...
【24h】

The energetic brain – A review from students to students

机译:精力充沛的大脑 - 从学生到学生的评论

获取原文
获取原文并翻译 | 示例

摘要

Abstract The past 20?years have resulted in unprecedented progress in understanding brain energy metabolism and its role in health and disease. In this review, which was initiated at the 14th International Society for Neurochemistry Advanced School, we address the basic concepts of brain energy metabolism and approach the question of why the brain has high energy expenditure. Our review illustrates that the vertebrate brain has a high need for energy because of the high number of neurons and the need to maintain a delicate interplay between energy metabolism, neurotransmission, and plasticity. Disturbances to the energetic balance, to mitochondria quality control or to glia–neuron metabolic interaction may lead to brain circuit malfunction or even severe disorders of the CNS . We cover neuronal energy consumption in neural transmission and basic (‘housekeeping’) cellular processes. Additionally, we describe the most common (glucose) and alternative sources of energy namely glutamate, lactate, ketone bodies, and medium chain fatty acids. We discuss the multifaceted role of non‐neuronal cells in the transport of energy substrates from circulation (pericytes and astrocytes) and in the supply (astrocytes and microglia) and usage of different energy fuels. Finally, we address pathological consequences of disrupted energy homeostasis in the CNS .
机译:摘要过去20年是导致在理解脑能新陈代谢及其在健康和疾病中的作用方面的前所未有的进展。在本综述中,在第14届国际神经化学协会中发起的神经化学学会,我们解决了大脑能量新陈代谢的基本概念,并接近大脑具有高能源支出的问题。我们的审查表明,由于神经元数量大,并且需要在能量代谢,神经递质和可塑性之间保持微小相互作用,因此脊椎动物对能量很高。对能量平衡的紊乱,对线粒体质量控制或胶林神经元代谢相互作用可能导致脑电路发生或甚至CNS的严重疾病。我们涵盖神经传输和基本('管家')蜂窝过程中的神经元能量消耗。另外,我们描述了最常见的(葡萄糖)和替代能源来源即谷氨酸,乳酸盐,酮体和中链脂肪酸。我们讨论非神经元细胞在从循环(周细胞和星形胶质细胞)和供应(星形胶质细胞和微胶质细胞)中的能量底物运输中的多方代作用和不同能量燃料的使用。最后,我们解决了CNS中断能量稳态的病理后果。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号