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聚离子液体-絮凝小球藻负载杀菌抗氧化水凝胶作为糖尿病伤口敷料的生物氢疗。

Poly(ionic liquid)-Flocculated Chlorella Loading Bactericidal and Antioxidant Hydrogel as a Biological Hydrogen Therapy for Diabetic Wound Dressing.

机构信息

Jiangsu Engineering Laboratory of Novel Functional Polymeric Materials, Jiangsu Key Laboratory of Advanced Negative Carbon Technologies, Suzhou Key Laboratory of Soft Material and New Energy, College of Chemistry, Chemical Engineering and Materials Science, Soochow University, Suzhou 215123, P. R. China.

出版信息

ACS Appl Mater Interfaces. 2024 Jul 10;16(27):34743-34756. doi: 10.1021/acsami.4c07104. Epub 2024 Jun 27.

Abstract

Infection and oxidative stress seriously hinder the healing of diabetic wounds, resulting in various serious health and clinical problems. Herein, a sustainable biological hydrogen (H)-producing hyaluronic acid-based hydrogel patch (HAP-Chl) was constructed by loading an imidazolium-based poly(ionic liquid) (PIL) flocculated live Chlorella as a diabetic wound dressing. The PIL can flocculate Chlorella through electrostatic interactions between PIL and Chlorella to form Chlorella agglomerates, endowing the Chlorella in the central agglomerates with the ability to continuously produce H for 24 h under mild conditions. Combining the membrane disruption-related bactericidal mechanism of PIL and the antioxidant properties of the produced H, HAP-Chl was determined to be antibacterial and antioxidant. In addition to exhibiting biocompatible and nontoxic activities, subsequent -infected chronic wound studies revealed that HAP-Chl is capable of promoting the healing of chronic wounds by effectively killing bacteria, reducing extensive ROS, relieving inflammation, and promoting the deposition of mature collagen and angiogenesis. This study provides a new strategy for constructing an sustainable H-producing hydrogel, enabling the formation of novel antibacterial and antioxidant material platforms with potential for wound dressing applications.

摘要

感染和氧化应激严重阻碍糖尿病伤口的愈合,导致各种严重的健康和临床问题。在此,通过负载一种基于离子液体的聚(离子液体)(PIL)絮凝的活小球藻,构建了一种可持续产生生物氢(H)的透明质酸基水凝胶贴片(HAP-Chl),作为糖尿病伤口敷料。PIL 可以通过 PIL 和小球藻之间的静电相互作用使小球藻絮凝,形成小球藻聚集体,赋予中央聚集体中小球藻在温和条件下持续产生 H 的能力达 24 小时。结合 PIL 的膜破坏相关杀菌机制和产生的 H 的抗氧化特性,确定 HAP-Chl 具有抗菌和抗氧化作用。除了表现出生物相容性和无毒活性外,随后的感染性慢性伤口研究表明,HAP-Chl 能够通过有效杀灭细菌、减少大量 ROS、缓解炎症以及促进成熟胶原和血管生成的沉积来促进慢性伤口的愈合。本研究为构建可持续产生 H 的水凝胶提供了一种新策略,为具有伤口敷料应用潜力的新型抗菌和抗氧化材料平台的形成奠定了基础。

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