首页> 外文期刊>Neuroscience Letters: An International Multidisciplinary Journal Devoted to the Rapid Publication of Basic Research in the Brain Sciences >Transplantation of mesenchymal stem cells enhances axonal outgrowth and cell survival in an organotypic spinal cord slice culture.
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Transplantation of mesenchymal stem cells enhances axonal outgrowth and cell survival in an organotypic spinal cord slice culture.

机译:间质干细胞的移植增强了器官型脊髓切片培养物中的轴突生长和细胞存活。

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摘要

Mesenchymal stem cells (MSCs) have demonstrated a measurable therapeutic effect following transplantation into animal models of spinal cord injury. However, the mechanism(s) by which transplanted cells promote nerve regeneration and/or functional recovery remains indeterminate. Several studies have suggested that MSCs promote tissue repair via secretion of trophic factors, but delineating the effect of such factors is difficult due to the complexity of the in vivo systems. Therefore, we developed an organotypic spinal cord slice culture system that can be sustained for sufficient periods of time in vitro to evaluate nerve regeneration as an ex vivo model of spinal cord injury. Using this model, we demonstrate that treatment of lumbar slices of spinal cord with lysolecithin induced a significant degree of cell death and demyelination of nerve fibers, but that these effects were ameliorated to a significant extent following co-culture of slices with human MSCs (hMSCs). The results indicate that transplanted hMSCs alter the tissue microenvironment in a way that promotes survival of endogenous cells, including injured neurons, immature oligodendrocytes and oligodendrocyte progenitor cells. This ex vivo culture system represents a useful tool to further dissect the mechanism(s) by which MSCs promote regeneration of injured nervous tissue.
机译:骨髓间充质干细胞(MSCs)移植到脊髓损伤动物模型后已显示出可测量的治疗作用。然而,移植细胞促进神经再生和/或功能恢复的机制仍然不确定。几项研究表明,MSC通过营养因子的分泌促进组织修复,但是由于体内系统的复杂性,很难描绘出这些因子的作用。因此,我们开发了一种器官型脊髓切片培养系统,该系统可以在体外维持足够长的时间,以评估神经再生作为脊髓损伤的离体模型。使用该模型,我们证明了用溶血卵磷脂治疗腰椎脊髓切片可引起显着程度的细胞死亡和神经纤维脱髓鞘,但是在切片与人MSC(hMSCs)共培养后,这些作用在很大程度上得到了改善)。结果表明,移植的hMSC可以改变组织微环境,从而促进内源性细胞的存活,包括受损的神经元,不成熟的少突胶质细胞和少突胶质细胞祖细胞。该离体培养系统代表了进一步剖析MSC促进受损神经组织再生的机制的有用工具。

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