免疫检查点阻断通过扩增效应 CD8⁺ T 细胞克隆增强淋巴细胞清除性化疗诱导的抗肿瘤免疫
Immune Checkpoint Blockade Augments Lymphodepleting Chemotherapy-Induced Antitumor Immunity by Expanding Effector CD8+ T-cell Clones.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Tumor-specific CD8(+) T cells from the bone marrow resist exhaustion and exhibit increased persistence in tumor-bearing hosts as compared with tumor-infiltrating lymphocytes.
Tumor-specific CD8(+) T cells from the bone marrow resist exhaustion and exhibit increased persistence in tumor-bearing hosts as compared with tumor-infiltrating lymphocytes.
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来自 BM 的 T 细胞作为细胞治疗的细胞来源似乎优于 TILs。它们具有记忆富集表型,并表现出改善的效应功能、在荷瘤宿主体内更强的持久性以及增强肿瘤浸润的能力。这些数据为进一步探索 BM 作为实体恶性肿瘤中 ACT 的肿瘤特异性 T 细胞来源提供了基础。
免疫治疗现已成为癌症治疗不可或缺的一部分。采用过继细胞治疗(ACT)的策略已促成使用外周血淋巴细胞的嵌合抗原受体(CAR)-T细胞以及TIL(肿瘤浸润淋巴细胞)(TILs)的建立,并取得了显著的临床结果。骨髓(BM)是一个免疫微环境,其中驻留着对既往接触过的抗原具有特异性的T细胞,包括来自某些实体癌的肿瘤相关抗原。本研究旨在通过将肿瘤特异性BM T细胞与TILs进行比较,加深我们对实体瘤背景下肿瘤特异性BM T细胞的理解,并评估将BM用作针对实体恶性肿瘤的ACT T细胞来源是否有依据。
我们使用了小鼠B16黑色素瘤模型,既通过OVA特异性四聚体检查内源性OVA特异性T细胞反应,也通过OVA特异性转基因CD8+(OT-1)T细胞检查OVA特异性反应。具体而言,我们比较了来自荷瘤小鼠的TIL或BM T细胞的基线内在特性,以及它们过继转移后在肿瘤和骨髓中(以及在指明时其他区室中)的变化。
在荷瘤小鼠中,肿瘤进展早期即可在BM中检测到内源性肿瘤特异性T细胞,且无监督聚类分析显示其具有更类似干细胞和记忆细胞的表型,相比之下TIL则显得更为耗竭。BM和肿瘤微环境显著影响T细胞的命运。Naïve OT-1转移T细胞在肿瘤中获得耗竭表型,但随着肿瘤进展在BM中维持更类似记忆细胞的表型。重要的是,在竞争性转移实验中,BM T细胞比TIL更有效地浸润肿瘤,表现出更高的多功能性,可产生白细胞介素-2、干扰素-、肿瘤坏死因子-,并且与TIL相比显示出更强的持久性。
Immunotherapy is now an integral aspect of cancer therapy. Strategies employing adoptive cell therapy (ACT) have seen the establishment of chimeric antigen receptor (CAR)-T cells using peripheral blood lymphocytes as well as tumor-infiltrating lymphocytes (TILs) with significant clinical results. The bone marrow (BM) is an immunological niche housing T cells with specificity for previously encountered antigens, including tumor-associated antigens from certain solid cancers. This study sought to improve our understanding of tumor-specific BM T cells in the context of solid tumors by comparing them with TILs, and to assess whether there is a rationale for using the BM as a source of T cells for ACT against solid malignancies.
We used the murine B16 melanoma model examining both the endogenous OVA-specific T cell response using an OVA-specific tetramer or examining the OVA-specific response with OVA-specific transgenic CD8+ (OT-1) T cells. Specifically, we compared baseline intrinsic properties of TILs or BM T cells from tumor-bearing mice and their changes following adoptive transfer in the tumor and bone marrow (as well as other compartments when indicated).
In tumor-bearing mice, endogenous tumor-specific T cells could be detected in the BM early in the course of tumor progression and possessed a more stem-cell-like and memory phenotype in an unsupervised cluster analysis compared with TILs which appeared more exhausted. The BM and tumor microenvironments significantly impact the fate of T cells. Na ve OT-1 transferred T cells acquired an exhausted phenotype in the tumor but maintained a more memory-like phenotype in the BM with tumor progression. Importantly, in a competitive transfer experiment, BM T cells infiltrated the tumor more efficiently than TILs, displayed a higher polyfunctionality with interleukin-2, interferon- , tumor necrosis factor- production and showed greater persistence compared with TILs.
T cells from the BM appear superior to TILs as a source of cells for cellular therapy. They possess a memory-enriched phenotype and exhibit improved effector function, greater persistence within a tumor-bearing host, and the capacity for increased tumor infiltration. These data provide a foundation for further exploring the BM as a source of tumor-specific T cells for ACT in solid malignancies.
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