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A Facile Synthesis of Self-Catalytic Hydrogel Films and Their Application as a Wound Dressing Material Coupled with Natural Active Compounds

机译:自催化水凝胶薄膜的容易合成及其作为与天然活性化合物偶联的伤口敷料材料的应用

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摘要

A simple and economical method for polyvinyl alcohol/polyvinylpyrrolidone/citric acid (PVA/PVP/CA) hydrogel preparation using microwave-assisted irradiation was presented. The synthesized hydrogels embedded with berberine or chlorogenic acid were investigated as a wound dressing agent. This study showed that the optimum condition for the hydrogel synthesis based on gel fraction and a degree of swelling values was 6:6:3% (w/v) of PVA/PVP/CA under 600 W at 120 °C for 3 min of microwave irradiation. Herbal active compounds, berberine and chlorogenic acid, were loaded onto the hydrogel (4% (w/v)), and both were able to inhibit the growth of Staphylococcus aureus . Additionally, the anti-inflammatory study revealed that 700 μg/mL berberine and 2500 μg/mL chlorogenic acid could inhibit protein degradation equivalent to a 200 μg/mL aspirin solution. The drug release study demonstrated that both compounds showed a more sustained release into PBS than water. The mechanism for the three-dimensional network formation based on esterification and the hydrogen-bonding interaction was also proposed. The ionic liquid-like structure of PVP-CA possibly played an important role in the cross-linking process. In addition, sodium bicarbonate applied to the synthesized hydrogel also had a significant effect in enhancing gel formation. The proposed approach showed a potential of the loaded hydrogels to protect wounds from infection and enhance the healing process.
机译:介绍了使用微波辅助照射的聚乙烯醇/聚乙烯吡咯烷酮/柠檬酸(PVA / PVP / CA)水凝胶制剂的简单且经济的方法。将嵌入Berberine或绿原酸的合成水凝胶作为伤口敷料剂进行研究。该研究表明,基于凝胶级分和溶胀值的水凝胶合成的最佳条件为600W,在120℃下为6:6:3%(W / v),在120℃下进行3分钟微波辐照。将草药活性化合物,小檗碱和绿原酸加载到水凝胶上(4%(w / v)),并且两者都能够抑制金黄色葡萄球菌的生长。另外,抗炎研究表明,700μg/ ml小檗碱和2500μg/ ml绿原酸可以抑制当量相当于200μg/ ml阿司匹林溶液的蛋白质降解。药物释放研究表明,两种化合物显示出比水更持续释放到PBS中。还提出了基于酯化和氢键相互作用的三维网络形成的机制。 PVP-CA的离子液体状结构可能在交联过程中发挥了重要作用。此外,施用于合成水凝胶的碳酸氢钠也在提高凝胶形成方面具有显着的影响。所提出的方法显示载有加载水凝胶的潜力,以保护伤口免受感染,增强愈合过程。

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