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Multifunctional biomimetic spinal cord: New approach to repair spinal cord injuries

机译:多功能仿生脊髓:修复脊髓损伤的新方法

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摘要

The incidence of spinal cord injury (SCI) has been gradually increasing, and the treatment has troubled the medical field all the time. Primary and secondary injuries ultimately lead to nerve impulse conduction block. Microglia and astrocytes excessively accumulate and proliferate to form the glial scar. At present, to reduce the effect of glial scar on nerve regeneration is a hot spot in the research on the treatment of SCI. According to the preliminary experiments, we would like to provide a new bionic spinal cord to reduce the negative effect of glial scar on nerve regeneration. In this hypothesis we designed a new scaffold that combine the common advantage of acellular scaffold of spinal cord and thermosensitive gel, which could continue to release exogenous basic fibroblast growth factor (BFGF) in the spinal lesion area on the basis of BFGF modified thermosensitive gel. Meanwhile, the porosity, pore size and material of the gray matter and white matter regions were distinguished by an isolation layer, so as to induce the directed differentiation of cells into the defect site and promote regeneration of spinal cord tissue.
机译:脊髓损伤(SCI)的发生率逐渐增加,治疗一直困扰着医学领域。原发性和继发性损伤最终导致神经冲动传导阻滞。小胶质细胞和星形胶质细胞过度积聚并增殖,形成神经胶质瘢痕。目前,减少神经胶质瘢痕对神经再生的影响是治疗脊髓损伤的研究热点。根据初步实验,我们想提供一种新的仿生脊髓,以减少神经胶质瘢痕对神经再生的负面影响。在此假设下,我们设计了一种新型支架,该支架结合了脊髓无细胞支架和热敏凝胶的共同优势,可以在BFGF修饰的热敏凝胶的基础上继续释放脊髓病变区域的外源性碱性成纤维细胞生长因子(BFGF)。同时,通过隔离层来区分灰质和白质区域的孔隙度,孔径和材料,从而诱导细胞定向分化进入缺损部位,促进脊髓组织的再生。

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