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:Redesigning CAR therapy to tackle immune effector cell-associated hematotoxicity.
Redesigning CAR therapy to tackle immune effector cell-associated hematotoxicity.
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尽管已被认识,该领域尚未充分探索免疫效应细胞相关血液毒性(Immune effector Cell-Associated Hematotoxicity, ICAHT)的机制与解决方案,而 ICAHT 是 CAR 治疗后长期发病率和死亡率的重要因素。约 20–40% 的患者发生 3 级或以上的 ICAHT,在 CD28 和 4-1BB 两种 CAR 中,至少有 33% 的患者发生迟发性 ICAHT。CAR 治疗后的 ICAHT 会影响后续治疗的有效性以及继发恶性肿瘤的发生率。除 CAR-HEMATOTOX 模型外,还采用 N-ICAHT 和 T-ICAHT 分级系统分别监测中性粒细胞减少症和血小板减少症。根据已报道的临床数据,各 FDA 批准的 CAR-T 细胞之间的 ICAHT 发生率存在明显差异,其易感因素为基线血细胞计数低下伴炎症介质存在。
值得注意的是,有临床报道显示干细胞加强治疗可补充骨髓并缓解 ICAHT。尽管功能异常的干细胞群和克隆性造血参与其病理生理过程,但 ICAHT 详细的细胞和分子机制仍不明确。目前认为,CAR-T 细胞制剂中的 IL-18 以及表达高水平 IFN- 的克隆扩增旁观者 CX3CR1hi 细胞毒性 T 细胞是导致 HSC 功能障碍及可能的骨髓增生低下的原因,Emapalumab 正在接受用于 CAR 治疗血液学并发症的试验。尽管如此,如何通过重新设计 CAR 构型和 T 细胞制剂本身来解决受损的克隆性造血,目前尚未被探讨。
我们认为,在病原体特异性 T 细胞上工程化构建所选的 CAR 构型,可作为缓解 ICAHT 所致感染的一种策略。基于不断涌现的真实世界临床数据,深入研究淋巴细胞清除治疗方案及肠道微生物群等复合因素的机制性影响,将进一步优化新型治疗组合,以在患者体内重建健康的造血功能。
Although recognized, the field has yet to fully explore the mechanisms and solutions to Immune effector Cell-Associated Hematotoxicity (ICAHT) - a major contributor to long term morbidity and mortality following CAR therapy. About 20 40% of the patients develop ICAHT of grade 3 or above, with at least 33% developing late ICAHT across both CD28 and 4-1BB CAR. ICAHT post-CAR therapy influences the effectiveness of the subsequent treatment and incidence of secondary malignancies. Aside from CAR-HEMATOTOX model, N-ICAHT and T-ICAHT grading system is engaged to monitor the neutropenia and thrombocytopenia, respectively. Based on the reported clinical data, the incidence of ICAHT across the FDA-approved CAR T cells distinctly varies, with low baseline blood count with inflammatory mediators being the predisposing factors.
Significantly, Stem cell boost therapy was reported to replenish the bone marrow and palliate ICAHT in the clinics. Although dysfunctional stem cell populations and clonal haematopoiesis contribute to the pathophysiology, the detailed cellular and molecular mechanisms of ICAHT remain elusive.
IL-18 and Clonally expanded bystander CX3CR1hi cytotoxic T cells expressing high IFN- in the CAR T cell formulation is currently attributed to the HSC dysfunction and possibly the hypocellular marrow, with Emapalumab being tested for hematologic complications of CAR therapy. Nonetheless, how impaired clonal hematopoiesis can be resolved by redesigning the CAR configurations and T-cell formulations itself is not yet addressed.
We argue that engineering selected CAR configurations on pathogen-specific T cells can be a strategy to palliate ICAHT induced infections. In the light of the emerging real world clinical data, investigating the mechanistic impact of compounding factors such as lympho-depletive therapy regimen and gut microbial populations would further enhance the novel therapeutic combinations to reset healthy hematopoiesis in patients.
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