Department of Hepatobiliary Surgery, Beijing Chao-Yang Hospital Affiliated to Capital Medical University, Beijing, China.
Department of Urology Surgery, Beijing Chao-Yang Hospital Affiliated to Capital Medical University, Beijing, China.
Front Immunol. 2023 Jul 10;14:1211126. doi: 10.3389/fimmu.2023.1211126. eCollection 2023.
Hepatocellular carcinoma (HCC) is the most prevalent primary liver malignancy worldwide and is associated with a poor prognosis. Sophisticated molecular mechanisms and biological characteristics need to be explored to gain a better understanding of HCC. The role of metabolites in cancer immunometabolism has been widely recognized as a hallmark of cancer in the tumor microenvironment (TME). Recent studies have focused on metabolites that are derived from carbohydrate, lipid, and protein metabolism, because alterations in these may contribute to HCC progression, ischemia-reperfusion (IR) injury during liver transplantation (LT), and post-LT rejection. Immune cells play a central role in the HCC microenvironment and the duration of IR or rejection. They shape immune responses through metabolite modifications and by engaging in complex crosstalk with tumor cells. A growing number of publications suggest that immune cell functions in the TME are closely linked to metabolic changes. In this review, we summarize recent findings on the primary metabolites in the TME and post-LT metabolism and relate these studies to HCC development, IR injury, and post-LT rejection. Our understanding of aberrant metabolism and metabolite targeting based on regulatory metabolic pathways may provide a novel strategy to enhance immunometabolism manipulation by reprogramming cell metabolism.
肝细胞癌(HCC)是全球最常见的原发性肝脏恶性肿瘤,预后不良。需要探索复杂的分子机制和生物学特征,以更好地了解 HCC。代谢物在癌症免疫代谢中的作用已被广泛认为是肿瘤微环境(TME)中癌症的标志。最近的研究集中在来源于碳水化合物、脂质和蛋白质代谢的代谢物上,因为这些代谢物的改变可能导致 HCC 进展、肝移植(LT)期间的缺血再灌注(IR)损伤和 LT 后排斥。免疫细胞在 HCC 微环境中发挥核心作用,IR 或排斥的持续时间。它们通过代谢物修饰和与肿瘤细胞进行复杂的串扰来塑造免疫反应。越来越多的出版物表明,TME 中免疫细胞的功能与代谢变化密切相关。在这篇综述中,我们总结了 TME 中主要代谢物和 LT 后代谢的最新发现,并将这些研究与 HCC 发展、IR 损伤和 LT 后排斥联系起来。我们对基于调节代谢途径的异常代谢和代谢物靶向的理解可能为通过重新编程细胞代谢来增强免疫代谢操纵提供一种新策略。