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大脑结构连接改变在精神分裂症的韧性、脆弱性和疾病表达中的作用。

The role of altered brain structural connectivity in resilience, vulnerability, and disease expression to schizophrenia.

机构信息

Department of Psychiatry, the Third Affiliated Hospital of Sun Yat-sen University, 600 Tianhe Road, Guangzhou, Guangdong Province, China.

Center for the Study of Applied Psychology, Key Laboratory of Mental Health and Cognitive Science of Guangdong Province, School of Psychology, South China Normal University, 55 Zhongshan Avenue West, Guangzhou, Guangdong Province, China; Department of Psychiatry, Psychotherapy and Psychosomatics, Medical Faculty, RWTH University, Aachen, Germany.

出版信息

Prog Neuropsychopharmacol Biol Psychiatry. 2020 Jul 13;101:109917. doi: 10.1016/j.pnpbp.2020.109917. Epub 2020 Mar 10.

Abstract

BACKGROUND

Schizophrenia (SCZ) is a highly heritable disorder associated with brain connectivity changes. Although the mechanism of disease expression and vulnerability of SCZ have been reported by previous studies, the mechanism of resilience to SCZ based on the brain structural connectivity is poorly understood. The goal of the present study was to identify the structural brain connectivity related with the resilience to SCZ, which is defined here as the capacity to avoid or delay the onset of SCZ in unaffected siblings of SCZ probands.

METHOD

We collected diffusion tensor imaging (DTI) data of 49 medication-naive, first-episode SCZ (FE-SCZ) patients, 56 unaffected siblings of SCZ probands (SIB-SCZ), and 90 healthy controls. Then we used graph theoretical approach to calculate the topological properties of the brain structural network, including global, subnetwork, and regional parameters. Finally, we compared the parameters between the three groups, and identified the brain structural network related to the resilience, vulnerability and disease expression to SCZ.

RESULTS

With respect to resilience, only the SIB-SCZ showed significantly increased connectivity in the subnetworks of the left cuneus-precuneus and left posterior cingulate gyrus-precuneus, and in brain areas of right supramarginal gyrus and right inferior temporal gyrus. With respect to vulnerability, both the FE-SCZ and SIB-SCZ had decreased cluster coefficients and local efficiency, and decreased nodal efficiency in the right medial superior frontal gyrus and right medial orbital superior frontal gyrus compared with the healthy controls. With respect to disease expression, only the FE-SCZ group showed decreased or increased global, subnetwork, and nodal connectivity in broader brain regions compared with the healthy controls.

CONCLUSION

Difference in the topological properties of brain structural connectivity not only reflect the underlying mechanism of vulnerability but also that of resilience to schizophrenia. Alteration in the brain structural connectivity associating with resilience and disease expression may contribute to the onset of SCZ.

摘要

背景

精神分裂症(SCZ)是一种高度遗传性疾病,与大脑连接变化有关。尽管以前的研究已经报道了疾病表现和 SCZ 易感性的机制,但基于大脑结构连接的 SCZ 恢复力的机制仍知之甚少。本研究的目的是确定与 SCZ 恢复力相关的结构脑连接,这里将其定义为避免或延迟 SCZ 发病的能力,即在 SCZ 先证者的未受影响的兄弟姐妹中。

方法

我们收集了 49 名未经药物治疗的首发精神分裂症(FE-SCZ)患者、56 名 SCZ 先证者未受影响的兄弟姐妹(SIB-SCZ)和 90 名健康对照者的弥散张量成像(DTI)数据。然后,我们使用图论方法计算大脑结构网络的拓扑属性,包括全局、子网和区域参数。最后,我们比较了三组之间的参数,并确定了与 SCZ 恢复力、易感性和疾病表现相关的脑结构网络。

结果

就恢复力而言,只有 SIB-SCZ 在左侧楔前叶-楔叶和左侧后扣带回-楔前叶的子网以及右侧缘上回和右侧下颞叶的脑区显示出连接性的显著增加。就易感性而言,FE-SCZ 和 SIB-SCZ 与健康对照组相比,右侧内侧额上回和右侧内侧眶额上回的簇系数、局部效率和节点效率均降低。就疾病表现而言,只有 FE-SCZ 组与健康对照组相比,全局、子网和节点连接性在更广泛的脑区均降低或增加。

结论

大脑结构连接拓扑性质的差异不仅反映了易感性的潜在机制,也反映了对精神分裂症的恢复力的潜在机制。与恢复力和疾病表现相关的大脑结构连接的改变可能导致 SCZ 的发生。

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