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一种用于感染伤口治疗的锌掺杂氧化锌纳米颗粒增强型可注射光交联水凝胶。

A dZnONPs Enhanced Hybrid Injectable Photocrosslinked Hydrogel for Infected Wounds Treatment.

作者信息

Chen Yao, Xiang Yu, Zhu Tonghe, Chen Sihao, Du Juan, Luo Jiajia, Yan Xiaoyu

机构信息

School of Chemistry and Chemical Engineering, Shanghai Engineering Research Center of Pharmaceutical Intelligent Equipment, Shanghai Frontiers Science Research Center for Druggability of Cardiovascular Non-Coding RNA, Institute for Frontier Medical Technology, Shanghai University of Engineering Science, 333 Longteng Rd., Shanghai 201620, China.

Department of Sports Medicine, Department of Orthopedics, Shanghai Jiao Tong University Affiliated Sixth People's Hospital, 600 Yishan Rd., Shanghai 200233, China.

出版信息

Gels. 2022 Jul 24;8(8):463. doi: 10.3390/gels8080463.

Abstract

Chronic wounds caused by related diseases such as ischemia, diabetes, and venous stasis are often hard to manage, mainly because of their susceptibility to infection and the lack of healing-promoting growth factors. Functional hydrogel is a promising material for wound treatment due to its regulable swelling rate and its ability to absorb wound exudate, which can keep the wound isolated from the outside world to prevent infection. In this study, a photocrosslinked physicochemical double-network hydrogel with injectable, antibacterial, and excellent mechanical properties was prepared. The dZnONPs enhanced hybrid injectable photocrosslinked double-network hydrogel (Ebs@dZnONPs/HGT) was synthetized starting from acylated hyaluronic acid and tannic acid via free radical reaction and hydrogen bonding, following doped with ebselen (Ebs) loaded dendritic zinc oxide nanoparticles (dZnONPs) to prepare the Ebs@dZnONPs/HGT hydrogel. The physicochemical characterization confirmed that the Ebs@dZnONPs/HGT hydrogel had excellent mechanical properties, hydrophilicity, and injectable properties, and could fit irregular wounds well. In vitro experiments revealed that the Ebs@dZnONPs/HGT hydrogel presented credible cytocompatibility and prominent antibacterial activity against Escherichia coli () and Staphylococcus aureus (). In vivo experiments further demonstrated that the Ebs@dZnONPs/HGT hydrogel had excellent biosafety and could improve re-epithelialization in the wound area, thus significantly accelerating wound healing.

摘要

由缺血、糖尿病和静脉淤滞等相关疾病引起的慢性伤口往往难以处理,主要是因为它们易受感染且缺乏促进愈合的生长因子。功能性水凝胶因其可调节的溶胀率和吸收伤口渗出液的能力,是一种很有前景的伤口治疗材料,它可以使伤口与外界隔离以防止感染。在本研究中,制备了一种具有可注射、抗菌和优异力学性能的光交联物理化学双网络水凝胶。通过自由基反应和氢键作用,从酰化透明质酸和单宁酸出发,掺杂负载依布硒啉(Ebs)的树枝状氧化锌纳米颗粒(dZnONPs),合成了增强型dZnONPs杂化可注射光交联双网络水凝胶(Ebs@dZnONPs/HGT)。物理化学表征证实,Ebs@dZnONPs/HGT水凝胶具有优异的力学性能、亲水性和可注射性能,并且能够很好地贴合不规则伤口。体外实验表明,Ebs@dZnONPs/HGT水凝胶具有可靠的细胞相容性,对大肠杆菌()和金黄色葡萄球菌()具有显著的抗菌活性。体内实验进一步证明,Ebs@dZnONPs/HGT水凝胶具有优异的生物安全性,能够促进伤口区域的再上皮化,从而显著加速伤口愈合。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1048/9329969/3343707da4e8/gels-08-00463-g001.jpg

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