PACAP Stimulates Functional Recovery after Spinal Cord Injury through Axonal Regeneration

被引:0
作者
Masashi Tsuchida
Tomoya Nakamachi
Kouichi Sugiyama
Daisuke Tsuchikawa
Jun Watanabe
Motohide Hori
Akira Yoshikawa
Nori Imai
Nobuyuki Kagami
Attila Matkovits
Takashi Atsumi
Seiji Shioda
机构
[1] Showa University School of Medicine,Department of Anatomy
[2] Fujigaoka Hospital,Department of Orthopaedics, Showa University
[3] University of Toyama,Laboratory of Regulatory Biology, Graduate School of Science and Engineering
[4] University of Pécs,Department of Anatomy
来源
Journal of Molecular Neuroscience | 2014年 / 54卷
关键词
PACAP; Spinal cord injury; Axonal regeneration; CRMP2; Hydrogel;
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中图分类号
学科分类号
摘要
Pituitary adenylate cyclase-activating polypeptide (PACAP) is a neuroprotective peptide expressed in the central nervous system. Although many studies have shown a neuroprotective effect of PACAP, the mechanism of PACAP in the treatment of spinal cord injury (SCI) is yet to be elucidated. The purpose of this study was to examine the efficacy and underlying mechanism of PACAP in a mouse SCI model where PACAP was delivered via a biodegradable hydrogel. When PACAP or saline was delivered immediately after SCI, the functional motor recovery 14 days after SCI was significantly improved in the PACAP group compared with that in the saline group. Expression levels of messenger RNA (mRNA) for collapsin response mediator protein 2 (CRMP2), a factor related to axonal regeneration, were increased in the PACAP group 14 days after SCI compared with those in the saline group. A significantly increased number of CRMP2-positive cells were observed around the injury lesion in the PACAP group, while CRMP2 co-labeling with neuronal and oligodendrocyte markers was detected in intact spinal cord. Fourteen days after SCI, anterograde tracing revealed that a significantly increased number of neuronal fibers extended caudally from the lesion epicenter in the PACAP group. These results suggest that PACAP stimulates functional motor recovery after SCI through axonal regeneration mediated by CRMP2.
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页码:380 / 387
页数:7
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