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Benabdallah, B.

Publications and source records attributed to Benabdallah, B..

2 recordsLinked to original sources

NK cells prevent the formation of teratomas derived from human induced pluripotent stem cells

The safe utilization of induced pluripotent stem cell-derivatives in clinic is tributary to the complete elimination of the risk of forming teratomas after transplantation. The extent by which such a risk exists in immune competent hosts is mostly unknown. Here, using humanized mice reconstituted with fetal hematopoietic stem cells and autologous thymus tissue (Hu-BLT) or following the adoptive transfer of peripheral blood mononuclear cells (PBMCs) (Hu-AT), we evaluated the capacity of immune cells to prevent or eliminate teratomas derived from human induced pluripotent stem cells (hiPSCs). Our results showed that the injection of hiPSCs failed to form teratomas in Hu-AT mice reconstituted with allogeneic or autologous PBMCs or purified NK cells alone. However, teratomas were observed in Hu-AT mice reconstituted with autologous PBMCs depleted from NK cells. In line with these results, Hu-BLT which do not have functional NK cells could not prevent the growth of autologous teratomas. Finally, we found that established teratomas were not targeted by NK cells and instead were efficiently rejected by allogeneic but not autologous T cells in Hu-AT mice. Overall, our findings suggest that autologous hiPSC-derived therapies are unlikely to form teratomas in the presence of NK cells.

cell biology

Immune Responses to Human Induced Pluripotent Stem Cells and their Derived Myogenic Progenitors Are Mediated by Different Mechanisms in Humanized Mice

It is still unclear if immune responses will compromise the large scale utilization of cell therapies derived from human induced pluripotent stem cells (hiPSCs). To answer this question, we used humanized mouse models and evaluated the engraftment in skeletal muscle of myoblasts derived either directly from a muscle biopsy or differentiated from hiPSCs or fibroblasts. Our results showed that while allogeneic grafts were rejected, engraftment of autologous cells was tolerated, indicating reprogramming and differentiation procedures are not immunogenic. We also demonstrated that hiPSC-derived myogenic progenitors, in opposition to hiPSCs, are not targeted by natural killer (NK) cells both in vitro and in vivo. Yet, adoptive transfer of NK cells can prevent the formation of hiPSC-derived teratoma. Overall, our findings suggest that hiPSC-derived muscular therapies will be tolerated in presence of a competent human immune system and highlight the risk of forming a teratoma if using partially differentiated autologous human cells. HighlightsO_LIhiPSC-derived myofibers are tolerated in autologous humanized mouse models C_LIO_LIInfiltration of autologous T cells is not predictive of successful skeletal muscle engraftment C_LIO_LIAdoptive transfer of NK cells prevents the formation of hiPSCs derived teratomas C_LIO_LINK cells are unable to reject established teratomas C_LI

cell biology