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PVA-PEG physically cross-linked hydrogel film as a wound dressing: experimental design and optimization

机译:PVA-PEG物理交联水凝胶薄膜作为伤口敷料:实验设计和优化

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The development of hydrogel films as wound healing dressings is of a great interest owing to their biological tissue-like nature. Polyvinyl alcohol/polyethylene glycol (PVA/PEG) hydrogels loaded with asiaticoside, a standardized rich fraction of Centella asiatica, were successfully developed using the freezethaw method. Response surface methodology with BoxBehnken experimental design was employed to optimize the hydrogels. The hydrogels were characterized and optimized by gel fraction, swelling behavior, water vapor transmission rate and mechanical strength. The formulation with 8% PVA, 5% PEG 400 and five consecutive freezethaw cycles was selected as the optimized formulation and was further characterized by its drug release, rheological study, morphology, cytotoxicity and microbial studies. The optimized formulation showed more than 90% drug release at 12 hours. The rheological properties exhibited that the formulation has viscoelastic behavior and remains stable upon storage. Cell culture studies confirmed the biocompatible nature of the optimized hydrogel formulation. In the microbial limit tests, the optimized hydrogel showed no microbial growth. The developed optimized PVA/PEG hydrogel using freezethaw method was swellable, elastic, safe, and it can be considered as a promising new wound dressing formulation. ?2017, ?2017 Informa UK Limited, trading as Taylor & Francis Group.
机译:由于其生物组织类性质,水凝胶薄膜作为伤口愈合敷料的发展具有很大的兴趣。用氟乙酰乙烷法成功开发了用乙酸分配的聚乙烯醇/聚乙二醇(PVA / PEG)水凝胶,是Centella Asiatica的标准化富分数。用Boxbehnken实验设计的响应表面方法用于优化水凝胶。通过凝胶分数,膨胀行为,水蒸气透射率和机械强度来表征和优化水凝胶。选择具有8%PVA,5%PEG 400和5个连续漂氟丙虫循环的制剂作为优化的制剂,其药物释放,流变学研究,形态,细胞毒性和微生物研究进一步表现了其特征。优化的制剂在12小时内显示出超过90%的药物释放。性流变性质表明,制剂具有粘弹性行为,并且在储存时保持稳定。细胞培养研究证实了优化的水凝胶制剂的生物相容性。在微生物极限试验中,优化的水凝胶显示没有微生物生长。使用Free乙酰乙烷方法开发的优化PVA / PEG水凝胶是可溶胀的,弹性,安全,并且可以被认为是一个有前途的新伤口敷料配方。 ?2017年,?2017年Informa Informa Limited,贸易为泰勒和弗朗西斯集团。

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