Li Jianting, Ma Peng, Liu Zhizhen, Xie Jun
Department of Biochemistry and Molecular Biology, School of Basic Medicine, Shanxi Key Laboratory of Birth Defect and Cell Regeneration, MOE Key Laboratory of Coal Environmental Pathogenicity and Prevention, Shanxi Medical University, No. 56, Xinjiannan Road, Ying Ze District, Taiyuan, 030001, China.
Department of Anatomy, School of Basic Medical, Shanxi Medical University, Taiyuan, 030001, China.
Cell Commun Signal. 2025 Mar 12;23(1):134. doi: 10.1186/s12964-025-02132-z.
Lactate, once considered a mere byproduct of anaerobic metabolism, is now recognized as a critical signaling molecule with diverse roles in physiology and pathology. There are two stereoisomers of lactate: L- and D-lactate. Recent studies have shown that disruptions in these two lactate stereoisomers have distinct effects on health and disease. L-lactate is central to glycolysis and energy transfer through the Cori cycle but also acts as the dominant lactylation isomer induced by glycolysis, influencing metabolism and cell survival. Although less studied, D-lactate is linked to metabolic disorders and plays a role in mitochondrial dysfunction and oxidative stress. This review focuses on both L- and D-lactate and examines their biosynthesis, transport, and expanding roles in physiological and pathological processes, particularly their functions in cancer, immune regulation, inflammation, neurodegeneration and other diseases. Finally, we assess the therapeutic prospects of targeting lactate metabolism, highlighting emerging strategies for intervention in clinical settings. Our review synthesizes the current understanding of L- and D-lactate, offering insights into their potential as targets for therapeutic innovation.
乳酸,曾经被认为仅仅是无氧代谢的副产物,现在被公认为是一种关键的信号分子,在生理和病理过程中具有多种作用。乳酸有两种立体异构体:L-乳酸和D-乳酸。最近的研究表明,这两种乳酸立体异构体的紊乱对健康和疾病有不同的影响。L-乳酸是糖酵解和通过科里循环进行能量转移的核心,但也是糖酵解诱导的主要乳酸化异构体,影响代谢和细胞存活。虽然对D-乳酸的研究较少,但它与代谢紊乱有关,并在线粒体功能障碍和氧化应激中起作用。本综述重点关注L-乳酸和D-乳酸,研究它们的生物合成、转运以及在生理和病理过程中不断扩展的作用,特别是它们在癌症、免疫调节、炎症、神经退行性变和其他疾病中的功能。最后,我们评估了针对乳酸代谢的治疗前景,强调了临床环境中新兴的干预策略。我们的综述综合了目前对L-乳酸和D-乳酸的认识,为它们作为治疗创新靶点的潜力提供了见解。