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被囊动物纤维素纳米晶增强可注射拉伸水凝胶作为多响应增强型抗菌伤口敷料,用于促进糖尿病伤口愈合。

Tunicate cellulose nanocrystals strengthened injectable stretchable hydrogel as multi-responsive enhanced antibacterial wound dressing for promoting diabetic wound healing.

机构信息

Marine College, Shandong University (Weihai), Wenhua West Rd., Weihai, Shandong Province 264209, PR China.

Pathology Department, Weihai Municipal Hospital, Shandong University, Peace Rd.70, Weihai, Shandong Province 264200, PR China.

出版信息

Carbohydr Polym. 2024 Nov 1;343:122426. doi: 10.1016/j.carbpol.2024.122426. Epub 2024 Jun 27.

Abstract

The intricate microenvironment of diabetic wounds characterized by hyperglycemia, intense oxidative stress, persistent bacterial infection and complex pH fluctuations hinders the healing process. Herein, an injectable multifunctional hydrogel (QPT) was developed, which exhibited excellent mechanical performance and triple responsiveness to pH, temperature, and glucose due to dynamic covalent cross-linking involving dynamic Schiff base bonds and phenylboronate esters with phenylboronic-modified quaternized chitosan (QCS-PBA), polydopamine coated tunicate cellulose crystals (PDA@TCNCs) and polyvinyl alcohol (PVA). Furthermore, the hydrogels can incorporate insulin (INS) drugs to adapt to the complex and variable wound environment in diabetic patients for on-demand drug release that promote diabetic wound healing. Based on various excellent properties of the colloidal materials, the hydrogels were evaluated for self-healing, rheological and mechanical properties, in vitro insulin response to pH/temperature/glucose release, antibacterial, antioxidant, tissue adhesion, coagulation, hemostasis in vivo and in vitro, and biocompatibility and biodegradability. By introducing PDA@TCNCs particles, the hydrogel has photothermal antibacterial activity, enhanced adhesion and oxidation resistance. We further demonstrated that these hydrogel dressings significantly improved the healing process compared to commercial dressings (Tegaderm™) in full-layer skin defect models. All indicated that the glucose-responsive QPT hydrogel platform has great potential for treating diabetic wounds.

摘要

糖尿病伤口的复杂微环境以高血糖、强烈的氧化应激、持续的细菌感染和复杂的 pH 波动为特征,阻碍了愈合过程。在此,开发了一种可注射的多功能水凝胶(QPT),由于涉及动态席夫碱键和苯硼酸酯的动态共价交联,该水凝胶具有出色的机械性能和对 pH、温度和葡萄糖的三重响应性,苯硼酸修饰的季铵化壳聚糖(QCS-PBA)、聚多巴胺包覆的贻贝纤维素晶体(PDA@TCNCs)和聚乙烯醇(PVA)。此外,水凝胶可以掺入胰岛素(INS)药物,以适应糖尿病患者复杂多变的伤口环境,实现按需释放药物,促进糖尿病伤口愈合。基于胶体材料的各种优异性能,对水凝胶的自修复、流变和机械性能、体外 pH/温度/葡萄糖响应胰岛素释放、抗菌、抗氧化、组织粘附、凝血、止血进行了评估体内和体外以及生物相容性和可降解性。通过引入 PDA@TCNCs 颗粒,水凝胶具有光热抗菌活性,增强了粘附性和抗氧化性。我们进一步证明,与商业敷料(Tegaderm™)相比,这些水凝胶敷料在全层皮肤缺损模型中显著改善了愈合过程。所有这些都表明,葡萄糖响应性 QPT 水凝胶平台在治疗糖尿病伤口方面具有巨大的潜力。

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