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用于伤口愈合的具有快速成型和自愈合性能的抗菌广谱树枝状/结冷胶混合水凝胶

Antibacterial Broad-Spectrum Dendritic/Gellan Gum Hybrid Hydrogels with Rapid Shape-Forming and Self-Healing for Wound Healing Application.

作者信息

Biscari Giuseppina, Fan Yanmiao, Namata Faridah, Fiorica Calogero, Malkoch Michael, Palumbo Fabio Salvatore, Pitarresi Giovanna

机构信息

KTH Royal Institute of Technology, Teknikringen 56-58, Stockholm, SE-100 44, Sweden.

University of Palermo, Via Archirafi 32, Palermo, 90123, Italy.

出版信息

Macromol Biosci. 2023 Dec;23(12):e2300224. doi: 10.1002/mabi.202300224. Epub 2023 Aug 27.

Abstract

Treating wound infections is a difficult task ever since pathogenic bacteria started to develop resistance to common antibiotics. The present study develops hybrid hydrogels based on the formation of a polyelectrolyte complex between the anionic charges of dopamine-functionalized Gellan Gum (GG-DA) and the cationic moieties of the TMP-G2-alanine dendrimer. The hydrogels thus obtained can be doubly crosslinked with CaCl , obtaining solid hydrogels. Or, by oxidizing dopamine to GG-DA, possibly causing further interactions such as Schiff Base and Michael addition to take place, hydrogels called injectables can be obtained. The latter have shear-thinning and self-healing properties (efficiency up to 100%). Human dermal fibroblasts (HDF), human epidermal keratinocytes (HaCaT), and mouse monocyte cells (RAW 264.7), after incubation with hydrogels, in most cases show cell viability up to 100%. Hydrogels exhibit adhesive behavior on various substrates, including porcine skin. At the same time, the dendrimer serves to crosslink the hydrogels and endows them with excellent broad-spectrum microbial eradication activity within four hours, evaluated using Staphylococcus aureus 2569 and Escherichia coli 178. Using the same GG-DA/TMP-G2-alanine ratios hybrid hydrogels with tunable properties and potential for wound dressing applications can be produced.

摘要

自从病原菌开始对常用抗生素产生耐药性以来,治疗伤口感染一直是一项艰巨的任务。本研究基于多巴胺功能化结冷胶(GG-DA)的阴离子电荷与TMP-G2-丙氨酸树枝状大分子的阳离子部分之间形成聚电解质复合物,开发了混合水凝胶。由此获得的水凝胶可以用氯化钙进行双重交联,得到固体水凝胶。或者,通过将多巴胺氧化为GG-DA,可能会引发进一步的相互作用,如席夫碱反应和迈克尔加成反应,从而得到所谓的可注射水凝胶。后者具有剪切变稀和自愈特性(自愈效率高达100%)。人皮肤成纤维细胞(HDF)、人表皮角质形成细胞(HaCaT)和小鼠单核细胞(RAW 264.7)与水凝胶孵育后,在大多数情况下细胞活力高达100%。水凝胶在包括猪皮在内的各种基质上表现出粘附行为。同时,树枝状大分子用于交联水凝胶,并赋予它们在四小时内优异的广谱抗菌活性,使用金黄色葡萄球菌2569和大肠杆菌178进行评估。使用相同的GG-DA/TMP-G2-丙氨酸比例,可以制备出具有可调性能和伤口敷料应用潜力的混合水凝胶。

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