Department of Pharmacology, JSS College of Pharmacy, JSS Academy of Higher Education & Research, Mysuru, Karnataka, 570015, India.
Centre for Experimental Pharmacology and Toxicology, Central Animal Facility, JSS Academy of Higher Education & Research, Mysuru, Karnataka, 570015, India.
Geroscience. 2020 Oct;42(5):1257-1283. doi: 10.1007/s11357-020-00235-8. Epub 2020 Aug 3.
Sleep maintains the function of the entire body through homeostasis. Chronic sleep deprivation (CSD) is a prime health concern in the modern world. Previous reports have shown that CSD has profound negative effects on brain vasculature at both the cellular and molecular levels, and that this is a major cause of cognitive dysfunction and early vascular ageing. However, correlations among sleep deprivation (SD), brain vascular changes and ageing have barely been looked into. This review attempts to correlate the alterations in the levels of major neurotransmitters (acetylcholine, adrenaline, GABA and glutamate) and signalling molecules (Sirt1, PGC1α, FOXO, P66, PARP1) in SD and changes in brain vasculature, cognitive dysfunction and early ageing. It also aims to connect SD-induced loss in the number of dendritic spines and their effects on alterations in synaptic plasticity, cognitive disabilities and early vascular ageing based on data available in scientific literature. To the best of our knowledge, this is the first article providing a pathophysiological basis to link SD to brain vascular ageing.
睡眠通过体内平衡维持全身的功能。慢性睡眠剥夺(CSD)是现代社会的主要健康关注点。先前的报告表明,CSD 在细胞和分子水平上对脑脉管系统有深远的负面影响,这是认知功能障碍和早期血管老化的主要原因。然而,睡眠剥夺(SD)、脑血管变化和衰老之间的相关性几乎没有被研究过。本综述试图将主要神经递质(乙酰胆碱、肾上腺素、GABA 和谷氨酸)和信号分子(Sirt1、PGC1α、FOXO、P66、PARP1)在 SD 中的水平变化与脑脉管系统、认知功能障碍和早期衰老的变化相关联。它还旨在根据科学文献中的现有数据,将 SD 引起的树突棘数量减少及其对突触可塑性、认知障碍和早期血管老化的影响联系起来。据我们所知,这是第一篇提供病理生理学基础将 SD 与脑血管老化联系起来的文章。