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记录抑郁症中胶质细胞细胞和分子异常的临床发现

Clinical Findings Documenting Cellular and Molecular Abnormalities of Glia in Depressive Disorders.

作者信息

Czéh Boldizsár, Nagy Szilvia A

机构信息

Neurobiology of Stress Research Group, Szentágothai Research Center, University of Pécs, Pécs, Hungary.

Department of Laboratory Medicine, University of Pécs, Medical School, Pécs, Hungary.

出版信息

Front Mol Neurosci. 2018 Feb 27;11:56. doi: 10.3389/fnmol.2018.00056. eCollection 2018.

Abstract

Depressive disorders are complex, multifactorial mental disorders with unknown neurobiology. Numerous theories aim to explain the pathophysiology. According to the "gliocentric theory", glial abnormalities are responsible for the development of the disease. The aim of this review article is to summarize the rapidly growing number of cellular and molecular evidences indicating disturbed glial functioning in depressive disorders. We focus here exclusively on the clinical studies and present the neuroimaging findings together with the postmortem molecular and histopathological data. Postmortem studies demonstrate glial cell loss while the imaging data reveal disturbed glial functioning and altered white matter microstructure. Molecular studies report on altered gene expression of glial specific genes. In sum, the clinical findings provide ample evidences on glial pathology and demonstrate that all major glial cell types are affected. However, we still lack convincing theories explaining how the glial abnormalities develop and how exactly contribute to the emotional and cognitive disturbances. Abnormal astrocytic functioning may lead to disturbed metabolism affecting ion homeostasis and glutamate clearance, which in turn, affect synaptic communication. Abnormal oligodendrocyte functioning may disrupt the connectivity of neuronal networks, while microglial activation indicates neuroinflammatory processes. These cellular changes may relate to each other or they may indicate different endophenotypes. A theory has been put forward that the stress-induced inflammation-mediated by microglial activation-triggers a cascade of events leading to damaged astrocytes and oligodendroglia and consequently to their dysfunctions. The clinical data support the "gliocentric" theory, but future research should clarify whether these glial changes are truly the cause or simply the consequences of this devastating disorder.

摘要

抑郁症是复杂的、多因素的精神障碍,其神经生物学机制尚不清楚。众多理论旨在解释其病理生理学。根据“胶质细胞中心理论”,胶质细胞异常是该疾病发生的原因。这篇综述文章的目的是总结迅速增加的细胞和分子证据,这些证据表明抑郁症患者存在胶质细胞功能紊乱。我们在此仅关注临床研究,并呈现神经影像学结果以及死后分子和组织病理学数据。死后研究表明胶质细胞丢失,而影像学数据显示胶质细胞功能紊乱和白质微结构改变。分子研究报告了胶质细胞特异性基因的表达改变。总之,临床研究结果为胶质细胞病理学提供了充分证据,并表明所有主要胶质细胞类型均受影响。然而,我们仍然缺乏有说服力的理论来解释胶质细胞异常是如何发生的,以及它们究竟如何导致情绪和认知障碍。星形胶质细胞功能异常可能导致代谢紊乱,影响离子稳态和谷氨酸清除,进而影响突触通讯。少突胶质细胞功能异常可能破坏神经元网络的连接性,而小胶质细胞激活则表明存在神经炎症过程。这些细胞变化可能相互关联,也可能表明不同的内表型。有人提出一种理论,即由小胶质细胞激活介导的应激诱导炎症引发一系列事件,导致星形胶质细胞和少突胶质细胞受损,进而导致其功能障碍。临床数据支持“胶质细胞中心”理论,但未来的研究应阐明这些胶质细胞变化究竟是这种毁灭性疾病的真正病因还是仅仅是其后果。

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