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分枝杆菌对苯甲酸酯模型前药的激活。与哺乳动物血浆和肝脏水解的比较。

Activation of benzoate model prodrugs by mycobacteria. Comparison with mammalian plasma and liver hydrolysis.

机构信息

Faculty of Pharmacy, University of Lisbon, Av. Prof. Gama Pinto, 1649-003 Lisboa, Portugal.

University of Lausanne, 1015 Lausanne, Switzerland.

出版信息

Eur J Pharm Sci. 2021 Jul 1;162:105831. doi: 10.1016/j.ejps.2021.105831. Epub 2021 Apr 9.

Abstract

Due to difficulties in drug penetration in M. tuberculosis, a prodrug approach based on mycobacterial activation appears as a promising strategy to increase the delivery of antitubercular drugs to the target microorganisms. Esters have been successful used by us and others to deliver drugs to mycobacteria, however because very little is known about the metabolic hydrolysis of esters by mycobacteria in connection with prodrug activation, we decided to study the process further. For that we selected a series of 13 benzoates with different chain lengths and ramifications in the alkoxy side as model prodrugs and examined their hydrolysis by a mycobacterial homogenate, comparing the results with those obtained parallelly in human plasma and in total rat liver homogenate. In all biological media, the benzoates with a linear alkyl group showed a parabolic dependence between log(k) and logP (or the number of carbons of the linear alkyl chain) that reached a maximal value for the n-butyl chain. Considering linear correlations for the total number of compounds between log(k) and chosen descriptors, for mycobacterial esterases, pKa of the leaving alcohol (pKa) seem to be the most important descriptor. Plasma esterases seem to be quite sensitive to the Taft polarity parameter σ* and also to pKa and less sensitive to steric effects. Liver esterases seem to be more sensitive to the Taft steric descriptor E. Lipophilicity correlates weakly with log(k) in all the 3 media, however, is more important when one looks for mycobacterial activation selectivity in relation to plasma metabolism or in relation to liver homogenate metabolism. The importance of lipophilicity increases further when biparametric expressions are considered. We showed that it is easy to activate a wide variety of benzoate esters using a mycobacterial homogenate. The data also suggest that with careful design is possible to obtain tuberculostatic prodrug esters sensitive to mycobacterial hydrolases while reasonably resistant to plasma and liver hydrolysis. One important observation is that mycobacterial hydrolysis is less affected by bulky substituents than liver homogenate or plasma hydrolysis. tert-Butyl is probably the substituent in the alkoxy side that seems more adequate to resist simultaneously plasma and liver metabolism, while allowing activation by mycobacterial esterases. Hexyl is also a good option for the medicinal chemist if a linear alkoxy chain is needed.

摘要

由于结核分枝杆菌(Mycobacterium tuberculosis)内药物渗透困难,基于分枝杆菌激活的前药方法似乎是提高抗结核药物递送至靶微生物的有前途的策略。酯类已被我们和其他人成功地用于将药物递送至分枝杆菌,但由于对分枝杆菌代谢水解酯类与前药激活之间的关系知之甚少,因此我们决定进一步研究该过程。为此,我们选择了一系列具有不同链长和烷氧基侧支化的 13 种苯甲酸酯作为模型前药,并检查了它们在分枝杆菌匀浆中的水解情况,将结果与在人血浆和大鼠肝匀浆中平行获得的结果进行了比较。在所有生物介质中,具有线性烷基的苯甲酸酯的 log(k)与 logP(或线性烷基链的碳原子数)之间呈抛物线关系,对于正丁基链达到最大值。考虑到对数(k)与所选描述符之间的总化合物数的线性相关性,对于分枝杆菌酯酶,离去醇的 pKa(pKa)似乎是最重要的描述符。血浆酯酶似乎对 Taft 极性参数σ*非常敏感,也对 pKa 敏感,对立体效应不太敏感。肝酯酶似乎对 Taft 立体描述符 E 更敏感。亲脂性与 log(k)在所有 3 种介质中相关性较弱,但在寻找与血浆代谢或与肝匀浆代谢相关的分枝杆菌激活选择性时更为重要。当考虑双参数表达式时,亲脂性的重要性进一步增加。我们表明,使用分枝杆菌匀浆很容易激活各种苯甲酸酯。数据还表明,通过精心设计,可以获得对分枝杆菌水解酶敏感的结核分枝杆菌前药酯类,同时对血浆和肝水解具有合理的抗性。一个重要的观察结果是,分枝杆菌水解受大取代基的影响小于肝匀浆或血浆水解。叔丁基可能是烷氧基侧链中最适合同时抵抗血浆和肝代谢并允许被分枝杆菌酯酶激活的取代基。如果需要线性烷氧基链,则己基也是药物化学家的不错选择。

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