Gavriil Artemis, Barisa Marta, Halliwell Emma, Anderson John
UCL Great Ormond Street, Institute of Child Health, London WC1N 1EH, UK.
Cancers (Basel). 2020 Aug 18;12(8):2326. doi: 10.3390/cancers12082326.
The clinical successes of chimeric antigen receptor (CAR)-T-cell therapy targeting cell surface antigens in B cell leukaemias and lymphomas has demonstrated the proof of concept that appropriately engineered T-cells have the capacity to destroy advanced cancer with long term remissions ensuing. Nevertheless, it has been significantly more problematic to effect long term clinical benefit in a solid tumour context. A major contributing factor to the clinical failure of CAR-T-cells in solid tumours has been named, almost interchangeably, as T-cell "dysfunction" or "exhaustion". While unhelpful ambiguity surrounds the term "dysfunction", "exhaustion" is canonically regarded as a pejorative term for T-cells. Recent understanding of T-cell developmental biology now identifies exhausted cells as vital for effective immune responses in the context of ongoing antigenic challenge. The purpose of this review is to explore the critical stages in the CAR-T-cell life-cycle and their various contributions to T-cell exhaustion. Through an appreciation of the predominant mechanisms of CAR-T-cell exhaustion and resultant dysfunction, we describe a range of engineering approaches to improve CAR-T-cell function.
嵌合抗原受体(CAR)-T细胞疗法在治疗B细胞白血病和淋巴瘤中靶向细胞表面抗原取得的临床成功,证明了这样一个概念:经过适当工程改造的T细胞有能力摧毁晚期癌症并实现长期缓解。然而,在实体瘤背景下实现长期临床获益则困难得多。CAR-T细胞在实体瘤临床治疗失败的一个主要因素,几乎可以互换地被称为T细胞“功能障碍”或“耗竭”。虽然“功能障碍”这个术语存在无益的模糊性,但“耗竭”通常被视为T细胞的贬义词。目前对T细胞发育生物学的最新认识将耗竭细胞视为在持续抗原刺激背景下有效免疫反应的关键。本综述的目的是探讨CAR-T细胞生命周期中的关键阶段及其对T细胞耗竭的各种影响。通过了解CAR-T细胞耗竭和由此产生功能障碍的主要机制,我们描述了一系列改善CAR-T细胞功能的工程方法。