可摻合緩衝劑(例如磷酸緩衝液、醋酸鈉緩衝液)、無痛化劑(例如氯化苄烷銨
(benzalkonium chloride)、鹽酸普魯卡因(procaine hydrochloride))、安定劑(例如人類血清白蛋白、聚乙二醇)、保存劑(例如苄基醇、苯酚)等。所調製出之注射液通常可填充於安瓿中。
本發明之醫藥中之本發明化合物的含量係因應製劑的形態而不同,通常,相對於製劑整體而言為約0.01至約100重量%,較佳為約2至約85重量%,更佳為約5至約70重量%。
本發明之醫藥中之添加劑的含量係因應製劑的形態而不同,通常,相對於製劑整體而言為約1至約99.9重量%,較佳為約10至約90重量%。
本發明化合物呈安定且低毒性,可安全地使用。本發明化合物的1日投予量係依患者的狀態或體重、化合物的種類、投予途徑等而有所不同,例如於治療癌症之目的經口投予至患者之情況,成人(體重約60kg)每1日的投予量就本發明化合物而言為約1至約1000mg,較佳為約3至約300mg,更佳為約10至約200mg,可將此等1次或分成2至3次投予。
在非經口投予本發明化合物之情況,通常以液劑(例如注射劑)之形式進行投予。本發明化合物的1次投予量亦依投予對象、對象臟器、症狀、投予方法等而有所不同,例如通常每1kg體重較佳係藉由靜脈注射投予約0.01至約100mg,較佳為約0.01至約50mg,更佳為約0.01至約20mg的本發明化合物。
本發明化合物可與其他藥物併用而使用。具體而言,本發明化合物可與激素療法劑、化學療法劑、免疫療法劑或阻礙細胞增殖因子及其受體的作用之藥劑等藥物併用而使用。以下,將可與本發明化合物併用之藥物略記為併用藥物。
作為「激素療法劑」,可使用例如磷雌酚(fosfestrol)、二乙基己烯雌酚(diethylstilbestrol)、氯烯雌醚(chlorotrianisene)、醋酸甲羥孕酮(medroxyprogesterone acetate)、醋酸甲地孕酮(megestrol acetate)、醋酸氯地孕酮(chlormadinone acetate)、醋酸環丙孕酮(cyproterone acetate)、達那唑(danazol)、烯丙基雌烯三醇(allylestrenol)、孕三烯酮(gestrinone)、美帕曲星(mepartricin)、雷洛昔芬(raloxifene)、奧美昔芬(ormeloxifene)、左美洛昔芬(levormeloxifene)、抗雌激素(例如檸檬酸他莫昔芬(tamoxifen citrate)、檸檬酸托雷米芬(toremifene citrate))、口服避孕藥製劑、美雄烷(mepitiostane)、睪內酯(testololactone)、胺魯米特(aminoglutethimide)、LH-RH促效劑(例如醋酸戈舍瑞林(goserelin acetate)、布舍瑞林(buserelin)、醋酸亮丙瑞林(leuprorelin acetate))、屈洛昔芬(droloxifene)、環硫雄醇(epitiostanol)、磺酸乙炔基雌二醇、芳香酶阻礙藥(例如鹽酸法倔唑(fadrozole hydrochloride)、阿那曲唑(anastrozole)、來曲唑(letrozole)、依西美坦(exemestane)、伏氯唑(vorozole)、福美坦(formestane))、抗雄激素(例如氟他胺(flutamide)、比卡魯胺(bicalutamide)、尼魯米特(nilutamide)、恩雜魯胺(enzalutamide))、5α-還原酶阻礙藥(例如非那雄胺(finasteride)、依立雄胺(epristeride)、度他雄胺(dutasteride))、腎上腺皮質激素系藥劑(例如地塞米松(dexamethasone)、潑尼松龍(prednisolone)、倍他米松(betamethasone)、曲安西龍(triamcinolone))、雄激素合成阻礙藥(例如阿比特龍(abiraterone))、類視色素及延遲類視色素的代謝之藥劑(例如利阿唑(liarozole))、甲狀腺激素以及該等之DDS(Drug Delivery System)製劑。
作為「化學療法劑」,可使用例如烷基化劑、代謝拮抗劑、抗癌性抗生物質、源自植物之抗癌劑。
作為「烷基化劑」,可使用例如氮芥(nitrogen mustard)、鹽酸氮芥
-N-氧化物、苯丁酸氮芥(chlorambucil)、環磷醯胺(cyclophosphamide)、異環磷醯胺(ifosfamide)、噻替哌(thiotepa)、卡波醌(carboquone)、對甲苯磺酸英丙舒凡(improsulfan tosylate)、白消安(busulfan)、鹽酸尼莫司汀(nimustine hydrochloride)、二溴甘露糖醇(mitobronitol)、美法侖(melphalan)、達卡巴嗪(dacarbazine)、雷莫司汀(ranimustine)、磷酸雌莫司汀鈉(estramustine phosphate sodium)、三乙烯基三聚氰胺、卡莫司汀(carmustine)、洛莫司汀(lomustine)、鏈脲佐菌素(streptozocin)、哌泊溴烷(pipobroman)、依托格魯(etoglucid)、卡鉑(carboplatin)、順鉑(cisplatin)、米鉑(miboplatin)、達鉑(nedaplatin)、奧沙利鉑(oxaliplatin)、六甲蜜胺(altretamine)、胺莫司汀(ambamustine)、鹽酸二溴螺銨(dibrospidium hydrochloride)、福莫司汀(fotemustine)、潑尼莫司汀(prednimustine)、嘌嘧替哌(pumitepa)、立博莫司汀(ribomustin)、替莫唑胺(temozolomide)、曲奧舒凡(treosulfan)、曲磷胺(trofosfamide)、淨司他丁斯酯(zinostatin stimalamer)、阿多來新(adozelesin)、半胱胺亞硝脲(cystemustine)、比折來新(bizelesin)以及該等之DDS製劑。
作為「代謝拮抗劑」,可使用例如巰基嘌呤、6-巰基嘌呤核糖苷、硫肌苷(thioinosine)、甲胺喋呤(methotrexate)、培美曲塞(pemetrexed)、伊諾他濱(enocitabine)、阿糖胞苷(cytarabine)、阿糖胞苷十八烷基磷酸鹽(cytarabine ocfosfate)、鹽酸環胞苷(ancitabine hydrochloride)、5-FU系藥劑(例如氟尿嘧啶、替加氟(tegafur)、UFT、去氧氟尿苷(doxifluridine)、卡莫氟(carmofur)、加洛他濱(gallocitabine)、乙嘧替氟(emmitefur)、卡培他濱(capecitabine))、胺基喋呤、拉濱(nelzarabine)、亞葉酸鈣(leucovorin calcium)、硫代鳥嘌呤(tabloid)、甘胺硫嘌呤(butocine)、亞葉酸鈣、左旋亞葉酸鈣、克拉屈濱(cladribine)、乙嘧替氟(emmitefur)、氟達拉濱(fludarabine)、吉西他濱(gemcitabine)、羥基胺甲醯胺、噴司他丁
(pentostatin)、吡曲克辛(piritrexim)、碘苷(idoxuridine)、米托胍腙(mitoguazone)、賽卓非林(thiazophrine)、胺莫司汀(ambamustine)、苯達莫司汀(bendamustine)以及該等之DDS製劑。
作為「抗癌性抗生物質」,可使用例如放線菌黴素D、放線菌黴素C、絲裂黴素C、色黴素A3、鹽酸博萊黴素(bleomycin hydrochloride)、硫酸博萊黴素(bleomycin sulfate)、硫酸培洛黴素(peplomycin sulfate)、鹽酸柔紅黴素(daunorubicin hydrochloride)、鹽酸阿黴素(doxorubicin hydrochloride)、鹽酸阿克拉黴素(aclarubicin hydrochloride)、鹽酸吡喃阿黴素(pirarubicin hydrochloride)、鹽酸泛艾黴素(epirubicin hydrochloride)、新抑癌素(neocarzinostatin)、光輝黴素(mithramycin)、肉瘤黴素(sarkomycin)、嗜癌菌素(carzinophillin)、米托坦(mitotane)、鹽酸佐柔比星(zorubicin hydrochloride)、鹽酸米托蒽醌(mitoxantrone hydrochloride)、鹽酸艾達黴素(idarubicin hydrochloride)以及該等之DDS製劑(例如內包阿黴素(doxorubicin)之PEG核糖體)。
作為「源自植物之抗癌劑」,可使用例如依託泊苷(etoposide)、磷酸依託泊苷(etoposide phosphate)、硫酸長春花鹼(vinblastine sulfate)、硫酸長春新鹼(vincristine sulfate)、硫酸長春地辛(vindesine sulfate)、替尼泊苷(teniposide)、太平洋紫杉醇(paclitaxel)、歐洲紫杉醇(docetaxel)、卡巴他賽(cabazitaxel)、溫諾平(vinorelbine)以及該等之DDS製劑。
作為「免疫療法劑」,可使用例如溶鏈菌素(picibanil)、雲芝多醣(krestin)、西佐喃(sizofiran)、香菇多醣(lentinan)、烏苯美司(ubenimex)、干擾素、介白素、巨噬細胞群落刺激因子、顆粒球群落刺激因子、紅血球生成素、淋巴毒素、BCG疫苗、短棒狀桿菌(Corynebacterium parvum)、左旋咪唑(levamisole)、多
醣K、丙考達唑(procodazol)、抗CTLA4抗體(例如伊匹單抗(ipilimumab)、曲美目單抗(tremelimumab))、抗PD-1抗體(例如納武單抗(nivolumab)、帕博利珠單抗(pembrolizumab))、抗PD-L1抗體。
作為「阻礙細胞增殖因子及其受體的作用之藥劑」中之「細胞增殖因子」,只要是促進細胞的增殖之物質,任何種皆可,通常,可列舉屬於分子量為20,000以下的胜肽,藉由與受體之結合而以低濃度發揮作用之因子,具體而言,可使用(1)EGF(epidermal growth factor)或具有與其實質上同一活性之物質[例如TGFα],(2)胰島素或具有與其實質上同一活性之物質[例如胰島素、IGF(insulin-like growth factor)-1、IGF-2],(3)FGF(fibroblast growth factor)或具有與其實質上同一活性之物質[例如酸性FGF、鹼性FGF、KGF(keratinocyte growth factor)、FGF-10],(4)其他細胞增殖因子[例如CSF(colony stimulating factor)、EPO(erythropoietin)、IL-2(interleukin-2)、NGF(nerve growth factor)、PDGF(platelet-derived growth factor)、TGFβ(transforming growth factor β)、HGF(hepatocyte growth factor)、VEGF(vascularendothelial growth factor)、調蛋白(heregulin)、血管生成素(angiopoietin)]。
作為「細胞增殖因子之受體」,只要是具有與上述細胞增殖因子結合能力之受體,任何種皆可,具體而言,可使用EGF受體、調蛋白受體(例如HER3)、胰島素受體、IGF受體-1、IGF受體-2、FGF受體-1或FGF受體-2、VEGF受體、血管生成素受體(例如Tie2)、PDGF受體等。
作為「阻礙細胞增殖因子及其受體的作用之藥劑」,可使用EGF阻礙劑、TGFα阻礙劑、調蛋白阻礙劑、胰島素阻礙劑、IGF阻礙劑、FGF阻礙劑、KGF阻礙劑、CSF阻礙劑、EPO阻礙劑、IL-2阻礙劑、NGF阻礙劑、PDGF
阻礙劑、TGFβ阻礙劑、HGF阻礙劑、VEGF阻礙劑、血管生成素阻礙劑、EGF受體阻礙劑、HER2阻礙劑、HER4阻礙劑、胰島素受體阻礙劑、IGF-1受體阻礙劑、IGF-2受體阻礙劑、FGF受體-1阻礙劑、FGF受體-2阻礙劑、FGF受體-3阻礙劑、FGF受體-4阻礙劑、VEGF受體阻礙劑、Tie-2阻礙劑、PDGF受體阻礙劑、TLR受體阻礙劑、Abl阻礙劑、Raf阻礙劑、FLT3阻礙劑、c-Kit阻礙劑、Src阻礙劑、PLC阻礙劑、PKC阻礙劑、Smo阻礙藥、ALK阻礙藥、ROR1阻礙藥、Trk阻礙劑、Ret阻礙劑、mTOR阻礙劑、Aurora阻礙劑、PLK阻礙劑、MEK(MEK1/2)阻礙劑、MET阻礙劑、CDK阻礙劑、Akt阻礙劑、ERK阻礙劑、PI3K阻礙劑、IKK阻礙劑、BTK阻礙劑、IRAK阻礙劑、HDAC阻礙劑、TAK1阻礙劑、TBK1阻礙劑、ZAP阻礙劑、SYK阻礙劑、LCK阻礙劑、TYK2阻礙劑、SYK阻礙劑、JAK阻礙劑、FAK阻礙劑、LYN阻礙劑等。更具體而言,可使用抗VEGF抗體(例如貝伐珠單抗(Bevacizumab)、雷莫盧單抗(Ramucurumab))、抗HER2抗體(例如曲妥珠單抗(Trastuzumab)、帕妥珠單抗(Pertuzumab))、抗EGFR抗體(例如西妥昔單抗(Cetuximab)、帕尼單抗(Panitumumab)、馬妥珠單抗(Matuzumab)、尼妥珠單抗(Nimotuzumab))、抗HGF抗體、伊瑪替尼(Imatinib)、厄咯替尼(Erlotinib)、吉非替尼(Gefitinib)、索拉非尼(Sorafenib)、舒尼替尼(Sunitinib)、達沙替尼(Dasatinib)、拉帕替尼(Lapatinib)、瓦他拉尼(Vatalanib)、伊魯替尼(Ibrutinib)、博舒替尼(Bosutinib)、卡博替尼(Cabozantinib)、克唑替尼(Crizotinib)、阿來替尼(Alectinib)、維莫德吉(Vismodegib)、阿昔替尼(Axitinib)、莫沙尼(Motesanib)、尼洛替尼(Nilotinib)、6-[4-(4-乙基哌-1-基甲基)苯基]-N-[1(R)-苯基乙基]-7H-吡咯并[2,3-d]嘧啶-4-胺(AEE-788)、凡得他尼(Vandetanib)、替西洛莫斯(Temsirolimus)、伊維洛莫斯(Everolimus)、恩札妥林(Enzastaurin)、托札
色替(Tozasertib)、磷酸2-[N-[3-[4-[5-[N-(3-氟苯基)胺甲醯基甲基]-1H-吡唑-3-基胺基]喹唑啉-7-基氧基]丙基]-N-乙基胺基]乙酯(AZD-1152)、4-[9-氯-7-(2,6-二氟苯基)-5H-嘧啶并[5,4-d][2]苯并氮雜環庚烯-2-基胺基]安息香酸、N-[2-甲氧基-5-[(E)-2-(2,4,6-三甲氧基苯基)乙烯基磺醯基甲基]苯基]甘胺酸鈉鹽(ON-1910Na)、伏拉塞替(Volasertib)、司美替尼(Selumetinib)、曲美替尼(Trametinib)、N-[2(R),3-二羥基丙氧基]-3,4-二氟-2-(2-氟-4-碘苯基胺基)苯甲醯胺(PD-0325901)、博舒替尼(Bosutinib)、瑞格拉非尼(Regorafenib)、阿法替尼(Afatinib)、艾代拉里斯(Idelalisib)、色瑞替尼(Ceritinib)、達拉非尼(Dabrafenib)等。
除了上述藥物以外,亦可使用天冬醯胺酶、乙醯格拉酮(aceglatone)、鹽酸甲基苄肼(procarbazine hydrochloride)、原紫質/鈷錯鹽、汞血紫質/鈉、拓樸異構酶I阻礙藥(例如伊立替康(irinotecan)、托泊替康(topotecan)、吲哚替康(indotecan)、因帝米替康(indimitecan))、拓樸異構酶II阻礙藥(例如索布佐生(sobuzoxane))、分化誘導劑(例如類視色素、維生素D類)、其他血管新生阻礙藥(例如煙麴黴素(fumagillin)、鯊魚萃取物、COX-2阻礙藥)、α-阻斷劑(例如鹽酸坦索羅辛(tamsulosin hydrochloride))、雙膦酸(例如帕米膦酸鹽(pamidronate)、唑來膦酸鹽(zoledronate))、沙利度胺(thalidomide)、來那度胺(lenalidomide)、泊馬度胺(pomalidomide)、5-阿扎胞苷(5-azacitidine)、地西他濱(decitabine)、蛋白酶體阻礙藥(例如硼替佐米(bortezomib)、卡非佐米(carfilzomib)、伊沙佐米(ixazomib))、NEDD8阻礙藥(例如匹維尼地司他(Pevonedistat))、UAE阻礙藥、PARP阻礙藥(例如奧拉帕尼(Olaparib)、尼拉帕尼(Niraparib)、維立帕尼(Veliparib))、BCL2阻礙劑(例如維尼拉克(Venetoclax)、奧巴拉克(Obatoclax)、奧立莫森(Oblimersen))、抗CD20抗體(例如利妥昔單抗(Rituximab)、奧賓尤妥珠單抗(Obinutuzumab))、抗
CCR4抗體(例如莫戈美珠單抗(Mogamulizumab))等抗腫瘤性抗體、抗體藥物複合體(例如曲妥珠單抗-美坦新(trastuzumab emtansine)、本妥昔單抗-維多汀(brentuximab vedotin))、使用嵌合抗原受體(chimeric antigen receptor,CAR)之基因改造T細胞療法(CAR-T療法)(例如替沙侖賽(Tisagenlecleucel)、阿西卡他濱西羅侖賽(Axicabtagene ciloleucel))等作為併用藥。
藉由組合本發明化合物與併用藥物,可獲得下列等優異的效果:(1)相較於單獨投予本發明化合物或併用藥物之情況而言,可減輕其投予量,(2)可因應患者的症狀(輕症、重症等)而選擇與本發明化合物併用之藥物,(3)可將治療期設定較長,(4)可謀求治療效果的持續,(5)可藉由併用本發明化合物與併用藥物而獲得相乘效果。
以下,將併用本發明化合物與併用藥物之情況稱為「本發明之併用劑」。
使用本發明之併用劑時,本發明化合物及併用藥物之投予時期並無限定,可將本發明化合物及併用藥物對投予對象同時地進行投予,亦可間隔著時間差進行投予。在間隔著時間差進行投予之情況,時間差係依所投予之有效成分、劑型、投予方法而有所不同,例如,在先投予併用藥物之情況,只要在投予併用藥物後1分鐘至3日以內,較佳為10分鐘至1日以內,更佳為15分鐘至1小時以內投予本發明化合物即可。在先投予本發明化合物之情況,只要在投予本發明化合物後1分鐘至1日以內,較佳為10分鐘至6小時以內,更佳為15分鐘至1小時以內投予併用藥物即可。併用藥物的投予量只要以臨床上所使用之投予量為準即可,可依投予對象、投予途徑、疾患、組合等而適宜選擇。
作為併用本發明化合物與併用藥物之情況之投予形態,可列舉例
如(1)投予將本發明化合物及併用藥物同時地加以製劑化所獲得之單一製劑,(2)以同一投予途徑同時投予將本發明化合物及併用藥物個別地加以製劑化所獲得之2種製劑,(3)以同一投予途徑間隔著時間差投予將本發明化合物及併用藥物個別地加以製劑化所獲得之2種製劑,(4)以不同的投予途徑同時投予將本發明化合物及併用藥物個別地加以製劑化所獲得之2種製劑,(5)以不同的投予途徑間隔著時間差投予將本發明化合物及併用藥物個別地加以製劑化所獲得之2種製劑(例如以本發明化合物→併用藥物的順序之投予,或者以相反的順序之投予)。
併用藥物的投予量可以臨床上所使用之用量為基準而適宜選擇。此外,本發明化合物與併用藥物之摻合比可依投予對象、投予途徑、對象疾患、症狀、組合等而適宜選擇。例如,在投予對象為人類之情況,只要相對於本發明化合物1重量份而言,使用0.01至100重量份併用藥物即可。
再者,本發明化合物或本發明之併用劑可與非藥劑療法併用。具體而言,本發明化合物或本發明之併用劑可與例如下列非藥劑療法進行組合:(1)手術,(2)使用血管收縮素II等之升壓化學療法,(3)基因療法,(4)溫熱療法,(5)凍結療法,(6)雷射燒灼法,(7)放射線療法。
例如,藉由在前述手術等之前或後,或者在組合此等2、3種之治療前或後使用本發明化合物或本發明之併用劑,可獲得阻止耐性表現、延長無病存活期(Disease-Free Survival)、抑制癌症轉移或復發、延命等效果。
此外,亦可將經由本發明化合物或本發明之併用劑之治療與支持療法[(i)針對各種感染病的併發之抗生物質(例如泛司博林(pansporin)等β-內醯胺系、克拉黴素(clarithromycin)等巨環內酯系)的投予,(ii)用於改善營養障礙之高熱
量輸液、胺基酸製劑、綜合維生素劑的投予,(iii)用於緩和疼痛之嗎啡投予,(iv)用於改善諸如噁心、嘔吐、食慾不振、下痢、白血球減少、血小板減少、血紅素濃度低下、脫毛、肝障礙、腎障礙、DIC、發熱等之副作用之藥劑的投予以及(v)用於抑制癌症的多劑耐性之藥劑的投予等]進行組合。
[實施例]
本發明係進一步藉由以下實施例、製劑例及試驗例加以詳細說明,但此等並未限定本發明,此外,亦可在未脫離本發明之範圍之範圍中加以變化。
以下實施例中之「室溫」通常表示約10℃至約35℃。在混合溶媒中所示之比在沒有特別指明之前提下表示容量比。%在沒有特別指明之前提下表示重量%。
在矽膠管柱層析中,在記載為NH之情況,係使用胺基丙基矽烷結合矽膠,在記載為Diol之情況,係使用3-(2,3-二羥基丙氧基)丙基矽烷結合矽膠,在記載為DiNH之情況,係使用N-(2-胺基乙基)-3-胺基丙基矽烷結合矽膠。在HPLC(高效液相層析)中,在記載為C18之情況,係使用十八基結合矽膠。溶出溶媒之比在沒有特別指明之前提下表示容量比。
在以下實施例中,係使用下述簡稱。
Boc2O:二碳酸二第三丁酯
CDCl3:重氯仿
DMSO-d6:重二甲基亞碸
1H NMR:質子核磁共振
LC/MS:液相層析質量分析計
ESI:電噴灑離子化
APCI:大氣壓化學離子化
DBU:1,8-二氮雜雙環[5.4.0]十一-7-烯
DIEA:二異丙基乙基胺
DMAP:4-二甲基胺基吡啶
DMF:N,N-二甲基甲醯胺
mp:熔點
DPPA:二苯基磷酸疊氮化物
MS:質譜
[M+H]+,[M-H]-:分子離子峰
M:莫耳濃度
N:當量
Pd(OAc)2:醋酸鈀(II)
SPhos:2-二環己基膦基-2',6'-二甲氧基聯苯
TEA:三乙基胺
TFA:三氟醋酸
THF:四氫呋喃
1H NMR係以傅立葉(Fourier)轉換型NMR予以測定。在解析時係使用ACD/SpecManager(商品名)等。針對羥基或胺基等質子非常平緩的峰則未加以記載。
MS係藉由LC/MS予以測定。作為離子化法,係使用ESI法或APCI法。數據係記載實測值(found)。通常,可觀測到分子離子峰([M+H]+、[M-H]-等),在具
有第三丁氧基羰基之化合物之情況,作為碎片離子,有時亦可觀測到第三丁氧基羰基或第三丁基脫離而得之峰。此外,在具有羥基之化合物之情況,作為碎片離子,有時亦可觀測到H2O脫離而得之峰。在鹽之情況,通常可觀測到游離體之分子離子峰或碎片離子峰。
參考例1
5-氯-6-(二氟甲氧基)吡啶-3-胺
A)3-氯-2-(二氟甲氧基)-5-硝基吡啶
3-氯-5-硝基吡啶-2-醇(10g)及乙腈(300mL)之混合物中,於室溫加入2,2-二氟-2-(氟磺醯基)醋酸(11.86mL)及硫酸鈉(3.26g),反應混合物於同溫度攪拌整夜。反應混合物中於室溫進一步加入2,2-二氟-2-(氟磺醯基)醋酸(11.86mL)及硫酸鈉(3.26g),反應混合物於同溫度攪拌3日。反應混合物中加入飽和碳酸氫鈉水溶液,調整成鹼性,混合物於減壓下濃縮。水層以醋酸乙酯萃取,有機層以水及飽和食鹽水洗淨後,以無水硫酸鈉乾燥,於減壓下餾去溶媒。殘渣以矽膠管柱層析(NH,醋酸乙酯/己烷)精製,獲得標題化合物(4.31g)。
1H NMR(300MHz,DMSO-d6)δ 7.84(1H,t,J=70.8Hz),8.97(1H,d,J=2.6Hz),9.11(1H,d,J=2.3Hz).
B)5-氯-6-(二氟甲氧基)吡啶-3-胺
3-氯-2-(二氟甲氧基)-5-硝基吡啶(2.57g)、氯化錫(II)二水合物(12.91g)及乙醇(100mL)之混合物於70℃攪拌整夜。反應混合物以醋酸乙酯及飽和碳酸氫鈉水溶液稀釋,過濾不溶物。濾液之水層以醋酸乙酯萃取,有機層以水及飽和食鹽水洗淨後,以無水硫酸鈉乾燥,減壓下餾去溶媒。殘渣以矽膠管柱層析(醋酸乙酯/己烷)精製,獲得標題化合物(2.17g)。
MS:[M+H]+ 194.9.
參考例2
6-(2H-1,2,3-三唑-2-基)-5-(三氟甲基)吡啶-3-胺
A)5-硝基-2-(2H-1,2,3-三唑-2-基)-3-(三氟甲基)吡啶
2-氯-5-硝基-3-(三氟甲基)吡啶(3.0g)及THF(15mL)之混合物中,於室溫加入2H-1,2,3-三唑(0.921mL),反應混合物於同溫度攪拌2小時。反應混合物以水稀釋,水層以醋酸乙酯萃取。有機層以水及飽和食鹽水洗淨後,以無水硫酸鈉乾燥,減壓下餾去溶媒。殘渣以矽膠管柱層析(醋酸乙酯/己烷)精製,獲得標題化合物(2.75g)。
MS:[M+H]+ 259.9.
B)6-(2H-1,2,3-三唑-2-基)-5-(三氟甲基)吡啶-3-胺
5-硝基-2-(2H-1,2,3-三唑-2-基)-3-(三氟甲基)吡啶(3.54g)、10%鹽酸/甲醇溶液(101mL)及甲醇(100mL)之混合物中,於室溫加入氯化錫(II)(12.95g),反應混合物於同溫度攪拌2小時。減壓下餾去溶媒,殘渣中加入醋酸乙酯,混合物中加入2N氫氧化鈉水溶液,進行中和。過濾析出物,濾液之水層以醋酸乙酯萃取。有機層以水及飽和食鹽水洗淨後,以無水硫酸鈉乾燥,減壓下餾去溶媒。殘渣以矽膠管柱層析(醋酸乙酯/己烷)精製,獲得標題化合物(2.95g)。
MS:[M+H]+ 229.9.
參考例3
5-氯-6-(2H-1,2,3-三唑-2-基)吡啶-3-胺
A)3-氯-5-硝基-2-(2H-1,2,3-三唑-2-基)吡啶
2,3-二氯-5-硝基吡啶(5.0g)、2H-1,2,3-三唑(1.7mL)、碳酸鉀(4.3g)及
DMF(25mL)之混合物於室溫攪拌3小時。反應混合物倒入冰水中,以醋酸乙酯萃取2次。有機層以水洗淨2次,以飽和食鹽水洗淨後,以硫酸鈉乾燥後,減壓下濃縮。殘渣以矽膠管柱層析(醋酸乙酯/己烷)精製,獲得標題化合物(3.5g)。
MS:[M+H]+ 225.9.
B)5-氯-6-(2H-1,2,3-三唑-2-基)吡啶-3-胺
3-氯-5-硝基-2-(2H-1,2,3-三唑-2-基)吡啶(3.3g)及氯化錫(II)二水合物(16.3g)及乙醇(100mL)之混合物於70℃攪拌整夜。反應混合物以醋酸乙酯稀釋,加入飽和碳酸氫鈉水溶液後,過濾不溶物。分離有機層,以水、飽和食鹽水洗淨,以硫酸鈉乾燥後,減壓下濃縮。殘渣以矽膠管柱層析(醋酸乙酯/己烷)精製,獲得標題化合物(2.4g)。
MS:[M+H]+ 195.9.
參考例4
5-胺基-2-(二氟甲氧基)菸鹼甲腈
5-氯-6-(二氟甲氧基)吡啶-3-胺(319mg)、參(二亞苄基丙酮)二鈀(0)(300mg)、Sphos(269mg)、氰化鋅(1.54g)及DMF(10mL)之混合物於120℃於微波照射下攪拌1小時。反應混合物倒入10%氨水溶液中,以醋酸乙酯萃取。有機層以10%氨水溶液、水,接著飽和食鹽水洗淨,以硫酸鎂乾燥後,減壓下濃縮。殘渣以矽膠管柱層析(醋酸乙酯/己烷)精製,獲得標題化合物(205mg)。
MS:[M+H]+ 185.9.
實施例1
A)2-甲氧基-1-(1-(三苯基甲基)-1H-咪唑-2-基)丙-1-酮
在1-(三苯基甲基)-1H-咪唑(50g)及THF(600mL)之混合物中,於-10℃滴加1.6M正丁基鋰/己烷溶液(100mL),升溫至0℃,反應混合物於同溫度攪拌30分鐘。反應混合物冷卻至-78℃,滴加2-甲氧基丙酸甲酯(20.94g)。反應混合物於同溫度攪拌1小時,接著一面升溫至室溫一面攪拌3小時。反應混合物中加入飽和氯化銨水溶液(10mL),水層以醋酸乙酯萃取。有機層以水及飽和食鹽水洗淨後,以無水硫酸鈉乾燥,減壓下餾去溶媒。在殘渣中加入己烷,濾取析出物,獲得標題化合物(50g)。
1H NMR(400MHz,DMSO-d6)δ 0.90(3H,d,J=6.8Hz),2.83(3H,s),4.88-4.93(1H,m),6.89-7.43(17 H,m).
B)1-(1H-咪唑-2-基)-2-甲氧基丙-1-酮
2-甲氧基-1-(1-(三苯基甲基)-1H-咪唑-2-基)丙-1-酮(150g)及5%醋酸/甲醇溶液(500mL)之混合物加熱回流16小時。反應混合物冷卻至室溫後,減壓下餾去溶媒。殘渣以矽膠管柱層析(醋酸乙酯/己烷)精製,獲得標題化合物(44g)。
MS:[M+H]+ 154.8.
C)1-(1-胺基-1H-咪唑-2-基)-2-甲氧基丙-1-酮
1-(1H-咪唑-2-基)-2-甲氧基丙-1-酮(20g)及DMF(100mL)之混合物中,於室溫加入1M第三丁氧化鉀的THF溶液(143mL),反應混合物於同溫度攪拌30分鐘。反應混合物中於室溫加入O-(4-硝基苯甲醯基)羥基胺(26g),反應混合物於同溫
度攪拌16小時。反應混合物中加入冰冷的水(40mL),減壓下餾去溶媒。殘渣中加入醋酸乙酯(200mL),過濾不溶物,減壓下濃縮濾液。殘渣以矽膠管柱層析(醋酸乙酯/己烷)精製,獲得標題化合物(17g)。
1H-NMR(400MHz,DMSO-d6)δ 1.32(3H,d,J=6.8Hz),3.24(3H,s),4.94-4.99(1H,m),6.86(2H,brs),7.06(1H,s),7.47(1H,s).
D)(2-(2-甲氧基丙醯基)-1H-咪唑-1-基)胺甲酸第三丁酯
1-(1-胺基-1H-咪唑-2-基)-2-甲氧基丙-1-酮(17g)及DMF(50mL)之混合物中於室溫加入DMAP(6.1g),接著於同溫度加入Boc2O(22.3mL)。反應混合物於80℃攪拌1小時,冷卻至室溫。減壓下餾去溶媒,殘渣以矽膠管柱層析(醋酸乙酯/己烷)精製,獲得標題化合物(13g)。
MS:[M+H]+ 270.1.
E)(4-溴-2-(2-甲氧基丙醯基)-1H-咪唑-1-基)胺甲酸第三丁酯
(2-(2-甲氧基丙醯基)-1H-咪唑-1-基)胺甲酸第三丁酯(8.0g)及DMF(40mL)之混合物中,於室溫滴加N-溴琥珀醯亞胺(5.2g)的DMF(10mL)溶液,反應混合物於同溫度攪拌16小時。反應混合物以水(80mL)稀釋,水層以醋酸乙酯萃取。有機層以水及飽和食鹽水洗淨後,以無水硫酸鈉乾燥,減壓下餾去溶媒。殘渣以矽膠管柱層析(醋酸乙酯/己烷)精製,獲得標題化合物(5.5g)。
1H-NMR(400MHz,DMSO-d6)δ 1.28(3H,d,J=6.8Hz),1.46(9H,s),3.21(3H,s),4.83-4.85(1H,m),7.93(1H,s),10.80(1H,s).
F)1-(1-胺基-4-溴-1H-咪唑-2-基)-2-甲氧基丙-1-酮
(4-溴-2-(2-甲氧基丙醯基)-1H-咪唑-1-基)胺甲酸第三丁酯(10g)及二氯甲烷(100mL)之混合物中,於0℃加入TFA(20mL),反應混合物於室溫攪拌1小時。
減壓下濃縮反應混合物,殘渣中加入飽和碳酸氫鈉水溶液(50mL)。水層以醋酸乙酯萃取,有機層以水及飽和食鹽水洗淨後,以無水硫酸鈉乾燥,減壓下餾去溶媒。殘渣中加入正戊烷,濾取析出物,獲得標題化合物(7.0g)。
MS:[M+H]+ 248.2.
1-(1-胺基-4-溴-1H-咪唑-2-基)-2-甲氧基丙-1-酮(7.0g)及THF(50mL)之混合物中,於室溫加入丙烯酸甲酯(5.1mL)及溴化鋰(9.71g)。反應混合物以氧脫氣後,反應混合物中於同溫度加入Pd(OAc)2(1.27g),反應混合物於氧環境下於50℃攪拌16小時。反應混合物以冰冷的水(50mL)稀釋,水層以醋酸乙酯萃取。有機層以水及飽和食鹽水洗淨後,以無水硫酸鈉乾燥,減壓下餾去溶媒。殘渣以矽膠管柱層析(醋酸乙酯/己烷)精製,獲得標題化合物(5.0g)。
MS:[M+H]+ 314.0.
2-溴-8-(1-甲氧基乙基)咪唑并[1,2-b]嗒-7-羧酸甲酯(8.0g)、甲苯(70mL)及水(10mL)之混合物以氮脫氣後,於室溫加入磷酸三鉀(17.6g)及2,4,6-三甲基三硼雜三氧雜環己烷(7.12mL)。混合物以氮進一步脫氣後,於室溫加入Pd(OAc)2(571mg)及SPhos(1.57g),反應混合物於80℃攪拌3小時。反應混合物以飽和碳酸氫鈉水溶液(50mL)稀釋,水層以醋酸乙酯萃取。有機層以水及飽和食鹽水洗淨後,以無水硫酸鈉乾燥,減壓下餾去溶媒。殘渣以矽膠管柱層析(醋酸乙酯/己烷)精製,獲得標題化合物(4.0g)。
MS:[M+H]+ 250.2
8-(1-甲氧基乙基)-2-甲基咪唑并[1,2-b]嗒-7-羧酸甲酯(4.36g)以HPLC(CHIRALCEL OD-H(VJ002),20mmID×250mmL,移動相:己烷/2-丙醇=950/50)分取,減壓下濃縮包含目標物之保持時間較小的部分,獲得標題化合物(2034mg)。
光學純度:99.9%ee,保持時間:6.845分鐘(CHIRALCEL OD-H(VK069),4.6mmID×250mmL,移動相:己烷/2-丙醇=950/50)
MS:[M+H]+ 250.0.
絕對配置係使用單結晶X射線繞射裝置來決定。
(S)-8-(1-甲氧基乙基)-2-甲基咪唑并[1,2-b]嗒-7-羧酸甲酯(1.71g)及醋酸(17mL)之混合物中,於室溫加入6N鹽酸(17.15mL),反應混合物於100℃攪拌整夜。減壓下濃縮反應混合物,殘渣以HPLC(C18,移動相:水/乙腈(含有0.1%TFA之系統))分取,減壓下濃縮所獲得之部分後,減壓下乾燥而獲得標題化合物(2.6g)。
MS:[M+H]+ 236.0.
(S)-8-(1-甲氧基乙基)-2-甲基咪唑并[1,2-b]嗒-7-羧酸三氟醋酸鹽(2.6g)、TEA(5.3mL)及甲苯(150mL)之混合物中,於室溫加入DPPA(4.9mL),反應混合物於同溫度攪拌2小時。反應混合物中加入醋酸(50mL)及水(50mL),反應混合物於80℃攪拌整夜。減壓下濃縮反應混合物後,殘渣以飽和碳酸氫鈉水溶液稀釋,水層以醋酸乙酯萃取。有機層以飽和食鹽水洗淨後,以無水硫酸鎂乾燥,減壓下
餾去溶媒。殘渣以矽膠管柱層析(NH,醋酸乙酯/己烷)精製,獲得標題化合物(1.38g)。
MS:[M+H]+ 207.0.
(S)-8-(1-甲氧基乙基)-2-甲基咪唑并[1,2-b]嗒-7-胺(1180mg)、DIEA(3.49mL)及THF(10mL)之混合物中,於0℃加入三光氣(679.1mg),反應混合物於室溫攪拌1小時。反應混合物中於室溫加入參考例1所獲得之5-氯-6-(二氟甲氧基)吡啶-3-胺(1.17g),反應混合物於60℃攪拌2小時。反應混合物中加入飽和碳酸氫鈉水溶液,水層以醋酸乙酯萃取,有機層以飽和食鹽水洗淨後,以無水硫酸鎂乾燥,減壓下餾去溶媒。殘渣以矽膠管柱層析(NH,醋酸乙酯/己烷)精製,接著以矽膠管柱層析(甲醇/醋酸乙酯)精製,獲得標題化合物(1.83g)。
1H NMR(300MHz,DMSO-d6)δ 1.52(3H,d,J=6.8Hz),2.35(3H,d,J=0.8Hz),3.30(3H,s),5.26(1H,q,J=6.8Hz),7.40-7.91(1H,m),7.92(1H,d,J=0.8Hz),8.21(1H,d,J=2.3Hz),8.33(1H,d,J=2.3Hz),8.69(1H,br s),9.01(1H,s),10.27(1H,br s).
MS:[M+H]+ 427.0.
絕對配置係使用單結晶X射線繞射裝置來決定。
實施例2
A)(6-氯-2-(2-甲氧基丙醯基)吡啶-3-基)胺甲酸第三丁酯
(2-溴-6-氯吡啶-3-基)胺甲酸第三丁酯(20.0g)及THF(160mL)之混合物中於-78℃加入1.08M甲基鋰/二乙基醚溶液(72.3mL),反應混合物於同溫度攪拌15分鐘。反應混合物中於-78℃加入1.6M正丁基鋰/己烷溶液(52.8mL),反應混合物於同溫度攪拌15分鐘。反應混合物中於-78℃加入2-甲氧基-1-N-嗎啉基丙-1-酮(16.9g)的THF(60mL)溶液,反應混合物一面升溫至室溫一面攪拌2小時。反應混合物中於室溫加入醋酸(15mL)的水(150mL)溶液,水層以醋酸乙酯萃取。有機層以飽和碳酸氫鈉水溶液及飽和食鹽水洗淨後,以無水硫酸鎂乾燥,減壓下餾去溶媒。殘渣以矽膠管柱層析(醋酸乙酯/己烷)精製,獲得標題化合物(15.81g)。
MS:[M+H-tBu]+ 258.9.
B)1-(6-氯-3-((2-硝基乙烯基)胺基)吡啶-2-基)-2-甲氧基丙-1-酮
(6-氯-2-(2-甲氧基丙醯基)吡啶-3-基)胺甲酸第三丁酯(15.7g)及醋酸乙酯(100mL)之混合物中,於室溫加入4N氯化氫環戊基甲基醚溶液(200mL),反應混合物於同溫度攪拌2小時。反應混合物中進一步於室溫加入4N氯化氫環戊基甲基醚溶液(100mL),於同溫度攪拌整夜,減壓下餾去溶媒。所獲得之殘渣、(E)-4-(2-硝基乙烯基)嗎啉(9.47g)、6N鹽酸(36mL)及丙酮(120mL)之混合物於室溫攪拌3小時。反應混合物以水(240mL)稀釋,於0℃攪拌1小時。濾取析出物,以水洗淨,減壓下乾燥所獲得之固體,獲得標題化合物(12.55g)。
MS:[M+H]+ 286.0.
DBU(6.62mL)及THF(120mL)之混合物中,於室溫加入1-(6-氯-3-((2-硝基乙烯基)胺基)吡啶-2-基)-2-甲氧基丙-1-酮(12.55g)的THF(280mL)溶液,反應混合物於同溫度攪拌1小時。反應混合物中加入2N鹽酸,pH調整成弱酸性後,以水稀釋,水層以醋酸乙酯萃取。有機層以飽和食鹽水洗淨後,以無水硫酸鎂乾燥,減壓下餾去溶媒。殘渣以矽膠管柱層析(醋酸乙酯/己烷)精製,獲得標題化合物(9.82g)。
MS:[M+H]+ 267.9.
2-氯-8-(1-甲氧基乙基)-7-硝基-1,5-啶(5.00g)、氯化錫(II)二水合物(21.1g)及醋酸乙酯(150mL)之混合物於60℃攪拌2小時後,於室溫攪拌整夜。反應混合物以醋酸乙酯稀釋,混合物以2M碳酸鉀水溶液中和。過濾析出物,濾液之水層以醋酸乙酯萃取。有機層以飽和食鹽水洗淨後,以無水硫酸鎂乾燥,減壓下餾去溶媒。殘渣以矽膠管柱層析(NH,醋酸乙酯/己烷)精製,獲得標題化合物(3.91g)。
MS:[M+H]+ 238.0.
6-氯-4-(1-甲氧基乙基)-1,5-啶-3-胺(3.84g)以HPLC(CHIRALPAK IG(VJ003),20mmID×250mmL,移動相:己烷/乙醇=900/100)分取,減壓下濃縮包含目標物之保持時間較大的部分,獲得標題化合物(1865mg)。
光學純度:99.9%ee,保持時間:7.359分鐘(CHIRALPAK AD-H(VJ019),4.6mmID×250mmL,移動相:己烷/2-丙醇=850/150)
MS:[M+H]+ 238.0.
絕對配置係使用單結晶X射線繞射裝置來決定。
反應分成以下所示之4次來施行。
反應混合物1:在三光氣(62mg)及THF(5mL)之混合物中,於0℃加入(S)-6-氯-4-(1-甲氧基乙基)-1,5-啶-3-胺(100mg)及DIEA(0.220mL)的THF(2mL)溶液,反應混合物於同溫度攪拌1小時。反應混合物中於0℃加入參考例2所獲得之6-(2H-1,2,3-三唑-2-基)-5-(三氟甲基)吡啶-3-胺(106mg),反應混合物於60℃攪拌整夜。
反應混合物2:在三光氣(187mg)及THF(12mL)之混合物中,於0℃加入(S)-6-氯-4-(1-甲氧基乙基)-1,5-啶-3-胺(300mg)及DIEA(0.660mL)的THF(6mL)溶液,反應混合物於同溫度攪拌1小時。反應混合物中於0℃加入參考例2所獲得之6-(2H-1,2,3-三唑-2-基)-5-(三氟甲基)吡啶-3-胺(318mg),反應混合物於60℃攪拌2小時。反應混合物中於同溫度加入6-(2H-1,2,3-三唑-2-基)-5-(三氟甲基)吡啶-3-胺(29mg),反應混合物攪拌整夜。
反應混合物3:在三光氣(375mg)及THF(24mL)之混合物中,於0℃加入(S)-6-氯-4-(1-甲氧基乙基)-1,5-啶-3-胺(600mg)及DIEA(1.32mL)的THF(12mL)溶液,反應混合物於同溫度攪拌1小時。反應混合物中於0℃加入參考例2所獲得之6-(2H-1,2,3-三唑-2-基)-5-(三氟甲基)吡啶-3-胺(636mg),反應混合物於60℃攪拌2小時。反應混合物中於同溫度加入6-(2H-1,2,3-三唑-2-基)-5-(三氟甲基)吡啶-3-胺(116mg),反應混合物攪拌整夜。
反應混合物4:在三光氣(531mg)及THF(34mL)之混合物中,於0℃加入(S)-
6-氯-4-(1-甲氧基乙基)-1,5-啶-3-胺(850mg)及DIEA(1.87mL)的THF(17mL)溶液,反應混合物於同溫度攪拌1小時。反應混合物中於0℃加入參考例2所獲得之6-(2H-1,2,3-三唑-2-基)-5-(三氟甲基)吡啶-3-胺(901mg),反應混合物於60℃攪拌2小時。反應混合物中於同溫度加入6-(2H-1,2,3-三唑-2-基)-5-(三氟甲基)吡啶-3-胺(164mg),反應混合物攪拌整夜。
反應混合物1-4合併成一個,混合物以飽和碳酸氫鈉水溶液稀釋,水層以醋酸乙酯萃取。有機層以飽和食鹽水洗淨後,以無水硫酸鎂乾燥,減壓下餾去溶媒。殘渣中加入THF及醋酸乙酯,過濾不溶物,減壓下濃縮濾液。殘渣以矽膠管柱層析(NH,醋酸乙酯/己烷)精製,獲得粗結晶(3.46g)。使所獲得之粗結晶於80℃溶解於醋酸乙酯(20mL)中,在混合溶液中於同溫度滴加正庚烷(180mL)。混合溶液於同溫度攪拌1小時後,冷卻至室溫,於同溫度攪拌整夜。濾取析出物,以醋酸乙酯及正庚烷之混合溶液洗淨後,於減壓下乾燥,獲得標題化合物(3.35g)。
1H NMR(300MHz,DMSO-d6)δ1.56(3H,d,J=6.4Hz),3.36(3H,s),5.85(1H,q,J=6.7Hz),7.77(1H,d,J=8.7Hz),8.18(2H,s),8.46(1H,d,J=9.1Hz),8.74(1H,d,J=2.6Hz),8.89(1H,d,J=2.3Hz),9.24(1H,s),9.68(1H,s),10.89(1H,s).
MS:[M-H]- 491.1.
絕對配置係使用單結晶X射線繞射裝置來決定。
實施例3
2-氯-8-(1-甲氧基乙基)-7-硝基-1,5-啶(500mg)、2,4,6-三甲基三硼雜三氧雜環己烷(0.39mL)、Pd(dppf)Cl2‧CH2Cl2(153mg)、磷酸三鉀(793mg)及1,2-二甲氧基乙烷(20mL)之混合物於微波照射下,於100℃加熱1.5小時。反應混合物以醋酸乙酯稀釋。矽藻土過濾不溶物,以醋酸乙酯洗淨。減壓下濃縮濾液。殘渣以矽膠管柱層析(醋酸乙酯/己烷)精製,獲得標題化合物(439mg)。
MS:[M+H]+ 247.9.
8-(1-甲氧基乙基)-2-甲基-7-硝基-1,5-啶(470mg)、氯化錫(II)二水合物(2.57g)、THF(3mL)及乙醇(12mL)之混合物於室溫攪拌整夜,於60℃攪拌7小時。反應混合物以醋酸乙酯稀釋,以飽和碳酸氫鈉水溶液中和。過濾不溶物,以醋酸乙酯洗淨。濾液以醋酸乙酯萃取2次。有機層以飽和食鹽水洗淨後,以無水硫酸鎂乾燥,減壓下餾去溶媒。殘渣以矽膠管柱層析(醋酸乙酯/己烷)精製,接著以矽膠管柱層析(NH,醋酸乙酯/己烷)精製,獲得標題化合物(306mg)。
MS:[M+H]+ 217.9.
在4-(1-甲氧基乙基)-6-甲基-1,5-啶-3-胺(80mg)、參考例2所獲得之6-(2H-1,2,3-三唑-2-基)-5-(三氟甲基)吡啶-3-胺(101mg)、吡啶(0.089mL)的THF(5mL)溶
液中於0℃加入三光氣(54.6mg)的THF(1mL)溶液。反應混合物於0℃攪拌30分鐘,於室溫攪拌30分鐘。於0℃加入吡啶(0.089mL),接著加入三光氣(54.6mg)的THF(1mL)溶液。反應混合物於0℃攪拌30分鐘,於室溫攪拌4小時。混合物倒入飽和碳酸氫鈉水溶液中,以醋酸乙酯萃取2次。有機層以飽和食鹽水洗淨後,以無水硫酸鎂乾燥,減壓下餾去溶媒。殘渣以矽膠管柱層析(NH,醋酸乙酯/己烷)精製,獲得標題化合物(127mg)。
MS:[M+H]+ 473.1.
N-(4-(1-甲氧基乙基)-6-甲基-1,5-啶-3-基)-N’-(6-(2H-1,2,3-三唑-2-基)-5-(三氟甲基)吡啶-3-基)尿素(119.8mg)以HPLC(CHIRALPAK AD-H(VA001),20mmID×250mmL,移動相:己烷/乙醇=700/300)分取,包含目標物之保持時間較小的部分減壓下濃縮,獲得標題化合物(55.6mg)。
MS:[M+H]+ 473.1.
實施例4
在(S)-8-(1-甲氧基乙基)-2-甲基咪唑并[1,2-b]嗒-7-羧酸甲酯
(743mg)的THF(30mL)溶液中於室溫加入8M氫氧化鈉水溶液(4mL)。反應混合物攪拌2日。減壓下濃縮反應混合物,殘渣以醋酸乙酯萃取。水層使用6N鹽酸調整成pH4,減壓下濃縮。殘渣懸浮於乙醇中,過濾不溶物,減壓下濃縮濾液。殘渣(848mg)及三乙基胺(1.51mL)的甲苯(50mL)溶液中於室溫加入DPPA(1.16mL)。於室溫攪拌40分鐘後,加入參考例3所獲得之5-氯-6-(2H-1,2,3-三唑-2-基)吡啶-3-胺(705mg)。反應混合物於100℃攪拌2小時後,倒入飽和碳酸氫鈉水溶液中,以醋酸乙酯萃取。分離有機層,以飽和食鹽水洗淨後,以無水硫酸鎂乾燥,減壓下餾去溶媒。殘渣以矽膠管柱層析(NH,甲醇/醋酸乙酯)及矽膠管柱層析(醋酸乙酯/己烷)精製,獲得標題化合物(488mg)。
1H NMR(300MHz,DMSO-d6)δ 1.54(3H,d,J=6.4Hz),2.37(3H,s),3.33(3H,s),5.29(1H,q,J=6.8Hz),7.96(1H,d,J=0.8Hz),8.16(2H,s),8.47-8.52(1H,m),8.54(1H,d,J=2.3Hz),8.75(1H,brs),9.04(1H,s),10.59(1H,brs).
MS:[M+H]+ 428.0.
實施例5
(S)-8-(1-甲氧基乙基)-2-甲基咪唑并[1,2-b]嗒-7-羧酸三氟醋酸鹽(80mg)、TEA(0.17mL)及甲苯(5mL)之混合物中,於室溫加入DPPA(0.12mL),反應混合物於同溫度攪拌30分鐘。進一步於室溫加入DPPA(0.12mL),反應混合
物於同溫度攪拌30分鐘。加入參考例4所獲得之5-胺基-2-(二氟甲氧基)菸鹼甲腈(57.9mg),反應混合物於110℃攪拌3小時。反應混合物中加入飽和碳酸氫鈉水溶液,以醋酸乙酯萃取。有機層以飽和食鹽水洗淨後,以無水硫酸鎂乾燥,減壓下餾去溶媒。殘渣以矽膠管柱層析(NH,醋酸乙酯/己烷)精製,以醋酸乙酯/己烷懸浮洗淨,獲得標題化合物(65mg)。
1H NMR(300MHz,DMSO-d6)δ 1.53(3H,d,J=6.8Hz),2.36(3H,s),3.31(3H,s),5.22-5.31(1H,m),7.47-7.98(1H,m),7.93(1H,d,J=0.8Hz),8.51-8.57(2H,m),8.68(1H,brs),9.01(1H,s),10.33(1H,brs).
MS:[M+H]+ 418.1.
實施例6
在8-(1-甲氧基乙基)-2-甲基咪唑并[1,2-b]嗒-7-羧酸甲酯(262mg)的甲醇溶液中於室溫加入8M氫氧化鈉水溶液(0.53mL),於同溫度攪拌5小時。反應混合物以2N鹽酸中和,減壓下濃縮。殘渣懸浮於醋酸乙酯中,過濾不溶物。藉由減壓下濃縮濾液而獲得標題化合物(256mg)。
MS:[M+H]+ 235.9.
在8-(1-甲氧基乙基)-2-甲基咪唑并[1,2-b]嗒-7-羧酸(166mg)及三乙基胺(0.30mL)的甲苯(10mL)溶液中於室溫加入DPPA(0.18mL)。於室溫攪拌40分鐘後,加入參考例2所獲得之6-(2H-1,2,3-三唑-2-基)-5-(三氟甲基)吡啶-3-胺(162mg)。反應混合物於100℃攪拌2小時後,倒入飽和碳酸氫鈉水溶液中,以醋酸乙酯萃取。分離有機層,以飽和食鹽水洗淨後,以無水硫酸鎂乾燥,減壓下餾去溶媒。殘渣以矽膠管柱層析(NH,甲醇/醋酸乙酯)精製,以醋酸乙酯/己烷懸浮洗淨而獲得標題化合物(183mg)。
MS:[M+H]+ 462.1.
N-(8-(1-甲氧基乙基)-2-甲基咪唑并[1,2-b]嗒-7-基)-N’-(6-(2H-1,2,3-三唑-2-基)-5-(三氟甲基)吡啶-3-基)尿素(183mg)以HPLC(CHIRALPAK IC(VB004),20mmID×250mmL,移動相:己烷/2-丙醇=300/700)分取,減壓下濃縮包含目標物之保持時間較小的部分。以醋酸乙酯/己烷洗淨,獲得標題化合物(62mg)。
1H NMR(300MHz,DMSO-d6)δ1.55(3H,d,J=6.8Hz),2.37(3H,d,J=0.8Hz),3.33(3H,s),5.24-5.34(1H,m),7.96(1H,d,J=0.8Hz),8.17(2H,s),8.72(1H,d,J=2.3Hz),8.80(1H,brs),8.83(1H,d,J=2.3Hz),9.06(1H,s),10.75(1H,brs).
MS:[M+H]+ 462.1.
實施例7
A)1-(三苯基甲基)-1H-咪唑
在咪唑(25g)的二氯甲烷(300mL)溶液中於0℃加入TEA(77mL)。攪拌5分鐘後,於同溫度逐次少量地加入三苯基甲基氯(102g)。反應混合物於室溫攪拌12小時。反應混合物以水稀釋,以二氯甲烷萃取2次。有機層以水洗淨,接著以飽和食鹽水洗淨,以硫酸鈉乾燥後,減壓下濃縮。藉由殘渣以己烷洗淨而獲得標題化合物(110g)。
1H NMR(300MHz,CDCl3)δ 6.82(1H,s),7.06(1H,s),7.08-7.15(6H,m),7.26-7.34(9H,m),7.45(1H,s).
B)2-甲氧基-2-甲基-1-(1-(三苯基甲基)-1H-咪唑-2-基)丙-1-酮
在1-(三苯基甲基)-1H-咪唑(1.0g)的THF(15mL)溶液中,於-10℃滴加1.4M正丁基鋰己烷溶液(2.3mL),於0℃攪拌30分鐘。反應混合物冷卻至-78℃後,滴加2-甲氧基-2-甲基丙酸甲酯(0.5g)後,於同溫度攪拌1小時,接著於室溫攪拌3小時。反應混合物中加入飽和氯化銨水溶液,以醋酸乙酯萃取2次。有機層以水洗淨,接著以飽和食鹽水洗淨,以硫酸鎂乾燥後,減壓下濃縮。藉由殘渣以己烷懸浮洗淨而獲得標題化合物(650mg)。
1H NMR(300MHz,CDCl3)δ1.38(6H,s),2.67(3H,s),7.02-7.15(12H,m),7.25-7.35(5H,m).
C)1-(1H-咪唑-2-基)-2-甲氧基-2-甲基丙-1-酮
2-甲氧基-2-甲基-1-(1-(三苯基甲基)-1H-咪唑-2-基)丙-1-酮(4.2g)及5%醋酸-甲醇溶液(50mL)之混合物回流16小時。反應混合物冷卻至室溫後,減壓下濃縮。殘渣以矽膠管柱層析(醋酸乙酯/己烷)精製,獲得標題化合物(1.2g)。
MS:[M+H]+ 169.2.
D)1-(1-胺基-1H-咪唑-2-基)-2-甲氧基-2-甲基丙-1-酮
在1-(1H-咪唑-2-基)-2-甲氧基-2-甲基丙-1-酮(1.4g)的DMF(15mL)溶液中加入1M第三丁氧化鉀的THF溶液(9.2mL),於同溫度攪拌30分鐘。所獲得之混合物中於室溫加入O-(4-硝基苯甲醯基)羥基胺(1.7g),於同溫度攪拌16小時。反應混合物中加入冷水,減壓下濃縮。殘渣以醋酸乙酯稀釋,過濾不溶物。減壓下濃縮濾液,殘渣以矽膠管柱層析(醋酸乙酯/己烷)精製,獲得標題化合物(1.0g)。
MS:[M+H]+ 184.1.
E)N-(2-(2-(2-甲氧基-2-甲基丙醯基)-1H-咪唑-1-基)(第三丁氧基)甲醯胺
在1-(1-胺基-1H-咪唑-2-基)-2-甲氧基-2-甲基丙-1-酮(1.0g)的DMF(10mL)溶液中於室溫加入DMAP(0.34g),接著Boc2O(1.2mL)。反應混合物於80℃攪拌1小時後,冷卻至室溫,減壓下濃縮。殘渣以矽膠管柱層析(醋酸乙酯/己烷)精製,獲得標題化合物(1.1g)。
MS:[M+H]+ 284.2.
F)N-(4-溴-2-(2-(2-甲氧基-2-甲基丙醯基)-1H-咪唑-1-基)(第三丁氧基)甲醯胺
在N-(2-(2-(2-甲氧基-2-甲基丙醯基)-1H-咪唑-1-基)(第三丁氧基)甲醯胺(1.0g)的DMF(10mL)溶液中滴加N-溴琥珀醯亞胺(0.82g)的DMF(5mL)溶液,反
應混合物於室溫攪拌16小時。反應混合物中加入飽和碳酸鈉水溶液,減壓下濃縮。殘渣以醋酸乙酯萃取2次,有機層以水洗淨,接著以飽和食鹽水洗淨,以硫酸鈉乾燥後,減壓下濃縮。殘渣以矽膠管柱層析(醋酸乙酯/己烷)精製,獲得標題化合物(700mg)。
MS:[M+H]+ 362.0.
G)1-(1-胺基-4-溴-1H-咪唑-2-基)-2-甲氧基-2-甲基丙-1-酮
在N-(4-溴-2-(2-(2-甲氧基-2-甲基丙醯基)-1H-咪唑-1-基)(第三丁氧基)甲醯胺(700mg)的二氯甲烷(10mL)溶液中於0℃加入三氟醋酸(3mL),反應混合物於室溫攪拌1小時。減壓下濃縮反應混合物,殘渣以飽和碳酸氫鈉水溶液中和。混合物以醋酸乙酯萃取2次。有機層以水洗淨,接著以飽和食鹽水洗淨,以硫酸鈉洗淨後,減壓下濃縮。藉由殘渣以戊烷洗淨而獲得標題化合物(450mg)。
MS:[M+H]+ 262.0.
在1-(1-胺基-4-溴-1H-咪唑-2-基)-2-甲氧基-2-甲基丙-1-酮(400mg)的THF(5mL)溶液中於室溫加入丙烯酸甲酯(0.3mL)、溴化鋰(531mg)。置換成氧環境,加入Pd(OAc)2(69mg),混合物於氧環境下於50℃攪拌16小時。反應混合物倒入水中,以醋酸乙酯萃取2次。有機層以水洗淨,接著以飽和食鹽水洗淨。有機層以硫酸鈉乾燥後,減壓下濃縮。殘渣以矽膠管柱層析(醋酸乙酯/己烷)精製,獲得標題化合物(250mg)。
MS:[M+H]+ 328.1.
在2-溴-8-(2-甲氧基丙-2-基)咪唑并[1,2-b]嗒-7-羧酸甲酯(200mg)的甲苯
(6mL)及水(0.4mL)溶液中,加入2,4,6-三甲基三硼雜三氧雜環己烷(0.15mL)、磷酸三鉀(390mg),置換成氮環境。加入Pd(OAc)2(28mg)、SPhos(101mg),混合物於80℃攪拌3小時。反應混合物倒入碳酸氫鈉水溶液中,以醋酸乙酯萃取2次。有機層以水、飽和食鹽水洗淨,以硫酸鈉乾燥後,減壓下濃縮。殘渣以矽膠管柱層析(醋酸乙酯/己烷)精製,獲得標題化合物(120mg)。
MS:[M+H]+ 264.0.
在2-甲基-8-(2-甲氧基丙-2-基)咪唑并[1,2-b]嗒-7-羧酸甲酯(300mg)的乙醇(10mL)溶液中加入8M氫氧化鈉水溶液(0.72mL),反應混合物於60℃攪拌整夜。加入8M氫鈉水溶液(1.44mL),於80℃攪拌整夜。反應混合物中加入6M鹽酸,使其成為pH4的酸性,減壓下濃縮。殘渣懸浮於乙醇中,過濾不溶物,以乙醇洗淨。一面濾液與甲苯共沸一面減壓下濃縮,獲得標題化合物(406mg)。
MS:[M+H]+ 250.0.
在2-甲基-8-(2-甲氧基丙-2-基)咪唑并[1,2-b]嗒-7-羧酸甲酯(50mg)及三乙基胺(0.04mL)的DMF(5mL)混合物中加入DPPA(0.05mL),於室溫攪拌2小時。反應混合物中加入飽和碳酸氫鈉水溶液,以醋酸乙酯萃取。有機層以飽和食鹽水洗淨,以硫酸鎂乾燥後,減壓下濃縮。殘渣中加入甲苯(5mL)、三乙基胺(0.04mL)及參考例3所獲得之5-氯-6-(2H-1,2,3-三唑-2-基)吡啶-3-胺(27.5mg),反應混合物於110℃攪拌3小時。反應混合物中加入飽和碳酸氫鈉水溶液,以醋酸乙酯萃取。有機層以飽和食鹽水洗淨,以硫酸鎂乾燥後,減壓下濃縮。殘渣藉由以HPLC
精製,而獲得標題化合物(2mg)。
1H NMR(300MHz,CDCl3)δ 1.95(6H,s),2.44(3H,d,J=0.8Hz),3.29(3H,s),7.64(1H,d,J=0.8Hz),7.70(1H,s),7.88-7.99(2H,m),8.38(1H,d,J=2.6Hz),8.57(1H,d,J=2.6Hz),9.17(1H,s),9.58(1H,s).
MS:[M+H]+ 442.1.
實施例8
A)1-胺基-1H-咪唑-2-羧酸乙酯
在咪唑-2-羧酸乙酯(20g)的無水DMF(400mL)溶液中於氮環境下於-10℃滴加1M六甲基二矽胺化鋰的THF溶液(171mL),於同溫度攪拌30分鐘。於0℃加入O-二苯基氧膦基羥基胺(39.9g)的無水DMF(1000mL)溶液。反應混合物於室溫攪拌16小時後,減壓下濃縮。殘渣中加入水,以二氯甲烷萃取4次。萃取液藉由以飽和食鹽水洗淨2次後,以無水硫酸鈉乾燥,減壓下濃縮而獲得標題化合物(23.0g)。
1H NMR(400MHz,DMSO-d6)δ 1.31(3H,t,J=7.2Hz),4.30(2H,q,J=7.2Hz),6.59(2H,brs),6.98(1H,d,J=0.8Hz),7.39(1H,d,J=0.8Hz).
B)1-((第三丁氧基羰基)胺基)-1H-咪唑-2-羧酸乙酯
在1-胺基-1H-咪唑-2-羧酸乙酯(23.0g)及DMAP(8.72g)的無水DMF(250mL)
溶液中滴加Boc2O(28.0g)。混合物於氮環境下於80-85℃攪拌4小時後,減壓下濃縮。殘渣以二氯甲烷稀釋,以飽和檸檬酸水溶液洗淨,接著以飽和食鹽水洗淨。以無水硫酸鈉乾燥後,減壓下濃縮。殘渣以矽膠管柱層析(醋酸乙酯/二氯甲烷)精製,獲得標題化合物(26.6g)。
1H NMR(400MHz,MeOD)δ 1.40(3H,t,J=7.2Hz),1.52(9H,s),4.39(2H,q,J=7.2Hz),7.15(1H,d,J=1.2Hz),7.39(1H,d,J=1.2Hz).
C)1-((第三丁氧基羰基)胺基)-4-氯-1H-咪唑-2-羧酸乙酯
在1-((第三丁氧基羰基)胺基)-1H-咪唑-2-羧酸乙酯(80.0g)的無水DMF(800mL)溶液中逐次少量地加入N-氯琥珀醯亞胺(50.2g),反應混合物於氮環境下於室溫攪拌16小時。反應混合物以水稀釋,以醋酸乙酯萃取3次。有機層以水洗淨2次,以飽和食鹽水洗淨2次,以無水硫酸鈉乾燥後,減壓下濃縮。殘渣以矽膠管柱層析(醋酸乙酯/石油醚)精製,獲得標題化合物(16.8g)。
1H NMR(400MHz,CDCl3)δ 1.39(3H,t,J=7.2Hz),1.49(9H,s),4.39(2H,q,J=7.2Hz),7.16(1H,s),8.07(1H,brs).
D)3-(1-((第三丁氧基羰基)胺基)-4-氯-1H-咪唑-2-基)-3-側氧基丙酸乙酯
在1-((第三丁氧基羰基)胺基)-4-氯-1H-咪唑-2-羧酸乙酯(22.0g)及醋酸乙酯(33.5g)的無水THF(250mL)溶液中於氮環境下於-10℃滴加1M六甲基二矽胺化鋰的THF溶液(266mL)。反應混合物於同溫度攪拌30分鐘,接著於室溫攪拌4.5小時。冷卻至0℃後,加入醋酸,使其成為pH=5後,以飽和碳酸氫鈉水溶液使其成為pH=8。以醋酸乙酯萃取3次後,有機層以飽和食鹽水洗淨2次,以硫酸鈉乾燥後,減壓下濃縮。殘渣以矽膠管柱層析(醋酸乙酯/二氯甲烷)精製,獲得標
題化合物(19.7g)。
1H NMR(400MHz,CDCl3)δ 1.26(3H,t,J=7.2Hz),1.50(9H,s),4.05(2H,s),4.19(2H,q,J=6.8Hz),7.25(1H,s),8.31(1H,brs).
在3-(1-((第三丁氧基羰基)胺基)-4-氯-1H-咪唑-2-基)-3-側氧基丙酸乙酯(31.0g)的無水二氯甲烷(400mL)溶液中加入N,N-二甲基甲醯胺二甲基縮醛(13.4g)。反應混合物於室溫攪拌16小時後,減壓下濃縮。殘渣以矽膠管柱層析(甲醇/二氯甲烷)精製,獲得標題化合物(16.0g)。
MS:[M+H]+ 241.9.
在2-氯-8-羥基咪唑并[1,2-b]嗒-7-羧酸乙酯(16.0g)的乙腈(150mL)溶液中加入氧基溴化磷(30.4g),反應混合物於氮環境下於80-90℃攪拌2小時。冷卻至室溫後,加入冰水,以飽和碳酸氫鈉水溶液中和。以醋酸乙酯萃取3次。有機層以水洗淨2次,以飽和食鹽水洗淨2次,以硫酸鈉乾燥後,減壓下濃縮。殘渣以矽膠管柱層析(醋酸乙酯/石油醚)精製,獲得標題化合物(8.24g)。
1H NMR(400MHz,CDCl3)δ 1.45(3H,t,J=7.2Hz),4.47(2H,q,J=7.2Hz),8.03(1H,s),8.71(1H,s).
8-溴-2-氯咪唑并[1,2-b]嗒-7-羧酸乙酯(1.0g)、異丙烯基三氟硼酸鉀(534mg)、磷酸三鉀(2.09g)、氯化1,1’-雙(二苯基膦基)二茂鐵鈀(II)(240mg)、無水DMF(5mL)及無水1,4-二烷(15mL)之混合物於氮環境下於80-85℃攪拌16小時。反應混合物冷卻至室溫後,以醋酸乙酯稀釋。有機層以水洗淨2次,以飽和
食鹽水洗淨,以硫酸鈉乾燥後,減壓下濃縮。殘渣以矽膠管柱層析(醋酸乙酯/石油醚)精製,獲得標題化合物(715mg)。
MS:[M+H]+ 265.9.
2-氯-8-(丙烯-2-基)咪唑并[1,2-b]嗒-7-羧酸乙酯(1.20g)及氯化參(三苯基膦)銠(I)(418mg)的無水乙醇(30mL)混合物於氫環境下於10-15℃攪拌40小時。混合物於減壓下濃縮。殘渣以矽膠管柱層析(醋酸乙酯/石油醚)精製,獲得標題化合物(955mg)。
1H NMR(400MHz,CDCl3)δ 1.43(3H,t,J=7.2Hz),1.59(6H,d,J=7.2Hz),4.09-4.22(1H,m),4.43(2H,q,J=7.2Hz),7.88(1H,s),8.59(1H,s).
在2-氯-8-(丙-2-基)咪唑并[1,2-b]嗒-7-羧酸乙酯(955mg)的甲醇(10mL)、THF(10mL)及水(10mL)溶液中加入氫氧化鈉(571mg),混合物於氮環境下於10℃攪拌1小時。反應混合物中加入2N鹽酸而使其成為pH=5後,以醋酸乙酯萃取3次。有機層以飽和食鹽水洗淨2次,以硫酸鈉乾燥後,減壓下濃縮。殘渣以醋酸乙酯/石油醚洗淨,獲得標題化合物(800mg)。
1H NMR(400MHz,DMSO-d6)δ 1.49(6H,d,J=6.8Hz),4.09-4.24(1H,m),8.57(1H,s),8.72(1H,s),13.97(1H,brs).
在2-氯-8-(丙-2-基)咪唑并[1,2-b]嗒-7-羧酸(60mg)及三乙基胺(51mg)的二烷(3mL)混合物中於10℃加入DPPA(130mg)。於同溫度攪拌30分鐘後,加入
參考例1所獲得之5-氯-6-(二氟甲氧基)吡啶-3-胺(58mg),混合物於氮環境下於100℃攪拌1小時。減壓下濃縮反應混合物。殘渣以矽膠管柱層析(醋酸乙酯/石油醚)精製,接著以HPLC精製,獲得標題化合物(31mg)。
1H NMR(400MHz,DMSO-d6)δ 1.46(6H,d,J=6.8Hz),3.41-3.57(1H,m),7.67(1H,t,J=72.8Hz),8.20-8.40(3H,m),8.71(1H,s),9.03(1H,brs),9.62(1H,brs).
MS:[M+H]+ 430.9.
實施例9
在2-氯-8-(丙-2-基)咪唑并[1,2-b]嗒-7-羧酸(462mg)的甲醇溶液中於室溫加入0.6M三甲基矽基二偶氮甲烷的己烷溶液(9.6mL)。反應混合物於室溫攪拌1小時後,減壓下濃縮,獲得標題化合物(475mg)。
MS:[M+H]+ 254.1.
在2-氯-8-(丙-2-基)咪唑并[1,2-b]嗒-7-羧酸甲酯(475mg)、2,4,6-三甲基三硼雜三氧雜環己烷(0.52mL)、磷酸三鉀(1.92g)、SPhos(307mg)、甲苯(3mL)及水(0.3mL)之混合物中於氬環境下加入Pd(OAc)2(84mg)。反應混合物於130℃加熱1小時後,倒入飽和碳酸氫鈉水溶液中,以醋酸乙酯萃取。有機層以飽和食鹽水
洗淨,以硫酸鎂乾燥,減壓下濃縮。殘渣以矽膠管柱層析(醋酸乙酯/己烷)精製,獲得標題化合物(356mg)。
MS:[M+H]+ 234.2.
在2-甲基-8-(丙-2-基)咪唑并[1,2-b]嗒-7-羧酸甲酯(356mg)的甲醇(15mL)溶液中加入2M氫氧化鈉水溶液(1.5mL),混合物於室溫攪拌2小時。混合物中加入8M氫氧化鈉水溶液(0.76mL),混合物於室溫攪拌4小時。反應混合物中於0℃加入1N鹽酸來中和後,以醋酸乙酯萃取。有機層以水、飽和食鹽水洗淨,以硫酸鎂乾燥後,減壓下濃縮,獲得標題化合物(254mg)。
MS:[M+H]+ 220.2.
在咪唑并[1,2-b]嗒-7-羧酸2-甲基-8-(丙-2-基酯)(80mg)及三乙基胺(0.15mL)的甲苯(10mL)溶液中加入二苯基磷酸疊氮化物(0.09mL)。於同溫度攪拌40分鐘後,加入參考例3所獲得之5-氯-6-(2H-1,2,3-三唑-2-基)吡啶-3-胺(71mg),於100℃攪拌2小時。反應混合物倒入飽和碳酸氫鈉水溶液中,以醋酸乙酯萃取。有機層以飽和食鹽水洗淨,以硫酸鎂乾燥後,減壓下濃縮。殘渣藉由以矽膠管柱層析(醋酸乙酯/己烷)精製,以醋酸乙酯/己烷懸浮洗淨而獲得標題化合物(83mg)。
1H NMR(300MHz,DMSO-d6)δ1.49(6H,d,J=7.2Hz),2.38(3H,s),3.48(1H,quin,J=6.9Hz),7.93(1H,d,J=0.8Hz),8.12-8.16(2H,m),8.46(1H,d,J=2.3Hz),8.49(1H,s),8.57(1H,d,J=2.3Hz),8.82(1H,s),9.73(1H,brs).
MS:[M+H]+ 412.2.
以同樣的方法,合成以下實施例10-270之化合物。
製劑例1(膠囊的製造)
1)、2)、3)及4)混合,並填充於明膠膠囊中。
製劑例2(錠劑的製造)
1)、2)、3)的全量及30g的4)以水練合,真空乾燥後,施行整粒。此整粒末中混合14g的4)及1g的5),藉由打錠機打錠。如此,獲得每1錠含有實施例1之化合物30mg之錠劑1000錠。
試驗例1
重組型人類MALT1蛋白質的調製
人類MALT1基因係以GC-030-D09(pENTR221/MALT1,GeneCopoeia)當作模板以在N末端附加BamH I以及在C末端附加Not I的限制酵素之引子施行PCR,獲得人類MALT1(340-789aa),為了使其形成二聚體,酵母GCN4之白胺酸拉鍊基因係以酵母DNA當作模板以在N末端附加Nde I以及在C末端附加連結子(linker)序列(GGAAGTGGCTCAGGTAGC(序列編號1))及BamH I的限制酵素之引子施行PCR,獲得酵母GCN4(251-281aa)。所獲得之兩片段限制酵素處理,並插入至pET28a(Novagen)載體之Nde I及Not I之間,獲得重組型人類MALT1蛋白質表現載體pET28a/His-LZ-hMALT1v1(340-789)-His。
重組型人類MALT1蛋白質的調製係使上述所製作之表現質體轉形至ECOS Competent E.coli BL21(DE3)(Nippon Gene公司)中而施行。轉形所獲得之大腸菌接種於300mL的LB培養基(1%胰腖、0.5%酵母萃取物、0.5%氯化鈉、0.01%胺苄青黴素)中,於30℃培養16小時。所獲得之培養液移植至包含6L的主發酵用培養基(0.3%磷酸二氫鉀、0.6%磷酸氫二鈉、0.1%氯化銨、0.05%氯化鈉、0.024%硫酸鎂、0.01%Antifoam PE-L、1.5%山梨糖醇、1.5%酪蛋白胺基酸、0.5%酵母萃取物、0.01%胺苄青黴素)之罐培養槽中,以37℃,通氣量5L/min,攪拌轉數400rpm開始培養。培養液的濁度成為約500克萊特(klett)單位之時點,培養溫度下降至16℃後以成為終濃度0.1mM之方式添加異丙基-β-D-硫基半乳哌喃糖
苷(IPTG),藉由進一步施行16小時培養而施行人類MALT1蛋白質的誘導表現。培養終了後,培養液以5,000rpm,10min離心分離,所獲得之人類MALT1蛋白質表現大腸菌懸浮於包含50mM Tris-HCl pH8.0、300mM NaCl、5mM DTT、5U/ml Benzonase、20mM Imidazole、10%glycerol、0.1%NP-40之緩衝液中後,使用Sonifier(Branson公司)施行超音波處理。此破碎液離心分離(15,300×G,30min,TOMY MX-301),所獲得之上清液通液至預先經50mM Tris-HCl pH8.0、300mM NaCl、5mM DTT、10%glycerol平衡化而得之Ni-NTA Superflow(QIAGEN公司)管柱中並使其吸附後,以包含50mM Tris-HCl pH8.0、300mM NaCl、5mM DTT、10%glycerol、250mM Imidazole之緩衝液使其溶出。進一步以預先經包含50mM Tris-HCl pH8.0、150mM NaCl、5mM DTT、10%glycerol之緩衝液平衡化而得之Superdex 200 pg管柱施行凝膠過濾而回收目標的部分,等量加入50mM Tris-HCl pH8.0、150mM NaCl、5mM DTT、90%glycerol,製成精製人類MALT1蛋白質。所調製出之蛋白質係於-30℃保存,蛋白質濃度係以BSA為標準,使用BCA Protein Assay Kit(PIERCE公司)予以測定。
MALT1酵素阻礙活性的測定
對384孔黑盤(Greiner)添加經試驗緩衝液((20mM HEPES(同仁化學)、10mM KCl(和光純藥)、1.5mM MgCl2(Sigma-Aldrich)、1mM EDTA(pH 8.0)(Nippon Gene)、0.01%TritonX-100(Sigma-Aldrich)、1mM DTT(和光純藥))稀釋之化合物溶液2uL。接著,添加經精製之重組型人類MALT1酵素溶液2uL,於室溫保溫培養60分鐘。添加基質溶液(75uM Ac-LRSR-AFC(SM Biochemicals)、20mM HEPES(同仁化學)、10mM KCl(和光純藥)、1.5mM MgCl2(Sigma-Aldrich)、1mM EDTA(pH 8.0)(Nippon Gene)、0.01%TritonX-100(Sigma-Aldrich)、1mM DTT(和光
純藥))2uL,於室溫保溫培養60分鐘。以盤讀出器Envision(PerkinElmer)測定緊接於添加基質後及酵素反應後之Excitation 400nm、Emission 485nm的螢光值,因酵素反應所增加之螢光值用於阻礙率(%)計算。阻礙率(%)係無添加酵素之值設為100%,無添加化合物之值設為0%而予以算出。
以下示出MALT1酵素阻礙活性之測定結果。
由此結果,顯示出本發明化合物具有MALT1酵素阻礙活性。
試驗例2
使用OCI-Ly3細胞之增殖阻礙活性測定
以在96孔盤中成為1.25×103cells/孔之方式,OCI-Ly3細胞接種於包含20%FCS(胎牛血清,Thermo Fisher Scientific)及單硫基甘油(富士Film和光純藥)之細胞培養培養基IMDM(富士Film和光純藥)中。對未添加試驗化合物之細胞添加Cell Titer-Glo溶液(Promega),於室溫攪拌15分鐘後,以Envision(PerkinElmer)在接種當日測定發光值。已添加經二甲基亞碸(富士Film和光純藥)溶解之試驗化合物之細胞於CO2保溫培養箱(37℃)靜置6日後,同樣地測定發光值。試驗化合物對OCI-Ly3細胞增殖之阻礙率(%)係以下述式予以算出。
細胞增殖阻礙率(%)=(1-(試驗化合物處理第6日之發光值-試驗化合物處理前之發光值)÷(未添加化合物第6日之發光值-化合物處理前之發光值))×100
以下示出細胞增殖阻礙率之測定結果。
由此結果,顯示出本發明化合物阻礙細胞增殖。
試驗例3
對OCI-Ly3細胞荷癌模型之抗腫瘤作用
人類瀰漫性大細胞型B細胞淋巴瘤細胞OCI-Ly3(DSMZ,German Collection of Microorganisms and Cell Cultures)懸浮於Matrigel(BD Biosciences):HBSS(Thermo Fisher Scientific)=1:1的溶液中,1×107cells移植至NOG雌小鼠(日本CLEA)的腹部皮下。測定經植活之腫瘤的腫瘤徑,藉由以下式算出腫瘤體積。
腫瘤體積=長徑×短徑×短徑×(1/2)
選出腫瘤植活成腫瘤體積為120mm3前後的大小之個體,每1組6隻使用於實驗中。以10mg/kg(10mL/kg)的用量1日2次經口投予試驗化合物的0.5%甲基纖維素溶液(富士Film和光純藥)懸浮液達3週。腫瘤體積係投予開始前日,及每3日至4日經時性地測定,在21日投藥終了翌日最終測定腫瘤徑,算出腫瘤體積。與對照投予組比較而得之試驗化合物投予組的腫瘤增殖設為平均腫瘤體積增加比率T/C,藉由以下式予以算出。
T/C=((試驗化合物投予組的投予終了後之腫瘤體積-試驗化合物投予組的投予開始前日之腫瘤體積)/(對照投予組的投予終了後之腫瘤體積-對照投予組的投予開始前日之腫瘤體積))×100
試驗化合物的T/C示於以下。
由此等結果,顯示出本發明化合物在人類瀰漫性大細胞型B細胞淋巴瘤細胞OCI-Ly3的皮下移植模型中持有抗腫瘤作用。
[產業上之可利用性]
本發明之化合物可具有MALT1阻礙作用,被期待有用於作為癌症等之預防或治療藥。
本申請案係以在日本申請之日本專利特願2018-222530為基礎,其內容係全部含括於本說明書中。
<110> 武田藥品工業股份有限公司(Takeda Pharmaceutical Company Limited)
<120> 雜環化合物
<130> 092968
<140> TW108143201
<141> 2019-11-27
<150> JP2018-222530
<151> 2018-11-28
<160> 1
<170> PatentIn version 3.5
<210> 1
<211> 18
<212> DNA
<213> 人工序列
<220>
<223> 連結子序列
Claims (8)
- 如申請專利範圍第3項所述之醫藥,其係MALT1阻礙藥。
- 如申請專利範圍第3項所述之醫藥,其係癌症之預防或治療藥。
- 如申請專利範圍第5項所述之醫藥,其中,癌症係大腸癌、肺癌、中皮瘤、胰臟癌、咽頭癌、喉頭癌、食道癌、胃癌、十二指腸癌、小腸癌、乳癌、卵巢癌、睪丸腫瘤、前列腺癌、肝臟癌、甲狀腺癌、腎臟癌、子宮癌、妊娠性絨毛癌、腦腫瘤、網膜母細胞瘤、皮膚癌、肉瘤、惡性骨腫瘤、膀胱癌、血液癌、惡性淋巴瘤、霍奇金氏症或原發不明癌。
- 如申請專利範圍第7項所述之癌症的預防或治療劑、癌症之增殖阻礙劑或癌症之轉移抑制劑,其中,癌症係大腸癌、肺癌、中皮瘤、胰臟癌、咽頭癌、喉頭癌、食道癌、胃癌、十二指腸癌、小腸癌、乳癌、卵巢癌、睪丸腫瘤、前列腺癌、肝臟癌、甲狀腺癌、腎臟癌、子宮癌、妊娠性絨毛癌、腦腫瘤、網膜 母細胞瘤、皮膚癌、肉瘤、惡性骨腫瘤、膀胱癌、血液癌、惡性淋巴瘤、霍奇金氏症或原發不明癌。
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TW111139300A TWI848400B (zh) | 2018-11-28 | 2019-11-27 | 雜環化合物及醫藥 |
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US (3) | US20220048916A1 (zh) |
EP (1) | EP3888652A4 (zh) |
JP (2) | JP6972384B2 (zh) |
KR (2) | KR102646470B1 (zh) |
CN (2) | CN118420620A (zh) |
AU (1) | AU2019390863A1 (zh) |
BR (1) | BR112021009994A2 (zh) |
CA (1) | CA3120774A1 (zh) |
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PH (1) | PH12021551251A1 (zh) |
SG (1) | SG11202105652XA (zh) |
TW (2) | TWI784213B (zh) |
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NZ777412A (en) * | 2018-11-28 | 2024-05-31 | Takeda Pharmaceutical Company Ltd | Heterocyclic compound |
EP4163280A4 (en) | 2020-05-27 | 2024-06-05 | Takeda Pharmaceutical Company Limited | METHOD FOR PREPARING A HETEROCYCLIC COMPOUND |
GB202018412D0 (en) | 2020-11-23 | 2021-01-06 | Exscientia Ltd | Malt-1 modulators ii |
MX2024008008A (es) | 2021-12-30 | 2024-07-12 | Shanghai Hansoh Biomedical Co Ltd | Derivado triciclico inhibidor, metodo de preparacion de este y aplicacion de este. |
WO2023149450A1 (ja) | 2022-02-02 | 2023-08-10 | 小野薬品工業株式会社 | Malt1阻害薬を有効成分として含むがん治療剤 |
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WO2018165385A1 (en) * | 2017-03-08 | 2018-09-13 | Cornell University | Inhibitors of malt1 and uses thereof |
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FR2288521A1 (fr) * | 1974-10-25 | 1976-05-21 | Merck Patent Gmbh | Nouvelles penicillines et procede pour leur preparation |
CA2222687A1 (en) * | 1995-05-31 | 1996-12-05 | Masami Muraoka | Novel naphthyridine derivatives |
GB9720052D0 (en) * | 1997-09-19 | 1997-11-19 | Smithkline Beecham Plc | Novel compounds |
GB201321734D0 (en) * | 2013-12-09 | 2014-01-22 | Ucb Pharma Sa | Therapeutic Agents |
DK3149001T3 (da) * | 2014-05-28 | 2019-07-22 | Novartis Ag | Hidtil ukendte pyrazolopyrimidinderivater og deres anvendelse som MALT1-hæmmere |
WO2017081641A1 (en) | 2015-11-13 | 2017-05-18 | Novartis Ag | Novel pyrazolo pyrimidine derivatives |
JP2019522035A (ja) | 2016-07-29 | 2019-08-08 | ルピン・リミテッド | Malt1阻害剤としての置換チアゾロ−ピリジン化合物 |
JP7097880B2 (ja) | 2016-11-01 | 2022-07-08 | コーネル ユニバーシティー | Malt1分解のための化合物 |
US20200111087A1 (en) * | 2018-10-08 | 2020-04-09 | Jinlei Zhou | Method for encrypting digital contract document between contractors |
NZ777412A (en) | 2018-11-28 | 2024-05-31 | Takeda Pharmaceutical Company Ltd | Heterocyclic compound |
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WO2018165385A1 (en) * | 2017-03-08 | 2018-09-13 | Cornell University | Inhibitors of malt1 and uses thereof |
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