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通过液相色谱-串联质谱法检测大鼠胆汁中4-异亚丙基丙酮代谢产生的谷胱甘肽共轭物。

Detection of glutathione conjugates derived from 4-ipomeanol metabolism in bile of rats by liquid chromatography-tandem mass spectrometry.

作者信息

Alvarez-Diez Teresa M, Zheng Jiang

机构信息

Department of Pharmaceutical Sciences, School of Pharmacy, Bouvé College of Health Sciences, Northeastern University, 360 Huntington Avenue, Boston, Massachusetts 02115, USA.

出版信息

Drug Metab Dispos. 2004 Dec;32(12):1345-50. doi: 10.1124/dmd.104.000406. Epub 2004 Aug 24.

Abstract

Earlier studies postulated that bioactivation of 4-ipomeanol by cytochrome P450 enzymes may occur through oxidation of its furan ring, following a mechanism similar to the bioactivation of other furan-containing compounds. This would lead to the formation of furan epoxides and alpha,beta-unsaturated di-aldehyde-reactive metabolites that can conjugate with glutathione. These metabolites are thought to be responsible for the cytotoxic and anticancer properties of 4-ipomeanol. We hypothesized that if 4-ipomeanol is metabolized following this pathway, its glutathione conjugates would be isobaric (molecular ion mass = 492 Da) and would be excreted in bile. To investigate this hypothesis, we analyzed by liquid chromatography-tandem mass spectrometry the bile of rats administered d0/d6 4-ipomeanol (1:1 ratio) intravenously. Hexadeuterated 4-ipomeanol had all deuterium atoms incorporated on its aliphatic chain. Multiple reaction monitoring scans of bile for the mass transition: MH+/(MH - 129)+, which is characteristic of glutathione conjugates, detected four glutathione conjugates. The observation of the isotope cluster (M + 1)+ (d0)/(MH + 6)+ (d6) in a 1:1 molar ratio confirmed that these conjugates were derived from 4-ipomeanol. Retention of the six deuterium atoms in the glutathione conjugates detected, (MH + 6)+, indicates that the bioactivation of 4-ipomeanol took place on the furan ring moiety. Rat hepatic microsomal incubations provided additional evidence. From this study, the mass of the reactive metabolites of 4-ipomeanol can be inferred. The inferred mass (186 Da) matches the mass postulated. A pathway of 4-ipomeanol bioactivation is proposed here. This work represents one step forward to understanding the mechanism of bioactivation of 4-ipomeanol.

摘要

早期研究推测,细胞色素P450酶对4-异戊烯醇的生物活化可能通过其呋喃环的氧化发生,其机制类似于其他含呋喃化合物的生物活化。这将导致呋喃环氧化物和α,β-不饱和二醛反应性代谢产物的形成,这些代谢产物可与谷胱甘肽结合。这些代谢产物被认为是导致4-异戊烯醇具有细胞毒性和抗癌特性的原因。我们推测,如果4-异戊烯醇按照此途径代谢,其谷胱甘肽结合物将是等压的(分子离子质量 = 492 Da),并会通过胆汁排泄。为了验证这一推测,我们通过液相色谱 - 串联质谱法分析了静脉注射d0/d6 4-异戊烯醇(1:1比例)的大鼠胆汁。十六氘代4-异戊烯醇的所有氘原子都结合在其脂肪链上。对胆汁进行多反应监测扫描,检测质量跃迁:MH+/(MH - 129)+,这是谷胱甘肽结合物的特征,检测到四种谷胱甘肽结合物。以1:1摩尔比观察到同位素簇(M + 1)+ (d0)/(MH + 6)+ (d6),证实这些结合物源自4-异戊烯醇。在检测到的谷胱甘肽结合物(MH + 6)+中保留了六个氘原子,表明4-异戊烯醇的生物活化发生在呋喃环部分。大鼠肝微粒体孵育提供了额外的证据。通过这项研究,可以推断出4-异戊烯醇反应性代谢产物的质量。推断出的质量(186 Da)与推测的质量相符。本文提出了4-异戊烯醇生物活化的途径。这项工作朝着理解4-异戊烯醇生物活化机制迈出了一步。

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