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A sensitive and efficient method for simultaneous profiling of bile acids and fatty acids by UPLC-MS/MS

机译:通过UPLC-MS / MS同时分析胆汁酸和脂肪酸的敏感和有效的方法

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The carboxyl group is the functional group in both bile acids (BAs) and fatty acids (FAs) (BAFAs). Considering the functional correlation and the structural similarity of these compounds, a sensitive and efficient method was developed here for the first time to simultaneously profile BAFAs based on ultrahigh performance liquid chromatography coupled with tandem mass spectrometry (UPLC-MS/MS). Through optimization of the chromatographic conditions, all BAFAs can be efficiently separated and quantified in 19 min with excellent peak shape. For comprehensive profiling of endogenous FAs without standards, a strategy was established to predict the retention times (RTs) of all theoretically possible FAs on the basis of the good multiple linear regression relationship between RT and FA carbon chain length and double bond number. High-resolution mass spectrometry was employed for the final confirmation of these predicted FAs. Twenty-eight FAs in rat serum were newly identified using this strategy. Though the regulation of collision energies (CEs) for highly abundant compounds, the problems of their poor quantification linearity and accuracy caused by MS signal saturation were solved, facilitating the simultaneous quantification of both high- and low-abundance BAFAs with good linearity and accuracy. The established UPLC-MS/MS method was further used to quantify BAFAs in rat serum and to explore the disturbance of BAFA metabolism in the Tripterygium glycoside-induced liver injury rat model. A total of 25 BAs and 55 FAs in rat serum were identified and quantified. Several BAFAs, including nordeoxycholic acid, taurodeoxycholic acid and some unsaturated FAs, were found to differ significantly in the control and model groups. These BAFAs are very promising biomarkers for the evaluation of Tripterygium glycoside-induced liver injury. (C) 2019 Published by Elsevier B.V.
机译:羧基是胆汁酸(BAS)和脂肪酸(FAS)(BAFAS)中的官能团。考虑到这些化合物的功能相关性和结构相似性,这里首次开发敏感和有效的方法,以基于与串联质谱(UPLC-MS / MS)偶联的超高性能液相色谱同时突出BAFA。通过优化色谱条件,所有BAFA可以在19分钟内有效地分离和定量,具有优异的峰形状。为了在没有标准的情况下综合分析内源性FAS,建立了一种策略,以在RT和FA碳链长度和双键数之间的良好多元线性回归关系的基础上预测所有理论上可能的FA的保留时间(RTS)。使用高分辨率质谱法用于最终确认这些预测的FAS。使用该策略来新发现大鼠血清中的28个FAS。尽管对高丰富的化合物进行碰撞能量(CES)的调节,但是解决了它们的定量线性度和由MS信号饱和度引起的准确性的问题,促进了具有良好的线性度和精度的高度和低丰度BAFA的同时定量。已建立的UPLC-MS / MS方法进一步用于量化大鼠血清中的BAFA,并探讨BAFA代谢在初核苷酸诱导的肝损伤大鼠模型中的扰动。鉴定并定量大鼠血清共有25个BAS和55个FAS。在对照和模型组中发现了几种Bafas,包括Nordeoxycholic acid,牛磺酸,Taurodoxicholic acid和一些不饱和的Fas。这些Bafas是非常有前途的生物标志物,用于评估替代糖苷诱导的肝损伤。 (c)2019年由elestvier b.v发布。

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