活性氧
氧气
对偶(语法数字)
化学
钠
双重角色
伤口愈合
微生物学
医学
生物
生物化学
外科
组合化学
有机化学
艺术
文学类
作者
Miao Yu,Jielu Wei,Xueqing Chen,Jingru Shi,Lingjiao Zhang,Liping Wang,Jialun Yang,Lili Ma,Jinyou Duan
标识
DOI:10.1016/j.ijbiomac.2024.132536
摘要
The enhancement of antimicrobial wound dressings is of utmost importance in light of the escalating risk of antibiotic resistance caused by excessive antibiotic usage. Conventional antimicrobial materials eradicate pathogenic bacteria while impeding the proliferation of beneficial bacteria during the management of wound infections, thereby disturbing the equilibrium of the skin micro-ecosystem and engendering recurrent cutaneous complications. Lactobacillus rhamnosus (L.rha) is a probiotic that can inhibit the growth of certain pathogenic bacteria by secreting a large number of metabolites. In this paper, we synthesized a cross-linker with a boric acid molecule (SPBA) from succinic acid and 4-(bromomethyl)phenylboronic acid, which formed a boric acid ester bond with a diol on the natural polysaccharide sodium alginate (SA), and obtained a pH/reactive oxygen species (ROS) dual-responsive hydrogel (SA-SPBA) for loading L.rha to treat wound infections. The [email protected] hydrogel improves the survival of L.rha during storage and has good injectability as well as self-healing properties. The hydrogel showed good biocompatibility, the antimicrobial effect increases in a dose-dependent manner, and it has a certain antioxidant and anti-inflammatory capacity, accelerating wound repair. The use of [email protected] hydrogel provides a safe and effective strategy for the repair of skin wound infections.
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