Chen Xiang, Zhu Xinjian
Department of Pharmacology, Medical School of Southeast University, Nanjing, China; Clinical Medicine, Medical School of Southeast University, Nanjing, China.
Department of Pharmacology, Medical School of Southeast University, Nanjing, China.
Neuropharmacology. 2025 Mar 15;266:110273. doi: 10.1016/j.neuropharm.2024.110273. Epub 2024 Dec 22.
Epilepsy, a prevalent neurological disorder characterized by spontaneous recurrent seizures, significantly impacts physiological and cognitive functions. Emerging evidence suggests a crucial role for metabolic factors, particularly lactate, in epilepsy. We discuss the applicability of the astrocyte-neuron lactate shuttle (ANLS) model during acute seizure events and examine lactate's metabolic adaptation in epilepsy progression. Additionally, the roles of lactate metabolism in microglia and oligodendrocytes are considered, aiming to supplement our understanding of neuro-glial metabolic interactions as extensions of the ANLS model. Additionally, lactate modulates neuronal excitability via its interaction with hydroxycarboxylic acid receptor 1 (HCAR1), alongside additional mechanisms involving acid-sensing ion channels (ASICs) and ATP-sensitive potassium (KATP) channels, which contribute as secondary modulatory pathways. In conclusion, we propose that lactate functions as more than a mere fuel source in the epileptic brain, offering potential insights into new therapeutic targets for seizure control.
癫痫是一种以自发性反复发作为特征的常见神经系统疾病,对生理和认知功能有重大影响。新出现的证据表明代谢因素,尤其是乳酸,在癫痫中起关键作用。我们讨论了急性癫痫发作期间星形胶质细胞-神经元乳酸穿梭(ANLS)模型的适用性,并研究了癫痫进展过程中乳酸的代谢适应性。此外,还考虑了乳酸代谢在小胶质细胞和少突胶质细胞中的作用,旨在补充我们对作为ANLS模型扩展的神经胶质代谢相互作用的理解。此外,乳酸通过与羟基羧酸受体1(HCAR1)相互作用调节神经元兴奋性,同时还有涉及酸敏感离子通道(ASICs)和ATP敏感性钾通道(KATP)的其他机制,这些作为次要调节途径发挥作用。总之,我们提出乳酸在癫痫大脑中的作用不仅仅是一种单纯的燃料来源,这为癫痫控制的新治疗靶点提供了潜在的见解。