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基于壳聚糖/氧化魔芋葡甘聚糖/AgNPs 的自适应水凝胶用于修复不规则伤口。

A self-adapting hydrogel based on chitosan/oxidized konjac glucomannan/AgNPs for repairing irregular wounds.

机构信息

College of Textile and Garments, Southwest University, No. 2 Tiansheng Road, BeiBei District, Chongqing 400715, China.

Institute of Textiles and Clothing, The Hong Kong Polytechnic University, No. 11 Yucai Road, hung hom, Kowloon, Hong Kong, China.

出版信息

Biomater Sci. 2020 Mar 31;8(7):1910-1922. doi: 10.1039/c9bm01635j.

Abstract

Wound dressings play a critical role in the cutaneous healing process. The uncertainty of an injury leads to an irregular wound. However, incomplete contact between a general dressing and wound reduces the effectiveness of the dressing. Therefore, self-adapting hydrogels that are adhesive, injectable, and self-healable are being developed to efficiently treat irregular skin wounds. Here, we present an approach based on dynamic Schiff-base bond formation to prepare self-adapting hydrogel dressings that automatically adapt to irregular wounds under natural conditions and sustain total contact with the injured site. Spectroscopic investigations suggested the formation of dynamic covalent Schiff-base bonds, which are closely associated with the rapid formation of the hydrogel, between the aldehyde groups of oxidized konjac glucomannan and amine groups in the backbone of protonated chitosan and protonated tranexamic acid. Rheological analysis confirmed the self-healing property of the hydrogel, that is, the recovery of the broken hydrogel network. Histological analysis indicated that this self-adapting hydrogel provides a clear advantage over the commercial hydrogel dressing (AquacelAg™) in the in vivo wound-healing process. Our rapidly gelating hydrogel formulations with self-healing ability, tissue adhesiveness, and antibacterial activity are very promising self-adapting biomaterials for repairing irregular wounds.

摘要

伤口敷料在皮肤愈合过程中起着至关重要的作用。伤口的不规则导致了愈合的不确定性。然而,一般的敷料与伤口之间不完全接触会降低敷料的效果。因此,正在开发具有自适应性的水凝胶,它具有粘性、可注射性和自修复性,可以有效地治疗不规则的皮肤伤口。在这里,我们提出了一种基于动态席夫碱键形成的方法来制备自适应水凝胶敷料,该敷料可以在自然条件下自动适应不规则伤口,并与受伤部位保持完全接触。光谱研究表明,氧化魔芋葡甘露聚糖醛基与质子化壳聚糖和质子化氨甲环酸主链上的氨基之间形成了动态共价席夫碱键,这与水凝胶的快速形成密切相关。流变分析证实了水凝胶的自修复特性,即破碎的水凝胶网络的恢复。组织学分析表明,这种自适应水凝胶在体内伤口愈合过程中明显优于商业水凝胶敷料(AquacelAg™)。我们具有自修复能力、组织粘附性和抗菌活性的快速凝胶水凝胶配方是修复不规则伤口的很有前途的自适应生物材料。

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