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法尼基蛋白转移酶抑制剂。1-(8-氯-6,11-二氢-5H-苯并[5,6]环庚并[1,2-b]吡啶-11-基)哌嗪和1-(3-溴-8-氯-6,11-二氢-5H-苯并[5,6]环庚并[1,2-b]吡啶-11-基)哌嗪的4-酰胺基、4-氨基甲酰基和4-羧酰胺基衍生物。

Inhibitors of farnesyl protein transferase. 4-Amido, 4-carbamoyl, and 4-carboxamido derivatives of 1-(8-chloro-6,11-dihydro-5H-benzo[5,6]- cyclohepta[1,2-b]pyridin-11-yl)piperazine and 1-(3-bromo-8-chloro-6,11- dihydro-5H-benzo[5,6]cyclohepta[1,2-b]pyridin-11-yl)piperazine.

作者信息

Mallams A K, Rossman R R, Doll R J, Girijavallabhan V M, Ganguly A K, Petrin J, Wang L, Patton R, Bishop W R, Carr D M, Kirschmeier P, Catino J J, Bryant M S, Chen K J, Korfmacher W A, Nardo C, Wang S, Nomeir A A, Lin C C, Li Z, Chen J, Lee S, Dell J, Lipari P, Liu M

机构信息

Schering-Plough Research Institute, Kenilworth, New Jersey 07033-0539, USA.

出版信息

J Med Chem. 1998 Mar 12;41(6):877-93. doi: 10.1021/jm970462w.

Abstract

The synthesis of a variety of novel 4-amido, 4-carbamoyl and 4-carboxamido derivatives of 1-(8-chloro-6,11-dihydro-5H-benzo[5,6]cyclohepta[1,2-b]pyridin-11-yl) piperazine to explore the SAR of this series of FPT inhibitors is described. This resulted in the synthesis of the 4- and 3-pyridylacetyl analogues 45a and 50a, respectively, both of which were orally active but were found to be rapidly metabolized in vivo. Identification of the principal metabolites led to the synthesis of a variety of new compounds that would be less readily metabolized, the most interesting of which were the 3- and 4-pyridylacetyl N-oxides 80a and 83a. Novel replacements for the pyridylacetyl moiety were also sought, and this resulted in the discovery of the 4-N-methyl and 4-N-carboxamidopiperidinylacetyl derivatives 135a and 160a, respectively. All of these derivatives exhibited greatly improved pharmacokinetics. The synthesis of the corresponding 3-bromo analogues resulted in the discovery of the 4-pyridylacetyl N-oxides 83b (+/-) and 85b [11S(-)] and the 4-carboxamidopiperidinylacetamido derivative 160b (+/-), all of which exhibited potent FPT inhibition in vitro. All three showed excellent oral bioavailability in vivo in nude mice and cynomolgus monkeys and exhibited excellent antitumor efficacy against a series of tumor cell lines when dosed orally in nude mice.

摘要

描述了1-(8-氯-6,11-二氢-5H-苯并[5,6]环庚并[1,2-b]吡啶-11-基)哌嗪的多种新型4-酰胺基、4-氨基甲酰基和4-羧酰胺基衍生物的合成,以探索该系列FPT抑制剂的构效关系。这导致分别合成了4-吡啶基乙酰基类似物45a和3-吡啶基乙酰基类似物50a,两者均具有口服活性,但在体内被发现迅速代谢。对主要代谢物的鉴定导致合成了多种不易代谢的新化合物,其中最有趣的是3-和4-吡啶基乙酰基N-氧化物80a和83a。还寻求了吡啶基乙酰基部分的新型替代物,这导致分别发现了4-N-甲基和4-N-羧酰胺基哌啶基乙酰基衍生物135a和160a。所有这些衍生物的药代动力学都有了极大的改善。相应的3-溴类似物的合成导致发现了4-吡啶基乙酰基N-氧化物83b(±)和85b[11S(-)]以及4-羧酰胺基哌啶基乙酰胺衍生物160b(±),所有这些在体外均表现出有效的FPT抑制作用。这三种化合物在裸鼠和食蟹猴体内均表现出优异的口服生物利用度,并且在裸鼠口服给药时对一系列肿瘤细胞系表现出优异的抗肿瘤疗效。

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