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班布特罗对映体及其中间体对人丁酰胆碱酯酶的立体选择性抑制作用。

Stereoselective inhibition of human butyrylcholinesterase by the enantiomers of bambuterol and their intermediates.

作者信息

Pistolozzi Marco, Du Huaqiao, Wei Hong, Tan Wen

机构信息

School of Bioscience and Bioengineering, South China University of Technology, Higher Education Mega Center, Guangzhou, People's Republic of China (M.P., H.D., H.W., W.T.); Guangdong Provincial Key Laboratory of Fermentation and Enzyme Engineering, South China University of Technology, Guangzhou, People's Republic of China (M.P., H.D., H.W.); and Key Laboratory of Industrial Biotechnology of Guangdong Higher Education Institutes, South China University of Technology, Guangzhou, People's Republic of China (M.P., W.T.).

School of Bioscience and Bioengineering, South China University of Technology, Higher Education Mega Center, Guangzhou, People's Republic of China (M.P., H.D., H.W., W.T.); Guangdong Provincial Key Laboratory of Fermentation and Enzyme Engineering, South China University of Technology, Guangzhou, People's Republic of China (M.P., H.D., H.W.); and Key Laboratory of Industrial Biotechnology of Guangdong Higher Education Institutes, South China University of Technology, Guangzhou, People's Republic of China (M.P., W.T.)

出版信息

Drug Metab Dispos. 2015 Mar;43(3):344-52. doi: 10.1124/dmd.114.060251. Epub 2014 Dec 11.

Abstract

This work describes the sequential hydrolysis of bambuterol enantiomers and their monocarbamate metabolites (MONO) catalyzed by human butyrylcholinesterase (BChE) as well as the enzyme inhibition resulting from this process. Particular emphasis is given to the contribution given by MONO to the enzyme inhibition because it was not fully characterized in previous works. Bambuterol and MONO enantiomers displayed the same time- and concentration-dependent mechanism of interaction with the enzyme. The hydrolysis kinetics of both bambuterol and MONO was enantioselective, and the (R)-enantiomer of each compound was hydrolyzed fourfold faster than the respective (S)-enantiomer. Even though the enzyme inhibition rates of (R)- and (S)-MONO were much slower than those of their respective bambuterol enantiomers (∼15-fold), both MONO enantiomers showed a significant BChE inhibition when physiologically relevant concentrations of enzyme and inhibitors were used (∼50% of their respective bambuterol enantiomers). The kinetic constants obtained by testing each single compound were used to model the contribution given by MONO to the enzyme inhibition observed for bambuterol. The hydrolysis of MONO enantiomers enhanced the inhibitory power of bambuterol enantiomers of about 27.5% (R) and 12.5% (S) and extended more than 1 hour the duration of inhibition. The data indicate that MONO contribute significantly to the inhibition of BChE occurring in humans upon administration of normal doses of bambuterol. In addition, the hydrolysis of MONO resulted in the rate-limiting step in the conversion of bambuterol in its pharmacologically active metabolite terbutaline; therefore, MONO concentrations should always be monitored during pharmacokinetic studies of bambuterol.

摘要

这项工作描述了人丁酰胆碱酯酶(BChE)催化的班布特罗对映体及其单氨基甲酸酯代谢物(MONO)的顺序水解过程,以及该过程导致的酶抑制作用。特别强调了MONO对酶抑制作用的贡献,因为在先前的研究中尚未对其进行充分表征。班布特罗和MONO对映体与该酶相互作用的机制表现出相同的时间和浓度依赖性。班布特罗和MONO的水解动力学具有对映体选择性,每种化合物的(R)-对映体水解速度比相应的(S)-对映体快四倍。尽管(R)-和(S)-MONO对酶的抑制率比其各自的班布特罗对映体慢得多(约15倍),但当使用生理相关浓度的酶和抑制剂时,两种MONO对映体均表现出显著的BChE抑制作用(约为其各自班布特罗对映体的50%)。通过测试每种单一化合物获得的动力学常数用于模拟MONO对班布特罗观察到的酶抑制作用的贡献。MONO对映体的水解使班布特罗对映体的抑制能力提高了约27.5%(R)和12.5%(S),并将抑制持续时间延长了1小时以上。数据表明,在给予正常剂量班布特罗后,MONO对人体中发生的BChE抑制有显著贡献。此外,MONO的水解导致班布特罗向其药理活性代谢物特布他林转化的限速步骤;因此,在班布特罗的药代动力学研究中应始终监测MONO的浓度。

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