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:Decoding and overcoming T cell exhaustion: Epigenetic and transcriptional dynamics in CAR-T cells against solid tumors.
Decoding and overcoming T cell exhaustion: Epigenetic and transcriptional dynamics in CAR-T cells against solid tumors.
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T细胞耗竭见于多种慢性感染和恶性肿瘤,其特征是多种抑制性受体表达升高、效应功能受损、增殖减少以及细胞因子产生下降。值得注意的是,嵌合抗原受体(CAR)T细胞疗法等过继性T细胞疗法虽在癌症及其他疾病治疗中显示出前景,但其疗效常因T细胞耗竭而受损。因此,阐明耗竭背后的机制对推动T细胞相关疗法进步至关重要。本研究根据耗竭T细胞的发育和功能特征,将其分为三个不同亚群:干样祖细胞、中间耗竭细胞和终末耗竭细胞。这些亚群受到转录和表观遗传调节因子协同构成的机制精细调控。TCF1、BACH2和TOX等关键转录因子对界定并维持耗竭表型至关重要;与此同时,TET2和DNMT3A等表观遗传调节因子塑造染色质动态,从而决定T细胞命运。近期CAR-T 研究凸显了这些分子驱动因素之间的相互作用,并揭示有前景的治疗方向。因此,深入理解耗竭T细胞层级及其分子复杂性,可能带来创新且更有效的肿瘤治疗策略。
T cell exhaustion, which is observed in various chronic infections and malignancies, is characterized by elevated expression of multiple inhibitory receptors, impaired effector functions, decreased proliferation, and reduced cytokine production.
Notably, while adoptive T cell therapies, such as chimeric antigen receptor (CAR)-T therapy, have shown promise in treating cancer and other diseases, the efficacy of these therapies is often compromised by T cell exhaustion. It is imperative, therefore, to understand the mechanisms underlying this exhaustion to promote advances in T cell-related therapies.
Here, we divided exhausted T cells into three distinct subsets according to their developmental and functional profiles: stem-like progenitor cells, intermediately exhausted cells, and terminally exhausted cells. These subsets are carefully regulated by synergistic mechanisms that involve transcriptional and epigenetic modulators.
Key transcription factors, such as TCF1, BACH2, and TOX, are crucial for defining and sustaining exhaustion phenotypes. Concurrently, epigenetic regulators, such as TET2 and DNMT3A, shape the chromatin dynamics that direct T cell fate. The interplay of these molecular drivers has recently been highlighted in CAR-T research, revealing promising therapeutic directions.
Thus, a profound understanding of exhausted T cell hierarchies and their molecular complexities may reveal innovative and improved tumor treatment strategies.
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