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Updated: Aug 6, 2026

Neural Stem Cell Transplantation in Experimental Contusive Model of Spinal Cord Injury
Published on: December 17, 2014
An iPSC-derived neural progenitor cell therapy for subacute spinal cord injury: a phase 1 trial with long-term
Keiko Sugai1, Osahiko Tsuji1,2, Kanehiro Fujiyoshi3
1Department of Orthopaedic Surgery, Keio University School of Medicine, Tokyo, Japan.
Abstract:
Spinal cord injury (SCI) causes irreversible motor and sensory deficits, and no therapy currently restores the damaged neural circuitry. Previous work has shown that transplantation of induced pluripotent stem cell (iPSC)-derived neural stem/progenitor cells (NS/PCs) restored motor function in preclinical models of subacute SCI; however, the safety of this approach in humans remains unknown. Here we report results from a first-in-human, open-label study of iPSC-NS/PC transplantation in four patients with subacute cervical complete SCI. The primary safety end point was achieved, with no tumor formation or graft-related adverse events observed during 2-4 years of follow-up and stable graft sites on imaging. Exploratory efficacy was assessed as a secondary end point. Median improvement in the International Standards for Neurological Classification of Spinal Cord Injury motor score from baseline (2 weeks after injury) to week 52 was 13 points (range 10-40), with two patients improving in American Spinal Injury Association Impairment Scale (grade A → C and A → D). These gains were numerically greater than spontaneous recovery observed in a registry-based cohort. This study provides clinical evidence that transplantation of human iPSC-NS/PCs into the injured spinal cord is feasible and safe under short-term immunosuppression, with findings supporting further clinical evaluation. The trial is registered at UMIN000035074 , UMIN000050104 and jRCTa031190228 .
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