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新型交联壳聚糖和银纳米粒子增强的聚乙烯醇水凝胶的抗菌及抗生物膜形成活性评估

Evaluation of Antimicrobial and Anti-Biofilm Formation Activities of Novel Poly(vinyl alcohol) Hydrogels Reinforced with Crosslinked Chitosan and Silver Nano-Particles.

作者信息

Alfuraydi Reem T, Alminderej Fahad M, Mohamed Nadia A

机构信息

Department of Chemistry, College of Science, Qassim University, Buraidah 51452, Saudi Arabia.

Department of Chemistry, Faculty of Science, Cairo University, Giza 12613, Egypt.

出版信息

Polymers (Basel). 2022 Apr 16;14(8):1619. doi: 10.3390/polym14081619.

Abstract

Novel hydrogels were prepared by blending chitosan and poly(vinyl alcohol), PVA, then crosslinking the resulting blends using trimellitic anhydride isothiocyanate at a concentration based on chitosan content in the blends. The weight ratios of chitosan: PVA in the blends were 1:3, 1:1, and 3:1 to produce three hydrogels symbolized as H13, H11, and H31, respectively. For a comparison, H10 was also prepared by crosslinking pure chitosan with trimellitic anhydride isothiocyanate. For further modification, three H31/silver nanocomposites (AgNPs) were synthesized using three different concentrations of silver nitrate to obtain H31/AgNPs1%, H31/AgNPs3% and H31/AgNPs5%. The structures of the prepared samples were emphasized using various analytical techniques. PVA has no inhibition activity against the tested microbes and biofilms. The antimicrobial and anti-biofilm formation activities of the investigated samples was arranged as: H31/AgNPs5% ≥ H31/AgNPs3% > H31/AgNPs1% > H10 > H31 > H11 > H13 > chitosan. H31/AgNPs5% and H31/AgNPs3% were more potent than Vancomycin and Amphotericin B against most of the tested microbes. Interestingly, H31 and H31/AgNPs3% were safe on the normal human cells. Consequently, hydrogels resulting from crosslinked blends of chitosan and PVA loaded with AgNPs in the same structure have significantly reinforced the antimicrobial and inhibition activity against the biofilms of PVA.

摘要

通过将壳聚糖与聚乙烯醇(PVA)共混,然后使用偏苯三酸酐异硫氰酸酯基于共混物中壳聚糖的含量进行交联,制备了新型水凝胶。共混物中壳聚糖与PVA的重量比为1:3、1:1和3:1,分别制备了三种水凝胶,分别标记为H13、H11和H31。作为对照,还通过用偏苯三酸酐异硫氰酸酯交联纯壳聚糖制备了H10。为了进一步改性,使用三种不同浓度的硝酸银合成了三种H31/银纳米复合材料(AgNPs),得到H31/AgNPs1%、H31/AgNPs3%和H31/AgNPs5%。使用各种分析技术对制备的样品结构进行了表征。PVA对测试的微生物和生物膜没有抑制活性。所研究样品的抗菌和抗生物膜形成活性顺序为:H31/AgNPs5%≥H31/AgNPs3%>H31/AgNPs1%>H10>H31>H11>H13>壳聚糖。H31/AgNPs5%和H31/AgNPs3%对大多数测试微生物的抗菌活性比万古霉素和两性霉素B更强。有趣的是,H31和H31/AgNPs3%对正常人细胞是安全的。因此,由壳聚糖和PVA交联共混物负载相同结构的AgNPs形成水凝胶,显著增强了对PVA生物膜的抗菌和抑制活性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2df9/9026349/87ef91f52066/polymers-14-01619-sch001.jpg

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