首页> 美国卫生研究院文献>The Journal of Neuroscience >Lamina Propria and Olfactory Bulb Ensheathing Cells Exhibit Differential Integration and Migration and Promote Differential Axon Sprouting in the Lesioned Spinal Cord
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Lamina Propria and Olfactory Bulb Ensheathing Cells Exhibit Differential Integration and Migration and Promote Differential Axon Sprouting in the Lesioned Spinal Cord

机译:固有层和嗅球鞘细胞在病变脊髓中表现出差异整合和迁移并促进差异性轴突发芽。

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摘要

Olfactory bulb-derived (central) ensheathing cell (OB OEC) transplants have shown significant promise in rat models of spinal cord injury, prompting the use of lamina propria-derived (peripheral) olfactory ensheathing cells (LP OECs) in both experimental and clinical trials. Although derived from a common embryonic precursor, both sources of OECs reside in different nervous system compartments postnatally, and their ability to promote regeneration and efficacy after transplantation may differ depending on both their source and mode of transplantation. Here, we have purified green fluorescent protein-expressing LP and OB OECs, assayed their biological differences in vitro, and transplanted them acutely either directly into or rostral and caudal to a dorsolateral funiculus crush. LP and OB OECs exhibit multiple morphological and antigenic similarities in vitro, and, after transplantation, they both attenuate lesion and cavity formation and promote angiogenesis, endogenous Schwann cell infiltration, and axonal sprouting. However, an increased mitotic rate and migratory ability of LP OECs in vitro was reflected in vivo by their superior ability to migrate within the spinal cord, reduce cavity formation and lesion size, and differentially stimulate outgrowth of axonal subpopulations compared with OB OECs. An undesired behavior (autotomy) was also significantly enhanced by LP OEC, over OB OEC, transplantation. These results suggest that LP and OB OECs exhibit intrinsic biological differences that, after transplantation into the lesioned CNS, result in differences in postlesion spinal cord neuropathology and anatomical and behavioral regeneration outcomes that also vary depending on direct versus rostrocaudal transplantation.
机译:嗅球来源的(中央)鞘细胞移植(OB OEC)在脊髓损伤的大鼠模型中显示出巨大的希望,促使在实验和临床试验中使用固有层固有层(外周)的嗅鞘细胞(LP OEC) 。尽管OEC的来源均来自普通的胚胎前体,但它们均产后位于不同的神经系统区室,并且它们在移植后促进再生和功效的能力可能取决于它们的移植来源和方式。在这里,我们已经纯化了表达绿色荧光蛋白的LP和OB OEC,在体外分析了它们的生物学差异,然后将它们直接急性移植到了背侧小丘粉碎物中,或者直接移植到了它们的前部或尾部。 LP和OB OECs在体外表现出多种形态和抗原相似性,并且在移植后,它们都可减轻病变和腔的形成,并促进血管生成,内源性雪旺氏细胞浸润和轴突发芽。然而,与OB OECs相比,LP OECs在脊髓内迁移,减少空腔形成和病变大小以及差异性地刺激轴突亚群向外生长的优越能力在体内反映了LP OECs体外有丝分裂率和迁移能力的提高。与OB OEC相比,LP OEC还显着增强了不良行为(自体解剖)。这些结果表明,LP和OB OECs表现出内在的生物学差异,在移植到病变的CNS中后,会导致病变后脊髓神经病理学以及解剖学和行为再生结果方面的差异,这些差异也取决于直接或后额尾神经移植。

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