决定异体 CAR T 细胞排斥与扩增的细胞和分子机制
Cellular and molecular mechanisms determining allogeneic CAR T cell rejection and expansion.
我们评估了11例接受单一批次cemacabtagene ansegedleucel(cema-cel)治疗的大B细胞淋巴瘤患者,cemacabtagene ansegedleucel是一种异体抗CD19 CAR T产品。
英文原题:Enhanced AC133-specific CAR T cell therapy induces durable remissions in mice with metastatic small cell lung cancer.
我们得出结论,AC133特异性CAR T细胞、抗PD-1抗体和CD73抑制剂的联合治疗能够特异性清除耐化疗的肿瘤干细胞,克服SCLC介导的T细胞抑制,并可能在本无法治愈的疾病中诱导长期完全缓解。
转移性小细胞肺癌(SCLC)无法治愈。虽然SCLC最初对化疗敏感,但缓解期短暂。复发由化疗筛选出的肿瘤干细胞诱导,这些细胞表达CD133干细胞标志物的AC133表位。我们利用人原发SCLC和原位异种移植小鼠模型研究了化疗后AC133特异性CAR T细胞的有效性。AC133特异性CAR T细胞迁移至SCLC肿瘤病灶,减轻了肿瘤负荷,并在人源化原位SCLC模型中延长了生存期,但未能完全消除肿瘤。我们鉴定出CD73和PD-L1为免疫逃逸机制,并将PD-1抑制和CD73抑制与CAR T细胞治疗联合。这种三重免疫治疗使25%的小鼠获得治愈,且无移植物抗宿主病或骨髓衰竭的迹象。在原发人SCLC组织中可检测到AC133+肿瘤干细胞和PD-L1+CD73+髓系细胞,提示患者可能从三重免疫治疗中获益。我们得出结论:AC133特异性CAR T细胞、抗PD-1抗体和CD73抑制剂的联合能够特异性消除化疗耐药的肿瘤干细胞,克服SCLC介导的T细胞抑制,并可能在本无法治愈的疾病中诱导长期完全缓解。
Metastatic small cell lung cancer (SCLC) is not curable. While SCLC is initially sensitive to chemotherapy, remissions are short-lived. The relapse is induced by chemotherapy-selected tumor stem cells, which express the AC133 epitope of the CD133 stem cell marker. We studied the effectiveness of AC133-specific CAR T cells post-chemotherapy using human primary SCLC and an orthotopic xenograft mouse model. AC133-specific CAR T cells migrated to SCLC tumor lesions, reduced the tumor burden, and prolonged survival in a humanized orthotopic SCLC model, but were not able to entirely eliminate tumors. We identified CD73 and PD-L1 as immune-escape mechanisms and combined PD-1-inhibition and CD73-inhibition with CAR T cell treatment. This triple-immunotherapy induced cures in 25% of the mice, without signs of graft-versus-host disease or bone marrow failure. AC133 + cancer stem cells and PD-L1 + CD73 + myeloid cells were detectable in primary human SCLC tissues, suggesting that patients may benefit from the triple-immunotherapy. We conclude that the combination of AC133-specific CAR T cells, anti-PD-1-antibody and CD73-inhibitor specifically eliminates chemo-resistant tumor stem cells, overcomes SCLC-mediated T cell inhibition, and might induce long-term complete remission in an otherwise incurable disease.
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