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首页> 外文期刊>European Polymer Journal >In-vitro and in-vivo study of superabsorbent PVA/Starch/g-C3N4/Ag@TiO2 NPs hydrogel membranes for wound dressing
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In-vitro and in-vivo study of superabsorbent PVA/Starch/g-C3N4/Ag@TiO2 NPs hydrogel membranes for wound dressing

机译:超吸收性PVA /淀粉/ G-C3N4 / Ag的体外和体内研究,用于伤口敷料的TiO2 NPS水凝胶膜

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摘要

The present study was focused on the fabrication and characterization of polymeric wound dressings, composed of PVA and Starch. Graphitic carbon nitride (g-C3N4) was incorporated as a filler and Silver deposited-Titania nanoparticles (Ag@TiO2 NPs) as an antibacterial agent. The hydrogel membranes were fabricated by solution casting under ambient conditions. The prepared hydrogels were subjected to various characterizations techniques and obtained data demonstrated good compatibility among the constituents of the membranes. The antibacterial activity was investigated against Escherichia coli and Staphylococcus aureus. The maximum zone of inhibition achieved was 37.33 and 33.25 mm, respectively at the composition PVA/Starch/0.14GCN/0.7Ag@TiO2 NPs. Furthermore, swelling, moisture retention and water vapor transmission results demonstrated that hydrogels were capable of absorbing large volume of wound exudates. Porosity and oxygen permeability results have demonstrated that hydrogels membranes were breathable. Lastly, kinetics of drug release was performed by using various mathematical models where Higuchian model was found to be the best fit. Non-Fickian diffusion mechanism prevailed and a sustained and slow release of nanoparticles was observed. The complete healing was accomplished in seven days. The fabricated hydrogel membranes depicted better healing than conventional cotton gauze wound dressings. The prepared hydrogel membranes have demonstrated all the potential to be used as wound dressing for partial and full thickness excision wounds after complete biological characterization.
机译:本研究重点是聚合物伤口敷料的制造和表征,由PVA和淀粉组成。将石墨碳氮化物(G-C3N4)掺入填料和银沉积二氧化钛纳米颗粒(Ag @ TiO 2 NPS)中作为抗菌剂。通过在环境条件下通过溶液浇铸制造水凝胶膜。对制备的水凝胶进行各种表征技术,并且获得的数据在膜的成分中表现出良好的相容性。研究了对大肠杆菌和金黄色葡萄球菌的抗菌活性。在组合物PVA/STARCH/0.14GCN/0.7AG中分别在组合物PVA/STARCH/0.14AG@TiO2 NPS中分别获得的最大抑制区分别为37.33和33.25mm。此外,肿胀,水分保留和水蒸气传递结果表明,水凝胶能够吸收大量的伤口渗出物。孔隙率和透氧结果表明,水凝胶膜透气。最后,通过使用各种数学模型来进行药物释放的动力学,其中发现了Higuchian模型是最合适的。观察到非Fickian扩散机制,观察到纳米颗粒的持续和缓慢释放。完全愈合在七天内完成。制造的水凝胶膜描绘了比常规棉花纱布缠绕敷料更好的愈合。制备的水凝胶膜已经证明,在完全的生物学特性后,所有潜在的用作伤口敷料的伤口敷料。

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