Intermittent fasting alleviates postoperative cognitive dysfunction by reducing neuroinflammation in aged mice

术后认知功能障碍 神经炎症 七氟醚 莫里斯水上航行任务 海马结构 医学 麻醉 巴恩斯迷宫 海马体 突触可塑性 认知 认知功能衰退 认知缺陷 神经科学 炎症 心理学 内科学 认知障碍 痴呆 精神科 空间学习 受体 疾病
作者
Lei Wang,Qiang Wang,Xiaoqing Wang,Chenyi Yang,Xinyi Wang,Huan Liu,Haiyun Wang
出处
期刊:Brain Research Bulletin [Elsevier]
卷期号:216: 111034-111034 被引量:4
标识
DOI:10.1016/j.brainresbull.2024.111034
摘要

Elderly individuals undergoing surgical procedures are often confronted with the peril of experiencing postoperative cognitive dysfunction (POCD). Prior research has demonstrated the exacerbating effect of sevoflurane anesthesia on neuroinflammation, which can further deteriorate the condition of POCD in elderly patients. Intermittent fasting (IF) restricts food consumption to a specific time window and has been demonstrated to ameliorate cognitive dysfunction induced by neuropathic inflammation. We subjected 18-month-old male mice to 16 hours of fasting and 8 hours of unrestricted eating over a 24-hour period for 0, 1, 2, and 4 weeks, followed by abdominal exploration under sevoflurane anesthesia. In this study, we aim to explore the potential impact of IF on postoperative cognitive function in aged mice undergoing sevoflurane surgery through the preoperative implementation of IF measures. The findings indicate two weeks of IF leads to a significant enhancement of learning and memory capabilities in mice following surgery. The cognitive performance, as determined by the novel object recognition and Morris water maze tests, as well as the synaptic plasticity, as measured by in vivo electrophysiological recordings, has demonstrated marked improvements. Furthermore, the administration of IF markedly enhances the expression of synaptic-associated proteins in hippocampal neurons, concomitant with a decreasing expression of pro-inflammatory factors and a reduced density of microglial cells within the hippocampal brain region. To summarize, the results of this study indicate that IF may mitigate inflammation in the hippocampal area of the brain. Furthermore, IF appears to provide a safeguard against cognitive impairment and synaptic plasticity impairment brought on by sevoflurane anesthesia.
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