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首页> 外文期刊>Tissue engineering, Part A >Linear ordered collagen scaffolds loaded with collagen-binding basic fibroblast growth factor facilitate recovery of sciatic nerve injury in rats
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Linear ordered collagen scaffolds loaded with collagen-binding basic fibroblast growth factor facilitate recovery of sciatic nerve injury in rats

机译:线性排列的胶原蛋白支架上载有胶原结合的碱性成纤维细胞生长因子促进大鼠坐骨神经损伤的恢复

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摘要

Natural biological functional scaffolds, consisting of biological materials filled with promoting elements, provide a promising strategy for the regeneration of peripheral nerve defects. Collagen conduits have been used widely due to their excellent biological properties. Linear ordered collagen scaffold (LOCS) fibers are good lumen fillers that can guide nerve regeneration in an ordered direction. In addition, basic fibroblast growth factor (bFGF) is important in the recovery of nerve injury. However, the traditional method for delivering bFGF to the lesion site has no long-term effect because of its short half-life and rapid diffusion. Therefore, we fused a specific collagen-binding domain (CBD) peptide to the N-terminal of native basic fibroblast growth factor (NAT-bFGF) to retain bFGF on the collagen scaffolds. In this study, a natural biological functional scaffold was constructed using collagen tubes filled with collagen-binding bFGF (CBD-bFGF)-loaded LOCS to promote regeneration in a 5-mm rat sciatic nerve transection model. Functional evaluation, histological investigation, and morphometric analysis indicated that the natural biological functional scaffold retained more bFGF at the injury site, guided axon growth, and promoted nerve regeneration as well as functional restoration.
机译:由填充有促进元素的生物材料组成的天然生物功能支架,为周围神经缺损的再生提供了有希望的策略。胶原蛋白导管由于其出色的生物学特性而被广泛使用。线性有序胶原蛋白支架(LOCS)纤维是良好的管腔填充物,可以引导神经在有序方向上再生。另外,碱性成纤维细胞生长因子(bFGF)在神经损伤的恢复中很重要。但是,传统的将bFGF递送至病变部位的方法由于其半衰期短且扩散迅速而没有长期效果。因此,我们将特定的胶原蛋白结合结构域(CBD)肽融合到天然碱性成纤维细胞生长因子(NAT-bFGF)的N端,以将bFGF保留在胶原蛋白支架上。在这项研究中,使用填充有胶原结合性bFGF(CBD-bFGF)的LOCS的胶原蛋白管构建天然生物功能支架,以促进5毫米大鼠坐骨神经横切模型的再生。功能评估,组织学研究和形态分析表明,天然生物功能支架在损伤部位保留了更多的bFGF,指导轴突生长,并促进了神经再生和功能恢复。

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