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大麻素组学——一种分析方法,用于了解医用大麻治疗对大麻素内代谢物组的影响。

Cannabinoidomics - An analytical approach to understand the effect of medical Cannabis treatment on the endocannabinoid metabolome.

机构信息

The Laboratory of Cancer Biology and Cannabinoid Research, Department of Biology, Technion-Israel Institute of Technology, Haifa, 3200003, Israel.

The Kleifeld Laboratory, Department of Biology, Technion-Israel Institute of Technology, Haifa, 3200003, Israel; Cannasoul Analytics, Caesarea, Israel.

出版信息

Talanta. 2020 Nov 1;219:121336. doi: 10.1016/j.talanta.2020.121336. Epub 2020 Jul 10.

Abstract

Increasing evidence for the therapeutic potential of Cannabis in numerous pathological and physiological conditions has led to a surge of studies investigating the active compounds in different chemovars and their mechanisms of action, as well as their efficacy and safety. The biological effects of Cannabis have been attributed to phytocannabinoid modulation of the endocannabinoid system. In-vitro and in-vivo studies have shown that pure phytocannabinoids can alter the levels of endocannabinoids and other cannabimimetic lipids. However, it is not yet understood whether whole Cannabis extracts exert variable effects on the endocannabinoid metabolome, and whether these effects vary between tissues. To address these challenges, we have developed and validated a novel analytical approach, termed "cannabinoidomics," for the simultaneous extraction and analysis of both endogenous and plant cannabinoids from different biological matrices. In the methodological development liquid chromatography high resolution tandem mass spectrometry (LC/HRMS/MS) was used to identify 57 phytocannabinoids, 15 major phytocannabinoid metabolites, and 78 endocannabinoids and cannabimimetic lipids in different biological matrices, most of which have no analytical standards. In the validation process, spiked cannabinoids were quantified with acceptable selectivity, repeatability, reproducibility, sensitivity, and accuracy. The power of this analytical method is demonstrated by analysis of serum and four different sections of mouse brains challenged with three different cannabidiol (CBD)-rich extracts. The results demonstrate that variations in the minor phytocannabinoid contents of the different extracts may lead to varied effects on endocannabinoid concentrations, and on the CBD metabolite profile in the peripheral and central systems. We also show that the Cannabis challenge significantly decreases the levels of several endocannabinoids in specific brain sections compared to the control group. This effect is extract-specific and suggests the importance of minor, other-than CBD, phytocannabinoid or non-phytocannabinoid compounds.

摘要

越来越多的证据表明大麻在许多病理和生理条件下具有治疗潜力,这导致了大量研究调查不同化学变种中的活性化合物及其作用机制,以及它们的疗效和安全性。大麻的生物学效应归因于植物大麻素对内源性大麻素系统的调节。体外和体内研究表明,纯植物大麻素可以改变内源性大麻素和其他大麻类似脂质的水平。然而,目前尚不清楚整个大麻提取物是否对内源性大麻素代谢组产生不同的影响,以及这些影响是否在不同组织之间存在差异。为了应对这些挑战,我们开发并验证了一种新的分析方法,称为“大麻素组学”,用于从不同的生物基质中同时提取和分析内源性和植物大麻素。在方法学的发展过程中,液相色谱-高分辨串联质谱(LC/HRMS/MS)用于鉴定不同生物基质中的 57 种植物大麻素、15 种主要植物大麻素代谢物和 78 种内源性大麻素和大麻类似脂质,其中大多数没有分析标准。在验证过程中,用可接受的选择性、重复性、重现性、灵敏度和准确性对加标大麻素进行定量。该分析方法的有效性通过对三种不同大麻二酚(CBD)丰富提取物处理的血清和小鼠大脑的四个不同部位进行分析得到证明。结果表明,不同提取物中小植物大麻素含量的变化可能导致对内源性大麻素浓度的不同影响,以及对周围和中枢系统中 CBD 代谢物谱的不同影响。我们还表明,与对照组相比,大麻处理会显著降低特定脑区的几种内源性大麻素水平。这种效应是提取物特异性的,表明少量的、其他的 CBD 植物大麻素或非植物大麻素化合物的重要性。

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