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An Infection-Responsive Approach to Reduce Bacterial Adhesion in Urinary Biomaterials

机译:一种减少感染的方法,减少尿液生物材料中的细菌粘附。

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摘要

Infection is an inevitable consequence of chronic urinary catheterisation, with associated problems of recurrent catheter encrustation and blockage experienced by approximately 50% of all long-term catheterised patients. In this work we have exploited, for the first time, the reported pathogen-induced elevation of urine pH as a trigger for ‘intelligent’ antimicrobial release from novel hydrogel drug delivery systems of 2-hydroxyethyl methacrylate and vinyl-functionalised nalidixic acid derivatives, developed as candidate infection-resistant urinary catheter coatings. Demonstrating up to 20-fold faster rates of drug release at pH 10, representing infected urine pH, than at pH 7, and achieving reductions of up to 96.5% in in vitro bacterial adherence, our paradigm of pH-responsive drug delivery, which requires no external manipulation, therefore represents a promising development towards the prevention of catheter-associated urinary tract infections (CAUTIs) in vivo.
机译:感染是慢性导尿的必然结果,所有长期导尿的患者中约有50%会出现反复出现的导管结壳和阻塞的相关问题。在这项工作中,我们首次开发了报道的病原体诱导的尿液pH升高,以触发从甲基丙烯酸2-羟乙酯和乙烯基官能化萘啶酸衍生物的新型水凝胶药物递送系统“智能”释放抗菌素的行为。作为候选抗感染导尿管涂层。在pH 10(代表受感染的尿液pH)下,其药物释放速率比pH 7快达20倍,并且在体外细菌粘附方面实现了多达96.5%的降低,这是我们pH响应药物传递的范例,这需要因此,无需外部操作,就代表了体内预防导管相关性尿路感染(CAUTIs)的有希望的发展。

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