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使用计算机模拟方法、斑马鱼水槽实验和液相色谱高分辨率质谱分析对咖啡醇进行代谢研究。

Metabolic study of cafestol using in silico approach, zebrafish water tank experiments and liquid chromatography high-resolution mass spectrometry analyses.

作者信息

Andriolo Cyrus Veiga, Novaes Fábio Junior M, Pereira Henrique Marcelo Gualberto, Sardela Vinícius Figueiredo, Rezende Claudia Moraes

机构信息

Universidade Federal do Rio de Janeiro, Instituto de Química, Laboratório de Análise de Aromas, Avenida Athos da Silveira Ramos, 149, Bloco A, Instituto de Química, Sala 626A, Rio de Janeiro, RJ 21941-895, Brazil.

Universidade Federal do Rio de Janeiro, Instituto de Química, Laboratório de Análise de Aromas, Avenida Athos da Silveira Ramos, 149, Bloco A, Instituto de Química, Sala 626A, Rio de Janeiro, RJ 21941-895, Brazil; Universidade Federal de Viçosa, Departamento de Química, Avenida Peter Henry Rolfs, s/n, Campus Universitário, Viçosa, MG 36570-900, Brazil.

出版信息

J Chromatogr B Analyt Technol Biomed Life Sci. 2021 Dec 1;1186:123028. doi: 10.1016/j.jchromb.2021.123028. Epub 2021 Nov 14.

Abstract

Coffee is one of the most consumed beverages worldwide. Cafestol is an endogenous coffee diterpene present in raw coffee beans and also found in hot beverages, with several biological activities. However, there is still little information on this molecule after ingestion of coffee infusion. Zebrafish (Danio rerio) is a promising in vivo model for metabolic studies due to the annotation of mammalian orthologs to encode enzymes related to drug metabolism. Experiments using Zebrafish Water Tank (ZWT) model produce more significant number of metabolites for molecular investigation in a cleaner matrix than other classical models, such as purified hepatocytes. This work aimed to investigate the biotransformation of cafestol by the ZWT model using ultra-performance liquid chromatography coupled to hybrid quadrupole-orbitrap high-resolution mass spectrometry equipped with electrospray ionization (UPLC-HRMS) supported by in silico approach using SMARTCyp, Way2Drug and XenoSite Softwares. Twenty-five metabolites of cafestol were proposed by in silico analysis, in which 5 phase I metabolites were confirmed in the ZWT by UPLC and MS/HRMS investigation: 6-hydroxy-cafestol, 6,12-dihydroxy-cafestol, 2-oxo-cafestol, 6-oxo-cafestol and one isomer whose position in the carboxyl group was not determined. These metabolites were observed during 9 h of the experiment, whose contents were associated with the behavioral responses of the fish.

摘要

咖啡是全球消费最为广泛的饮品之一。咖啡醇是一种内源性咖啡二萜,存在于生咖啡豆中,也存在于热饮中,具有多种生物活性。然而,关于饮用咖啡冲泡液后该分子的信息仍然很少。斑马鱼(Danio rerio)是一种很有前景的用于代谢研究的体内模型,因为它能注释与药物代谢相关的编码酶的哺乳动物直系同源基因。与其他经典模型(如纯化的肝细胞)相比,使用斑马鱼水槽(ZWT)模型进行的实验能在更纯净的基质中产生更多数量的用于分子研究的代谢物。这项工作旨在利用配备电喷雾电离的超高效液相色谱与混合四极杆 - 轨道阱高分辨率质谱联用技术(UPLC - HRMS),并借助SMARTCyp、Way2Drug和XenoSite软件的计算机模拟方法,通过ZWT模型研究咖啡醇的生物转化。通过计算机模拟分析提出了25种咖啡醇的代谢物,其中5种I相代谢物通过UPLC和MS/HRMS研究在ZWT中得到确认:6 - 羟基 - 咖啡醇、6,12 - 二羟基 - 咖啡醇、2 - 氧代 - 咖啡醇、6 - 氧代 - 咖啡醇以及一种羧基位置未确定的异构体。这些代谢物在实验的9小时内被观察到,其含量与鱼的行为反应相关。

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