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原位光交联水凝胶通过清除 ROS 和调节炎症来治疗放射性皮肤损伤。

In situ photocrosslinkable hydrogel treats radiation-induced skin injury by ROS elimination and inflammation regulation.

机构信息

Beijing Institute of Radiation Medicine, Beijing, 100850, China; State Key Laboratory of Biochemical Engineering, Institute of Process Engineering, Chinese Academy of Sciences, Beijing, 100190, China.

Beijing Institute of Radiation Medicine, Beijing, 100850, China; Hebei University, Baoding, 071002, China.

出版信息

Biomaterials. 2025 Mar;314:122891. doi: 10.1016/j.biomaterials.2024.122891. Epub 2024 Oct 12.

Abstract

The clinical management of radiation-induced skin injury (RSI) poses a significant challenge, primarily due to the acute damage caused by an overabundance of reactive oxygen species (ROS) and the ongoing inflammatory microenvironment. Here, we designed a dual-network hydrogel composed of 5 % (w/v) Pluronic F127 diacrylate and 2 % (w/v) hyaluronic acid methacryloyl, termed the FH hydrogel. To confer antioxidant and anti-inflammation properties to the hydrogel, we incorporated PVP-modified Prussian blue nanoparticles (PPBs) and resveratrol (Res) to form PHF@Res hydrogels. PHF@Res hydrogels not only exhibited multiple free radical scavenging activities (DPPH, ABTS), but also displayed multiple enzyme-like activities (POD-, catalase). Meanwhile, PHF@Res-2 hydrogels significantly suppressed intracellular ROS and promoted the migration of fibroblasts in a high-oxidative stress environment. Moreover, in the RSI mouse model, the PHF@Res-2 hydrogel regulated inflammatory factors and collagen deposition, significantly reduced epithelial hyperplasia, promoted limb regeneration and neovascularization, and accelerated wound healing, outperforming the commercial antiradiation formulation, Kangfuxin. The PHF@Res-2 hydrogel dressing shows great potential in accelerating wound healing in RSI, offering tremendous promise for clinical wound management and regeneration.

摘要

辐射诱导皮肤损伤(RSI)的临床管理带来了重大挑战,主要是由于活性氧(ROS)过多引起的急性损伤和持续的炎症微环境。在这里,我们设计了一种由 5%(w/v)Pluronic F127 二丙烯酸酯和 2%(w/v)透明质酸甲基丙烯酰组成的双网络水凝胶,称为 FH 水凝胶。为了赋予水凝胶抗氧化和抗炎特性,我们将 PVP 修饰的普鲁士蓝纳米颗粒(PPBs)和白藜芦醇(Res)掺入其中,形成 PHF@Res 水凝胶。PHF@Res 水凝胶不仅表现出多种自由基清除活性(DPPH、ABTS),还表现出多种酶样活性(POD、过氧化氢酶)。同时,PHF@Res-2 水凝胶在高氧化应激环境中显著抑制细胞内 ROS 并促进成纤维细胞的迁移。此外,在 RSI 小鼠模型中,PHF@Res-2 水凝胶调节炎症因子和胶原蛋白沉积,显著减少上皮过度增生,促进肢体再生和新血管生成,并加速伤口愈合,优于商业抗辐射制剂康福信。PHF@Res-2 水凝胶敷料在加速 RSI 伤口愈合方面显示出巨大潜力,为临床伤口管理和再生提供了巨大的希望。

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