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多胺信号通过 HCC 微环境:TAMs 中线粒体保存和更新的关键调节因子。

Polyamine Signal through HCC Microenvironment: A Key Regulator of Mitochondrial Preservation and Turnover in TAMs.

机构信息

Key Laboratory of Pathobiology, Department of Pathophysiology, Ministry of Education, College of Basical Medical Sciences, Jilin University, 126 Xinmin Street, Changchun 130012, China.

出版信息

Int J Mol Sci. 2024 Jan 13;25(2):996. doi: 10.3390/ijms25020996.

Abstract

Hepatocellular carcinoma (HCC) is the most common primary liver cancer, and, with increasing research on the tumor immune microenvironment (TIME), the immunosuppressive micro-environment of HCC hampers further application of immunotherapy, even though immunotherapy can provide survival benefits to patients with advanced liver cancer. Current studies suggest that polyamine metabolism is not only a key metabolic pathway for the formation of immunosuppressive phenotypes in tumor-associated macrophages (TAMs), but it is also profoundly involved in mitochondrial quality control signaling and the energy metabolism regulation process, so it is particularly important to further investigate the role of polyamine metabolism in the tumor microenvironment (TME). In this review, by summarizing the current research progress of key enzymes and substrates of the polyamine metabolic pathway in regulating TAMs and T cells, we propose that polyamine biosynthesis can intervene in the process of mitochondrial energy metabolism by affecting mitochondrial autophagy, which, in turn, regulates macrophage polarization and T cell differentiation. Polyamine metabolism may be a key target for the interactive dialog between HCC cells and immune cells such as TAMs, so interfering with polyamine metabolism may become an important entry point to break intercellular communication, providing new research space for developing polyamine metabolism-based therapy for HCC.

摘要

肝细胞癌(HCC)是最常见的原发性肝癌,随着对肿瘤免疫微环境(TIME)的研究不断深入,HCC 的免疫抑制微环境阻碍了免疫疗法的进一步应用,尽管免疫疗法可以为晚期肝癌患者提供生存获益。目前的研究表明,多胺代谢不仅是肿瘤相关巨噬细胞(TAMs)中免疫抑制表型形成的关键代谢途径,而且还深刻涉及线粒体质量控制信号和能量代谢调节过程,因此进一步研究多胺代谢在肿瘤微环境(TME)中的作用尤为重要。在这篇综述中,通过总结多胺代谢途径中的关键酶和底物在调节 TAMs 和 T 细胞中的研究进展,我们提出多胺生物合成可以通过影响线粒体自噬来干预线粒体能量代谢过程,进而调节巨噬细胞极化和 T 细胞分化。多胺代谢可能是 HCC 细胞与 TAMs 等免疫细胞之间相互对话的关键靶点,因此干扰多胺代谢可能成为打破细胞间通讯的重要切入点,为开发基于多胺代谢的 HCC 治疗提供新的研究空间。

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