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内源性大麻素分析方法:推动发现从而驱动技术发展的技术。

Endocannabinoid Analytical Methodologies: Techniques That Drive Discoveries That Drive Techniques.

作者信息

Piscitelli Fabiana, Bradshaw Heather B

机构信息

Endocannabinoid Research Group, Istituto di Chimica Biomolecolare-Consiglio Nazionale delle Ricerche (ICB-CNR), Pozzuoli, Italy.

Indiana University, Bloomington, IN, United States.

出版信息

Adv Pharmacol. 2017;80:1-30. doi: 10.1016/bs.apha.2017.04.003. Epub 2017 Jul 3.

Abstract

Identification of the two major endogenous cannabinoid ligands, known as endocannabinoids, N-arachidonoyl-ethanolamine (anandamide, AEA) and 2-arachidonoyl-glycerol (2-AG), opened the way for the identification and isolation of other lipid congeners, all derivatives of fatty acids and related to the Endocannabinoid System. The nomenclature of this anandamide-type class of lipids is evolving as new species are discovered all the time. However, they each fall under the larger umbrella of lipids that are a conjugation of a fatty acid with an amine through and amide bond, which we will refer to as lipoamines. Specific subspecies of lipoamines that have been discovered are the N-acyl-ethanolamides (including AEA), N-acyl-dopamines, N-acyl-serotonins, N-acyl-GABA, N-acyl-taurines, and a growing number of N-acyl amino acids. Emerging data from multiple labs also show that monoacylglycerols (including 2-AG), COX-2 metabolites, and fatty acid esters of hydroxyl fatty acids are interconnected with these lipoamines at both the biosynthetic and metabolic levels. Understanding the molecular relatedness of these lipids is important for studying how they act as signaling molecules; however, a first step in this process hinges on advances in being able to accurately measure them.

摘要

两种主要内源性大麻素配体(即内源性大麻素),N-花生四烯酰乙醇胺(花生四烯乙醇胺,AEA)和2-花生四烯酰甘油(2-AG)的鉴定,为其他脂质类似物的鉴定和分离开辟了道路,这些类似物都是脂肪酸的衍生物且与内源性大麻素系统相关。随着新的物种不断被发现,这类花生四烯乙醇胺型脂质的命名也在不断演变。然而,它们都属于更大范畴的脂质,即脂肪酸通过酰胺键与胺结合而成的物质,我们将其称为脂胺。已发现的脂胺的特定亚种包括N-酰基乙醇胺(包括AEA)、N-酰基多巴胺、N-酰基5-羟色胺、N-酰基γ-氨基丁酸、N-酰基牛磺酸以及越来越多的N-酰基氨基酸。多个实验室的新数据还表明,单酰甘油(包括2-AG)、COX-2代谢产物以及羟基脂肪酸的脂肪酸酯在生物合成和代谢水平上都与这些脂胺相互关联。了解这些脂质的分子相关性对于研究它们如何作为信号分子发挥作用很重要;然而,这一过程的第一步取决于能否准确测量它们的技术进展。

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