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Article type: Research Article
Authors: Xu, Guanghui | Li, Xiaoxia | Bai, Yun | Bai, Jinzhu | Li, Lingsong | Shen, Li
Affiliations: Department of Orthopedics, Peking University Third Hospital, 49 West Garden Road, Beijing, 100083, P.R. China | Peking University Stem Cell Research Center, Peking University Health Science Center 38 Xue Yuan Road, Beijing, 100083, P.R. China
Note: [] First author: Tel.: +86 533 837 3381; E-mail: [email protected]
Note: [] Corresponding authors: Tel.: +86 10 6209 2171; Fax: +86 10 6209 2152; E-mail: [email protected]
Abstract: Purpose: Human neural progenitor cells hold great promise for treating a variety of human neurological diseases such as spinal cord injury. One of the issues limiting this technology is how to expand neural progenitor cells in vitro to obtain sufficient number of cells for clinical transplantation. We have established a homogeneous population of human neural progenitor cells (hNPC-TERT) immortalized by the human telomerase reverse transcriptase (hTERT) gene. Then we studied whether these cells could differentiate into neural cells in vivo and improve the recovery of spinal cord-injured rats. Methods: The hNPC-TERT cells had been transplanted into the injured spinal cord and the functional recovery of the rats with spinal cord contusion injury was evaluated through BBB locomotor scale and Motor Evoked Potentials. Additionally, the differentiation of hNPC-TERT cells was shown by immunocytochemistry. Results: As revealed by this animal model, hNPC-TERT cells developed into functional cells in the injured spinal cord and improved recovery from spinal cord injury in both locomotor scores and electrophysiological parameter in this animal model. Conclusions: This study is the first demonstration of the use of telomerase-driven human progenitor cells to treat spinal cord injury and should provide a new cell source for research of clinical application.
Keywords: neural progenitor cells, transplantation, differentiation, spinal cord injury, BBB locomotor scale, motor evoked potentials
Journal: Restorative Neurology and Neuroscience, vol. 22, no. 6, pp. 469-476, 2004
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