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基于多糖/壳聚糖的自修复水凝胶,具有增强的光热效应,可通过调节微环境实现糖尿病感染伤口的快速愈合。

Polysaccharide-/Chitosan-Based Self-Healing Hydrogel with Enhanced Photothermal Effect for Rapid Healing of Diabetic Infected Wounds via the Regulation of Microenvironment.

机构信息

School of Medical Technology and Information Engineering, Zhejiang Chinese Medical University, Hangzhou 310053, Zhejiang, The People's Republic of China.

出版信息

Biomacromolecules. 2024 Jun 10;25(6):3345-3359. doi: 10.1021/acs.biomac.4c00013. Epub 2024 May 3.

Abstract

The management of diabetic ulcers poses a significant challenge worldwide, and persistent hyperglycemia makes patients susceptible to bacterial infections. Unfortunately, the overuse of antibiotics may lead to drug resistance and prolonged infections, contributing to chronic inflammation and hindering the healing process. To address these issues, a photothermal therapy technique was incorporated in the preparation of wound dressings. This innovative solution involved the formulation of a self-healing and injectable hydrogel matrix based on the Schiff base structure formed between the oxidized polysaccharide (BSP) and hydroxypropyltrimethylammonium chloride chitosan. Furthermore, the introduction of CuO nanoparticles encapsulated in polydopamine imparted excellent photothermal properties to the hydrogel, which promoted the release of berberine (BER) loaded on the nanoparticles and boosted the antibacterial performance. In addition to providing a reliable physical protection to the wound, the developed hydrogel, which integrated the herbal components of BSP and BER, effectively accelerated wound closure via microenvironment regulation, including alleviated inflammatory reaction, stimulated re-epithelialization, and reduced oxidative stress based on the promising results from cell and animal experiments. These impressive outcomes highlighted their clinical potential in safeguarding the wound against bacterial intrusion and managing diabetic ulcers.

摘要

糖尿病溃疡的管理是一个全球性的挑战,持续的高血糖使患者容易受到细菌感染。不幸的是,抗生素的过度使用可能导致耐药性和感染延长,导致慢性炎症,并阻碍愈合过程。为了解决这些问题,一种光热疗法技术被应用于伤口敷料的制备中。这一创新解决方案涉及到基于氧化多糖(BSP)和羟丙基三甲基氯化铵壳聚糖之间形成的席夫碱结构的自修复和可注射水凝胶基质的配方。此外,将氧化铜纳米粒子封装在聚多巴胺中,赋予水凝胶优异的光热性能,促进了载于纳米粒子上的小檗碱(BER)的释放,并增强了抗菌性能。除了为伤口提供可靠的物理保护外,这种水凝胶还整合了 BSP 和 BER 的草药成分,通过微环境调节,包括减轻炎症反应、刺激再上皮化和减少氧化应激,有效地促进了伤口愈合,这是基于细胞和动物实验的有希望的结果。这些令人印象深刻的结果突出了它们在保护伤口免受细菌入侵和治疗糖尿病溃疡方面的临床潜力。

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