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基于芯片的细胞色素P450药物代谢与电喷雾电离-质谱检测联用

Chip-based P450 drug metabolism coupled to electrospray ionization-mass spectrometry detection.

作者信息

Benetton Salete, Kameoka Jun, Tan Aimin, Wachs Timothy, Craighead Harold, Henion Jack D

机构信息

Analytical Toxicology, College of Veterinary Medicine, Cornell University, 927 Warren Drive, Ithaca, New York 14850, USA.

出版信息

Anal Chem. 2003 Dec 1;75(23):6430-6. doi: 10.1021/ac030249+.

Abstract

A chip-based P450 in vitro metabolism assay coupled with ESI-MS and ESI-MS/MS detection is described in this paper. The chips were made of a cyclic olefin polymer using a hot embossing process. The introduction of reagent solutions into the chip was carried out using fused-silica capillaries coupled to two syringes with the flow rate controlled by a syringe pump. Initial experiments described here employed a small commercial guard column in an off-chip format to desalt and concentrate the products of the enzymatic reaction prior to ESI-MS analysis. The system was used both to yield the Michaelis constant (K(m)) of the P450 biotransformation of imipramine into desipramine and to determine the IC50 value of a chemical inhibitor (tranylcypromine) for this CYP2C19-mediated reaction. The results demonstrated that the kinetics of the reaction inside the 4-microL volume within the channels of the cyclic olefin polymer chip provided results in agreement with those reported in the literature using conventional assays. The above reactions were carried out using human liver microsomes, and the metabolites were detected by ESI-MS showing the potential of the chip-based P450 reaction for metabolite screening studies as well as for P450 inhibition assays. A porous monolithic column was subsequently integrated into the chip to perform the reaction mixture cleanup process in an integrated fashion on the chip that is necessary for ESI-MS detection. The miniature monolithic SPE column was prepared in situ inside the chip via UV-initiated polymerization. The results obtained using the integrated system demonstrated the possibility of performing P450 enzymatic reactions in a microvolume reaction chamber coupled directly to ESI-MS detection and required less than 4 microg of HLM protein.

摘要

本文描述了一种基于芯片的P450体外代谢分析方法,该方法结合了电喷雾电离质谱(ESI-MS)和电喷雾串联质谱(ESI-MS/MS)检测。芯片由环状烯烃聚合物通过热压印工艺制成。使用与两个注射器相连的熔融石英毛细管将试剂溶液引入芯片,流速由注射泵控制。此处描述的初步实验采用芯片外形式的小型商业保护柱,在进行ESI-MS分析之前对酶促反应产物进行脱盐和浓缩。该系统既用于测定丙咪嗪经P450生物转化为去甲丙咪嗪的米氏常数(K(m)),也用于确定化学抑制剂(反苯环丙胺)对该CYP2C19介导反应的半数抑制浓度(IC50)值。结果表明,环状烯烃聚合物芯片通道内4微升体积内的反应动力学所提供的结果与使用传统分析方法在文献中报道的结果一致。上述反应使用人肝微粒体进行,代谢产物通过ESI-MS检测,显示了基于芯片的P450反应在代谢产物筛选研究以及P450抑制分析方面的潜力。随后将一个多孔整体柱集成到芯片中,以在芯片上以集成方式进行ESI-MS检测所需的反应混合物净化过程。微型整体固相萃取柱通过紫外引发聚合在芯片内部原位制备。使用集成系统获得的结果表明,在直接与ESI-MS检测相连的微体积反应室中进行P450酶促反应是可能的,并且所需的人肝微粒体蛋白少于4微克。

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