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肿瘤浸润性T细胞中的脂质代谢:机制与应用

Lipid metabolism in tumor-infiltrating T cells: mechanisms and applications.

作者信息

Ke Xin-Yu, Zou Miaowen, Xu Chenqi

机构信息

State Key Laboratory of Molecular Biology, Shanghai Science Research Center, CAS Center for Excellence in Molecular Cell Science, Shanghai Institute of Biochemistry and Cell Biology, Chinese Academy of Sciences, Shanghai 200031, China.

出版信息

Life Metab. 2022 Dec 15;1(3):211-223. doi: 10.1093/lifemeta/loac038. eCollection 2022 Dec.

Abstract

As an essential part of adaptive immunity, T cells coordinate the immune responses against pathogens and cancer cells. Lipid metabolism has emerged as a key regulator for the activation, differentiation, and effector functions of T cells. Therefore, uncovering the molecular mechanisms by which lipid metabolism dictates T cell biology is of vital importance. The tumor microenvironment is a hostile milieu, i.e. often characterized by nutrient restriction. In this environment, various cells, such as T cells and cancer cells, reprogram their metabolism, including their lipid metabolism, to meet their energy and functional needs. Here, we review the participation of fatty acid and cholesterol metabolism homeostasis in orchestrating T cell biology. We demonstrate how the tumor microenvironment reshapes the lipid metabolism in T cells. Importantly, we highlight the current cancer therapeutic interventions that target fatty acid and cholesterol metabolism of T cells. By offering a holistic understanding of how lipid metabolic adaption by T cells facilitates their immunosurveillance in the tumor microenvironment, we believe this review and the future studies might inspire the next-generation immunotherapies.

摘要

作为适应性免疫的重要组成部分,T细胞协调针对病原体和癌细胞的免疫反应。脂质代谢已成为T细胞激活、分化和效应功能的关键调节因子。因此,揭示脂质代谢决定T细胞生物学特性的分子机制至关重要。肿瘤微环境是一个恶劣的环境,即通常以营养限制为特征。在这种环境中,各种细胞,如T细胞和癌细胞,会重新编程其代谢,包括脂质代谢,以满足其能量和功能需求。在这里,我们综述脂肪酸和胆固醇代谢稳态在协调T细胞生物学中的参与情况。我们展示了肿瘤微环境如何重塑T细胞中的脂质代谢。重要的是,我们强调了当前针对T细胞脂肪酸和胆固醇代谢的癌症治疗干预措施。通过全面了解T细胞的脂质代谢适应如何促进其在肿瘤微环境中的免疫监视,我们相信这篇综述以及未来的研究可能会激发下一代免疫疗法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/597e/11749778/b8d4c46bffb6/loac038_fig1.jpg

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