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从生命起源到线粒体、膜和电-代谢综述:揭示大麻假说

Informing the Cannabis Conjecture: From Life's Beginnings to Mitochondria, Membranes and the Electrome-A Review.

机构信息

Research Centre for Optimal Health, Department of Life Sciences, University of Westminster, London W1W 6UW, UK.

The Guy Foundation, Beaminster DT8 3HY, UK.

出版信息

Int J Mol Sci. 2023 Aug 22;24(17):13070. doi: 10.3390/ijms241713070.

Abstract

Before the late 1980s, ideas around how the lipophilic phytocannabinoids might be working involved membranes and bioenergetics as these disciplines were "in vogue". However, as interest in genetics and pharmacology grew, interest in mitochondria (and membranes) waned. The discovery of the cognate receptor for tetrahydrocannabinol (THC) led to the classification of the endocannabinoid system (ECS) and the conjecture that phytocannabinoids might be "working" through this system. However, the how and the "why" they might be beneficial, especially for compounds like CBD, remains unclear. Given the centrality of membranes and mitochondria in complex organisms, and their evolutionary heritage from the beginnings of life, revisiting phytocannabinoid action in this light could be enlightening. For example, life can be described as a self-organising and replicating far from equilibrium dissipating system, which is defined by the movement of charge across a membrane. Hence the building evidence, at least in animals, that THC and CBD modulate mitochondrial function could be highly informative. In this paper, we offer a unique perspective to the question, why and how do compounds like CBD potentially work as medicines in so many different conditions? The answer, we suggest, is that they can modulate membrane fluidity in a number of ways and thus dissipation and engender homeostasis, particularly under stress. To understand this, we need to embrace origins of life theories, the role of mitochondria in plants and explanations of disease and ageing from an adaptive thermodynamic perspective, as well as quantum mechanics.

摘要

在 20 世纪 80 年代后期之前,关于亲脂性植物大麻素如何发挥作用的想法涉及膜和生物能量学,因为这些学科当时很“流行”。然而,随着对遗传学和药理学的兴趣增长,对线粒体(和膜)的兴趣减弱了。四氢大麻酚(THC)同源受体的发现导致了内源性大麻素系统(ECS)的分类,并推测植物大麻素可能通过该系统“发挥作用”。然而,它们如何以及为什么可能有益,特别是对于 CBD 等化合物,仍然不清楚。鉴于膜和线粒体在复杂生物中的核心地位,以及它们在生命起源时的进化遗产,从这个角度重新审视植物大麻素的作用可能会有启发。例如,生命可以被描述为一个自我组织和复制的远离平衡的耗散系统,它是由电荷在膜上的运动定义的。因此,至少在动物中,有越来越多的证据表明 THC 和 CBD 调节线粒体功能,这可能具有高度的信息性。在本文中,我们为一个问题提供了一个独特的视角,即 CBD 等化合物为什么以及如何在如此多的不同条件下作为药物发挥作用?我们的答案是,它们可以通过多种方式调节膜的流动性,从而产生耗散并维持体内平衡,特别是在压力下。为了理解这一点,我们需要接受生命起源理论、线粒体在植物中的作用以及从适应热力学角度解释疾病和衰老的理论,以及量子力学。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/37b4/10488084/5870b2099dcd/ijms-24-13070-g001.jpg

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