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:Tailored strategies for improved control of CAR-T cells in multiple myeloma.
这些发现表明,ADC可作为CAR-T疗法的一种强效、不依赖效应细胞的安全性机制,有可能在未来的临床应用中增强可控性和安全性。
近期嵌合抗原受体(CAR)T细胞疗法的进展改变了多发性骨髓瘤的治疗格局,然而几乎所有患者最终都会复发。染色体1q获得与疾病进展风险增高和预后不良相关,提示靶向1号染色体编码抗原(如SLAMF7)的CAR-T在晚期疾病中可能尤为重要。然而,新型CAR靶点增加了靶向、脱肿瘤毒性的风险,凸显了对可控CAR-T系统的需求。我们系统评估了药理学和基于抗体的策略来调控CD19和SLAMF7导向的CAR-T细胞。酪氨酸激酶抑制剂达沙替尼可快速且可逆地抑制CAR-T活化,作为一种高效的“开/关”开关,但局限性在于也会抑制未修饰的T细胞。为克服这一问题,我们利用抗体依赖性细胞毒性来抑制CAR-T细胞。然而,氟达拉滨/环磷酰胺预处理会深刻耗竭NK细胞,限制了抗体依赖性CAR-T清除在患者中的应用。此外,由于NK细胞表达SLAMF7,它们易受SLAMF7 CAR-T细胞的自相残杀性细胞毒性,进一步削弱了这一潜在的关闭机制。为绕过这种免疫效应细胞依赖性,我们开发了一种利用抗体-药物偶联物(ADC)的新策略。在这项工作中,我们证明靶向BCMA的ADC belantamab-mafodotin选择性消除共表达BCMA的CAR-T细胞,而不影响未修饰的T细胞。这些发现提示ADC可作为CAR-T疗法的一种强效、不依赖效应细胞的安全性机制,有可能在未来的临床应用中增强可控性和安全性。
Recent advances in chimeric antigen receptor (CAR) T cell therapy have transformed the treatment landscape of multiple myeloma, yet almost all patients ultimately relapse. Chromosomal 1q gains are associated with a higher risk of disease progression and poor prognosis, suggesting that CAR-T targeting of chromosome 1-encoded antigens, such as SLAMF7, may be particularly relevant in advanced disease. However, novel CAR targets raise the risk of on-target, off-tumor toxicities, underscoring the need for controllable CAR-T systems. We systematically assessed pharmacologic and antibody-based strategies to modulate CD19- and SLAMF7-directed CAR-T cells. Tyrosine-kinase inhibitor dasatinib rapidly and reversibly inhibited CAR-T activation, serving as an efficient "on/off" switch with the limitation of also inhibiting unmodified T cells. To surpass this issue, we used antibody-dependent cell cytotoxicity to inhibit CAR-T cells. However, conditioning with fludarabine/cyclophosphamide profoundly depletes NK cells, limiting antibody-dependent CAR-T clearance in patients. Moreover, as NK cells express SLAMF7, they are susceptible to fratricidal cytotoxicity by SLAMF7 CAR-T cells, further reducing this potential off-switch mechanism. To bypass this immune effector cell dependence, we developed a novel strategy using antibody-drug conjugates (ADCs). In this work, we demonstrate that the BCMA-targeting ADC belantamab-mafodotin selectively eliminates BCMA co-expressing CAR-T cells without affecting unmodified T cells. These findings suggest ADCs as a potent, effector cell-independent safety mechanism for CAR-T therapies, potentially enhancing controllability and safety in future clinical applications.
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