Enhancing Mucosal-Associated Invariant T Cell Function and Expansion with Human Selective Serum.

Daniel Labuz, Jackson Cacioppo, Kelin Li, Jeffrey Aubé, Daniel T Leung
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Abstract

Mucosal-associated invariant T (MAIT) cells are promising innate-like lymphocytes with potential for use in anti-tumor immunotherapy. Existing MAIT cell expansion protocols are associated with potentially decremental phenotypic changes, including increased frequency of CD4+ MAIT cells and higher inhibitory receptor expression. In this study, we compared the effect on expansion of human MAIT cells of a serum replacement, Physiologix XF SR (Phx), with traditional serum FBS for supplementing RPMI 1640 media. Using flow cytometry, we found that Phx supported a significantly higher proliferative capacity for MAIT cells and resulted in a lower frequency of CD4+ MAIT cells, which have been associated with reduced Th1 effector and cytolytic functions. We saw that culturing MAIT cells in Phx led to better survival of MAIT cells and lower frequency of PD-1+ MAIT cells than FBS-supplemented media. Functionally, we saw that Phx supplementation was associated with a higher frequency of IFN-γ+ MAIT cells after stimulation with Escherichia coli than FBS-supplemented RPMI. In conclusion, we show that MAIT cells cultured in Phx have higher proliferative capacity, lower expression of inhibitory receptors, and higher capacity to produce IFN-γ after E. coli stimulation than FBS-supplemented RPMI. This work shows that expanding MAIT cells with Phx compared with FBS-supplemented RPMI results in a more functionally desirable MAIT cell for future anti-tumor immunotherapy.

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人选择性血清增强粘膜相关不变T细胞功能和扩增。
mucal -associated invariant T (MAIT)细胞是一种很有前途的先天样淋巴细胞,具有抗肿瘤免疫治疗的潜力。现有的MAIT细胞扩增方案与潜在的减少表型变化相关,包括CD4+ MAIT细胞频率增加和抑制性受体表达增加。在这项研究中,我们比较了血清替代品physiologx XF SR (Phx)与传统血清FBS补充RPMI 1640培养基对人MAIT细胞扩增的影响。通过流式细胞术,我们发现Phx显著提高了MAIT细胞的增殖能力,并导致CD4+ MAIT细胞的频率降低,这与Th1效应和细胞溶解功能的降低有关。我们发现,在Phx培养基中培养MAIT细胞比在fbs培养基中培养的MAIT细胞存活率更高,PD-1+ MAIT细胞的频率更低。在功能上,我们发现在大肠杆菌刺激后,与补充fbs的RPMI相比,补充Phx与更高频率的IFN-γ+ MAIT细胞相关。综上所述,我们发现在Phx中培养的MAIT细胞在大肠杆菌刺激后具有更高的增殖能力,抑制受体的表达较低,并且产生IFN-γ的能力高于fbs补充的RPMI。这项工作表明,与fbs补充的RPMI相比,用Phx扩增MAIT细胞可以获得功能更理想的MAIT细胞,用于未来的抗肿瘤免疫治疗。
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