Synthesis of Biologically Active Piperidine Metabolites of Clopidogrel: Determination of Structure and Analyte Development
作者:Scott A. Shaw、Balu Balasubramanian、Samuel Bonacorsi、Janet Caceres Cortes、Kevin Cao、Bang-Chi Chen、Jun Dai、Carl Decicco、Animesh Goswami、Zhiwei Guo、Ronald Hanson、W. Griffith Humphreys、Patrick Y. S. Lam、Wenying Li、Arvind Mathur、Brad D. Maxwell、Quentin Michaudel、Li Peng、Andrew Pudzianowski、Feng Qiu、Shun Su、Dawn Sun、Adrienne A. Tymiak、Benjamin P. Vokits、Bei Wang、Ruth Wexler、Dauh-Rurng Wu、Yingru Zhang、Rulin Zhao、Phil S. Baran
DOI:10.1021/acs.joc.5b00632
日期:2015.7.17
Clopidogrel is a prodrug anticoagulant with active metabolites that irreversibly inhibit the platelet surface GPCR P2Y12 and thus inhibit platelet activation. However, gaining an understanding of patient response has been limited due to imprecise understanding of metabolite activity and stereochemistry, and a lack of acceptable analytes for quantifying in vivo metabolite formation. Methods for the
氯吡格雷是具有活性代谢产物的前药抗凝剂,其不可逆地抑制血小板表面GPCR P2Y 12并因此抑制血小板活化。然而,由于对代谢物活性和立体化学的不精确了解,以及缺乏用于量化体内代谢物形成的可接受分析物,对患者反应的了解受到了限制。公开了用于产生氯吡格雷的所有生物活性代谢物,其立体化学分配以及通过三种概念上正交的途径开发稳定的分析物的方法。