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基于壳聚糖/聚乙烯醇/氧化石墨烯的pH响应性复合水凝胶薄膜:药物释放、抗菌及细胞活力研究

Chitosan/Poly Vinyl Alcohol/Graphene Oxide Based pH-Responsive Composite Hydrogel Films: Drug Release, Anti-Microbial and Cell Viability Studies.

作者信息

Khan Muhammad Umar Aslam, Yaqoob Zahida, Ansari Mohamed Nainar Mohamed, Razak Saiful Izwan Abd, Raza Mohsin Ali, Sajjad Amna, Haider Sajjad, Busra Fauzi Mh

机构信息

BioInspired Device and Tissue Engineering Research Group, School of Biomedical Engineering and Health Sciences, Faculty of Engineering, Universiti Teknologi Malaysia, Skudai 81300, Malaysia.

Institute for Personalized Medicine, School of Biomedical Engineering, Med-X Research Institute, Shanghai Jiao Tong University, Shanghai 200030, China.

出版信息

Polymers (Basel). 2021 Sep 16;13(18):3124. doi: 10.3390/polym13183124.

Abstract

The composite hydrogels were produced using the solution casting method due to the non-toxic and biocompatible nature of chitosan (CS)/polyvinyl alcohol (PVA). The best composition was chosen and crosslinked with tetraethyl orthosilicate (TEOS), after which different amounts of graphene oxide (GO) were added to develop composite hydrogels. Fourier transform infrared spectroscopy (FTIR), scanning electron microscopy (SEM), atomic force microscopy (AFM) and contact angle was used to analyze the hydrogels. The samples were also evaluated for swelling abilities in various mediums. The drug release profile was studied in phosphate-buffered saline (PBS) at a pH of 7.4. To predict the mechanism of drug release, the data were fitted into kinetic models. Finally, antibacterial activity and cell viability data were obtained. FTIR studies revealed the successful synthesis of CS/PVA hydrogels and GO/CS/PVA in hydrogel composite. SEM showed no phase separation of the polymers, whereas AFM showed a decrease in surface roughness with an increase in GO content. 100 µL of crosslinker was the critical concentration at which the sample displayed excellent swelling and preserved its structure. Both the crosslinked and composite hydrogel showed good swelling. The most acceptable mechanism of drug release is diffusion-controlled, and it obeys Fick's law of diffusion for drug released. The best fitting of the zero-order, Hixson-Crowell and Higuchi models supported our assumption. The GO/CS/PVA hydrogel composite showed better antibacterial and cell viability behaviors. They can be better biomaterials in biomedical applications.

摘要

由于壳聚糖(CS)/聚乙烯醇(PVA)具有无毒且生物相容的特性,采用溶液浇铸法制备了复合水凝胶。选择最佳组成并用正硅酸四乙酯(TEOS)进行交联,之后添加不同量的氧化石墨烯(GO)以制备复合水凝胶。使用傅里叶变换红外光谱(FTIR)、扫描电子显微镜(SEM)、原子力显微镜(AFM)和接触角对水凝胶进行分析。还评估了样品在各种介质中的溶胀能力。在pH为7.4的磷酸盐缓冲盐水(PBS)中研究药物释放曲线。为预测药物释放机制,将数据拟合到动力学模型中。最后,获得了抗菌活性和细胞活力数据。FTIR研究表明成功合成了CS/PVA水凝胶以及水凝胶复合材料中的GO/CS/PVA。SEM显示聚合物没有相分离,而AFM显示随着GO含量增加表面粗糙度降低。100 μL交联剂是样品表现出优异溶胀并保持其结构的临界浓度。交联水凝胶和复合水凝胶均表现出良好的溶胀性能。最可接受的药物释放机制是扩散控制,药物释放遵循菲克扩散定律。零级、希克森 - 克劳威尔和 Higuchi 模型的最佳拟合支持了我们的假设。GO/CS/PVA水凝胶复合材料表现出更好的抗菌和细胞活力行为。它们在生物医学应用中可以成为更好的生物材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aff9/8471615/5e3ae80dda24/polymers-13-03124-g001.jpg

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