Department of Neurology and Stroke, Saitama Medical University International Medical Center, Saitama, Japan.
Department of Physiology, Keio University School of Medicine, Tokyo, Japan.
Neuropathology. 2020 Apr;40(2):121-137. doi: 10.1111/neup.12639. Epub 2020 Feb 9.
Astroglia or astrocytes, the most abundant cells in the brain, are interposed between neuronal synapses and microvasculature in the brain gray matter. They play a pivotal role in brain metabolism as well as in the regulation of cerebral blood flow, taking advantage of their unique anatomical location. In particular, the astroglial cellular metabolic compartment exerts supportive roles in dedicating neurons to the generation of action potentials and protects them against oxidative stress associated with their high energy consumption. An impairment of normal astroglial function, therefore, can lead to numerous neurological disorders including stroke, neurodegenerative diseases, and neuroimmunological diseases, in which metabolic derangements accelerate neuronal damage. The neurovascular unit (NVU), the major components of which include neurons, microvessels, and astroglia, is a conceptual framework that was originally used to better understand the pathophysiology of cerebral ischemia. At present, the NVU is a tool for understanding normal brain physiology as well as the pathophysiology of numerous neurological disorders. The metabolic responses of astroglia in the NVU can be either protective or deleterious. This review focuses on three major metabolic compartments: (i) glucose and lactate; (ii) fatty acid and ketone bodies; and (iii) D- and L-serine. Both the beneficial and the detrimental roles of compartmentalization between neurons and astroglia will be discussed. A better understanding of the astroglial metabolic response in the NVU is expected to lead to the development of novel therapeutic strategies for diverse neurological diseases.
星形胶质细胞或 astrocytes,是大脑中最丰富的细胞,位于神经元突触和大脑灰质中的微血管之间。它们在大脑代谢以及脑血流调节中发挥着关键作用,利用其独特的解剖位置。特别是,星形胶质细胞的代谢区室在专门用于产生动作电位的神经元中发挥支持作用,并保护它们免受与高能量消耗相关的氧化应激。因此,正常星形胶质细胞功能的损伤会导致许多神经疾病,包括中风、神经退行性疾病和神经免疫性疾病,其中代谢紊乱加速了神经元的损伤。神经血管单元(NVU),其主要组成部分包括神经元、微血管和星形胶质细胞,是一个最初用于更好地理解脑缺血病理生理学的概念框架。目前,NVU 是理解正常大脑生理学以及许多神经疾病病理生理学的工具。NVU 中星形胶质细胞的代谢反应既可以是保护性的,也可以是有害的。这篇综述重点介绍了三个主要的代谢区室:(i)葡萄糖和乳酸;(ii)脂肪酸和酮体;以及(iii)D-和 L-丝氨酸。将神经元和星形胶质细胞之间的区室化的有益和有害作用都将进行讨论。对 NVU 中星形胶质细胞代谢反应的更好理解有望为各种神经疾病的发展带来新的治疗策略。