急性服用大麻可短暂降低年轻人的线粒体 DNA:双盲、安慰剂对照、随机临床试验的二次分析结果。

IF 3.1 4区 医学 Q2 PHARMACOLOGY & PHARMACY
Cannabis and Cannabinoid Research Pub Date : 2025-04-01 Epub Date: 2024-06-26 DOI:10.1089/can.2023.0282
Pavel Powlowski, Justin Matheson, Bernard Le Foll, Ana C Andreazza, Ruth A Ross
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引用次数: 0

摘要

背景:大麻是世界上最常用的物质之一;然而,关于大麻如何影响人体的许多问题仍然没有答案。最近,有关植物提取的大麻素对线粒体健康影响的研究再次兴起。特别是,一些研究表明,线粒体-Δ9-四氢大麻酚(Δ9-THC)之间的相互作用会改变小鼠的记忆、新陈代谢和催眠。虽然这一领域的研究正在迅速扩展,但关于大麻对人体线粒体健康的影响,无论是急性使用还是长期使用,都知之甚少。研究方法我们从一项双盲、安慰剂对照、平行组随机临床试验中采集了血液样本,该试验将 19-25 岁经常吸食大麻(每周 1-4 天)的成年人按 2:1 的比例随机分组,分别接受活性(12.5% Δ9-THC)香烟或安慰剂(结果见表 2):我们发现,与安慰剂相比,吸食含有 Δ9-THC 的活性大麻与吸食后 15 分钟和 1 小时全血中线粒体 DNA 拷贝数的急性减少有关。观察到的线粒体 DNA 拷贝数减少与血液中 11-羟基-Δ9-四氢大麻酚(11-OH-THC)和 11-去甲-9-羧基-Δ9-四氢大麻酚(THC-COOH)的浓度呈负相关,这两种物质是 Δ9-THC 的主要代谢物,但与Δ9-THC 本身无关。此外,11-OH 四氢大麻酚和四氢大麻酚-COOH 浓度与 mtDNA 拷贝数之间的负相关关系仅在不经常使用大麻的参与者中发现,这表明存在耐受效应。结论这些结果揭示了Δ9-THC 消费引起的线粒体改变,这种改变可能是由代谢物介导的。这些结果似乎表明,较少吸食大麻的人受到的影响更大,这表明他们对Δ9-THC 及其代谢物对全血中 mtDNA 含量的影响有某种形式的耐受性。关键词线粒体;mtDNA;大麻;THC;THC 代谢物;血液;THC-COOH;11-OH-THC。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Acute Cannabis Administration Transiently Reduces Mitochondrial DNA in Young Adults: Findings from a Secondary Analysis of a Double-Blind, Placebo-Controlled, Randomized Clinical Trial.

Background: Cannabis is one of the world's most commonly used substances; however, many questions remain unanswered as to how cannabis impacts the body. Recently, there has been a resurgence of research into the effects of plant-derived cannabinoids on mitochondrial health. In particular, a number of studies implicate mitochondrial-Δ9-tetrahydrocannabinol (Δ9-THC) interactions with altered memory, metabolism, and catalepsy in mice. Although the research in this field is expanding rapidly, there is little known about the effects of cannabis on mitochondria health in human subjects either in acute or chronic term use. Methods: Blood samples were obtained from a double-blind, placebo-controlled, parallel-group randomized clinical trial in which adults who regularly use cannabis (1-4 days/week) aged 19-25 years were randomized 2:1 to receive either an active (12.5% Δ9-THC) cigarette or placebo (<0.01% Δ9-THC) cigarette containing 750 mg of cannabis before driving simulator testing. DNA was extracted from whole blood using commercial spin columns, followed by measurement of mt-ND1, mt-ND4, and β2M using quantitative polymerase chain reaction. One-way repeated measures analysis of variance (ANOVA) followed by Dunnett's multiple comparisons test was used to observe changes in mitochondrial DNA (mtDNA) copy number over time. A two-tailed Pearsons R test was used to assess correlations between mtDNA copy number and cannabinoid levels (Δ9-THC and metabolites) in blood. Results: We found that exposure to active cannabis containing Δ9-THC, as opposed to placebo, was associated with an acute reduction in mitochondrial DNA copy number in whole blood at 15 min and 1 h after smoking. The observed decrease in mtDNA copy number negatively correlated with blood concentrations of 11-hydroxy-Δ9-tetrahydrocannabinol (11-OH-THC) and 11-Nor-9-carboxy-Δ9-tetrahydrocannabinol (THC-COOH), the two primary metabolites of Δ9-THC, but not Δ9-THC itself. Further, the negative correlation between 11-OH THC and THC-COOH concentrations and mtDNA copy number was found in only a subgroup of participants who use cannabis infrequently, suggesting a tolerance effect. Conclusions: These results illuminate mitochondrial alterations attributed to Δ9-THC consumption, which may be mediated by metabolites. These results appear to suggest stronger effects in individuals who consume cannabis less frequently, suggesting some form of tolerance to the effects of Δ9-THC and its metabolites on mtDNA content in whole blood. Keywords: Mitochondria; mtDNA; cannabis; THC; THC metabolites; blood; THC-COOH; 11-OH-THC.

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来源期刊
Cannabis and Cannabinoid Research
Cannabis and Cannabinoid Research PHARMACOLOGY & PHARMACY-
CiteScore
6.80
自引率
7.90%
发文量
164
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