Pan Bo-Syong, Hsu Che-Chia, Wu Hsin-En, Chen Yuan-Ru, Zhou Xiaobo, Wang Shu-Chi, Li Chia-Yang, Lin Hui-Kuan
Department of Pathology, Duke University Medical Center, Duke University School of Medicine, Durham, NC, 27710, USA.
Center for Computational Systems Medicine, McWilliams School of Biomedical Informatics, The University of Texas Health Science Center at Houston, Houston, TX, 77030, USA.
J Biomed Sci. 2025 Jul 29;32(1):71. doi: 10.1186/s12929-025-01167-1.
Glucose metabolism is a pivotal hub for cellular energy production and the generation of building blocks that support cell growth, survival, and differentiation. Cancer cells undergo metabolic reprogramming to sustain rapid proliferation, survive in harsh microenvironments, and resist therapies. Beyond producing energy and building blocks to meet cancer cell demands, glucose metabolism generates numerous metabolites that serve as signaling molecules, orchestrating signaling pathways and epigenetic modifications that regulate cancer cell phenotypes and immunity. In this review, we discuss how glucose, through its metabolism and direct actions, influences diverse biological processes driving cancer progression and therapeutic resistance, while also exploring metabolic vulnerabilities in cancer for therapeutic strategies.
葡萄糖代谢是细胞能量产生以及支持细胞生长、存活和分化的构件生成的关键枢纽。癌细胞会经历代谢重编程,以维持快速增殖、在恶劣的微环境中存活并抵抗治疗。除了产生能量和构件以满足癌细胞的需求外,葡萄糖代谢还产生大量代谢物,这些代谢物作为信号分子,协调信号通路和表观遗传修饰,从而调节癌细胞表型和免疫。在这篇综述中,我们讨论葡萄糖如何通过其代谢和直接作用影响驱动癌症进展和治疗抗性的各种生物学过程,同时也探索癌症中的代谢脆弱性以制定治疗策略。