癌症免疫治疗学会(SITC)关于急性白血病免疫治疗的临床实践指南,2.0 版
Society for Immunotherapy of Cancer (SITC) clinical practice guideline on immunotherapy for the treatment of acute leukemia, version 2.0.
急性白血病是一种影响所有年龄段的血液系统恶性肿瘤。
英文原题:Human cDC1 enhance cytotoxic function of CD226+ terminally exhausted tumor-infiltrating lymphocytes.
预防或逆转T细胞耗竭是癌症免疫治疗的主要目标。
预防或逆转T细胞耗竭是癌症免疫治疗的主要目标。然而,目前缺乏能够在体内生成、表征和调控耗竭人类T细胞的模型,尤其是在实体瘤中,这可能阻碍了新疗法的发现和转化。在本研究中,我们描述了一种人源化小鼠模型,其中针对肿瘤抗原NY-ESO-1的功能性人类CD8+ T细胞在体内由经基因修饰表达HLA-A*0201限制性NY-ESO-1特异性T细胞受体(TCR)的人类CD34+造血干细胞发育而来。在这些小鼠中移植的HLA-A*0201+ NY-ESO-1+表达的A375黑色素瘤肿瘤,尽管被NY-ESO-1特异性T细胞浸润,但对anti-PD-1治疗无应答。与其他器官的T细胞相比,TIL(肿瘤浸润淋巴细胞)上调了组织驻留记忆(TRM)标志物CD103和CD69,以及耗竭标志物PD-1、TIGIT和CD39。此外,TIL在体外经传统I型树突状细胞(cDC1)刺激后未能分泌细胞因子TNF和IFN,提示终末耗竭。然而,cDC1刺激终末耗竭的NY-ESO-1特异性TIL可增强肿瘤杀伤,这与CD107a和Granzyme B表达增加相关,且仅限于CD226+ NY-ESO-1特异性TIL的一个亚群。这些发现建立了一个研究人类肿瘤中T细胞耗竭的新平台,并提示cDC1在增强终末耗竭TIL细胞毒性功能中的作用。
Prevention or reversal of T cell exhaustion is a major objective of cancer immunotherapy. However, few models exist to generate, characterize and modulate exhausted human T cells, particularly within solid tumors in vivo , which likely hampers the discovery and translation of novel therapeutics. In this study we describe a humanized mouse model where functional human CD8+ T cells specific for the tumor antigen NY-ESO-1 develop in vivo from human CD34+ hematopoietic stem cells genetically modified to express a HLA-A *0201-restricted NY-ESO-1 specific T cell receptor (TCR). HLA-A *0201+ NY-ESO-1+ expressing A375 melanoma tumors engrafted in these mice and were refractory to treatment with anti-PD-1 despite being infiltrated with NY-ESO-1 specific T cells. Tumor-Infiltrating Lymphocytes (TIL) upregulated tissue resident memory (TRM) markers CD103 and CD69 along with exhaustion markers PD-1, TIGIT, and CD39 relative to T cells from other organs. Further, TILs failed to secrete cytokines TNF and IFN following in vitro stimulation with conventional Type I Dendritic Cells (cDC1), indicative of terminal exhaustion. However, cDC1 stimulation of the terminally exhausted NY-ESO-1 specific TILs led to enhanced tumor killing that was associated with increased CD107a and Granzyme B expression that was restricted to a subset of CD226+ NY-ESO-1 specific TILs. These findings establish a novel platform to investigate T cell exhaustion in human tumors and suggest a role for cDC1 in enhancing terminally exhausted TIL cytotoxic function.
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