Shan Yukai, Xie Tianao, Sun Yuchao, Lu Ziyi, Topatana Win, Juengpanich Sarun, Chen Tianen, Han Yina, Cao Jiasheng, Hu Jiahao, Li Shijie, Cai Xiujun, Chen Mingyu
Department of General Surgery, Sir Run-Run Shaw Hospital, Zhejiang University, Key Laboratory of Endoscopic Technique Research of Zhejiang Province, No.3 East Qingchun Road, 310016, Hangzhou, China.
National Engineering Research Center of Innovation and Application of Minimally Invasive Instruments, Sir Run-Run Shaw Hospital, Zhejiang University, 310016, Hangzhou, China.
Biomark Res. 2024 Apr 22;12(1):41. doi: 10.1186/s40364-024-00588-8.
Regulatory T cells (Tregs) are essential to the negative regulation of the immune system, as they avoid excessive inflammation and mediate tumor development. The abundance of Tregs in tumor tissues suggests that Tregs may be eliminated or functionally inhibited to stimulate antitumor immunity. However, immunotherapy targeting Tregs has been severely hampered by autoimmune diseases due to the systemic elimination of Tregs. Recently, emerging studies have shown that metabolic regulation can specifically target tumor-infiltrating immune cells, and lipid accumulation in TME is associated with immunosuppression. Nevertheless, how Tregs actively regulate metabolic reprogramming to outcompete effector T cells (Teffs), and how lipid metabolic reprogramming contributes to the immunomodulatory capacity of Tregs have not been fully discussed. This review will discuss the physiological processes by which lipid accumulation confers a metabolic advantage to tumor-infiltrating Tregs (TI-Tregs) and amplifies their immunosuppressive functions. Furthermore, we will provide a summary of the driving effects of various metabolic regulators on the metabolic reprogramming of Tregs. Finally, we propose that targeting the lipid metabolism of TI-Tregs could be efficacious either alone or in conjunction with immune checkpoint therapy.
调节性T细胞(Tregs)对于免疫系统的负调控至关重要,因为它们可避免过度炎症并介导肿瘤发展。肿瘤组织中Tregs的大量存在表明,可能需要消除Tregs或抑制其功能以刺激抗肿瘤免疫。然而,由于Tregs的全身性消除,靶向Tregs的免疫疗法受到自身免疫性疾病的严重阻碍。最近,新出现的研究表明,代谢调节可特异性地靶向肿瘤浸润免疫细胞,并且肿瘤微环境中的脂质积累与免疫抑制相关。尽管如此,Tregs如何主动调节代谢重编程以胜过效应T细胞(Teffs),以及脂质代谢重编程如何促进Tregs的免疫调节能力,尚未得到充分讨论。本综述将讨论脂质积累赋予肿瘤浸润性Tregs(TI-Tregs)代谢优势并增强其免疫抑制功能的生理过程。此外,我们将总结各种代谢调节因子对Tregs代谢重编程的驱动作用。最后,我们提出靶向TI-Tregs的脂质代谢单独或与免疫检查点疗法联合使用可能是有效的。