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基于结构的新型胍/苯甲脒模拟物设计:强效且口服生物可利用的Xa因子抑制剂作为新型抗凝剂。

Structure-based design of novel guanidine/benzamidine mimics: potent and orally bioavailable factor Xa inhibitors as novel anticoagulants.

作者信息

Lam Patrick Y S, Clark Charles G, Li Renhua, Pinto Donald J P, Orwat Michael J, Galemmo Robert A, Fevig John M, Teleha Christopher A, Alexander Richard S, Smallwood Angela M, Rossi Karen A, Wright Matthew R, Bai Stephen A, He Kan, Luettgen Joseph M, Wong Pancras C, Knabb Robert M, Wexler Ruth R

机构信息

Bristol-Myers Squibb Company, P.O. Box 5400, Princeton, New Jersey 08542-5400, USA.

出版信息

J Med Chem. 2003 Oct 9;46(21):4405-18. doi: 10.1021/jm020578e.

Abstract

As part of an ongoing effort to prepare orally active factor Xa inhibitors using structure-based drug design techniques and molecular recognition principles, a systematic study has been performed on the pharmacokinetic profile resulting from replacing the benzamidine in the P1 position with less basic benzamidine mimics or neutral residues. It is demonstrated that lowering the pK(a) of the P1 ligand resulted in compounds (3-benzylamine, 15a; 1-aminoisoquinoline, 24a; 3-aminobenzisoxazole, 23a; 3-phenylcarboxamide, 22b; and 4-methoxyphenyl, 22a) with improved pharmacokinetic features mainly as a result of decreased clearance, increased volume of distribution, and enhanced oral absorption. This work resulted in a series of potent and orally bioavailable factor Xa inhibitors that ultimately led to the discovery of SQ311, 24a. SQ311, which utilizes a 1-aminoisoquinoline as the P1 ligand, inhibits factor Xa with a K(i) of 0.33 nM and demonstrates both good in vivo antithrombotic efficacy and oral bioavailability.

摘要

作为使用基于结构的药物设计技术和分子识别原理来制备口服活性Xa因子抑制剂的持续努力的一部分,已经对用碱性较弱的苯甲脒模拟物或中性残基取代P1位的苯甲脒所产生的药代动力学特征进行了系统研究。结果表明,降低P1配体的pK(a)会产生具有改善药代动力学特征的化合物(3-苄胺,15a;1-氨基异喹啉,24a;3-氨基苯并异恶唑,23a;3-苯基甲酰胺,22b;以及4-甲氧基苯基,22a),主要是由于清除率降低、分布容积增加和口服吸收增强。这项工作产生了一系列强效且口服生物可利用的Xa因子抑制剂,最终促成了SQ311(24a)的发现。SQ311利用1-氨基异喹啉作为P1配体,以0.33 nM的K(i)抑制Xa因子,并显示出良好的体内抗血栓形成疗效和口服生物利用度。

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