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A 3D nanofibrous hydrogel and collagen sponge scaffold promotes locomotor functional recovery, spinal repair, and neuronal regeneration after complete transection of the spinal cord in adult rats

机译:3D纳米纤维水凝胶和胶原海绵支架可促进成年大鼠脊髓完全横断后运动功能的恢复,脊柱修复和神经元再生

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Central nervous system neurons in adult mammals display limited regeneration after injury, and functional recovery is poor following complete transection (>4 mm gap) of a rat spinal cord. A novel combination scaffold composed of 3D nanofibrous hydrogel PuraMatrix and a honeycomb collagen sponge was used to promote spinal repair and locomotor functional recovery following complete transection of the spinal cord in rats. We transplanted this scaffold into 5 mm spinal cord gaps and assessed spinal repair and functional recovery using the Basso, Beattie, and Bresnahan (BBB) locomotor scale. The BBB score of the scaffold-transplanted group was significantly higher than that of the PBS-injected control group from 24 d to 4 months after the operation (P < 0.001-0.01), reaching 6.0 +/- 0.75 (mean +/- SEM) in the transplant and 0.70 +/- 0.46 in the control groups. Neuronal regeneration and spinal repair were examined histologically using Pan Neuronal Marker, glial fibrillary acidic protein, growth-associated protein 43, and DAPI. The scaffolds were well integrated into the spinal cords, filling the 5 mm gaps with higher numbers of regenerated and migrated neurons, astrocytes, and other cells than in the control group. Mature and immature neurons and astrocytes in the scaffolds became colocalized and aligned longitudinally over >2 mm, suggesting their differentiation, maturation, and function. The spinal cord NF200 content of the transplant group, analyzed by western blot, was more than twice that of the control group, supporting the histological results. Transplantation of this novel scaffold promoted functional recovery, spinal repair, and neuronal regeneration.
机译:成年哺乳动物的中枢神经系统神经元在受伤后显示有限的再生,并且在大鼠脊髓完全横切(> 4 mm间隙)后功能恢复较差。由3D纳米纤维水凝胶PuraMatrix和蜂窝状胶原海绵组成的新型组合支架用于在大鼠脊髓完全横断后促进脊髓修复和运动功能恢复。我们将该支架移植到5 mm的脊髓间隙中,并使用Basso,Beattie和Bresnahan(BBB)运动量表评估了脊髓的修复和功能恢复。术后24 d至4个月,支架移植组的BBB评分显着高于注射PBS的对照组(P <0.001-0.01),达到6.0 +/- 0.75(平均+/- SEM) )和0.70 +/- 0.46(对照组)。使用Pan Neuronal Marker,神经胶质原纤维酸性蛋白,生长相关蛋白43和DAPI在组织学上检查神经元的再生和脊柱修复。支架被很好地整合到脊髓中,与对照组相比,在5mm的间隙中填充了更多数量的再生和迁移的神经元,星形胶质细胞和其他细胞。支架中成熟和不成熟的神经元和星形胶质细胞共定位并纵向排列超过2 mm,表明它们的分化,成熟和功能。通过蛋白质印迹分析,移植组的脊髓NF200含量是对照组的两倍以上,支持了组织学结果。这种新型支架的移植促进了功能恢复,脊柱修复和神经元再生。

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