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Development of Electrospun Chitosan-Polyethylene Oxide/Fibrinogen Biocomposite for Potential Wound Healing Applications

机译:电纺壳聚糖-聚环氧乙烷/纤维蛋白原生物复合材料在伤口愈合中的潜在应用

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摘要

Normal wound healing is a highly complex process that requires the interplay of various growth factors and cell types. Despite advancements in biomaterials, only a few bioactive wound dressings reach the clinical setting. The purpose of this research was to explore the feasibility of electrospinning a novel nanofibrous chitosan (CS)-fibrinogen (Fb) scaffold capable of sustained release of platelet-derived growth factor (PDGF) for the promotion of fibroblast migration and wound healing. CS-Fb scaffolds were successfully electrospun using a dual-spinneret electrospinner and directly evaluated for their physical, chemical, and biological characteristics. CS-polyethylene/Fb scaffolds exhibited thinner fiber diameters than nanofibers electrospun from the individual components while demonstrating adequate mechanical properties and homogeneous polymer distribution. In addition, the scaffold demonstrated acceptable water transfer rates for wound healing applications. PDGF was successfully incorporated in the scaffold and maintained functional activity throughout the electrospinning process. Furthermore, released PDGF was effective at promoting fibroblast migration equivalent to a single 50 ng/mL dose of PDGF. The current study demonstrates that PDGF-loaded CS-Fb nanofibrous scaffolds possess characteristics that would be highly beneficial as novel bioactive dressings for enhancement of wound healing.
机译:正常的伤口愈合是一个高度复杂的过程,需要各种生长因子和细胞类型的相互作用。尽管生物材料取得了进步,但只有少数具有生物活性的伤口敷料可以达到临床环境。这项研究的目的是探索静电纺丝新型纳米纤维壳聚糖(CS)-纤维蛋白原(Fb)支架的可行性,该支架能够持续释放血小板衍生的生长因子(PDGF),以促进成纤维细胞迁移和伤口愈合。 CS-Fb支架成功使用双纺丝电纺丝机进行电纺丝,并直接评估了它们的物理,化学和生物学特性。 CS-聚乙烯/ Fb支架的纤维直径比从单个组件纺制的纳米纤维的纤维直径更细,同时证明了足够的机械性能和均匀的聚合物分布。另外,支架显示出对于伤口愈合应用可接受的水转移速率。 PDGF已成功整合到支架中,并在整个电纺过程中保持了功能活性。此外,释放的PDGF可有效促进成纤维细胞迁移,相当于单剂量50 ng / mL的PDGF。当前的研究表明,PDGF负载的CS-Fb纳米纤维支架具有作为新型生物活性敷料来增强伤口愈合的特性,将具有极大的优势。

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