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:Thermal potentiation improves IFN-γ production but not cytotoxicity in human CAR-T cells.
Thermal potentiation improves IFN-γ production but not cytotoxicity in human CAR-T cells.
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体温在癌症中发挥重要作用,发热通常与增强的抗癌能力相关。小鼠模型显示,这种抗癌能力与细胞毒性T细胞有关:较低温度不利于其分化为杀癌效应细胞,而较高温度可促进这一过程。若该机制在人类中保守,则可利用温度增强患者来源T细胞,以改善现有癌症疗法(包括CAR-T 细胞[CAR-T]疗法)。本研究使用靶向前列腺癌的人STEAP1 CAR-T 细胞检验这一可能性。
在小鼠中,短暂暴露于发热温度(39–40°C)可增加IFN-γ产生并增强CD8+ T细胞杀癌能力。采用类似温度处理后,人CAR-T 细胞中的IFN-γ水平也升高,但其杀癌能力并未改善。尽管不能排除其他处理方案可能产生不同结果,本研究提示,将热增强策略纳入现有CAR-T 治疗方案可能比预期更复杂。
Body temperature plays an important role in cancer, with febrile temperature generally associated with improved cancer resistance. In murine models, this resistance has been linked to the cytotoxic T cells, whose differentiation into cancer-killing effector cells is poor at lower but robust at elevated temperatures. If conserved, temperature-mediated potentiation of patient-derived T cells could be implemented to improve the existing cancer treatments, including the chimeric antigen receptor T-cell therapy (CAR T-cell therapy). Here, we tested this possibility using human STEAP1 CAR-T cells developed to target prostate cancer.
In mice, transient exposure to febrile temperature (39-40 C) increases the production of IFN- and the cancer-killing ability of CD8 + T cells. Using a similar temperature treatment, we observed elevated levels of IFN- also in the human CAR-T cells. However, these cells displayed no improvement in their ability to kill cancer cells. Although we cannot discount the possibility that alternative protocols might lead to other outcomes, our findings suggest that incorporating thermal potentiation into existing protocols of CAR-T cell therapy may be more complicated than anticipated.
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