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基因和环境对双相情感障碍同卵双生子和异卵双生子脑容量的影响。

Influence of genes and environment on brain volumes in twin pairs concordant and discordant for bipolar disorder.

作者信息

van der Schot Astrid C, Vonk Ronald, Brans Rachel G H, van Haren Neeltje E M, Koolschijn P Cédric M P, Nuboer Valerie, Schnack Hugo G, van Baal G Caroline M, Boomsma Dorret I, Nolen Willem A, Hulshoff Pol Hilleke E, Kahn René S

机构信息

Department of Psychiatry, Rudolf Magnus Institute of Neuroscience, University Medical Center Utrecht, Utrecht, The Netherlands.

出版信息

Arch Gen Psychiatry. 2009 Feb;66(2):142-51. doi: 10.1001/archgenpsychiatry.2008.541.

Abstract

CONTEXT

Structural neuroimaging studies suggest the presence of subtle abnormalities in the brains of patients with bipolar disorder. The influence of genetic and/or environmental factors on these brain abnormalities is unknown.

OBJECTIVE

To investigate the contribution of genetic and environmental factors on brain volume in bipolar disorder.

DESIGN

Magnetic resonance imaging (1.5 T) brain scans of monozygotic (MZ) or dizygotic (DZ) twins concordant and discordant for bipolar disorder were compared with healthy twin pairs.

SETTING

Subjects were recruited from the population, the Netherlands Twin Register, and the twin pair cohort at the University Medical Center Utrecht, Utrecht, The Netherlands.

PARTICIPANTS

A total of 234 subjects including 50 affected twin pairs (9 MZ concordant; 15 MZ discordant; 4 DZ concordant; 22 DZ discordant) and 67 healthy twin pairs (39 MZ and 28 DZ) were included.

MAIN OUTCOME MEASURES

Volumes of the intracranium, cerebrum, cerebellum, lateral and third ventricle, and gray and white matter from the cerebrum and frontal, parietal, temporal, and occipital lobes, both with and without correction for lithium use. To estimate the influence of additive genetic, common, and unique environmental factors, structural equation modeling was applied.

RESULTS

Bipolar disorder was associated with a decrease in total cortical volume. Decreases in white matter were related to the genetic risk of developing bipolar disorder (bivariate heritability, 77%; 95% confidence interval, 38% to 100%). Significant environmental correlations were found for cortical gray matter. These relationships all became more pronounced when data were corrected for lithium use.

CONCLUSIONS

Focusing on genes controlling white matter integrity may be a fruitful strategy in the quest to discover genes implicated in bipolar disorder. Elucidating the mechanism by which lithium attenuates brain matter loss may lead to the development of neuroprotective drugs.

摘要

背景

结构神经影像学研究表明双相情感障碍患者大脑存在细微异常。基因和/或环境因素对这些大脑异常的影响尚不清楚。

目的

研究基因和环境因素对双相情感障碍患者脑容量的影响。

设计

将双相情感障碍同病和异病的单卵(MZ)或双卵(DZ)双胞胎的磁共振成像(1.5T)脑部扫描结果与健康双胞胎对进行比较。

地点

研究对象来自荷兰人群、荷兰双胞胎登记处以及荷兰乌得勒支大学医学中心的双胞胎队列。

参与者

共纳入234名研究对象,包括50对患病双胞胎(9对MZ同病;15对MZ异病;4对DZ同病;22对DZ异病)和67对健康双胞胎(39对MZ和28对DZ)。

主要观察指标

颅内、大脑、小脑、侧脑室和第三脑室以及大脑、额叶、顶叶、颞叶和枕叶的灰质和白质体积,均校正和未校正锂使用情况。为评估加性遗传、共同和独特环境因素的影响,应用了结构方程模型。

结果

双相情感障碍与总皮质体积减少有关。白质减少与双相情感障碍的遗传风险相关(双变量遗传度,77%;95%置信区间,38%至100%)。皮质灰质存在显著的环境相关性。在校正锂使用数据后,这些关系变得更加明显。

结论

关注控制白质完整性的基因可能是发现双相情感障碍相关基因的有效策略。阐明锂减轻脑实质损失的机制可能会促进神经保护药物的研发。

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