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    題名: Implantation of olfactory ensheathing cells promotes neuroplasticity in murine models of stroke
    作者: 徐偉成(Woei-Cherng Shyu);劉德模(Demeral David Liu)*;林欣榮(Shinn-Zong Lin);李雯雯(Wen-Wen Li);蘇靜媛(Cing-Yun Su);張殷誠(Ying-Chen Chang);王孝榮(Hsiao-Jung Wang);王興萬(Hsing-Won Wang);蔡長海(Chang-Hai Tsai);李鴻(Hung-Li)*
    貢獻者: 醫學院臨床醫學研究所;中國附醫神經部
    日期: 2008-07
    上傳時間: 2009-08-20 18:38:09 (UTC+8)
    摘要: Murine olfactory ensheathing cells (OECs) promote central nervous system axonal regeneration in models of spinal cord injury. We investigated whether OECs could induce a neuroplastic effect to improve the neurological dysfunction caused by hypoxic/ischemic stress. In this study, human OECs/olfactory nerve fibroblasts (hOECs/ONFs) specifically secreted trophic factors including stromal cell–derived factor–1α (SDF-1α). Rats with intracerebral hOEC/ONF implantation showed more improvement on behavioral measures of neurological deficit following stroke than control rats. [18F]fluoro-2-deoxyglucose PET (FDG-PET) showed increased glucose metabolic activity in the hOEC/ONF-treated group compared with controls. In mice, transplanted hOECs/ONFs and endogenous homing stem cells including intrinsic neural progenitor cells and bone marrow stem cells colocalized with specific neural and vascular markers, indicating stem cell fusion. Both hOECs/ONFs and endogenous homing stem cells enhanced neuroplasticity in the rat and mouse ischemic brain. Upregulation of SDF-1α and CXCR4 in hOECs/ONFs promoted neurite outgrowth of cocultured primary cortical neurons under oxygen glucose deprivation conditions and in stroke animals through upregulation of cellular prion protein (PrPC) expression. Therefore, the upregulation of SDF-1α and the enhancement of CXCR4 and PrPC interaction induced by hOEC/ONF implantation mediated neuroplastic signals in response to hypoxia and ischemia.
    關聯: JOURNAL OF CLINICAL INVESTIGATION118(7):2482~2495
    顯示於類別:[臨床醫學研究所] 期刊論文

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