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采用 μ-SPE 结合 HPLC-MS/MS 法测定人血浆中的两种主要内源性大麻素。

Determination of the two major endocannabinoids in human plasma by μ-SPE followed by HPLC-MS/MS.

机构信息

Department of Food Sciences, University of Teramo, Teramo, Italy.

出版信息

Anal Bioanal Chem. 2013 Jan;405(2-3):785-93. doi: 10.1007/s00216-012-6273-3. Epub 2012 Jul 31.

Abstract

Endocannabinoids (ECs) are endogenous compounds that interact with type-1 and type-2 cannabinoid receptors (CB(1) and CB(2)), as well as non-cannabinoid receptors. The multitude of roles attributed to ECs makes them an emerging target of pharmacotherapy for a number of disparate diseases. Here a high-throughput bioanalytical method based on micro SPE (μ-SPE) followed by LC-MS/MS analysis for the simultaneous determination of the two major endocannabinoids 2-arachidonoylglycerol (2-AG) and N-arachidonoylethanolamine (anandamide, AEA) in human plasma is presented. The chromatographic conditions obtained with the fused-core column allowed a good separation in 10 min also of the AG isomers. A very simple and reliable extraction has been optimised by means of C18-modified tips: it requires only 100 μL of plasma and allows the use of minimal volumes of organic solvent. The present method allows a rapid and effective clean-up, which also minimises the isomerisation of 2-AG. The whole procedure has been validated following the FDA guidelines for bioanalytical methods validation: the satisfactory recovery values, the negligible matrix effect and the good values of accuracy and reproducibility make it a simple and high-throughput analytical tool for clinical and biochemical studies on endocannabinoid signaling in humans.

摘要

内源性大麻素 (ECs) 是与 1 型和 2 型大麻素受体 (CB(1)和 CB(2)) 以及非大麻素受体相互作用的内源性化合物。ECs 具有多种作用,使它们成为许多不同疾病的药物治疗新兴靶点。本文提出了一种基于微固相萃取 (μ-SPE) 后 LC-MS/MS 分析的高通量生物分析方法,用于同时测定人血浆中的两种主要内源性大麻素 2-花生四烯酸甘油 (2-AG) 和 N-花生四烯酰乙醇胺 (大麻素,AEA)。采用熔合核柱获得的色谱条件可在 10 min 内很好地分离 AG 异构体。通过 C18 修饰的吸头优化了非常简单可靠的提取方法:仅需 100 μL 血浆,可使用最小体积的有机溶剂。该方法可实现快速有效的净化,还可最大限度地减少 2-AG 的异构化。整个过程均按照 FDA 生物分析方法验证指南进行验证:令人满意的回收率、可忽略的基质效应以及良好的准确度和重现性,使其成为用于人类内源性大麻素信号转导的临床和生化研究的简单高通量分析工具。

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