Shyu Woei-Cherng, Liu Demeral David, Lin Shinn-Zong, Li Wen-Wen, Su Ching-Yuan, Chang Ying-Chen, Wang Hsiao-Jung, Wang Hsing-Won, Tsai Chang-Hai, Li Hung
Center for Neuropsychiatry, China Medical University Hospital, Taichung, Republic of China.
J Clin Invest. 2008 Jul;118(7):2482-95. doi: 10.1172/JCI34363.
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-1alpha (SDF-1alpha). 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-1alpha 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 (PrP C) expression. Therefore, the upregulation of SDF-1alpha and the enhancement of CXCR4 and PrP C interaction induced by hOEC/ONF implantation mediated neuroplastic signals in response to hypoxia and ischemia.
在脊髓损伤模型中,小鼠嗅鞘细胞(OECs)可促进中枢神经系统轴突再生。我们研究了OECs是否能诱导神经可塑性效应,以改善由缺氧/缺血应激引起的神经功能障碍。在本研究中,人OECs/嗅神经成纤维细胞(hOECs/ONFs)特异性分泌包括基质细胞衍生因子-1α(SDF-1α)在内的营养因子。与对照大鼠相比,脑内植入hOEC/ONF的大鼠在中风后的神经功能缺损行为指标上有更大改善。[18F]氟代脱氧葡萄糖正电子发射断层扫描(FDG-PET)显示,与对照组相比,hOEC/ONF治疗组的葡萄糖代谢活性增加。在小鼠中,移植的hOECs/ONFs与包括内源性神经祖细胞和骨髓干细胞在内的内源性归巢干细胞与特定的神经和血管标志物共定位,表明干细胞融合。hOECs/ONFs和内源性归巢干细胞均增强了大鼠和小鼠缺血脑的神经可塑性。hOECs/ONFs中SDF-1α和CXCR4的上调通过上调细胞朊蛋白(PrP C)表达,促进了氧糖剥夺条件下共培养的原代皮质神经元以及中风动物的神经突生长。因此,hOEC/ONF植入诱导的SDF-1α上调以及CXCR4和PrP C相互作用增强介导了对缺氧和缺血的神经可塑性信号。