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:Acquisition of an immunosuppressive microenvironment after anti-CD19 CAR T-cell therapy is associated with T-cell dysfunction and resistance.
Acquisition of an immunosuppressive microenvironment after anti-CD19 CAR T-cell therapy is associated with T-cell dysfunction and resistance.
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CAR-T 细胞介导的髓系活化与可能拮抗治疗效应的免疫失调通路相关。
靶向CD19的嵌合抗原受体(CAR)T细胞可使B细胞急性淋巴细胞白血病(B-ALL)患者获得持久应答,但CAR-T 治疗后肿瘤微环境对疗效的影响尚未充分了解。
研究者对B-ALL患者治疗前后骨髓内免疫细胞开展单细胞RNA测序和光谱流式细胞术分析。
CAR-T 细胞介导的炎症引起骨髓微环境显著变化,包括髓系细胞增加。干扰素应答、缺氧和TGF-β信号显著增强,同时髓源性抑制细胞(MDSC)和内源性耗竭CD8+ T细胞扩增。在所分析患者队列中,治疗后内源性T细胞表达PD-1与缺乏持久应答相关。研究还发现,HIF-1、VEGF和TGFBR2是CAR-T 细胞与免疫生态位细胞间相互作用的关键因素,可能广泛驱动T细胞功能障碍。在携带人源肿瘤、经造血干/祖细胞人源化的小鼠中,输注抗CD19 CAR-T 细胞后,人源MDSC积聚增加、缺氧环境加剧且T细胞耗竭加重。
总之,CAR-T 细胞介导的髓系细胞活化与可能抵消治疗作用的免疫失调通路相关。
Chimeric antigen receptor (CAR) T cells targeting CD19 induce durable responses in B-cell acute lymphoblastic leukemia (B-ALL). However, the contribution of the tumor microenvironment to the therapeutic response after CAR T-cell treatment remains incompletely understood.
We performed single-cell RNA sequencing and spectral flow cytometry-based analyses of bone marrow-resident immune cells from B-ALL patients before and after CAR T-cell treatment.
We observed profound changes in the microenvironment in response to CAR T-cell-mediated inflammation, including an increase in myeloid cells. Significant induction of the interferon response, hypoxia, and TGF- signaling was accompanied by expansion of myeloid-derived suppressor cells (MDSCs) and endogenous exhausted CD8+ T cells. PD-1 expression in endogenous T cells post-treatment was associated with a lack of durable response in the cohort of patients analyzed. Further, we revealed that HIF-1 , VEGF, and TGFBR2 are key players in the intercellular communication between CAR T cells and the immune niche, potentially driving widespread T-cell dysfunction. Infusion of anti-CD19 CAR T cells led to increased accumulation of human MDSCs, exacerbation of a hypoxic environment and T-cell exhaustion in hematopoietic stem/progenitor cell-humanized mice bearing a human tumor.
In conclusion, CAR T-cell-mediated myeloid activation is associated with pathways of immune dysregulation that may antagonize the effects of therapy.
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