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首页> 外文期刊>ACS applied materials & interfaces >Hyaluronic Acid and Polyethylene Glycol Hybrid Hydrogel Encapsulating Nanogel with Hemostasis and Sustainable Antibacterial Property for Wound Healing
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Hyaluronic Acid and Polyethylene Glycol Hybrid Hydrogel Encapsulating Nanogel with Hemostasis and Sustainable Antibacterial Property for Wound Healing

机译:透明质酸和聚乙二醇杂交水凝胶包封纳米凝胶,具有止血和可持续抗菌性的伤口愈合

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Immediate hemorrhage control and anti-infection play important roles in the wound management. Besides, a moist environment is also beneficial for wound healing. Hydrogels are promising materials in urgent hemostasis and drug release. However, hydrogels have the disadvantage of rapid release profiles, leading to the exposure to high drug concentrations. In this study, we constructed hybrid hydrogels with rapid hemostasis and sustainable antibacterial property combining aminoethyl methacrylate hyaluronic acid (HA-AEMA) and methacrylated methoxy polyethylene glycol (mPEG-MA) hybrid hydrogels and chlorhexidine diacetate (CHX)-loaded nanogels. The CHX-loaded nanogels (CLNs) were prepared by the enzyme degradation of CHX-loaded lysine-based hydrogels. The HA-AEMA and mPEG-MA hybrid hydrogel loaded with CLNs (labeled as Gel@CLN) displayed a three-dimensional microporous structure and exhibited excellent swelling, mechanical property, and low cytotoxicity. The Gel@CLN hydrogel showed a prolonged release period of CHX over 240 h and the antibacterial property over 10 days. The hemostasis and wound-healing properties were evaluated in vivo using a mouse model. The results showed that hydrogel had the rapid hemostasis capacity and accelerated wound healing. In summary, CLN-loaded hydrogels may be excellent candidates as hemostasis and anti-infection materials for the wound dressing application.
机译:立即出血控制和抗感染在伤口管理中起重要作用。此外,潮湿的环境也有利于伤口愈合。水凝胶是紧急止血和药物释放的有希望的材料。然而,水凝胶具有快速释放型材的缺点,导致暴露于高药物浓度。在这项研究中,我们构建了具有快速止血和可持续抗菌性能的杂种水凝胶,将甲基丙烯酸羟基丙烯酸氨基甲基羟基丙烯酸(HA-AEMA)和甲基丙烯酸甲氧基聚乙二醇(MPEG-MA)杂交水凝胶和氯己定二乙酸酯(CHX) - 载荷的纳米凝胶组合。通过酶降解CHX负载的基于赖氨酸的水凝胶制备CHX负载的纳米凝胶(CLNN)。载有CLNS的HA-AEMA和MPEG-MA杂合水凝胶(标记为凝胶@CLN)显示了三维微孔结构,并且表现出优异的溶胀,机械性能和低细胞毒性。凝胶@Cln水凝胶在240小时内延长了CHX的延长释放期,并且在10天内超过抗菌性。使用小鼠模型在体内评估止血和伤口愈合性能。结果表明,水凝胶具有快速的止血能力和加速伤口愈合。发明内容中,ClN加载的水凝胶可以是优异的候选者,作为伤口敷料应用的止血和抗感染材料。

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