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计算碳氢键离解焓以预测药物分子的氧化易感性。

Calculated carbon-hydrogen bond dissociation enthalpies for predicting oxidative susceptibility of drug substance molecules.

机构信息

Research Analytical, Pharmaceutical Sciences, Pfizer Global Research & Development, Groton, CT 06340, USA.

出版信息

Int J Pharm. 2011 Oct 14;418(2):304-17. doi: 10.1016/j.ijpharm.2011.04.063. Epub 2011 May 14.

Abstract

The carbon-hydrogen bond dissociation enthalpy (BDE) concept is evaluated as a potential computed indicator of stability of pharmaceutical drug substance candidates - specifically for oxidative stability of these molecules. Computational methods are discussed. Accuracy and validity of the methods are evaluated. BDEs are computed for several well-known molecules, for which stability and degradant identification information is known. Anecdotal correlations are noted between the lowest BDE energies of familiar molecules (sertraline, ezlopitant and related structures, ziprasidone, trovafloxacin, and varenicline), the sites of oxidative lability on these molecules and the identities of oxidative degradants. A low BDE may correlate in general with a reactive site on a molecule, not just an oxidatively susceptible one.

摘要

碳氢键离解焓(BDE)概念被评估为一种潜在的计算指标,可用于预测候选药物的稳定性——特别是这些分子的氧化稳定性。本文讨论了相关的计算方法,并对其准确性和有效性进行了评估。计算了几种已知的分子的 BDE,这些分子的稳定性和降解产物信息是已知的。注意到了一些熟悉的分子(舍曲林、依佐匹坦及其相关结构、齐拉西酮、曲伐沙星和伐伦克林)的最低 BDE 能量、这些分子的氧化不稳定部位以及氧化降解产物之间的有趣相关性。一般来说,BDE 较低可能与分子的反应部位相关,而不仅仅是易氧化的部位。

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