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通过在聚氨酯纳米复合材料中使用抗菌剂作为有机改性剂来开发具有持续抗菌释放功能的尿生物材料。

Development of sustained-release antibacterial urinary biomaterials through using an antimicrobial as an organic modifier in polyurethane nanocomposites.

机构信息

Graduate School of Biomedical Engineering, University of New South Wales, Sydney, New South Wales 2052, Australia.

出版信息

J Biomed Mater Res B Appl Biomater. 2013 Feb;101(2):310-9. doi: 10.1002/jbm.b.32841. Epub 2012 Nov 16.

Abstract

Urinary catheters are among the most frequently used medical devices in clinical practice. However, their use is associated with high rates of nosocomial infection. This study investigates the use of polyurethane nanocomposites (PUNCs) incorporating an antimicrobial agent, chlorhexidine diacetate (CHX), behaving as nanoparticle dispersant and model drug/active agent, as sustained-release antibacterial biomaterials in urinary devices. A range of PUNCs incorporating organically modified silicate (OMS) nanoparticles with CHX was fabricated using a solution-cast method. PUNCs with free CHX added into the bulk polymer were also made. Materials were assessed for antibacterial activity in an in vitro urinary tract (UT) model and release kinetics of CHX was studied. PUNCs demonstrated sustained antibacterial activity against Staphylococcus epidermidis in the UT model, reaching ~50 days infection-free in materials with 2 wt % free CHX loading. Drug-release profiles demonstrated that, compared with microcomposite and unfilled polyurethane, the initial burst effect was significantly reduced in PUNCs. Prolonged drug release was achieved through incorporation of OMS, hypothesized to be due to a combination of barrier properties created by the nanoinclusions and strong interactions between CHX and MMT within the PUNCs. Use of PUNCs for sustained drug release in long-term urinary applications shows promise in addressing catheter-related nosocomial infections.

摘要

导尿管是临床实践中使用最频繁的医疗器械之一。然而,它们的使用与医院感染的高发生率有关。本研究调查了将含有抗菌剂醋酸氯己定(CHX)的聚氨酯纳米复合材料(PUNCs)用作纳米分散剂和模型药物/活性剂,作为在尿液装置中持续释放抗菌生物材料的用途。使用溶液浇铸法制备了一系列含有有机改性硅酸盐(OMS)纳米颗粒和 CHX 的 PUNCs。还制备了将游离 CHX 添加到本体聚合物中的 PUNCs。在体外泌尿道(UT)模型中评估了材料的抗菌活性,并研究了 CHX 的释放动力学。PUNCs 在 UT 模型中对表皮葡萄球菌表现出持续的抗菌活性,在载有 2wt%游离 CHX 的材料中达到约 50 天无感染。药物释放曲线表明,与微复合材料和未填充的聚氨酯相比,PUNCs 中的初始突释效应显著降低。通过加入 OMS 实现了药物的延长释放,这被假设是由于纳米夹杂物的阻隔性能和 CHX 与 PUNCs 中的 MMT 之间的强相互作用的结合。在长期尿液应用中使用 PUNCs 进行持续药物释放有望解决与导管相关的医院感染问题。

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