Department of Surgery and Pediatrics, Drexel University College of Medicine, Philadelphia, PA, USA.
Med Gas Res. 2021 Oct-Dec;11(4):158-173. doi: 10.4103/2045-9912.318862.
Lactate, historically considered a waste product of anerobic metabolism, is a metabolite in whole-body metabolism needed for normal central nervous system (CNS) functions and a potent signaling molecule and hormone in the CNS. Neuronal activity signals normally induce its formation primarily in astrocytes and production is dependent on anerobic and aerobic metabolisms. Functions are dependent on normal dynamic, expansive, and evolving CNS functions. Levels can change under normal physiologic conditions and with CNS pathology. A readily combusted fuel that is sshuttled throughout the body, lactate is used as an energy source and is needed for CNS hemostasis, plasticity, memory, and excitability. Diffusion beyond the neuron active zone impacts activity of neurons and astrocytes in other areas of the brain. Barriergenesis, function of the blood-brain barrier, and buffering between oxidative metabolism and glycolysis and brain metabolism are affected by lactate. Important to neuroprotection, presence or absence is associated with L-lactate and heme oxygenase/carbon monoxide (a gasotransmitter) neuroprotective systems. Effects of carbon monoxide on L-lactate affect neuroprotection - interactions of the gasotransmitter with L-lactate are important to CNS stability, which will be reviewed in this article.
乳酸曾被认为是无氧代谢的废物产物,实际上是全身代谢所需的代谢物,对中枢神经系统(CNS)的正常功能至关重要,同时也是 CNS 中的一种有效信号分子和激素。神经元活动通常会诱导其在星形胶质细胞中形成,其产生依赖于无氧代谢和有氧代谢。其功能取决于正常的动态、扩展和不断发展的 CNS 功能。在正常生理条件下和 CNS 病理条件下,其水平会发生变化。乳酸是一种易于燃烧的燃料,在全身范围内运输,可用作能量来源,对 CNS 的止血、可塑性、记忆和兴奋性至关重要。扩散到神经元活动区以外会影响大脑其他区域神经元和星形胶质细胞的活性。乳酸会影响血脑屏障的屏障生成、功能以及氧化代谢和糖酵解与脑代谢之间的缓冲作用。乳酸对于神经保护非常重要,其存在或缺失与 L-乳酸和血红素加氧酶/一氧化碳(一种气体递质)神经保护系统有关。一氧化碳对 L-乳酸的影响会影响神经保护 - 气体递质与 L-乳酸的相互作用对 CNS 的稳定性很重要,本文将对此进行综述。