单胺类和抗抑郁药物对星形细胞生理的影响:抑郁症单胺假说的启示。

Journal of Experimental Neuroscience Pub Date : 2018-07-23 eCollection Date: 2018-01-01 DOI:10.1177/1179069518789149
Swananda V Marathe, Priyal L D'almeida, Garima Virmani, Praveen Bathini, Lavinia Alberi
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引用次数: 41

摘要

重度抑郁症(MDD)是最常见的神经精神疾病之一,影响着全世界五分之一以上的人口。由于我们对重度抑郁症病理生理学的了解有限,寻找新的抗抑郁药物靶点的努力受到严重阻碍。MDD的单胺假说提供了一个强大的理论框架,形成了一个大型拼图游戏的核心,我们必须在其周围寻找重要的缺失部分。越来越多的证据表明,在抑郁症患者边缘系统的关键区域观察到的神经胶质丧失,至少部分地解释了重度抑郁症的结构和认知表现。动物模型的研究随后暗示神经胶质萎缩可能在抑郁症状的沉淀中起致病作用。抗抑郁药和单胺类神经递质对星形胶质细胞的基因表达和代谢有深远的影响。这提出了一种有趣的可能性,即星形胶质细胞可能与神经元一起在抗抑郁药物的行为影响中发挥核心作用。在本文中,我们讨论了抗抑郁药物在星形胶质细胞中引起的基因表达和代谢变化,这可能与抗抑郁药物治疗的突触可塑性和行为影响有关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Effects of Monoamines and Antidepressants on Astrocyte Physiology: Implications for Monoamine Hypothesis of Depression.

Effects of Monoamines and Antidepressants on Astrocyte Physiology: Implications for Monoamine Hypothesis of Depression.

Effects of Monoamines and Antidepressants on Astrocyte Physiology: Implications for Monoamine Hypothesis of Depression.

Major depressive disorder (MDD) is one of the most common neuropsychiatric disorders affecting over one-fifth of the population worldwide. Owing to our limited understanding of the pathophysiology of MDD, the quest for finding novel antidepressant drug targets is severely impeded. Monoamine hypothesis of MDD provides a robust theoretical framework, forming the core of a large jigsaw puzzle, around which we must look for the vital missing pieces. Growing evidence suggests that the glial loss observed in key regions of the limbic system in depressed patients, at least partly, accounts for the structural and cognitive manifestations of MDD. Studies in animal models have subsequently hinted at the possibility that the glial atrophy may play a causative role in the precipitation of depressive symptoms. Antidepressants as well as monoamine neurotransmitters exert profound effects on the gene expression and metabolism in astrocytes. This raises an intriguing possibility that the astrocytes may play a central role alongside neurons in the behavioral effects of antidepressant drugs. In this article, we discuss the gene expression and metabolic changes brought about by antidepressants in astrocytes, which could be of relevance to synaptic plasticity and behavioral effects of antidepressant treatments.

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