Liang Ziyuan, Deng Lixian, Zhou Xiaoying, Zhang Zhe, Zhao Weilin
Key Laboratory of High-Incidence-Tumor Prevention & Treatment, Guangxi Medical University, Ministry of Education, Nanning 530021, China.
Life Science Institute, Guangxi Medical University, Nanning 530021, China.
Biomedicines. 2025 Jan 16;13(1):210. doi: 10.3390/biomedicines13010210.
Reprogramming energy metabolism is pivotal to tumor development. Ketone bodies (KBs), which are generated during lipid metabolism, are fundamental bioactive molecules that can be modulated to satisfy the escalating metabolic needs of cancer cells. At present, a burgeoning body of research is concentrating on the metabolism of KBs within tumors, investigating their roles as signaling mediators, drivers of post-translational modifications, and regulators of inflammation and oxidative stress. The ketogenic diet (KD) may enhance the sensitivity of various cancers to standard therapies, such as chemotherapy and radiotherapy, by exploiting the reprogrammed metabolism of cancer cells and shifting the metabolic state from glucose reliance to KB utilization, rendering it a promising candidate for adjunct cancer therapy. Nonetheless, numerous questions remain regarding the expression of key metabolic genes across different tumors, the regulation of their activities, and the impact of individual KBs on various tumor types. Further investigation is imperative to resolve the conflicting data concerning KB synthesis and functionality within tumors. This review aims to encapsulate the intricate roles of KBs in cancer metabolism, elucidating a comprehensive grasp of their mechanisms and highlighting emerging clinical applications, thereby setting the stage for future investigations into their therapeutic potential.
能量代谢重编程对肿瘤发展至关重要。酮体(KBs)是在脂质代谢过程中产生的基本生物活性分子,可对其进行调节以满足癌细胞不断增长的代谢需求。目前,越来越多的研究集中在肿瘤内酮体的代谢,研究它们作为信号介质、翻译后修饰驱动因子以及炎症和氧化应激调节因子的作用。生酮饮食(KD)可能通过利用癌细胞重编程的代谢并将代谢状态从依赖葡萄糖转变为利用酮体,从而提高各种癌症对化疗和放疗等标准疗法的敏感性,使其成为辅助癌症治疗的有前景的候选方法。尽管如此,关于不同肿瘤中关键代谢基因的表达、其活性的调节以及单个酮体对各种肿瘤类型的影响,仍有许多问题。必须进一步研究以解决关于肿瘤内酮体合成和功能的相互矛盾的数据。本综述旨在概括酮体在癌症代谢中的复杂作用,阐明对其机制的全面理解并突出新兴的临床应用,从而为未来对其治疗潜力的研究奠定基础。