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Human induced neural stem cells support functional recovery in spinal cord injury models
被引:0
作者:
Daryeon Son
Jie Zheng
In Yong Kim
Phil Jun Kang
Kyoungmin Park
Lia Priscilla
Wonjun Hong
Byung Sun Yoon
Gyuman Park
Jeong-Eun Yoo
Gwonhwa Song
Jang-Bo Lee
Seungkwon You
机构:
[1] Korea University,Laboratory of Cell Function Regulation, Department of Biotechnology, College of Life Sciences and Biotechnology
[2] Korea University,Institute of Animal Molecular Biotechnology, College of Life Sciences and Biotechnology
[3] Institute of Regenerative Medicine,Department of Neurosurgery, College of Medicine
[4] STEMLAB,undefined
[5] Inc.,undefined
[6] Institute of Future Medicine,undefined
[7] STEMLAB,undefined
[8] Inc.,undefined
[9] Korea University Anam Hospital,undefined
来源:
Experimental & Molecular Medicine
|
2023年
/
55卷
关键词:
D O I:
暂无
中图分类号:
学科分类号:
摘要:
Spinal cord injury (SCI) is a clinical condition that leads to permanent and/or progressive disabilities of sensory, motor, and autonomic functions. Unfortunately, no medical standard of care for SCI exists to reverse the damage. Here, we assessed the effects of induced neural stem cells (iNSCs) directly converted from human urine cells (UCs) in SCI rat models. We successfully generated iNSCs from human UCs, commercial fibroblasts, and patient-derived fibroblasts. These iNSCs expressed various neural stem cell markers and differentiated into diverse neuronal and glial cell types. When transplanted into injured spinal cords, UC-derived iNSCs survived, engrafted, and expressed neuronal and glial markers. Large numbers of axons extended from grafts over long distances, leading to connections between host and graft neurons at 8 weeks post-transplantation with significant improvement of locomotor function. This study suggests that iNSCs have biomedical applications for disease modeling and constitute an alternative transplantation strategy as a personalized cell source for neural regeneration in several spinal cord diseases.
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页码:1182 / 1192
页数:10
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