Weinkove Robert, George Philip, Dasyam Nathaniel, McLellan Alexander D
Cancer Immunotherapy Programme Malaghan Institute of Medical Research Wellington New Zealand.
Wellington Blood & Cancer Centre Capital & Coast District Health Board Wellington New Zealand.
Clin Transl Immunology. 2019 May 11;8(5):e1049. doi: 10.1002/cti2.1049. eCollection 2019.
Costimulatory signals are required to achieve robust chimeric antigen receptor (CAR) T cell expansion, function, persistence and antitumor activity. These can be provided by incorporating intracellular signalling domains from one or more T cell costimulatory molecules, such as CD28 or 4-1BB, into the CAR. The selection and positioning of costimulatory domains within a CAR construct influence CAR T cell function and fate, and clinical experience of autologous anti-CD19 CAR T cell therapies suggests that costimulatory domains have differential impacts on CAR T cell kinetics, cytotoxic function and potentially safety profile. The clinical impacts of combining costimulatory domains and of alternative costimulatory domains are not yet clearly established, and may be construct- and disease-specific. The aim of this review is to summarise the function and effect of established and emerging costimulatory domains and their combinations within CAR T cells.
共刺激信号是实现强大的嵌合抗原受体(CAR)T细胞扩增、功能、持久性和抗肿瘤活性所必需的。这些信号可以通过将来自一种或多种T细胞共刺激分子(如CD28或4-1BB)的细胞内信号结构域整合到CAR中来提供。CAR构建体中共刺激结构域的选择和定位会影响CAR T细胞的功能和命运,自体抗CD19 CAR T细胞疗法的临床经验表明,共刺激结构域对CAR T细胞动力学、细胞毒性功能以及潜在的安全性具有不同的影响。联合共刺激结构域和替代共刺激结构域的临床影响尚未明确确立,可能因构建体和疾病而异。本综述的目的是总结已确立和新兴的共刺激结构域及其在CAR T细胞中的组合的功能和作用。