Influence of Bentonite Nanoparticles on properties of PVP-CMC-Gums Hydrogel Films for biomedical applications

Samahir Abdalla Sheikh إدريس, Ozgun يوجيل
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Abstract

Recently, polymers have been widely employed, and the unique features of hydrogels have found several applications, particularly in biomedical applications. In this work, PVP-CMC-Gums hydrogel films were created from a variety of materials using casting and room-temperature drying processes; however, the impacts of adding bentonite clay, SEM, FTIR, XRD, TGA, swelling, melting, contact angle, and a set of experiments were performed to clarify and analyze a variety of physical, mechanical, thermal, and other characterizations. The main results revealed new peaks indicative of the presence of cross-linking, which is a major driver of loading and release properties, suggesting that these films can be used for drug delivery and a variety of other applications. PCXB film has the best properties in color, surface hydrophobicity, solubility, and swelling, while PCGB film has the best results in biodegradability and permeability, and the two films have strong thermal, and mechanical and release properties. Accordingly, the addition of bentonite clay to hydrogel films improves all their properties, making them suitable for diverse biomedical applications such as root canal fillings, tissue engineering, contact lenses, and dressings.
纳米膨润土对生物医学用pvc - cmc - gum水凝胶膜性能的影响
近年来,聚合物已被广泛应用,水凝胶的独特特性已被广泛应用,特别是在生物医学领域。在这项工作中,pvc - cmc - gum水凝胶膜是由各种材料通过铸造和室温干燥工艺制成的;然而,添加膨润土粘土,SEM, FTIR, XRD, TGA,膨胀,熔化,接触角的影响,并进行了一系列实验,以澄清和分析各种物理,力学,热,和其他表征。主要结果显示了新的峰,表明交联的存在,这是加载和释放特性的主要驱动因素,这表明这些薄膜可以用于药物传递和各种其他应用。PCXB膜在颜色、表面疏水性、溶解度和溶胀性方面性能最好,PCGB膜在生物降解性和渗透性方面效果最好,两种膜均具有较强的热性能、机械性能和释放性能。因此,将膨润土添加到水凝胶膜中可以改善其所有性能,使其适用于各种生物医学应用,如根管填充物、组织工程、隐形眼镜和敷料。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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