Lactate and lactylation in cancer
Лактат и лактиллирование при раке
2025-02-11
SCID: 54.1/kmkpppan
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Lactate dehydrogenaseLactate metabolismLactylationMonocarboxylate transportersTumor microenvironment
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Abstract (AI)
Accumulated evidence has implicated the diverse and substantial influence of lactate on cellular differentiation and fate regulation in physiological and pathological settings, particularly in intricate conditions such as cancer. Specifically, lactate has been demonstrated to be pivotal in molding the tumor microenvironment (TME) through its effects on different cell populations. Within tumor cells, lactate impacts cell signaling pathways, augments the lactate shuttle process, boosts resistance to oxidative stress, and contributes to lactylation. In various cellular populations, the interplay between lactate and immune cells governs processes such as cell differentiation, immune response, immune surveillance, and treatment effectiveness. Furthermore, communication between lactate and stromal/endothelial cells supports basal membrane (BM) remodeling, epithelial-mesenchymal transitions (EMT), metabolic reprogramming, angiogenesis, and drug resistance. Focusing on lactate production and transport, specifically through lactate dehydrogenase (LDH) and monocarboxylate transporters (MCT), has shown promise in the treatment of cancer. Inhibitors targeting LDH and MCT act as both tumor suppressors and enhancers of immunotherapy, leading to a synergistic therapeutic effect when combined with immunotherapy. The review underscores the importance of lactate in tumor progression and provides valuable perspectives on potential therapeutic approaches that target the vulnerability of lactate metabolism, highlighting the Heel of Achilles for cancer treatment.
Key Findings
1
In tumor cells, lactate modulates signaling, enhances lactate shuttling, increases oxidative-stress resistance, and promotes protein lactylation.
2
Lactate communication with stromal and endothelial cells supports basement-membrane remodeling, epithelial–mesenchymal transition, metabolic reprogramming, angiogenesis, and drug resistance.
3
Lactate interactions with immune cells regulate differentiation, immune responses, immune surveillance, and the effectiveness of cancer treatments.
4
Lactate substantially regulates cellular differentiation and fate in physiological and pathological contexts, especially within cancer.
5
Targeting lactate production and transport through LDH or MCT inhibition can suppress tumors and enhance immunotherapy, producing synergistic therapeutic effects.
Research Object
lactate and lactylation in the tumor microenvironment of cancer
Research Subject
their roles in tumor progression, cellular differentiation and fate regulation, intercellular communication, immune and stromal responses, metabolic reprogramming, therapy resistance, and therapeutic targeting of lactate metabolism
Publication Details
Publication Date
2025-02-11
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