17 citations
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January 2014 in “Stem Cells Translational Medicine” This study reports that epidermal neural crest stem cells from dogs (cEPI-NCSC) can generate neural crest derivatives and may offer a new cell-based therapy for canine spinal cord injury, with potential as a model for human treatments.
32 citations
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January 2014 in “Cells tissues organs” This study reports that hair follicle stem cells, termed HAP stem cells, can differentiate into neuronal and glial cells, enhancing nerve repair and locomotor recovery after injury.
144 citations
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June 2008 in “Cell Cycle” This study found that in mice, transplanting hair follicle stem cells promoted recovery from spinal cord injury, as these cells largely differentiated into Schwann cells aiding nerve repair.
13 citations
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February 2024 in “Clinical Epigenetics” In this study, the authors review how epigenetic regulation influences the role of iPSC-derived neural stem/progenitor cells in spinal cord injury therapy, highlighting challenges in the cells' generation, differentiation, and transplantation, and the effect of therapeutic tools on these processes.
4 citations
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January 2016 in “Methods in molecular biology” This study found that hair-follicle-associated pluripotent stem cells can promote nerve repair and growth in a 3D culture model and potentially differentiate into cardiac muscle cells, offering advantages over other stem cell types for regenerative medicine.