伤口愈合
炎症
自愈水凝胶
儿茶酚
化学
生物医学工程
材料科学
医学
高分子化学
生物化学
外科
免疫学
作者
Tongtong Shi,Hanzhi Lu,Jian‐Yong Zhu,Xiaojun Zhou,Chuanglong He,Fulun Li,Guang Yang
标识
DOI:10.1016/j.compositesb.2023.110687
摘要
Diabetic wound treatments remain a significant challenge for regenerative medicine due to the unicity of clinical dressings, which lack systemic multifunction with injectability, self-healing ability, moderate tissue adhesion, anti-inflammation and antibacterial abilities, and guidance of tissue repair. Herein, a naturally derived multifunctional hydrogel dressing composed of keratin, protocatechuic aldehyde (PA) and iron ions is fabricated through a simple mixing process, circumventing the use of any extra crosslinking agents or functional modification. Our findings showed that a dual dynamic crosslinked network was constructed through a dynamic thiol-aldehyde addition reaction between thiol groups in keratin and aldehyde groups in PA, and catechol-metal ions coordination bonds between catechol groups in PA and Fe3+, and realized good injectability, mechanical performance, self-healing ability, tissue adhesion and antibacterial properties of the hydrogel. Moreover, the incorporation of phellopterin (PP), a natural compound derived from traditional Chinese herb Angelica dahurica endowed the hydrogel with anti-inflammation properties. The PP-loaded hydrogel shortened inflammation duration and accelerated wound repair in the full-thickness wounds of streptozotocin-induced diabetic mice, notably by promoting macrophage polarization towards anti-inflammatory phenotype and resolving local inflammation. The PP-loaded hydrogel achieved almost wound closure after only 10 days for a diabetic wound of 6 mm in diameter. This study demonstrated that the PP-loaded dynamic crosslinked multifunctional hydrogel had a great potential in the treatment of diabetic wounds.
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