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基于多功能糖肽的水凝胶通过双重调制用于预防和修复辐射诱导的皮肤损伤

Multifunctional Glycopeptide-Based Hydrogel via Dual-Modulation for the Prevention and Repair of Radiation-Induced Skin Injury.

作者信息

Guo Jiajun, Zhang Xiaoguang, Mao Ruiqi, Li Hui, Hao Yusen, Zhang Jiamin, Wang Wei, Zhang Yumin, Liu Jianfeng

机构信息

Lab of Functional and Biomedical Nanomaterials, College of Materials Science and Engineering, Qingdao University of Science and Technology, Qingdao 266042, P. R. China.

Tianjin Center for Medical Devices Evaluation and Inspection, Tianjin 300384, P. R. China.

出版信息

ACS Biomater Sci Eng. 2024 Aug 12;10(8):5168-5180. doi: 10.1021/acsbiomaterials.4c00698. Epub 2024 Jul 17.

Abstract

The radiation-induced skin injury (RISI) remains a great challenge for clinical wound management and care after radiotherapy, as patients will suffer from the acute radiation injury and long-term chronic inflammatory damage during the treatment. The excessive ROS in the early acute stage and prolonged inflammatory response in the late healing process always hinder therapeutic efficiency. Herein, we developed an extracellular matrix (ECM)-mimetic multifunctional glycopeptide hydrogel (oCP@As) to promote and accelerate RISI repair via a dual-modulation strategy in different healing stages. The oCP@As hydrogel not only can form an ECM-like nanofiber structure through the Schiff base reaction but also exhibits ROS scavenging and DNA double-strand break repair abilities, which can effectively reduce the acute radiation damage. Meanwhile, the introduction of oxidized chondroitin sulfate, which is the ECM polysaccharide-like component, enables regulation of the inflammatory response by adsorption of inflammatory factors, accelerating the repair of chronic inflammatory injury. The animal experiments demonstrated that oCP@As can significantly weaken RISI symptoms, promote epidermal tissue regeneration and angiogenesis, and reduce pro-inflammatory cytokine expression. Therefore, this multifunctional glycopeptide hydrogel dressing can effectively attenuate RISI symptoms and promote RISI healing, showing great potential for clinical applications in radiotherapy protection and repair.

摘要

放射诱导的皮肤损伤(RISI)仍然是放疗后临床伤口管理和护理面临的巨大挑战,因为患者在治疗过程中会遭受急性放射损伤和长期慢性炎症损伤。早期急性期过多的活性氧(ROS)以及后期愈合过程中延长的炎症反应总是阻碍治疗效果。在此,我们开发了一种细胞外基质(ECM)模拟多功能糖肽水凝胶(oCP@As),通过在不同愈合阶段的双重调节策略来促进和加速RISI修复。oCP@As水凝胶不仅可以通过席夫碱反应形成类似ECM的纳米纤维结构,还具有ROS清除和DNA双链断裂修复能力,可有效减少急性放射损伤。同时,引入作为ECM多糖样成分的氧化硫酸软骨素,能够通过吸附炎症因子来调节炎症反应,加速慢性炎症损伤的修复。动物实验表明,oCP@As可显著减轻RISI症状,促进表皮组织再生和血管生成,并降低促炎细胞因子表达。因此,这种多功能糖肽水凝胶敷料可有效减轻RISI症状并促进RISI愈合,在放疗防护和修复的临床应用中显示出巨大潜力。

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