Li Zhangzuo, Wang Qi, Huang Xufeng, Yang Mengting, Zhou Shujing, Li Zhengrui, Fang Zhengzou, Tang Yidan, Chen Qian, Hou Hanjin, Li Li, Fei Fei, Wang Qiaowei, Wu Yuqing, Gong Aihua
Hematological Disease Institute of Jiangsu University, Affiliated Hospital of Jiangsu University, Jiangsu University, Zhenjiang, China.
Department of Cell Biology, School of Medicine, Jiangsu University, Zhenjiang, China.
Front Nutr. 2023 Feb 16;10:1113739. doi: 10.3389/fnut.2023.1113739. eCollection 2023.
Metabolic reprogramming is one of fourteen hallmarks of tumor cells, among which aerobic glycolysis, often known as the "Warburg effect," is essential to the fast proliferation and aggressive metastasis of tumor cells. Lactate, on the other hand, as a ubiquitous molecule in the tumor microenvironment (TME), is generated primarily by tumor cells undergoing glycolysis. To prevent intracellular acidification, malignant cells often remove lactate along with H, yet the acidification of TME is inevitable. Not only does the highly concentrated lactate within the TME serve as a substrate to supply energy to the malignant cells, but it also works as a signal to activate multiple pathways that enhance tumor metastasis and invasion, intratumoral angiogenesis, as well as immune escape. In this review, we aim to discuss the latest findings on lactate metabolism in tumor cells, particularly the capacity of extracellular lactate to influence cells in the tumor microenvironment. In addition, we examine current treatment techniques employing existing medications that target and interfere with lactate generation and transport in cancer therapy. New research shows that targeting lactate metabolism, lactate-regulated cells, and lactate action pathways are viable cancer therapy strategies.
代谢重编程是肿瘤细胞的十四大特征之一,其中有氧糖酵解,通常被称为“瓦伯格效应”,对于肿瘤细胞的快速增殖和侵袭性转移至关重要。另一方面,乳酸作为肿瘤微环境(TME)中一种普遍存在的分子,主要由进行糖酵解的肿瘤细胞产生。为了防止细胞内酸化,恶性细胞通常会将乳酸与氢离子一起排出,但TME的酸化是不可避免的。TME中高浓度的乳酸不仅作为底物为恶性细胞提供能量,还作为信号激活多种途径,增强肿瘤转移和侵袭、肿瘤内血管生成以及免疫逃逸。在这篇综述中,我们旨在讨论肿瘤细胞乳酸代谢的最新发现,特别是细胞外乳酸影响肿瘤微环境中细胞的能力。此外,我们研究了目前使用现有药物靶向和干扰癌症治疗中乳酸生成和转运的治疗技术。新的研究表明,靶向乳酸代谢、乳酸调节的细胞和乳酸作用途径是可行的癌症治疗策略。