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Role of Demyelination Efficiency within Acellular Nerve Scaffolds during Nerve Regeneration across Peripheral Defects

机译:脱髓鞘效率在外周缺陷神经再生过程中的作用

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摘要

Hudson’s optimized chemical processing method is the most commonly used chemical method to prepare acellular nerve scaffolds for the reconstruction of large peripheral nerve defects. However, residual myelin attached to the basal laminar tube has been observed in acellular nerve scaffolds prepared using Hudson’s method. Here, we describe a novel method of producing acellular nerve scaffolds that eliminates residual myelin more effectively than Hudson’s method through the use of various detergent combinations of sulfobetaine-10, sulfobetaine-16, Triton X-200, sodium deoxycholate, and peracetic acid. In addition, the efficacy of this new scaffold in repairing a 1.5 cm defect in the sciatic nerve of rats was examined. The modified method produced a higher degree of demyelination than Hudson’s method, resulting in a minor host immune response in vivo and providing an improved environment for nerve regeneration and, consequently, better functional recovery. A morphological study showed that the number of regenerated axons in the modified group and Hudson group did not differ. However, the autograft and modified groups were more similar in myelin sheath regeneration than the autograft and Hudson groups. These results suggest that the modified method for producing a demyelinated acellular scaffold may aid functional recovery in general after nerve defects.
机译:Hudson的优化化学加工方法是最常用的化学方法,用于制备牙细胞神经支架,用于重建大外周枢神经缺陷。然而,在使用Hudson方法制备的细粒神经支架中观察到附着在基底层管上的残留髓鞘。在这里,我们描述了一种新的制造细粒神经支架的方法,这些方法通过使用各种洗涤剂组合来更有效地消除残留的髓鞘,这些方法通过使用各种洗涤剂组合的磺基-10,磺基-16,Triton X-200,脱氧胆酸钠和过乙酸。此外,检查了这种新支架在大鼠坐骨神经中修复1.5cm缺陷的效果。修改后的方法产生更高程度的脱髓鞘比Hudson的方法,导致在体内次要宿主免疫应答和提供用于神经再生,因此,更好的功能恢复的改进的环境。形态学研究表明,改性组和哈德逊组中再生轴突的数量没有区别。然而,自体移植和修饰的组在髓鞘再生中比自身移植和哈德逊组更相似。这些结果表明,在神经缺陷后,制备脱髓鞘的无细胞支架的改性方法可以一般而言。

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