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Film Dressings Based on Hydrogels: Simultaneous and Sustained-Release of Bioactive Compounds with Wound Healing Properties

机译:基于水凝胶的薄膜敷料:具有伤口愈合特性的生物活性化合物的同时且持续释放

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摘要

This research proposes the rational modeling, synthesis and evaluation of film dressing hydrogels based on polyvinyl alcohol crosslinked with 20 different kinds of dicarboxylic acids. These formulations would allow the sustained release of simultaneous bioactive compounds including allantoin, resveratrol, dexpanthenol and caffeic acid as a multi-target therapy in wound healing. Interaction energy calculations and molecular dynamics simulation studies allowed evaluating the intermolecular affinity of the above bioactive compounds by hydrogels crosslinked with the different dicarboxylic acids. According to the computational results, the hydrogels crosslinked with succinic, aspartic, maleic and malic acids were selected as the best candidates to be synthesized and evaluated experimentally. These four crosslinked hydrogels were prepared and characterized by FTIR, mechanical properties, SEM and equilibrium swelling ratio. The sustained release of the bioactive compounds from the film dressing was investigated in vitro and in vivo. The in vitro results indicate a good release profile for all four analyzed bioactive compounds. More importantly, in vivo experiments suggest that prepared formulations could considerably accelerate the healing rate of artificial wounds in rats. The histological studies show that these formulations help to successfully reconstruct and thicken epidermis during 14 days of wound healing. Moreover, the four film dressings developed and exhibited excellent biocompatibility. In conclusion, the novel film dressings based on hydrogels rationally designed with combinatorial and sustained release therapy could have significant promise as dressing materials for skin wound healing.
机译:这项研究提出了基于聚乙烯醇与20种不同二元羧酸交联的薄膜敷料水凝胶的合理建模,合成和评估。这些制剂将允许同时释放包括尿囊素,白藜芦醇,右泛醇和咖啡酸的生物活性化合物,作为伤口愈合中的多靶点疗法。相互作用能的计算和分子动力学模拟研究允许通过与不同的二羧酸交联的水凝胶评估上述生物活性化合物的分子间亲和力。根据计算结果,选择与琥珀酸,天门冬氨酸,马来酸和苹果酸交联的水凝胶作为合成和实验评估的最佳候选物。制备了这四种交联的水凝胶,并通过FTIR,机械性能,SEM和平衡溶胀率对其进行了表征。从薄膜敷料中生物活性化合物的持续释放在体外和体内进行了研究。体外结果表明所有四种分析的生物活性化合物均具有良好的释放特性。更重要的是,体内实验表明,所制备的制剂可以大大加快大鼠人造伤口的愈合速度。组织学研究表明,这些制剂有助于在伤口愈合14天期间成功重建和增厚表皮。此外,四种薄膜敷料得到开发并表现出优异的生物相容性。总之,基于水凝胶的新型薄膜敷料经过合理设计并结合了组合和缓释疗法,有望作为皮肤伤口愈合的敷料使用。

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