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以聚乙烯醇-海藻酸钠(PVA-Alg)和银纳米纤维为构建单元制备光热响应性抗菌水凝胶。

Preparation of photothermal responsive, antibacterial hydrogel by using PVA-Alg and silver nanofibers as building blocks.

作者信息

Ding Jiaxin, Gao Binbin, Mei Xifan

机构信息

Third Affiliated Hospital, Jinzhou Medical University, Jinzhou, China.

出版信息

Front Bioeng Biotechnol. 2023 Jun 20;11:1222723. doi: 10.3389/fbioe.2023.1222723. eCollection 2023.

Abstract

Photothermal responsive, antimicrobial hydrogels are very attractive and have great potential in the field of tissue engineering. The defective wound environment and metabolic abnormalities in diabetic skin would lead to bacterial infections. Therefore, multifunctional composites with antimicrobial properties are urgently needed to improve the current therapeutic outcomes of diabetic wounds. We prepared an injectable hydrogel loaded with silver nanofibers for efficient and sustained bactericidal activity. To construct this hydrogel with good antimicrobial activity, homogeneous silver nanofibers were first prepared by solvothermal method and then dispersed in PVA-lg solution. After homogeneous mixing and gelation, injectable hydrogels (Ag@H) wrapped with silver nanofibers were obtained. By virtue of Ag nanofibers, Ag@H exhibited good photothermal conversion efficiency and good antibacterial activity against drug-resistant bacteria, while the antibacterial also showed excellent performance. The results of antibacterial experiments showed that Ag@H had significant bactericidal effects on MRSA and with 88.4% and 90.3% inhibition rates, respectively. The above results indicate that Ag@H with photothermal reactivity and antibacterial activity is very promising for biomedical applications, such as wound healing and tissue engineering.

摘要

光热响应性抗菌水凝胶极具吸引力,在组织工程领域具有巨大潜力。糖尿病皮肤中存在的伤口环境缺陷和代谢异常会导致细菌感染。因此,迫切需要具有抗菌特性的多功能复合材料来改善目前糖尿病伤口的治疗效果。我们制备了一种负载银纳米纤维的可注射水凝胶,以实现高效且持续的杀菌活性。为构建具有良好抗菌活性的这种水凝胶,首先通过溶剂热法制备均匀的银纳米纤维,然后将其分散在聚乙烯醇-lg溶液中。经过均匀混合和凝胶化后,获得了包裹有银纳米纤维的可注射水凝胶(Ag@H)。借助银纳米纤维,Ag@H表现出良好的光热转换效率以及对耐药菌良好的抗菌活性,同时其抗菌性能也十分优异。抗菌实验结果表明,Ag@H对耐甲氧西林金黄色葡萄球菌(MRSA)具有显著的杀菌作用,抑制率分别为88.4%和90.3%。上述结果表明,具有光热反应性和抗菌活性的Ag@H在生物医学应用方面,如伤口愈合和组织工程,极具前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0c9f/10319420/94642587efd1/fbioe-11-1222723-g001.jpg

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