Department of Psychiatry, University of Pittsburgh School of Medicine, Pittsburgh, PA, USA.
Department of Psychiatry, University of Pittsburgh School of Medicine, Pittsburgh, PA, USA.
Psychiatry Res. 2011 Dec 30;194(3):304-313. doi: 10.1016/j.pscychresns.2011.05.006. Epub 2011 Nov 1.
Offspring from families with multiple cases of alcohol dependence have a greater likelihood of developing alcohol dependence (AD) and related substance use disorders. Greater susceptibility for developing these disorders may be related to structural differences in brain circuits that influence the salience of rewards or modify the efficiency of information processing and AD susceptibility. We examined the cerebellum of 71 adolescent/young adult high-risk (HR) offspring from families with multiple cases of alcohol dependence (multiplex families), and 60 low-risk (LR) controls with no family history of alcohol or drug dependence who were matched for age, gender, socioeconomic status and IQ, with attention given to possible effects of personal use of substances and maternal use during pregnancy. Magnetic resonance images were acquired on a General Electric 1.5-Tesla scanner and manually traced (BRAINS2) blind to clinical information. GABRA2 and BDNF variation were tested for their association with cerebellar volumes. High-risk offspring from multiplex AD families showed greater total volume of the cerebellum and total gray matter (GM), in comparison with LR controls. An interaction between allelic variation in GABRA2 and BDNF genes was associated with GM volumes, suggesting that inherited variation in these genes may promote early developmental differences in neuronal proliferation of the cerebellum.
有多个酒精依赖家族病例的后代更有可能患上酒精依赖症 (AD) 和相关物质使用障碍。更容易患上这些疾病可能与影响奖励显著性或改变信息处理效率和 AD 易感性的大脑回路的结构差异有关。我们检查了 71 名来自多个酒精依赖家族(多态家族)的青少年/年轻成人高危 (HR) 后代和 60 名无酒精或药物依赖家族史的低危 (LR) 对照者的小脑,这些对照者在年龄、性别、社会经济地位和智商方面相匹配,并注意到个人使用物质和母亲在怀孕期间使用物质的可能影响。使用通用电气 1.5-Tesla 扫描仪采集磁共振图像,并在不了解临床信息的情况下进行手动追踪 (BRAINS2)。检测了 GABRA2 和 BDNF 变异与小脑体积的关联。与 LR 对照组相比,来自多态 AD 家族的高危后代的小脑和总灰质 (GM) 总容积更大。GABRA2 和 BDNF 基因的等位基因变异之间的相互作用与 GM 体积有关,表明这些基因的遗传变异可能促进了小脑神经元增殖的早期发育差异。