抗 CD22/CD19 CAR-T 细胞疗法 CART2219.1 在成人和儿童复发/难治性 B-ALL 中的 I/II 期试验
A Phase I/II Trial of Anti-CD22/CD19 CAR-T Cell Therapy, CART2219.1, in Adult and Pediatric Relapsed/Refractory B-ALL.
在一项多中心I/II期试验中,所有患者(n=11;7名儿童,4名成人)在第28天均达到完全缓解(91%为微小残留病阴性)。
英文原题:BH3 mimetics augment cytotoxic T cell killing of acute myeloid leukemia via mitochondrial apoptotic mechanism.
BH3 mimetics augment cytotoxic T cell killing of acute myeloid leukemia via mitochondrial apoptotic mechanism.
过继性细胞疗法(ACT)可以满足复发/难治性急性髓系白血病(AML)患者未被满足的临床需求,但在高肿瘤负荷的情况下,其疗效往往有限。
过继性细胞治疗(ACT)可以满足复发/难治性急性髓系白血病(AML)患者未被满足的临床需求,但在高肿瘤负荷的情况下,其疗效往往有限。在本研究中,我们假设降低AML凋亡阈值的策略将增强T细胞对AML细胞的杀伤。BH3模拟物,如venetoclax,是一类经临床批准的化合物,通过抑制抗凋亡线粒体蛋白使细胞倾向于内在凋亡。我们在AML细胞系和具有多种疾病特征的患者原代样本上探索了BH3模拟物联合WT1特异性CD8+ T细胞的抗白血病疗效,以评估通过抑制抗凋亡线粒体蛋白降低细胞凋亡阈值是否能增加白血病细胞对T细胞治疗的敏感性。我们发现,BH3模拟物与CD8+ T细胞联合方案可显著增加对已建系AML细胞系以及不良风险原代AML白血病原始细胞的杀伤。与增强杀伤是由于内在和外在凋亡通路联合激活的假设相反,我们的数据表明,CTL介导的AML细胞杀伤主要通过激活内在/线粒体凋亡通路实现。这种因汇聚于线粒体凋亡通路而产生的高效联合活性在多个AML细胞系和原代样本中均得以保留,提示线粒体 priming 可能代表一种优化AML患者过继性细胞治疗的新机制。
Adoptive cell therapy (ACT) can address an unmet clinical need for patients with relapsed/refractory acute myeloid leukemia (AML), but its effect is often modest in the setting of high tumor burden. In this study, we postulated that strategies to lower the AML apoptotic threshold will augment T cell killing of AML cells. BH3 mimetics, such as venetoclax, are a clinically approved class of compounds that predispose cells to intrinsic apoptosis by inhibiting anti-apoptotic mitochondrial proteins. We explored the anti-leukemic efficacy of BH3 mimetics combined with WT1-specific CD8+ T cells on AML cell lines and primary samples from patients with a diverse array of disease characteristics to evaluate if lowering the cellular apoptotic threshold via inhibition of anti-apoptotic mitochondrial proteins can increase leukemic cell sensitivity to T cell therapy. We found that the combination approach of BH3 mimetic and CD8+ T cells led to significantly increased killing of established AML lines as well as of adverse-risk primary AML leukemic blast cells. In contrast to the hypothesis that enhanced killing would be due to combined activation of the intrinsic and extrinsic apoptotic pathways, our data suggests that CTL-mediated killing of AML cells was accomplished primarily through activation of the intrinsic/mitochondrial apoptotic pathway. This highly effective combinatorial activity due to convergence on the mitochondrial apoptotic pathway was conserved across multiple AML cell lines and primary samples, suggesting that mitochondrial priming may represent a novel mechanism of optimizing adoptive cell therapy for AML patients.
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