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首页> 外文期刊>Scientific reports. >Thermo-sensitive hydrogels combined with decellularised matrix deliver bFGF for the functional recovery of rats after a spinal cord injury
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Thermo-sensitive hydrogels combined with decellularised matrix deliver bFGF for the functional recovery of rats after a spinal cord injury

机译:热敏水凝胶与脱细胞基质相结合可提供bFGF,促进脊髓损伤后大鼠的功能恢复

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Because of the short half-life, either systemic or local administration of bFGF shows significant drawbacks to spinal injury. In this study, an acellular spinal cord scaffold (ASC) was encapsulated in a thermo-sensitive hydrogel to overcome these limitations. The ASC was firstly prepared from the spinal cord of healthy rats and characterized by scanning electronic microscopy and immunohistochemical staining. bFGF could specifically complex with the ASC scaffold via electrostatic or receptor-mediated interactions. The bFGF-ASC complex was further encapsulated into a heparin modified poloxamer (HP) solution to prepare atemperature-sensitive hydrogel (bFGF-ASC-HP). bFGF release from the ASC-HP hydrogel was more slower than that from the bFGF-ASC complex alone. An in vitro cell survival study showed that the bFGF-ASC-HP hydrogel could more effectively promote the proliferation of PC12 cells than a bFGF solution, with an approximate 50% increase in the cell survival rate within 24?h (P??0.05). Compared with the bFGF solution, bFGF-ASC-HP hydrogel displayed enhanced inhibition of glial scars and obviously improved the functional recovery of the SCI model rat through regeneration of nerve axons and the differentiation of the neural stem cells. In summary, an ASC-HP hydrogel might be a promising carrier to deliver bFGF to an injured spinal cord.
机译:由于半衰期短,全身或局部施用bFGF均显示出脊柱损伤的重大缺陷。在这项研究中,将无细胞脊髓支架(ASC)封装在热敏水凝胶中以克服这些限制。 ASC首先从健康大鼠的脊髓中制备,并通过扫描电子显微镜和免疫组织化学染色进行表征。 bFGF可以通过静电或受体介导的相互作用与ASC支架特异性复合。将bFGF-ASC复合物进一步封装到肝素修饰的泊洛沙姆(HP)溶液中,以制备温度敏感性水凝胶(bFGF-ASC-HP)。从ASC-HP水凝胶中释放的bFGF比单独从bFGF-ASC复合物中释放的bFGF更加缓慢。体外细胞存活研究表明,与bFGF溶液相比,bFGF-ASC-HP水凝胶可更有效地促进PC12细胞的增殖,在24?h内细胞存活率提高约50%(P <0.05)。 )。与bFGF溶液相比,bFGF-ASC-HP水凝胶显示出对神经胶质瘢痕的抑制作用增强,并且通过神经轴突的再生和神经干细胞的分化,明显改善了SCI模型大鼠的功能恢复。总之,ASC-HP水凝胶可能是将bFGF输送至受伤脊髓的有希望的载体。

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