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脑代谢感应和星形胶质细胞水平的代谢信号转导。

Brain metabolic sensing and metabolic signaling at the level of an astrocyte.

机构信息

Centre for Cardiovascular and Metabolic Neuroscience, Neuroscience, Physiology & Pharmacology, University College London, London, WC1E 6BT, United Kingdom.

Research Department of Metabolism and Experimental Therapeutics, Division of Medicine, University College London, London, WC1E 6JJ, United Kingdom.

出版信息

Glia. 2018 Jun;66(6):1185-1199. doi: 10.1002/glia.23283. Epub 2017 Dec 23.

Abstract

Astrocytes support neuronal function by providing essential structural and nutritional support, neurotransmitter trafficking and recycling and may also contribute to brain information processing. In this article we review published results and report new data suggesting that astrocytes function as versatile metabolic sensors of central nervous system (CNS) milieu and play an important role in the maintenance of brain metabolic homeostasis. We discuss anatomical and functional features of astrocytes that allow them to detect and respond to changes in the brain parenchymal levels of metabolic substrates (oxygen and glucose), and metabolic waste products (carbon dioxide). We report data suggesting that astrocytes are also sensitive to circulating endocrine signals-hormones like ghrelin, glucagon-like peptide-1 and leptin, that have a major impact on the CNS mechanisms controlling food intake and energy balance. We discuss signaling mechanisms that mediate communication between astrocytes and neurons and consider how these mechanisms are recruited by astrocytes activated in response to various metabolic challenges. We review experimental data suggesting that astrocytes modulate the activities of the respiratory and autonomic neuronal networks that ensure adaptive changes in breathing and sympathetic drive in order to support the physiological and behavioral demands of the organism in ever-changing environmental conditions. Finally, we discuss evidence suggesting that altered astroglial function may contribute to the pathogenesis of disparate neurological, respiratory and cardiovascular disorders such as Rett syndrome and systemic arterial hypertension.

摘要

星形胶质细胞通过提供必要的结构和营养支持、神经递质的运输和再循环,为神经元功能提供支持,并且可能有助于大脑信息处理。在本文中,我们回顾了已发表的结果,并报告了新的数据,这些数据表明星形胶质细胞作为中枢神经系统(CNS)环境中多功能代谢传感器发挥作用,并在维持大脑代谢稳态中发挥重要作用。我们讨论了星形胶质细胞的解剖和功能特征,这些特征使它们能够检测和响应脑实质代谢底物(氧气和葡萄糖)和代谢废物(二氧化碳)水平的变化。我们报告的数据表明,星形胶质细胞也对循环内分泌信号(如胃饥饿素、胰高血糖素样肽-1 和瘦素)敏感,这些信号对控制食物摄入和能量平衡的中枢神经系统机制有重大影响。我们讨论了介导星形胶质细胞与神经元之间通讯的信号机制,并考虑了这些机制如何被星形胶质细胞募集,以响应各种代谢挑战而被激活。我们回顾了实验数据,这些数据表明星形胶质细胞调节呼吸和自主神经元网络的活动,以确保呼吸和交感神经驱动的适应性变化,从而支持生物体在不断变化的环境条件下的生理和行为需求。最后,我们讨论了证据表明,星形胶质细胞功能的改变可能导致不同的神经、呼吸和心血管疾病的发病机制,如雷特综合征和系统性动脉高血压。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c730/5947829/57f52e320a45/GLIA-66-1185-g001.jpg

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