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An encapsulated drug delivery system for recalcitrant urinary tract infection

机译:用于顽固性尿路感染的封装药物输送系统

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摘要

One of the hallmarks of urinary tract infection, a serious global disease, is its tendency to recur. Uropathogenic bacteria can invade cells lining the bladder, where they form longer-term intracellular reservoirs shielded from antibiotics, re-emerging at a later date to initiate flare-ups. In these cases, only lengthy systemic antibiotic treatment can eradicate all the reservoirs. Yet, long courses of antibiotics are not ideal, as they can lead to side effects and an increase in antibiotic resistance. Moreover, most antibiotics lose some potency by the time they reach the bladder, and many cannot permeate cells, so they cannot access intracellular reservoirs. Here, using coaxial electrohydrodynamic forming, we developed novel core–shell capsules containing antibiotics as a prototype for a future product that could be infused directly into the bladder. Gentamicin was encapsulated in a polymeric carrier (polymethylsilsesquioxane) and these capsules killed Enterococcus faecalis, a common chronic uropathogen, in vitro in a dose-responsive, slow-release manner. Capsules containing a fluorescent tracer dye in place of gentamicin penetrated human bladder cells and released their dye cargo with no apparent toxicity, confirming their ability to successfully permeate cells. These results suggest that such antibiotic capsules could prove useful in the treatment of recalcitrant UTI.
机译:尿路感染(一种严重的全球性疾病)的特征之一是其复发的趋势。致病性细菌可以侵袭膀胱内壁的细胞,在那里它们形成了长期的细胞内储液库,这些储库被抗生素所屏蔽,并在以后重新出现以引发爆发。在这些情况下,只有漫长的全身性抗生素治疗才能根除所有储层。然而,长期服用抗生素并不理想,因为它们可能导致副作用和抗生素耐药性增加。而且,大多数抗生素在到达膀胱时会失去一些效力,许多抗生素无法渗透细胞,因此它们无法进入细胞内储库。在这里,我们使用同轴电流体成形技术,开发了含有抗生素的新型核壳胶囊,以此作为未来产品的原型,可以将其直接注入膀胱。庆大霉素被封装在聚合物载体(聚甲基倍半硅氧烷)中,这些胶囊在体外以剂量反应性,缓慢释放的方式杀死了常见的慢性尿路致病菌粪肠球菌。含有荧光示踪染料代替庆大霉素的胶囊穿透人膀胱细胞,释放出无明显毒性的染料,证实了其成功渗透细胞的能力。这些结果表明,这种抗生素胶囊可被证明可用于治疗顽固性UTI。

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