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Biomimickry of UPEC Cytoinvasion: A Novel Concept for Improved Drug Delivery in UTI

机译:UPEC细胞入侵的仿生学:UTI中改善药物递送的新概念

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Urinary tract infections (UTIs) are among the most common bacterial infections. In an increasing number of cases, pathogen (multi-)resistance hampers durable treatment success via the standard therapies. On the functional level, the activity of urinary excreted antibiotics is compromized by the efficient tissue colonization mechanism of uropathogenic Escherichia coli (UPEC). Advanced drug delivery systems aim at exploiting a glycan-mediated targeting mechanism, similar to the UPEC invasion pathway, to increase bioavailability. This may be realized by conjugation of intravesically applied drugs or drug carriers to chosen plant lectins. Higher local drug concentrations in or nearby bacterial reservoirs may be gained, with higher chances for complete eradication. In this study, preliminary parameters to clarify the potential of this biorecognitive approach were evaluated. Glycan-triggered interaction cascades and uptake processes of several plant lectins with distinct carbohydrate specificities were characterized, and wheat germ agglutinin (WGA) could be identified as the most promising targeter for crossing the urothelial membrane barrier. In partially differentiated primary cells, intracellular accumulation sites were largely identical for GlcNAc- and Mannose-specific lectins. This indicates that WGA-mediated delivery may also enter host cells via the FimH-dependent uptake pathway.
机译:尿路感染(UTI)是最常见的细菌感染。在越来越多的情况下,病原体(多重)抗性通过标准疗法阻碍了持久治疗的成功。在功能水平上,尿路致病性大肠杆菌(UPEC)的有效组织定植机制损害了尿液排出的抗生素的活性。先进的药物输送系统旨在利用类似于UPEC入侵途径的聚糖介导的靶向机制来提高生物利用度。这可以通过将膀胱内施用的药物或药物载体与选定的植物凝集素缀合来实现。可能会在细菌库中或附近获得更高的局部药物浓度,从而有更大的机会彻底根除。在这项研究中,初步参数阐明了这种生物识别方法的潜力。糖触发的相互作用级联和几种具有不同碳水化合物特异性的植物凝集素的摄取过程进行了表征,小麦胚芽凝集素(WGA)可以被认为是穿越尿道上皮膜屏障的最有希望的目标。在部分分化的原代细胞中,GlcNAc和甘露糖特异性凝集素的细胞内积累位点基本相同。这表明WGA介导的传递也可能通过FimH依赖性摄取途径进入宿主细胞。

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