Extracellular matrix-regulated neural differentiation of human multipotent marrow progenitor cells enhances functional recovery after spinal cord injury.

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Published in Spine J on April 30, 2014

Authors

Win-Ping Deng1, Chi-Chiang Yang2, Liang-Yo Yang3, Chun-Wei D Chen4, Wei-Hong Chen1, Charn-Bing Yang5, Yu-Hsin Chen3, Wen-Fu T Lai6, Perry F Renshaw7

Author Affiliations

1: Graduate Institute of Biomedical Materials and Engineering, College of Medicine, Taipei Medical University, 250 Wu-Hsing Street, Taipei, Taiwan.
2: Department of Neurology, Tungs' Taichung Metroharbor Hospital, 699 Taiwan Blvd. 8 Sec., Taitung, Taiwan.
3: Department of Physiology, College of Medicine, Taipei Medical University, 250 Wu-Hsing Street, Taipei, Taiwan.
4: Human Oncology & Pathogenesis Program, Memorial Sloan-Kettering Cancer Center, 415 E. 68th Street, New York 10065, NY, USA.
5: Orthopedic Section Department, New Taipei City Hospital, 198 Yin-His Rd., Banquiao District, New Taipei City, Taiwan.
6: Human Oncology & Pathogenesis Program, Memorial Sloan-Kettering Cancer Center, 415 E. 68th Street, New York 10065, NY, USA; International Center of Nano Biomedicine Research, Taipei Medical University, 250 Wu-Hsing Street, Taipei, Taiwan; Brain McLean Imaging Center, McLean Hospital/Harvard Medical School, 115 Mill Strret, Belmont 02115, MA, USA. Electronic address: laitw@tmu.edu.tw.
7: The Brain Institute, The University of Utah, 201 Presidents Cir, Salt Lake City 84112, UT, USA.

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