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:VE-cadherin NOT-gated CD93 CAR T cells discriminate between AML and healthy endothelial cells.
VE-cadherin NOT-gated CD93 CAR T cells discriminate between AML and healthy endothelial cells.
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嵌合抗原受体(CAR)T细胞疗法已改变了B细胞恶性肿瘤的治疗,但其向急性髓系白血病(AML)的转化受到靶向、脱肿瘤(OTOT)毒性的阻碍。特别是,内皮细胞(EC)特异性毒性限制了一些有前景的富集于白血病干细胞的靶点(如CD93)的临床转化。需要创新策略以减轻EC损伤,同时保持抗白血病疗效。
我们假设,采用NOT门控的CAR-T 细胞策略可以规避与CD93靶向相关的EC毒性。考虑到CAR靶抗原密度以及CAR-T 细胞的促炎微环境,我们确定VE-cadherin(VC)——一种高度特异性的EC标志物——作为最佳的抑制性CAR靶点。我们构建了一种新型的VC特异性单链可变片段(scFv),在VC特异性第二代激活型CAR的背景下确认了EC特异性,随后在体外细胞毒性试验和三维血管化微生理系统中评估了VC/CD93 NOT门控CAR-T 细胞对EC的保护作用及抗白血病活性。
VC/CD93 NOT-gated CAR-T 细胞在多种效靶比下均对 AML 保持强效细胞毒性,同时保护 EC 完整性,包括在三维血管模型系统中。重要的是,既往 AML 暴露并未损害 VC 特异性 iCAR 的 EC 保护功能,表明在炎症条件下 NOT-gate 活性持久。相反,EC 诱导的 iCAR 抑制功能并未限制下游抗白血病细胞毒性,证实激活和抑制信号均具有可逆性。结论:这些发现确立了 NOT-gated CAR-T 细胞作为克服 EC 特异性 OTOT 毒性的有效策略。我们的结果强调了在可能影响抗原表达和可用治疗窗口的一系列炎症状态中发现和验证 CAR 靶点的重要性。该方法扩展了 AML 的潜在 CAR 靶点范围,并可能更广泛地适用于其他因 OTOT 毒性限制临床转化的恶性肿瘤。
Chimeric antigen receptor (CAR) T cell therapy has transformed the treatment of B cell malignancies, but translation to acute myeloid leukemia (AML) has been hindered by on-target, off-tumor (OTOT) toxicity. In particular, endothelial cell (EC)-specific toxicity has limited clinical translation of promising leukemia stem cell-enriched targets such as CD93. Innovative strategies to mitigate EC damage while preserving antileukemic efficacy are needed.
We hypothesized that a NOT-gated CAR T cell strategy could circumvent EC toxicity associated with CD93 targeting. Considering CAR target antigen density and the pro-inflammatory microenvironment of CAR T cells, we identified VE-cadherin (VC), a highly specific EC marker, as an optimal inhibitory CAR target. We engineered a novel VC-specific single chain variable fragment (scFv), confirmed EC specificity in the context of a VC-specific second-generation activating CAR, then evaluated VC/CD93 NOT-gated CAR T cells for EC protection and antileukemic activity in in vitro cytotoxicity assays and in a three-dimensional vascularized microphysiological system.
VC/CD93 NOT-gated CAR T cells maintain potent cytotoxicity against AML across multiple effector-to-target ratios, but preserve EC integrity, including in a three-dimensional vascular model system. Importantly, prior AML exposure did not impair the EC-protective function of the VC-specific iCAR, indicating durable NOT-gate activity under inflammatory conditions. Conversely, EC-induced iCAR inhibitory functions did not limit downstream antileukemic cytotoxicity, confirming a reversibility of both activation and inhibitory signals. Conclusions: These findings establish NOT-gated CAR T cells as an effective strategy to overcome EC-specific OTOT toxicity. Our results underscore the importance of CAR target discovery and validation across a spectrum of inflammatory states that can influence antigen expression and available therapeutic windows. This approach expands the potential CAR target landscape for AML and may be more broadly applicable to other malignancies where OTOT toxicity limits clinical translation.
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