首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Biomimetic hydrogel loaded with silk and l l ‐proline for tissue engineering and wound healing applications
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Biomimetic hydrogel loaded with silk and l l ‐proline for tissue engineering and wound healing applications

机译:用丝绸和L L L-Ploline负载仿生水凝胶,用于组织工程和伤口愈合应用

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摘要

Abstract The aim of this article was to develop silk protein (SF) and l ‐proline (LP) loaded chitosan‐(CS) based hydrogels via physical cross linking for tissue engineering and wound healing applications. Silk fibroin, a biodegradable and biocompatible protein, and l ‐proline, an important imino acid that is required for collagen synthesis, were added to chitosan to improve the wound healing properties of the hydrogel. Characterization of these hydrogels revealed that CS/SF/LP hydrogels were blended properly and LP incorporated hydrogels showed excellent thermal stability and good surface morphology. Swelling study showed the water holding efficiency of the hydrogels to provide enough moisture at the wound surface. In vitro biodegradation results demonstrated that the hydrogels had good degradation rate in PBS with lysozyme. LP loaded hydrogels showed approximately a twofold increase in antioxidant activity. In vitro cytocompatibility studies using NIH 3T3 L1 cells showed increased cell viability ( p ??0.01), migration, proliferation and wound healing activity ( p ??0.001) in LP loaded hydrogels compared to CS and CS/SF hydrogels. Cell adhesion on SF and LP hydrogels were observed using SEM and compared to CS hydrogel. LP incorporation showed 74‐78% of wound closure compared to 35% for CS/SF and 3% for CS hydrogels at 48 h. These results suggest that incorporation of LP can significantly accelerate wound healing process compared to pure CS and SF‐loaded CS hydrogels. Hence, CS/LP hydrogels could be a potential wound dressing material for the enhanced wound tissue regeneration and repair. ? 2016 Wiley Periodicals, Inc. J Biomed Mater Res Part B: Appl Biomater, 105B: 1401–1408, 2017.
机译:摘要本文的目的是通过物理交叉连接为组织工程和伤口愈合应用来开发丝蛋白(SF)和L-LP)的壳聚糖(CS)的水凝胶。将可生物降解和生物相容性的蛋白质,L-Ploline,胶原蛋白合成所需的重要亚氨基酸,加入到壳聚糖中,以改善水凝胶的伤口愈合性能。这些水凝胶的表征显示CS / SF / LP水凝胶适当地混合,LP加入水凝胶显示出优异的热稳定性和良好的表面形态。肿胀研究显示水凝胶的水保持效率,在伤口表面提供足够的水分。体外生物降解结果表明,水凝胶与溶菌酶的PBS具有良好的降解速率。 LP加载水凝胶显示抗氧化活性大约两倍。使用NIH 3T3 L1细胞的体外细胞组合性研究表明,与CS和CS / SF水凝胶相比,LP加载的水凝胶中的细胞活力增加(p≤0.01),迁移,增殖和伤口愈合活性(p≤≤0.001)。使用SEM并与CS水凝胶相比观察到SF和LP水凝胶上的细胞粘附。 LP掺入表明,伤口闭合的74-78%,而CS / SF的35%和48小时的CS水凝胶为3%。这些结果表明,与纯Cs和SF加载的CS水凝胶相比,LP的掺入可以显着加速伤口愈合过程。因此,Cs / LP水凝胶可以是增强伤口组织再生和修复的潜在伤口敷料材料。还2016 Wiley期刊,Inc。J生物保解率B:苹果生物炉,105B:1401-1408,2017。

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