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.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:T-cell dysfunction in CLL is mediated through expression of Siglec-10 ligands CD24 and CD52 on CLL cells.
T-cell dysfunction in CLL is mediated through expression of Siglec-10 ligands CD24 and CD52 on CLL cells.
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慢性淋巴细胞白血病(CLL)患者自体T细胞疗法成功率较低,与T细胞功能障碍表型相关,但导致该功能障碍的具体白血病来源因子尚未明确。本研究考察CLL细胞抑制CAR-T 活化和功能的机制。CLL来源T细胞虽活化延迟,但在CLL细胞存在时再次刺激CAR-T 会损害细胞因子产生并降低增殖。与CD40活化的CLL细胞共培养不会导致T细胞功能障碍,且需要直接细胞接触。转录组分析显示CD40信号会下调唾液酸结合Ig样凝集素10(Siglec-10)的配体CD24和CD52;达沙替尼可阻止这一变化。阻断CD24和/或CD52可显著减少静息CLL细胞共培养导致的CAR-T 功能障碍。结果表明,通过调节CLL与T细胞相互作用可恢复患者T细胞功能,靶向CD24/CD52相互作用可能改善CLL T细胞治疗。
Autologous T-cell-based therapies, such as chimeric antigen receptor (CAR) T-cell therapy, exhibit low success rates in chronic lymphocytic leukemia (CLL) and correlate with a dysfunctional T-cell phenotype observed in patients. Despite various proposed mechanisms of T-cell dysfunction in CLL, the specific CLL-derived factors responsible remain unidentified.
This study aimed to investigate the mechanisms through which CLL cells suppress CAR T-cell activation and function.
We found that CLL-derived T cells get activated, albeit in a delayed fashion, and specifically that restimulation of CAR T cells in the presence of CLL cells causes impaired cytokine production and reduced proliferation.
Notably, coculture of T cells with CD40-activated CLL cells did not lead to T-cell dysfunction, and this required direct cell contact between the CD40-stimulated CLL cells and T cells. Inhibition of kinases involved in the CD40 signaling cascade revealed that the Spare Respiratory Capacity (SRC) kinase inhibitor dasatinib prevented rescue of T-cell function independent of CD40-mediated increased levels of costimulatory and adhesion ligands on CLL cells. Transcriptome profiling of CD40-stimulated CLL cells with or without dasatinib identified widespread differential gene expression.
Selecting for surface receptor genes revealed CD40-mediated downregulation of the Sialic acid-binding Ig-like lectin 10 (Siglec-10) ligands CD24 and CD52, which was prevented by dasatinib, suggesting a role for these ligands in functional T-cell suppression in CLL.
Indeed, blocking CD24 and/or CD52 markedly reduced CAR T-cell dysfunction upon coculture with resting CLL cells. These results demonstrated that T cells derived from CLL patients can be reinvigorated by manipulating CLL-T-cell interactions. Targeting CD24- and CD52-mediated CLL-T-cell interaction could be a promising therapeutic strategy to enhance T-cell function in CLL.
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