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Expansion of functional human mucosal-associated invariant T cells via reprogramming to pluripotency and redifferentiation

机译:通过重编程为多能性和再分化来扩增功能性人类黏膜相关的恒定T细胞

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摘要

Mucosal-associated invariant T (MAIT) cells play an important physiological role in host pathogen defense and may also be involved in inflammatory disorders and multiple sclerosis. The rarity and inefficient expansion of these cells have hampered detailed analysis and application. Here, we report an induced pluripotent stem cell (iPSC)-based reprogramming approach for the expansion of functional MAIT cells. We found that human MAIT cells can be reprogrammed into iPSCs using a Sendai virus harboring standard reprogramming factors. Under T cell-permissive conditions, these iPSCs efficiently redifferentiate into MAIT-like lymphocytes expressing the T cell receptor Vα7.2, CD161, and interleukin-18 receptor chain α. Upon incubation with bacteria-fed monocytes, the derived MAIT cells show enhanced production of a broad range of cytokines. Following adoptive transfer into immunocompromised mice, these cells migrate to the bone marrow, liver, spleen, and intestine and protect against Mycobacterium abscessus. Our findings pave the way for further functional analysis of MAIT cells and determination of their therapeutic potential.
机译:粘膜相关不变T(MAIT)细胞在宿主病原体防御中起重要的生理作用,也可能参与炎症性疾病和多发性硬化。这些细胞的稀有性和低效率的扩展阻碍了详细的分析和应用。在这里,我们报告功能性MAIT细胞的扩展基于诱导多能干细胞(iPSC)的重编程方法。我们发现可以使用带有标准重编程因子的仙台病毒将人MAIT细胞重编程为iPSC。在允许T细胞的条件下,这些iPSC有效地再分化为表达T细胞受体Vα7.2,CD161和白介素18受体链α的MAIT样淋巴细胞。与细菌喂养的单核细胞孵育后,衍生的MAIT细胞显示出广泛的细胞因子产生增强。在过继转移到免疫功能低下的小鼠中后,这些细胞迁移到骨髓,肝脏,脾脏和肠道,从而可以预防脓肿分枝杆菌。我们的发现为MAIT细胞的进一步功能分析和确定其治疗潜力铺平了道路。

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