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用于药物代谢物合成的人肝脏亚细胞S9组分的电化学探测

Electrochemical Probing of Human Liver Subcellular S9 Fractions for Drug Metabolite Synthesis.

作者信息

Medina Daphne, Omanakuttan Bhavana, Nguyen Ricky, Alwarsh Eman, Walgama Charuksha

机构信息

Department of Physical & Applied Sciences, University of Houston-Clear Lake, 2700 Bay Area Boulevard, Houston, TX 77058, USA.

出版信息

Metabolites. 2024 Aug 3;14(8):429. doi: 10.3390/metabo14080429.

Abstract

Human liver subcellular fractions, including liver microsomes (HLM), liver cytosol fractions, and S9 fractions, are extensively utilized in in vitro assays to predict liver metabolism. The S9 fractions are supernatants of human liver homogenates that contain both microsomes and cytosol, which include most cytochrome P450 (CYP) enzymes and soluble phase II enzymes such as glucuronosyltransferases and sulfotransferases. This study reports on the direct electrochemistry and biocatalytic features of redox-active enzymes in S9 fractions for the first time. We investigated the electrochemical properties of S9 films by immobilizing them onto a high-purity graphite (HPG) electrode and performing cyclic voltammetry under anaerobic (Ar-saturated) and aerobic (O-saturated) conditions. The heterogeneous electron transfer rate between the S9 film and the HPG electrode was found to be 14 ± 3 s, with a formal potential of -0.451 V vs. Ag/AgCl reference electrode, which confirmed the electrochemical activation of the FAD/FMN cofactor containing CYP450-reductase (CPR) as the electron receiver from the electrode. The S9 films have also demonstrated catalytic oxygen reduction under aerobic conditions, identical to HLM films attached to similar electrodes. Additionally, we investigated CYP activity in the S9 biofilm for phase I metabolism using diclofenac hydroxylation as a probe reaction and identified metabolic products using liquid chromatography-mass spectrometry (LC-MS). Investigating the feasibility of utilizing liver S9 fractions in such electrochemical assays offers significant advantages for pharmacological and toxicological evaluations of new drugs in development while providing valuable insights for the development of efficient biosensor and bioreactor platforms.

摘要

人肝亚细胞组分,包括肝微粒体(HLM)、肝细胞溶质组分和S9组分,在体外试验中被广泛用于预测肝脏代谢。S9组分是人肝匀浆的上清液,其中包含微粒体和细胞溶质,包括大多数细胞色素P450(CYP)酶以及可溶性II相酶,如葡萄糖醛酸转移酶和磺基转移酶。本研究首次报道了S9组分中氧化还原活性酶的直接电化学和生物催化特性。我们通过将S9膜固定在高纯度石墨(HPG)电极上,并在厌氧(氩气饱和)和好氧(氧气饱和)条件下进行循环伏安法,研究了S9膜的电化学性质。发现S9膜与HPG电极之间的异质电子转移速率为14±3 s,相对于Ag/AgCl参比电极的形式电位为-0.451 V,这证实了含FAD/FMN辅因子的CYP450还原酶(CPR)作为电极电子受体的电化学活化。S9膜在好氧条件下也表现出催化氧还原,与附着在类似电极上的HLM膜相同。此外,我们以双氯芬酸羟基化为探针反应,研究了S9生物膜中用于I相代谢的CYP活性,并使用液相色谱-质谱联用(LC-MS)鉴定代谢产物。研究在这种电化学试验中利用肝脏S9组分的可行性,对于开发新药的药理和毒理学评估具有显著优势,同时为高效生物传感器和生物反应器平台的开发提供了有价值的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4780/11356027/d11ee19a611b/metabolites-14-00429-sch001.jpg

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