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壳聚糖与香草醛异构体交联制备具有抗真菌活性的自愈合水凝胶。

Chitosan crosslinking with a vanillin isomer toward self-healing hydrogels with antifungal activity.

作者信息

Iftime Manuela-Maria, Rosca Irina, Sandu Andreea-Isabela, Marin Luminita

机构信息

"Petru Poni" Institute of Macromolecular Chemistry, Grigore Ghica Voda Alley, Iasi, Romania.

"Petru Poni" Institute of Macromolecular Chemistry, Grigore Ghica Voda Alley, Iasi, Romania.

出版信息

Int J Biol Macromol. 2022 Apr 30;205:574-586. doi: 10.1016/j.ijbiomac.2022.02.077. Epub 2022 Feb 22.

Abstract

The purpose of the study was to develop new antimicrobial hydrogels from natural resources that may promote wound healing and prevent bacterial skin infection. The new hydrogels were synthesized by crosslinking chitosan with a vanillin isomer, 5-methoxysalicylaldehyde, by a friendly and easy method. To characterize these hydrogels, their structural and morphological properties were explored by FTIR, H NMR, SEM, POM, and TGA. In view of the targeted application, swelling behavior, biodegradability, antimicrobial activity and biocompatibility were investigated in vitro. Structural and morphological studies confirmed the formation of new hydrogels via the imination reaction concomitant with the supramolecular organization. The hydrogels were highly porous with the average pore diameter around 80 μm, and a swelling rate controlled by the crosslinking density and medium pH. The hydrogels showed a progressive weight loss in the presence of lysozyme up to 35%, during 21 days of testing. They proved non-cytotoxic effect on Normal Human Dermal Fibroblasts using MTS test and powerful antifungal activity against Candida Albicans, as determined by disk diffusion assay. All these properties indicate the new hydrogels as a promising option for the treatment of various skin lesions.

摘要

本研究的目的是利用自然资源开发新型抗菌水凝胶,其可能促进伤口愈合并预防细菌性皮肤感染。通过一种简便友好的方法,使壳聚糖与香草醛异构体5-甲氧基水杨醛交联,合成了新型水凝胶。为了表征这些水凝胶,通过傅里叶变换红外光谱(FTIR)、核磁共振氢谱(H NMR)、扫描电子显微镜(SEM)、偏光显微镜(POM)和热重分析(TGA)对其结构和形态特性进行了探究。鉴于其靶向应用,对其体外溶胀行为、生物降解性、抗菌活性和生物相容性进行了研究。结构和形态学研究证实,通过亚胺化反应伴随超分子组装形成了新型水凝胶。水凝胶具有高度多孔性,平均孔径约为80μm,溶胀率受交联密度和介质pH值控制。在21天的测试期间,水凝胶在溶菌酶存在下显示出高达35%的逐渐失重。使用MTS试验证明,它们对正常人皮肤成纤维细胞无细胞毒性作用,通过纸片扩散法测定,它们对白色念珠菌具有强大的抗真菌活性。所有这些特性表明,新型水凝胶是治疗各种皮肤损伤的一个有前景的选择。

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