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In Situ Hydrogel-Forming/Nitric Oxide-Releasing Wound Dressing for Enhanced Antibacterial Activity and Healing in Mice with Infected Wounds

机译:原位水凝胶形成/一氧化氮释放伤口敷料,用于增强抗菌活性和受感染伤口的小鼠中的愈合

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摘要

The eradication of bacteria from wound sites and promotion of healing are essential for treating infected wounds. Nitric oxide (NO) is desirable for these purposes due to its ability to accelerate wound healing and its broad-spectrum antibacterial effects. We developed an in situ hydrogel-forming/NO-releasing powder dressing (NO/GP), which is a powder during storage and forms a hydrogel when applied to wounds, as a novel NO-releasing formulation to treat infected wounds. An NO/GP fine powder (51.5 μm) was fabricated by blending and micronizing S-nitrosoglutathione (GSNO), alginate, pectin, and polyethylene glycol (PEG). NO/GP remained stable for more than four months when stored at 4 or 37 °C. When applied to wounds, NO/GP absorbed wound fluid and immediately converted to a hydrogel. Additionally, wound fluid triggered a NO release from NO/GP for more than 18 h. The rheological properties of hydrogel-transformed NO/GP indicated that NO/GP possesses similar adhesive properties to marketed products (Vaseline). NO/GP resulted in a 6-log reduction in colony forming units (CFUs) of methicillin resistant Staphylococcus aureus (MRSA) and Pseudomonas aeruginosa, which are representative drug-resistant gram-positive and -negative bacteria, respectively. The promotion of wound healing by NO/GP was demonstrated in mice with full-thickness wounds challenged with MRSA and P. aeruginosa. Thus, NO/GP is a promising formulation for the treatment of infected wounds.
机译:从伤口部位,并促进愈合的细菌消灭用于治疗伤口感染至关重要。一氧化氮(NO)是理想的这些目的由于其加速伤口愈合和其广谱抗菌作用的能力。我们开发了原位形成水凝胶的/释放NO的粉末敷料(NO / GP),当施加到伤口,作为一种新的释放NO的制剂来治疗感染的伤口是存储和形式的水凝胶中的粉末。的NO / GP细粉(51.5微米)通过混合和微粉S-亚硝基谷胱甘肽(GSNO),藻酸盐,果胶,和聚乙二醇(PEG)制造。当储存在4或37℃NO / GP仍然是超过四个月稳定。当施加到伤口,NO / GP吸收的伤口流体,并立即转化为水凝胶。此外,伤口流体从触发NO / GP一个NO释放超过18小时。水凝胶转化NO / GP的流变性质表明,NO / GP具有类似的粘接性市售产品(凡士林)。 NO / GP导致耐甲氧西林金黄色葡萄球菌(MRSA)和绿脓杆菌的菌落形成单位(CFU),其是代表性的耐药革兰氏阳性和阴性菌,分别有6个对数减少。由NO / GP促进伤口愈合的小鼠证实与MRSA和铜绿假单胞菌攻击全层伤口。因此,NO / GP是伤口感染的治疗有前途的配方。

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