Centro de Investigação Translacional em Oncologia (LIM24), Departamento de Radiologia e Oncologia, Faculdade de Medicina da Universidade de São Paulo and Instituto do Câncer do Estado de São Paulo, São Paulo, Brazil.
Front Immunol. 2022 Feb 15;13:768606. doi: 10.3389/fimmu.2022.768606. eCollection 2022.
To become resistant, cancer cells need to activate and maintain molecular defense mechanisms that depend on an energy trade-off between resistance and essential functions. Metabolic reprogramming has been shown to fuel cell growth and contribute to cancer drug resistance. Recently, changes in lipid metabolism have emerged as an important driver of resistance to anticancer agents. In this review, we highlight the role of choline metabolism with a focus on the phosphatidylcholine cycle in the regulation of resistance to therapy. We analyze the contribution of phosphatidylcholine and its metabolites to intracellular processes of cancer cells, both as the major cell membrane constituents and source of energy. We further extended our discussion about the role of phosphatidylcholine-derived lipid mediators in cellular communication between cancer and immune cells within the tumor microenvironment, as well as their pivotal role in the immune regulation of therapeutic failure. Changes in phosphatidylcholine metabolism are part of an adaptive program activated in response to stress conditions that contribute to cancer therapy resistance and open therapeutic opportunities for treating drug-resistant cancers.
为了产生耐药性,癌细胞需要激活并维持依赖于耐药性和基本功能之间能量权衡的分子防御机制。代谢重编程已被证明可以为细胞生长提供燃料,并有助于癌症药物耐药性。最近,脂质代谢的变化已成为抵抗抗癌药物的重要驱动因素。在这篇综述中,我们重点介绍了胆碱代谢及其在调节治疗耐药性中的作用,特别是磷脂酰胆碱循环。我们分析了磷脂酰胆碱及其代谢物作为主要的细胞膜成分和能量来源,对癌细胞内部过程的贡献。我们进一步扩展了关于磷脂酰胆碱衍生的脂质介质在肿瘤微环境中癌细胞与免疫细胞之间细胞通讯中的作用及其在治疗失败的免疫调节中的关键作用的讨论。磷脂酰胆碱代谢的变化是对应激条件激活的适应性程序的一部分,有助于癌症治疗耐药性,并为治疗耐药性癌症提供了治疗机会。