MAGT1 messenger RNA-corrected autologous T and natural killer cells for potential cell therapy in X-linked immunodeficiency with magnesium defect, Epstein-Barr virus infection and neoplasia disease

MAGT1 信使 RNA 校正的自体 T 细胞和自然杀伤细胞可用于治疗伴有镁缺陷的 X 连锁免疫缺陷症、Epstein-Barr 病毒感染和肿瘤疾病

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作者:Julie Brault, Ronald J Meis, Linhong Li, Ezekiel Bello, Taylor Liu, Colin L Sweeney, Sherry M Koontz, Kennichi Dowdell, Narda Theobald, Janet Lee, Cornell Allen, Aaron B Clark, Juan C Ravell, Michael J Lenardo, Gary A Dahl, Harry L Malech, Suk See De Ravin

Aim

X-linked MAGT1 deficiency with increased susceptibility to EBV-infection and N-linked glycosylation defect' (XMEN) disease is caused by mutations in the magnesium transporter 1 (MAGT1) gene. Loss of MAGT1 function

Conclusions

Restoration of NKG2D expression was demonstrated in XMEN patient lymphocytes after MAGT1 mRNA electroporation that reach healthy donor levels in CD8+ T and NK cells at 1-2 days after EP. NKG2D expression persisted at ∼50% for 2 weeks after EP. Functionally, mRNA-correction of XMEN NK cells rescued cytotoxic activity also to healthy donor NK cell level. The restored NKG2D receptor expression and function were unaffected by cryopreservation, which will make feasible repeat infusions of MAGT1 mRNA-corrected autologous XMEN CD8+ T and NK cells for potential short term therapy for XMEN patients without the risks of alloimmunization.

Methods

Here the authors assess the feasibility and efficiency of correcting autologous lymphocytes from XMEN patients by MAGT1 mRNA electroporation (EP) that avoids genomic integration and can be scaled for clinical application.

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