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:Deleting the mitochondrial respiration negative regulator MCJ enhances the efficacy of CD8(+) T cell adoptive therapies in pre-clinical studies.
Deleting the mitochondrial respiration negative regulator MCJ enhances the efficacy of CD8(+) T cell adoptive therapies in pre-clinical studies.
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线粒体呼吸对于过继细胞疗法中所用 T 细胞的存活与功能至关重要。然而,能够特异性增强线粒体呼吸、促进 T 细胞功能的策略仍然有限。
本研究考察甲基化调控 J 蛋白(MCJ)作为改善过继 T 细胞疗法疗效的靶点;MCJ 是 CD8 细胞中表达的线粒体复合体 I 内源性负调节因子。
我们证明,MCJ 可抑制小鼠 CD8+ CAR-T 细胞的线粒体呼吸,而删除 MCJ 可增强其在体内外对小鼠 B 细胞白血病的疗效。同样,在卵清蛋白(OVA)特异性 CD8+ T 细胞中删除 MCJ,也能提高其对体内已形成的 OVA 表达型黑色素瘤的疗效。
此外,我们首次显示 MCJ 在人 CD8 细胞中表达,且其表达水平与 CD8+ CAR-T 细胞的功能活性相关。沉默人 CD8 CAR-T 细胞中的 MCJ 表达,可增强线粒体代谢并提高抗肿瘤活性。
因此,靶向 MCJ 可能成为增强线粒体代谢、改善过继 T 细胞疗法疗效的潜在治疗策略。
Mitochondrial respiration is essential for the survival and function of T cells used in adoptive cellular therapies.
However, strategies that specifically enhance mitochondrial respiration to promote T cell function remain limited.
Here, we investigate methylation-controlled J protein (MCJ), an endogenous negative regulator of mitochondrial complex I expressed in CD8 cells, as a target for improving the efficacy of adoptive T cell therapies.
We demonstrate that MCJ inhibits mitochondrial respiration in murine CD8 + CAR-T cells and that deletion of MCJ increases their in vitro and in vivo efficacy against murine B cell leukaemia. Similarly, MCJ deletion in ovalbumin (OVA)-specific CD8 + T cells also increases their efficacy against established OVA-expressing melanoma tumors in vivo.
Furthermore, we show for the first time that MCJ is expressed in human CD8 cells and that the level of MCJ expression correlates with the functional activity of CD8 + CAR-T cells. Silencing MCJ expression in human CD8 CAR-T cells increases their mitochondrial metabolism and enhances their anti-tumor activity.
Thus, targeting MCJ may represent a potential therapeutic strategy to increase mitochondrial metabolism and improve the efficacy of adoptive T cell therapies.
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