Advances in targeted liquid chromatography-tandem mass spectrometry methods for endocannabinoid and N-acylethanolamine quantification in biological matrices: A systematic review.

IF 6.9 2区 化学 Q1 SPECTROSCOPY
Khalisa Amir Hamzah, Natalie Turner, David Nichols, Luke J Ney
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引用次数: 0

Abstract

Liquid chromatography paired with tandem mass spectrometry (LC-MS/MS) is the gold standard in measurement of endocannabinoid concentrations in biomatrices. We conducted a systematic review of literature to identify advances in targeted LC-MS/MS methods in the period 2017-2024. We found that LC-MS/MS methods for endocannabinoid quantification are relatively consistent both across time and across biomatrices. Recent advances have primarily been in three areas: (1) sample preparation techniques, specific to the chosen biomatrix; (2) the range of biomatrices tested, recently favoring blood matrices; and (3) the breadth of endocannabinoid and endocannabinoid-like analytes incorporated into assays. This review provides a summary of the recent literature and a guide for researchers looking to establish the best methods for quantifying endocannabinoids in a range of biomatrices.

用于生物基质中内大麻素和 N-酰乙醇胺定量的定向液相色谱-串联质谱方法的进展:系统综述。
液相色谱法配串联质谱法(LC-MS/MS)是测量生物样品中内源性大麻素浓度的黄金标准。我们对文献进行了系统性回顾,以确定 2017-2024 年间有针对性的 LC-MS/MS 方法的进展。我们发现,用于内源性大麻素定量的 LC-MS/MS 方法在不同时期和不同生物样品中都相对一致。近期的进步主要体现在三个方面:(1) 针对所选生物基质的样品制备技术;(2) 测试的生物基质范围,近期更倾向于血液基质;以及 (3) 纳入检测的内源性大麻素和类内源性大麻素分析物的广度。本综述对最近的文献进行了总结,并为研究人员提供了指南,帮助他们确定在各种生物基质中量化内源性大麻素的最佳方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Mass Spectrometry Reviews
Mass Spectrometry Reviews 物理-光谱学
CiteScore
16.30
自引率
3.00%
发文量
56
期刊介绍: The aim of the journal Mass Spectrometry Reviews is to publish well-written reviews in selected topics in the various sub-fields of mass spectrometry as a means to summarize the research that has been performed in that area, to focus attention of other researchers, to critically review the published material, and to stimulate further research in that area. The scope of the published reviews include, but are not limited to topics, such as theoretical treatments, instrumental design, ionization methods, analyzers, detectors, application to the qualitative and quantitative analysis of various compounds or elements, basic ion chemistry and structure studies, ion energetic studies, and studies on biomolecules, polymers, etc.
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