首页> 外文期刊>Arzneimittel-Forschung: =Drug Research >Synthesis and biological activity of tris- and tetrakiscatecholate siderophores based on poly-aza alkanoic acids or alkylbenzoic acids and their conjugates with beta-lactam antibiotics.
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Synthesis and biological activity of tris- and tetrakiscatecholate siderophores based on poly-aza alkanoic acids or alkylbenzoic acids and their conjugates with beta-lactam antibiotics.

机译:基于聚氮杂链烷酸或烷基苯甲酸及其与β-内酰胺类抗生素的结合物的三和四基儿茶酚酸酯铁载体的合成及生物学活性

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摘要

New linear and tripodal tri-aza- and tetra-aza alkanoic acids or alkylbenzoic acids were prepared as basic structures for siderophore mimetics from polyamines and oxocarbonic acids or formylbenzoic acids by catalytic hydrogenation. From these acids acetylated tris- and tetrakiscatecholates or 8-acyloxy-2,4-dioxo-benzoxazine derivatives as well as compounds with spacer groups were synthesized. These derivatives were coupled with ampicillin, amoxicillin, bacampicillin or cefaclor to new siderophore antibiotic conjugates. Most of the catecholate derivatives showed high siderophore activities in strains of Pseudomonas aeruginosa and Escherichia coli in a growth promotion assay under iron limitation conditions. The beta-lactam conjugates were highly active in vitro against Gram-negative bacteria correlating to the siderophore activity of the catecholate moiety and depending on the beta-lactam part. One ampicillin conjugate based on 5-(aminoethyl)-2,5,8-triazaalkylbenzoic acid was highly active against Gram-negative and Gram-positive bacteria. It was shown that conjugates with enhanced activity against Gram-negative bacteria use active iron uptake routes to penetrate the bacterial outer membrane barrier. Correlations between structure and biological activity were studied.
机译:制备了新的直链和三脚架的三氮杂和四氮杂链烷酸或烷基苯甲酸,作为多胺模拟物的基本结构,由多胺和氧代碳酸或甲酰基苯甲酸通过催化加氢制得。由这些酸合成乙酰化的三和四儿茶酚酸酯或8-酰氧基-2,4-二氧代-苯并恶嗪衍生物以及具有间隔基的化合物。这些衍生物与氨苄青霉素,阿莫西林,巴坎西林或头孢克洛偶联成新的铁载体抗生素结合物。在铁限制条件下的生长促进试验中,大多数儿茶酚酸酯衍生物在铜绿假单胞菌和大肠杆菌中显示出较高的铁载体活性。 β-内酰胺结合物在体外对革兰氏阴性细菌具有高活性,这与儿茶酚酯部分的铁载体活性有关,并取决于β-内酰胺部分。一种基于5-(氨乙基)-2,5,8-三氮烷基烷基苯甲酸的氨苄青霉素结合物对革兰氏阴性菌和革兰氏阳性菌具有很高的活性。结果表明,对革兰氏阴性细菌具有增强活性的结合物利用活性铁吸收途径穿透细菌外膜屏障。研究了结构与生物活性之间的关系。

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