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The effect of a nanofiber-hydrogel composite on neural tissue repair and regeneration in the contused spinal cord

机译:纳米纤维 - 水凝胶复合物对污染脊髓内神经组织修复和再生的影响

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An injury to the spinal cord causes long-lasting loss of nervous tissue because endogenous nervous tissue repair and regeneration at the site of injury is limited. We engineered an injectable nanofiber-hydrogel composite (NHC) with interfacial bonding to provide mechanical strength and porosity and examined its effect on repair and neural tissue regeneration in an adult rat model of spinal cord contusion. M 28 days after treatment with NHC, the width of the contused spinal cord segment was 2-fold larger than in controls. With NHC treatment, tissue in the injury had a 2-fold higher M2/M1 macrophage ratio, 5-fold higher blood vessel density, 2.6-fold higher immature neuron presence, 2.4-fold higher axon density, and a similar glial scar presence compared with controls. Spared nervous tissue volume in the contused segment and hind limb function was similar between groups. Our findings indicated that NHC provided mechanical support to the contused spinal cord and supported pro-regenerative macrophage polarization, angiogenesis, axon growth, and neurogenesis in the injured tissue without any exogenous factors or cells. These results motivate further optimization of the NHC and delivery protocol to fully translate the potential of the unique properties of the NHC for treating spinal cord injury.
机译:对脊髓的伤害导致神经组织的长期丧失,因为受伤部位的内源神经组织修复和再生是有限的。我们设计了一种可注射的纳米纤维 - 水凝胶复合材料(NHC),具有界面键合,提供机械强度和孔隙率,并检查其对脊髓挫伤成年大鼠模型中的修复和神经组织再生的影响。用NHC处理后28天,污染的脊髓段的宽度比对照更大2倍。随着NHC治疗,损伤中的组织具有2倍的M2 / M1巨噬细胞比,血管密度为5倍,未成熟的神经元存在2.6倍,轴突密度更高,且相似的胶质瘢痕存在随着控制。在粉碎的段和后肢功能中捕获神经组织体积在组之间相似。我们的研究结果表明,NHC为污染的脊髓提供了机械支撑,并支持受伤组织中的受损组织中的促血压巨噬细胞极化,血管生成,轴突生长,而没有任何外源性因子或细胞。这些结果激发了NHC和递送方案的进一步优化,以完全翻译NHC的独特性质的潜力来治疗脊髓损伤。

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