CAR-T(CAR-T)细胞疗法在非肿瘤性疾病中的应用
Chimeric antigen receptor T (CAR-T) cell therapy in non-oncological diseases.
CAR-T(CAR-T)细胞在血液系统恶性肿瘤中的应用推动了这种免疫治疗形式的显著进展。
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Immunosuppressive tumor microenvironment contributes to tumor progression in diffuse large B-cell lymphoma upon anti-CD19 chimeric antigen receptor T therapy.
Immunosuppressive tumor microenvironment contributes to tumor progression in diffuse large B-cell lymphoma upon anti-CD19 chimeric antigen receptor T therapy.
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抗CD19 CAR-T 可使40%至50%的复发/难治性弥漫大B细胞淋巴瘤(DLBCL)患者获得长期完全缓解,但导致疗效失败的肿瘤微环境改变机制仍需研究。一项多中心I/II期试验评估抗CD19 CD28ζ CAR-T(FKC876)。22例可评估患者中,第29天7例完全缓解、10例部分缓解、4例疾病稳定。研究对长期完全缓解和早期进展患者不同治疗阶段的粗针活检样本进行单细胞RNA测序。结果显示,M2型巨噬细胞显著参与CAR-T 体内外抗肿瘤功能,并导致CAR-T 治疗失败和DLBCL进展。免疫抑制性微环境在CAR-T 治疗前、细胞扩增期及疾病进展期均持续存在,浸润CAR-T 未能改变该状态。M2型巨噬细胞及功能障碍T细胞的异常代谢谱也参与形成免疫抑制环境。研究为未来CAR-T 设计提供临床依据:靶向肿瘤微环境并重编程免疫细胞代谢,可能成为防止淋巴瘤复发的有效策略。
Anti-CD19 chimeric antigen receptor (CAR)-T cell therapy has achieved 40%-50% long-term complete response in relapsed or refractory diffuse large B-cell lymphoma (DLBCL) patients.
However, the underlying mechanism of alterations in the tumor microenvironments resulting in CAR-T cell therapy failure needs further investigation. A multi-center phase I/II trial of anti-CD19 CD28z CAR-T (FKC876, ChiCTR1800019661) was conducted. Among 22 evaluable DLBCL patients, seven achieved complete remission, 10 experienced partial remissions, while four had stable disease by day 29. Single-cell RNA sequencing results were obtained from core needle biopsy tumor samples collected from long-term complete remission and early-progressed patients, and compared at different stages of treatment.
M2-subtype macrophages were significantly involved in both in vivo and in vitro anti-tumor functions of CAR-T cells, leading to CAR-T cell therapy failure and disease progression in DLBCL. Immunosuppressive tumor microenvironments persisted before CAR-T cell therapy, during both cell expansion and disease progression, which could not be altered by infiltrating CAR-T cells. Aberrant metabolism profile of M2-subtype macrophages and those of dysfunctional T cells also contributed to the immunosuppressive tumor microenvironments.
Thus, our findings provided a clinical rationale for targeting tumor microenvironments and reprogramming immune cell metabolism as effective therapeutic strategies to prevent lymphoma relapse in future designs of CAR-T cell therapy.
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