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:Lymphodepletion - an essential but undervalued part of the chimeric antigen receptor T-cell therapy cycle.
Lymphodepletion - an essential but undervalued part of the chimeric antigen receptor T-cell therapy cycle.
分数与星级只用于站内排序 —— 不代表疗效、安全性或个人适用性。
淋巴细胞清除(LD)或预处理是当前使用的自体及异体CAR-T 细胞治疗中不可或缺的步骤,因为它能最大化CAR-T 的植入、疗效和长期存活。其主要作用机制包括清除和调节内源性淋巴细胞、对微环境进行预处理以改善CAR-T 的扩增和持久性,以及减少肿瘤负荷。
然而,大多数LD方案对T细胞以及其他造血细胞提供广泛且相当非特异性的抑制,这也可能导致严重的副作用,尤其是感染。我们回顾了1271项已发表研究(2011-2023年),涉及已获批的抗CD19 CAR-T 产品用于大B细胞淋巴瘤(LBCL)的当前LD策略。氟达拉滨(Flu)和环磷酰胺(Cy)(单用或联用)是最常用的药物。已报道了大量不同的方案和组合。在各方案中,Flu和Cy的剂量(范围75-120mg/m2和750-1.500mg/m2)以及洗脱时间(范围2-5天)存在显著差异。
此外,还描述了与其他药物如苯达莫司汀(benda)、白消安或阿仑单抗(用于异体CAR-T)的联合方案。这种多样性既带来了挑战,也提供了机会,以研究LD对CAR-T 细胞动力学和临床结局的影响。仅有21项研究更详细地专门探讨了LD对安全性和疗效的影响。由于Flu和Cy可能同时影响CAR-T 的体内活性和毒性,在我们能够全面评估LD对CAR-T 产品内不同T细胞亚群的影响之前,需要对LD结局进行更详细的分析。T2EVOLVE联盟推动了对LD方案的战略性研究,以开发优化的预处理方案。
Lymphodepletion (LD) or conditioning is an essential step in the application of currently used autologous and allogeneic chimeric antigen receptor T-cell (CAR-T) therapies as it maximizes engraftment, efficacy and long-term survival of CAR-T. Its main modes of action are the depletion and modulation of endogenous lymphocytes, conditioning of the microenvironment for improved CAR-T expansion and persistence, and reduction of tumor load.
However, most LD regimens provide a broad and fairly unspecific suppression of T-cells as well as other hematopoietic cells, which can also lead to severe side effects, particularly infections.
We reviewed 1271 published studies (2011-2023) with regard to current LD strategies for approved anti-CD19 CAR-T products for large B cell lymphoma (LBCL). Fludarabine (Flu) and cyclophosphamide (Cy) (alone or in combination) were the most commonly used agents. A large number of different schemes and combinations have been reported. In the respective schemes, doses of Flu and Cy (range 75-120mg/m2 and 750-1. 500mg/m2) and wash out times (range 2-5 days) differed substantially.
Furthermore, combinations with other agents such as bendamustine (benda), busulfan or alemtuzumab (for allogeneic CAR-T) were described. This diversity creates a challenge but also an opportunity to investigate the impact of LD on cellular kinetics and clinical outcomes of CAR-T. Only 21 studies explicitly investigated in more detail the influence of LD on safety and efficacy.
As Flu and Cy can potentially impact both the in vivo activity and toxicity of CAR-T, a more detailed analysis of LD outcomes will be needed before we are able to fully assess its impact on different T-cell subsets within the CAR-T product. The T2EVOLVE consortium propagates a strategic investigation of LD protocols for the development of optimized conditioning regimens.
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