CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:The nexus of dynamic T cell states and immune checkpoint blockade therapy in the periphery and tumor microenvironment.
The nexus of dynamic T cell states and immune checkpoint blockade therapy in the periphery and tumor microenvironment.
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免疫检查点阻断(ICB)疗法,即使用单克隆抗体从CTLA-4、PD-1和PD-L1免疫检查点的抑制作用中重新激活肿瘤反应性抗原特异性T细胞,已经彻底改变了现代肿瘤学的治疗格局。
然而,只有一部分患者能够从ICB治疗中获益。在过去十年中,与ICB应答、耐药和预后相关的生物标志物受到了深入研究。早期研究集中于分析肿瘤标本及其所处的微环境。
然而,在临床实践中活检可能难以获取,并且不能反映ICB治疗期间免疫学参数的动态变化。近期研究利用多组学方法研究了来源于外周隔室的抗原特异性T细胞的图谱。通过追踪肿瘤反应性T细胞受体库的克隆型和多样性,这些研究共同确立:在ICB整个疗程中,外周血中抗原特异性T细胞的从头致敏持续发生,而ICB之前已存在的T细胞则存在不同程度的耗竭。
在此,我们综述了关于癌症患者在肿瘤微环境和外周隔室中ICB诱导的T细胞表型和功能变化的已知信息。更好地理解影响ICB应答的参数,将为开发新型诊断方法和联合治疗策略以最大化ICB治疗的临床疗效提供理论依据。
Immune checkpoint blockade (ICB) therapies, that is, using monoclonal antibodies to reinvigorate tumor-reactive, antigen-specific T cells from the inhibitory effects of CTLA-4, PD-1 and PD-L1 immune checkpoints, have revolutionized the therapeutic landscape of modern oncology.
However, only a subset of patients can benefit from the ICB therapy. Biomarkers associated with ICB response, resistance and prognosis have been subjected to intensive research in the past decade. Early studies focused on the analysis of tumor specimens and their residing microenvironment.
However, biopsies can be challenging to obtain in clinical practice, and do not reflect the dynamic changes of immunological parameters during the ICB therapy. Recent studies have investigated profiles of antigen-specific T cells derived from the peripheral compartment using multi-omics approaches.
By tracking the clonotype and diversity of tumor-reactive T cell receptor repertoire, these studies collectively establish that de novo priming of antigen-specific T cells in peripheral blood occurs throughout the course of ICB, whereas preexisting T cells prior to ICB are exhausted to various degrees.
Here, we review what is known about ICB-induced T cell phenotypic and functional changes in cancer patients both within the tumor microenvironment and in the peripheral compartment. A better understanding of parameters influencing the response to ICBs will provide rationales for developing novel diagnostics and combinatorial therapeutic strategies to maximize the clinical efficacies of ICB therapies.
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