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首页> 外文期刊>ChemMedChem >Antivirulence Isoquinolone Mannosides: Optimization of the Biaryl Aglycone for FimH Lectin Binding Affinity and Efficacy in the Treatment of Chronic UTI
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Antivirulence Isoquinolone Mannosides: Optimization of the Biaryl Aglycone for FimH Lectin Binding Affinity and Efficacy in the Treatment of Chronic UTI

机译:抗毒性异喹诺酮甘露糖苷:联芳苷元对FimH凝集素结合亲和力和慢性尿路感染的疗效的优化。

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摘要

Uropathogenic E.coli (UPEC) employ the mannose-binding adhesin FimH to colonize the bladder epithelium during urinary tract infection (UTI). Previously reported FimH antagonists exhibit good potency and efficacy, but low bioavailability and a short half-life invivo. In a rational design strategy, we obtained an X-ray structure of lead mannosides and then designed mannosides with improved drug-like properties. We show that cyclizing the carboxamide onto the biphenyl B-ring aglycone of biphenyl mannosides into a fused heterocyclic ring, generates new biaryl mannosides such as isoquinolone 22 (2-methyl-4-(1-oxo-1,2-dihydroisoquinolin-7-yl)phenyl -d-mannopyranoside) with enhanced potency and invivo efficacy resulting from increased oral bioavailability. N-Substitution of the isoquinolone aglycone with various functionalities produced a new potent subseries of FimH antagonists. All analogues of the subseries have higher FimH binding affinity than unsubstituted lead 22, as determined by thermal shift differential scanning fluorimetry assay. Mannosides with pyridyl substitution on the isoquinolone group inhibit bacteria-mediated hemagglutination and prevent biofilm formation by UPEC with single-digit nanomolar potency, which is unprecedented for any FimH antagonists or any other antivirulence compounds reported to date.
机译:尿路致病性大肠杆菌(UPEC)在尿路感染(UTI)期间使用结合了甘露糖的粘附素FimH来定植在膀胱上皮中。以前报道的FimH拮抗剂具有良好的效能和功效,但生物利用度低,体内半衰期短。在合理的设计策略中,我们获得了铅甘露糖苷的X射线结构,然后设计了具有改善的类药物性质的甘露糖苷。我们显示将羧酰胺环化到联苯甘露糖苷的联苯B环糖苷配基上形成稠合的杂环,会生成新的联芳基甘露糖苷,例如异喹诺酮22(2-甲基-4-(1-氧代-1,2-二氢异喹啉-7-口服增强的口服生物利用度,从而具有更高的效价和体内功效。 N取代具有各种功能的异喹诺酮糖苷配基产生了一个新的FimH拮抗剂强效亚系列。该亚系列的所有类似物具有比未取代的铅22更高的FimH结合亲和力,这是通过热位移差示扫描荧光法测定的。异喹诺酮基团上有吡啶基取代的甘露糖苷可抑制细菌介导的血凝反应,并防止UPEC形成生物膜,其单位数纳摩尔浓度的效价对于任何FimH拮抗剂或迄今报道的任何其他抗毒化合物而言都是前所未有的。

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