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Integrative analysis of lithium treatment associated effects on brain structure and peripheral gene expression reveals novel molecular insights into mechanism of action

机译:锂处理的综合分析与脑结构和外周基因表达的相关作用揭示了新的分子见解对动作机制

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Lithium is a highly effective medication for bipolar disorder, but its mechanism of action remains unknown. In this study, brain MRI scans and blood samples for gene expression (total of 110 scans and 109 blood samples) were collected from 21 bipolar subjects before and after 2 and 8 weeks of lithium monotherapy and at the same time-points from untreated 16 healthy controls. We used linear mixed-effects models to identify brain structural features and genes with expression changed after lithium treatment, with correction for multiple testing, and correlated their concurrent changes to identify molecular pathways associated with lithium effects. There are significant increases in gray matter fraction, global cortical thickness, and the frontal and parietal cortices after 8 weeks of lithium treatment (corrected p??0.05). Volume increases were also seen for putamen, hippocampus, thalamic nuclei, and thalamic substructures. Several genes showed significant expression changes, and 14 gene pathways were identified for the present integration analysis. Of these, nine pathways had significant correlations with structural changes (FDR??0.05). Three neurotrophy-related pathways (GDNF family of ligands, NFAT immune-response, and p53-signaling pathway) correlated with structural changes in multiple regions. Mediation analysis showed that the sphingomyelin metabolism pathway is associated with HAM-D change (p??0.01), and this effect is mediated via the volume of mediodorsal thalamus (p??0.03). In summary, the integration of lithium effects on brain structural and peripheral gene expression changes revealed effects on several neurotrophic molecular pathways, which provides further insights into the mechanism of lithium action.
机译:锂是对双相情感障碍的高效药物,但其作用机制仍然未知。在该研究中,从21个双极对象之前和之后的21个双极对象和在锂单一疗法的2和8周后,从未治疗的16个健康的同一时间点收集来自21个双极对象的基因表达的脑MRI扫描和血液样品(总共110扫描和109次血样)。控制。我们使用线性混合效果模型来鉴定锂处理后表达改变的脑结构特征和基因,校正多次检测,并将其并发变化相关,以鉴定与锂效应相关的分子途径。在锂处理8周后,灰质馏分,全球皮质厚度和前置皮质术后显着增加(矫正P?<β05)。对腐库,海马,丘脑核和丘脑亚结构也看到体积增加。几个基因显示出显着的表达变化,鉴定了14个基因途径用于本发明的一体化分析。其中,九条途径与结构变化具有显着的相关性(FDR?<?0.05)。与多个区域中的结构变化相关三种神经营养相关的途径(GDNF系列配体,NFAT免疫反应和P53信号通路)。调解分析表明,鞘鞘蛋白代谢途径与HAM-D变化有关(P?<β01),并且通过MEIODOREAL THALAMUS的体积介导这种效果(P?<β03)。总之,锂效应对脑结构和外周基因表达的整合揭示了对几种神经营养分子途径的影响,这提供了进一步的见解锂作用的机制。

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