首页> 美国卫生研究院文献>Cannabis and Cannabinoid Research >The Influence of DAT1 COMT and BDNF Genetic Polymorphisms on Total and Subregional Hippocampal Volumes in Early Onset Heavy Cannabis Users
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The Influence of DAT1 COMT and BDNF Genetic Polymorphisms on Total and Subregional Hippocampal Volumes in Early Onset Heavy Cannabis Users

机译:DAT1COMT和BDNF遗传多态性对早期发作的重度大麻使用者的总和亚区域海马体积的影响

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>Introduction: Hippocampal neuroanatomy is affected by genetic variations in dopaminergic candidate genes and environmental insults, such as early onset of chronic cannabis exposure. Here, we examine how hippocampal total and subregional volumes are affected by cannabis use and functional polymorphisms of dopamine-relevant genes, including the catechol-O-methyltransferase (COMT), dopamine transporter (DAT1), and the brain-derived neurotrophic factor (BDNF) genes.>Material and Methods: We manually traced total hippocampal volumes and automatically segmented hippocampal subregions using high-resolution MRI images, and performed COMT, DAT1, and BDNF genotyping in 59 male Caucasian young adults aged 18–30 years. These included 30 chronic cannabis users with early-onset (regular use at <16 years) and 29 age-, education-, and intelligence-matched controls.>Results: Cannabis use and dopaminergic gene polymorphism had both distinct and interactive effects on the hippocampus. We found emerging alterations of hippocampal total and specific subregional volumes in cannabis users relative to controls (i.e., CA1, CA2/3, and CA4), and associations between cannabis use levels and total and specific subregional volumes. Furthermore, total hippocampal volume and the fissure subregion were affected by cannabis×DAT1 polymorphism (i.e., 9/9R and in 10/10R alleles), reflecting high and low levels of dopamine availability.>Conclusion: These findings suggest that cannabis exposure alters the normal relationship between DAT1 polymorphism and the anatomy of total and subregional hippocampal volumes, and that specific hippocampal subregions may be particularly affected.
机译:>简介:海马神经解剖学受到多巴胺能候选基因的遗传变异和环境损害的影响,例如慢性大麻暴露的早期发作。在这里,我们研究了大麻使用和多巴胺相关基因(包括儿茶酚-O-甲基转移酶(COMT),多巴胺转运蛋白(DAT1)和脑源性神经营养因子(BDNF))的功能多态性如何影响海马的总和亚区域体积)基因。>材料和方法:我们使用高分辨率的MRI图像手动跟踪海马总体积并自动分割海马亚区,并对59岁的18岁男性白种人进行了COMT,DAT1和BDNF基因分型30年。其中包括30例早发慢性大麻使用者(<16岁时正常使用)和29例年龄,教育程度和智力匹配的对照。>结果:大麻的使用和多巴胺能基因多态性均不同和对海马的交互作用。我们发现相对于对照(即CA1,CA2 / 3和CA4),大麻使用者的海马总和特定子区域体积正在出现变化,并且大麻使用水平与总和特定子区域体积之间存在关联。此外,大麻×DAT1多态性(即9 / 9R和10 / 10R等位基因)影响海马总体积和裂隙亚区域,反映了多巴胺的可利用性水平高和低。>结论:提示大麻暴露会改变DAT1多态性与海马总和亚区域体积的解剖结构之间的正常关系,并且特定的海马亚区域可能受到特别影响。

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