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首页> 外文期刊>European Journal of Medicinal Chemistry: Chimie Therapeutique >Synthesis and structure-bactericidal activity relationships of non-ketolides: 9-Oxime clarithromycin 11,12-cyclic carbonate featured with three-to eight-atom-length spacers at 3-OH
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Synthesis and structure-bactericidal activity relationships of non-ketolides: 9-Oxime clarithromycin 11,12-cyclic carbonate featured with three-to eight-atom-length spacers at 3-OH

机译:非酮糖苷的合成和结构 - 杀菌活性关系:9-肟克罗米霉素11,12-环状碳酸酯,在3-oh的三到八个原子长度间隔物中呈现

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In general, potent non-ketolide versions of erythromycin possessed conformationally constricted two- or three-atom-length sidechains at 3-OH. Novel 14-membered non-ketolides possessing long spacers beyond three-atom length were evaluated for antibacterial activity. The most potent one is 34a, featuring a five-atom-length flexible linker from of a pyridine ring to the aglycone. Conversion of the pyridine of 34a to other aryl groups, changing the linker's length of 34a to longer or shorter ones, and variation of the linker flexibility to a rigid olefin or alkyne led to decreased antibacterial activity. The hybrids of macrolides and quinolones 28b, 31 and 34b possessing various sidechains, unlike their 15-membered counterparts, were ineffective compared to 34a. Similar to the marketed ketolide telithromycin, the non-ketolide 34a proved to be a time-dependent bactericidal agent, but it exhibited superior in vivo pharmacokinetic properties such as longer half-life, higher plasma concentration, lower clearance and shorter time to reach the highest drug concentration relative to telithromycin. Molecular docking suggested 34a might pi - pi interact with the bacterial ribosomal RNA base G2505Ec. This study suggested that the bacteriostatic agent erythromycin can be structurally modified to afford a new bactericidal chemotype that targets the ribosome and is superior to ciprofloxacin with regard to its minimum bactericidal concentration. (C) 2019 Elsevier Masson SAS. All rights reserved.
机译:一般而言,红霉素的强效非酮内酯在版本3-OH附体构象收缩两个或三个原子长度的侧链。具有长间隔超出三原子长度新颖14元非酮内酯为抗菌活性进行了评价。最有效的一种是34A,设有从吡啶环的糖苷配基的五原子长度的柔性接头。 34a的吡啶其他芳基基团,改变34a的接头的长度,以较长或较短的转换,以及所述接头灵活性变化到刚性烯烃或炔烃导致降低的抗菌活性。大环内酯类和喹诺酮类28B,31和34b具有不同的侧链,不像他们15-元对应物的杂交体,相比于图34A是无效的。类似于市售酮内酯泰利霉素,非酮内酯34A被证明是一个依赖于时间的杀菌剂,但它显示出在体内的药物动力学性质优于如更长的半衰期,更高的血浆浓度,较低的清除率和更短的时间,以达到最高的药物浓度相对于泰利霉素。分子对接建议34A威力PI - PI与细菌核糖体RNA碱基G2505Ec互动。这项研究表明,抑菌剂红霉素可以被结构修饰以得到新的杀菌化学型为目标的核糖体和优于就其最低杀菌浓度环丙沙星。 (c)2019年Elsevier Masson SAS。版权所有。

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