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FimH拮抗剂:磷酸前药可提高口服生物利用度。

FimH Antagonists: Phosphate Prodrugs Improve Oral Bioavailability.

作者信息

Kleeb Simon, Jiang Xiaohua, Frei Priska, Sigl Anja, Bezençon Jacqueline, Bamberger Karen, Schwardt Oliver, Ernst Beat

机构信息

Institute of Molecular Pharmacy, Pharmacenter, University of Basel , Klingelbergstrasse 50, 4056 Basel, Switzerland.

出版信息

J Med Chem. 2016 Apr 14;59(7):3163-82. doi: 10.1021/acs.jmedchem.5b01923. Epub 2016 Mar 18.

Abstract

The widespread occurrence of urinary tract infections has resulted in frequent antibiotic treatment, contributing to the emergence of antimicrobial resistance. Alternative approaches are therefore required. In the initial step of colonization, FimH, a lectin located at the tip of bacterial type 1 pili, interacts with mannosylated glycoproteins on the urothelial mucosa. This initial pathogen/host interaction is efficiently antagonized by biaryl α-d-mannopyranosides. However, their poor physicochemical properties, primarily resulting from low aqueous solubility, limit their suitability as oral treatment option. Herein, we report the syntheses and pharmacokinetic evaluation of phosphate prodrugs, which show an improved aqueous solubility of up to 140-fold. In a Caco-2 cell model, supersaturated solutions of the active principle were generated through hydrolysis of the phosphate esters by brush border-associated enzymes, leading to a high concentration gradient across the cell monolayer. As a result, the in vivo application of phosphate prodrugs led to a substantially increased Cmax and prolonged availability of FimH antagonists in urine.

摘要

尿路感染的广泛发生导致频繁使用抗生素治疗,这促使了抗菌药物耐药性的出现。因此,需要其他替代方法。在细菌定植的初始步骤中,位于1型菌毛尖端的凝集素FimH与尿路上皮粘膜上的甘露糖基化糖蛋白相互作用。联芳基α-D-甘露吡喃糖苷可有效拮抗这种初始的病原体/宿主相互作用。然而,它们较差的物理化学性质,主要是由于水溶性低,限制了它们作为口服治疗选择的适用性。在此,我们报告了磷酸酯前药的合成和药代动力学评估,其水溶性提高了140倍。在Caco-2细胞模型中,通过刷状缘相关酶水解磷酸酯产生了活性成分的过饱和溶液,从而导致跨细胞单层的高浓度梯度。结果,磷酸酯前药的体内应用导致尿液中FimH拮抗剂的Cmax显著增加且可用性延长。

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