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智能水凝胶敷料通过双重屏障药物递送作用增强慢性感染性糖尿病伤口的愈合。

Smart Hydrogel Dressing Enhances the Healing of Chronic Infectious Diabetic Wounds through Dual-Barrier Drug Delivery Action.

机构信息

Department of Orthopedic Surgery and Orthopedic Research Institute, West China Hospital, Sichuan University, Chengdu, Sichuan 610041, China.

出版信息

Biomacromolecules. 2024 Oct 14;25(10):6814-6829. doi: 10.1021/acs.biomac.4c01041. Epub 2024 Sep 5.

Abstract

Chronic diabetic wounds struggle to heal due to drug-resistant bacterial infections, oxidative stress microenvironment, and immune dysfunction. At present, the disease has become a huge clinical challenge. Multifunctional hydrogels with antibacterial, antioxidant, and anti-inflammatory properties are becoming an emerging trend in the treatment of chronic wounds. However, matching different bioactive functions with the wound healing process to sequentially exert antibacterial, antioxidant, anti-inflammatory, and immunomodulatory functions remains a significant challenge. In this research, a hydrogel dressing with bactericidal and anti-inflammatory properties was synthesized by crafting a pH/ROS-responsive scaffold from phenylboronic acid-grafted hyaluronic acid (HA-PBA) and 4-arm-PEG-dopamine (4A-PEG-Dopa), employing dynamic borate ester bonds. This structure was then infused with the antimicrobial peptide (AMP) and ROS-sensitive micelle mPEG-TK-PLGA loaded with quercetin (QC). This dressing embodied a dual-barrier drug delivery mechanism, engineered for the prolonged and consistent liberation of QC. In the experiment, the hydrogel dissociated within the acidic microenvironment of diabetic wounds, thereby liberating the encapsulated micelles and AMP. Upon further dissociation, the micelles release QC due to the ROS-abundant microenvironment, which could relieve oxidative stress and encourage M2 polarization of macrophage via the Akt/STAT6 signaling pathway. Therefore, this smart delivery system, developed through our innovative approach, holds promise for treating chronic infectious diabetic wounds.

摘要

慢性糖尿病伤口由于耐药细菌感染、氧化应激微环境和免疫功能障碍而难以愈合。目前,该疾病已成为巨大的临床挑战。具有抗菌、抗氧化和抗炎特性的多功能水凝胶在慢性伤口治疗方面正成为一种新兴趋势。然而,将不同的生物活性功能与伤口愈合过程相匹配,以依次发挥抗菌、抗氧化、抗炎和免疫调节功能仍然是一个重大挑战。在这项研究中,通过使用动态硼酸酯键,从接枝了苯硼酸的透明质酸(HA-PBA)和 4 臂-PEG-多巴胺(4A-PEG-Dopa)构建 pH/ROS 响应支架,合成了一种具有杀菌和抗炎特性的水凝胶敷料。然后将这种结构注入抗菌肽(AMP)和载有槲皮素(QC)的 ROS 敏感胶束 mPEG-TK-PLGA。这种敷料体现了一种双重屏障药物递送机制,设计用于持续和一致地释放 QC。在实验中,水凝胶在糖尿病伤口的酸性微环境中解离,从而释放出包裹的胶束和 AMP。进一步解离后,由于富含 ROS 的微环境,胶束释放 QC,通过 Akt/STAT6 信号通路缓解氧化应激并促进巨噬细胞 M2 极化。因此,通过我们的创新方法开发的这种智能递送系统有望用于治疗慢性感染性糖尿病伤口。

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