Miguel-Hidalgo José Javier
Department of Psychiatry and Human Behavior, University of Mississippi Medical Center, Jackson, MS, United States.
Front Cell Neurosci. 2022 Apr 22;16:869779. doi: 10.3389/fncel.2022.869779. eCollection 2022.
Significant stress exposure and psychiatric depression are associated with morphological, biochemical, and physiological disturbances of astrocytes in specific brain regions relevant to the pathophysiology of those disorders, suggesting that astrocytes are involved in the mechanisms underlying the vulnerability to or maintenance of stress-related neuropathology and depression. To understand those mechanisms a variety of studies have probed the effect of various modalities of stress exposure on the metabolism, gene expression and plasticity of astrocytes. These studies have uncovered the participation of various cellular pathways, such as those for intracellular calcium regulation, neuroimmune responses, extracellular ionic regulation, gap junctions-based cellular communication, and regulation of neurotransmitter and gliotransmitter release and uptake. More recently epigenetic modifications resulting from exposure to chronic forms of stress or to early life adversity have been suggested to affect not only neuronal mechanisms but also gene expression and physiology of astrocytes and other glial cells. However, much remains to be learned to understand the specific role of those and other modifications in the astroglial contribution to the vulnerability to and maintenance of stress-related disorders and depression, and for leveraging that knowledge to achieve more effective psychiatric therapies.
显著的应激暴露和精神抑郁与特定脑区星形胶质细胞的形态、生化和生理紊乱有关,这些脑区与这些疾病的病理生理学相关,这表明星形胶质细胞参与了应激相关神经病理学和抑郁的易感性或维持机制。为了理解这些机制,各种研究探讨了不同形式的应激暴露对星形胶质细胞代谢、基因表达和可塑性的影响。这些研究揭示了各种细胞途径的参与,如细胞内钙调节、神经免疫反应、细胞外离子调节、基于缝隙连接的细胞通讯,以及神经递质和胶质递质释放与摄取的调节。最近有研究表明,长期应激或早期生活逆境导致的表观遗传修饰不仅会影响神经元机制,还会影响星形胶质细胞和其他神经胶质细胞的基因表达和生理功能。然而,要了解这些修饰及其他修饰在星形胶质细胞对应激相关疾病和抑郁的易感性及维持中的具体作用,以及利用这些知识实现更有效的精神治疗,仍有很多需要学习的地方。