Kim Seong Keun, Cho Sun Wook
Cellus Inc., Seoul, South Korea.
Department of Internal Medicine, Seoul National University Hospital, Seoul, South Korea.
Front Pharmacol. 2022 May 24;13:868695. doi: 10.3389/fphar.2022.868695. eCollection 2022.
Recently, in the field of cancer treatment, the paradigm has changed to immunotherapy that activates the immune system to induce cancer attacks. Among them, immune checkpoint inhibitors (ICI) are attracting attention as excellent and continuous clinical results. However, it shows not only limitations such as efficacy only in some patients or some indications, but also side-effects and resistance occur. Therefore, it is necessary to understand the factors of the tumor microenvironment (TME) that affect the efficacy of immunotherapy, that is, the mechanism by which cancer grows while evading or suppressing attacks from the immune system within the TME. Tumors can evade attacks from the immune system through various mechanisms such as restricting antigen recognition, inhibiting the immune system, and inducing T cell exhaustion. In addition, tumors inhibit or evade the immune system by accumulating specific metabolites and signal factors within the TME or limiting the nutrients available to immune cells. In order to overcome the limitations of immunotherapy and develop effective cancer treatments and therapeutic strategies, an approach is needed to understand the functions of cancer and immune cells in an integrated manner based on the TME. In this review, we will examine the effects of the TME on cancer cells and immune cells, especially how cancer cells evade the immune system, and examine anti-cancer strategies based on TME.
最近,在癌症治疗领域,范式已转变为激活免疫系统以诱导癌症攻击的免疫疗法。其中,免疫检查点抑制剂(ICI)作为出色且持续的临床成果而备受关注。然而,它不仅显示出仅在某些患者或某些适应症中有效的局限性,还会出现副作用和耐药性。因此,有必要了解影响免疫疗法疗效的肿瘤微环境(TME)因素,即肿瘤在TME中逃避或抑制免疫系统攻击的同时生长的机制。肿瘤可以通过多种机制逃避免疫系统的攻击,例如限制抗原识别、抑制免疫系统和诱导T细胞耗竭。此外,肿瘤通过在TME中积累特定代谢物和信号因子或限制免疫细胞可用的营养物质来抑制或逃避免疫系统。为了克服免疫疗法的局限性并开发有效的癌症治疗方法和治疗策略,需要一种基于TME以综合方式理解癌细胞和免疫细胞功能的方法。在本综述中,我们将研究TME对癌细胞和免疫细胞 的影响,特别是癌细胞如何逃避免疫系统,并研究基于TME的抗癌策略。