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LC-MS/MS 法快速同时定量检测促炎和促修复多不饱和脂肪酸代谢物。

LC-MS/MS method for rapid and concomitant quantification of pro-inflammatory and pro-resolving polyunsaturated fatty acid metabolites.

机构信息

Inserm U1048, Toulouse, France.

出版信息

J Chromatogr B Analyt Technol Biomed Life Sci. 2013 Aug 1;932:123-33. doi: 10.1016/j.jchromb.2013.06.014. Epub 2013 Jun 15.

Abstract

Lipid autacoids derived from n-3/n-6 polyunsaturated fatty acids (PUFA) are some of the earliest signals triggered by an inflammatory reaction. They are acting also as essential regulators of numerous biological processes in physiological conditions. With regards to their importance, a robust and rapid procedure to quantify a large variety of PUFA metabolites, applicable to diverse biological components needed to be formulated. We have developed a simple methodology using liquid chromatography-tandem mass spectrometry allowing quantification of low-level of PUFA metabolites including bioactive mediators, inactive products and pathway biomarkers. Solid phase extraction was used for samples preparation with an extraction yield of 80% ranging from 65% to 98%. The method was optimized to obtain a rapid (8.5min) and accurate separation of 26 molecules, with a very high sensitivity of detection and analysis (0.6-155pg). When applied to biological samples, the method enabled characterization of eicosanoids and docosanoids production in epithelial cells or foam macrophages stimulated with LPS, in biological fluids and tissues from mouse models of peritonitis or infectious colitis. Our results demonstrate that this new method can be used in cultured cells, in fluids and in colonic tissues to quantify pro-inflammatory and pro-resolving PUFA metabolites mediators.

摘要

源自 n-3/n-6 多不饱和脂肪酸(PUFA)的脂质活性物质是炎症反应最早触发的一些信号之一。它们在生理条件下也是许多生物过程的基本调节剂。鉴于它们的重要性,需要制定一种强大且快速的程序来定量分析大量的 PUFA 代谢物,适用于各种需要的生物成分。我们开发了一种使用液相色谱-串联质谱的简单方法,可定量分析低水平的 PUFA 代谢物,包括生物活性介质、非活性产物和途径生物标志物。固相萃取用于样品制备,提取产率为 80%,范围为 65%至 98%。该方法经过优化,可在 8.5 分钟内快速(8.5min)且准确地分离 26 种分子,具有非常高的检测和分析灵敏度(0.6-155pg)。当应用于生物样本时,该方法能够表征脂多糖刺激的上皮细胞或泡沫巨噬细胞中二十烷酸和二十二烷酸的产生,以及腹膜炎或感染性结肠炎小鼠模型中的生物流体和组织。我们的研究结果表明,这种新方法可用于培养细胞、液体和结肠组织中定量促炎和促修复 PUFA 代谢物介质。

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