乳酸和酮体在急性脑损伤中的神经保护作用

Guillaume Plourde, Hélène Roumes, Laurent Suissa, Lorenz Hirt, Émilie Doche, Luc Pellerin, Anne-Karine Bouzier-Sore, Hervé Quintard
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引用次数: 0

摘要

神经重症监护的目标是通过优化脑血流、供氧和底物输送来预防和逆转继发性脑损伤的病理级联反应。葡萄糖是大脑不可或缺的能量基质,但我们经常观察到,在急性脑损伤后,葡萄糖输送量大幅减少和/或葡萄糖代谢失调。与此同时,在过去的几十年中,乳酸和酮体被认为是在生理条件下和葡萄糖缺乏时为大脑提供能量的潜在替代燃料。现在,它们被视为大脑新陈代谢不可或缺的组成部分。除能量作用外,实验证据还支持它们在急性脑损伤后的神经保护特性,特别是调节颅内压控制、减少缺血容量、改善认知功能和存活率。在这篇综述中,我们介绍了临床前和临床证据,探讨了乳酸和酮体的神经保护作用机制,并确定了在脑损伤中推广使用乳酸和酮体的研究重点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Neuroprotective effects of lactate and ketone bodies in acute brain injury
The goal of neurocritical care is to prevent and reverse the pathologic cascades of secondary brain injury by optimizing cerebral blood flow, oxygen supply and substrate delivery. While glucose is an essential energetic substrate for the brain, we frequently observe a strong decrease in glucose delivery and/or a glucose metabolic dysregulation following acute brain injury. In parallel, during the last decades, lactate and ketone bodies have been identified as potential alternative fuels to provide energy to the brain, both under physiological conditions and in case of glucose shortage. They are now viewed as integral parts of brain metabolism. In addition to their energetic role, experimental evidence also supports their neuroprotective properties after acute brain injury, regulating in particular intracranial pressure control, decreasing ischemic volume, and leading to an improvement in cognitive functions as well as survival. In this review, we present preclinical and clinical evidence exploring the mechanisms underlying their neuroprotective effects and identify research priorities for promoting lactate and ketone bodies use in brain injury.
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