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Design and construction of a silver(I)-loaded cellulose-based wound dressing: trackable and sustained release of silver for controlled therapeutic delivery to wound sites

机译:负载银(I)的纤维素基伤口敷料的设计和构建:可追踪和持续释放银以控制治疗性将药物递送到伤口部位

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摘要

Although application of silver nitrate and silver sulfadiazine have been shown to be effective in thwarting infections at burn sites, optimization of the delivery of bioactive silver (Ag+) remains as an obstacle due to rapid precipitation and/or insolubility of the silver sources. To circumvent these shortcomings, we have designed a silver(I) complex [Ag(ImD)2]ClO4 (ImD = dansyl imidazole) that effectively increases the bioavailability of Ag+ and exhibits MIC values of 2.3 and 4.7 μg/mL against E. coli and S. aureus, respectively. This fluorescent silver complex has been incorporated within a robust hydrogel derived from carboxymethyl cellulose that allows slow release of silver. A complete occlusive dressing has finally been constructed with the Ag(ImD)CMC (1 % Ag loaded) pad sealed between a sterile mesh gauze (as bottom layer) and a rayon-based surgical tape (as the top layer). Such construction has afforded a dressing that displays sustained delivery of silver onto a skin and soft tissue infection model and causes effective eradication of bacterial loads within 24 h. The transfer of the bioactive silver complex is readily visualized by the observed fluorescence that overlays precisely with the kill zone. The latter feature introduces a unique feature of therapeutic trackability to this silver-donating occlusive dressing.
机译:尽管已显示硝酸银和磺胺嘧啶银的使用可以有效地阻止烧伤部位的感染,但由于快速沉淀和/或,生物活性银(Ag + )的最佳传递仍然是障碍。银源的不溶性。为了避免这些缺点,我们设计了一种银(I)络合物[Ag(ImD)2] ClO4(ImD =丹磺酰基咪唑),可有效提高Ag + 的生物利用度,并且MIC值为2.3和分别针对大肠杆菌和金黄色葡萄球菌为4.7μg/ mL。该荧光银络合物已被掺入衍生自羧甲基纤维素的坚固水凝胶中,该凝胶可缓慢释放银。最终,使用密封在无菌网状纱布(作为底层)和基于人造丝的手术胶带(作为顶层)之间的Ag(ImD)CMC(含1%Ag)的Ag垫构建了完整的闭合敷料。这样的构造提供了一种敷料,该敷料显示出银持续释放到皮肤和软组织感染模型上,并在24小时内有效根除细菌负荷。生物活性银配合物的转移很容易通过观察到的荧光精确地显示在杀伤区上。后一特征为该供银闭塞性敷料引入了治疗可追踪性的独特特征。

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  • 期刊名称 other
  • 作者单位
  • 年(卷),期 -1(26),10
  • 年度 -1
  • 页码 243
  • 总页数 15
  • 原文格式 PDF
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  • 入库时间 2022-08-21 11:14:29

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