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首页> 外文期刊>Anti-infective agents in medicinal chemistry >Genetic Determinants of Tetracycline Resistance and their Effect on Tetracycline and Glycylcycline Antibiotics
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Genetic Determinants of Tetracycline Resistance and their Effect on Tetracycline and Glycylcycline Antibiotics

机译:四环素抗性的遗传决定因素及其对四环素和糖基环素抗生素的影响

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摘要

Tetracycline class antibiotics have been a hallmark in terms of safety profile and spectrum of activity for nearly 60 years. Multiple resistance mechanisms have evolved to counter the tetracyclines with both of the chief mechanisms -efflux and ribosomal protection - widely spread in Gram-positive and Gram-negative organisms. The utility of the tetracyclines as growth promoters in domesticated food animals as well as for pest control in aquaculture and horticulture has resulted in the dissemination of tetracycline resistance determinants in the environment, which may act as a reservoir for resistance genes. Focused chemistry efforts to develop tetracycline derivatives not subject to the efflux and ribosomal protection mechanism resulted in the discovery of tigecycline, the first in class glycylcycline antibiotic. Tigecycline has successfully reclaimed the spectrum, safety and efficacy of the tetracyclines.
机译:近60年以来,四环素类抗生素一直是安全性和活性谱的标志。已经开发出了多种抗药性机制,可以通过革兰氏阳性和革兰氏阴性生物中广泛传播的两种主要机制(外流和核糖体保护)来对抗四环素。四环素在家养食用动物中作为生长促进剂的用途以及在水产养殖和园艺中用于害虫防治的用途已导致四环素抗性决定簇在环境中的传播,这可能是抗性基因的储存库。为了开发不受外排和核糖体保护机制影响的四环素衍生物,化学方面的重点努力导致了首个糖基环素抗生素tigecycline的发现。 Tigecycline已成功回收四环素的光谱,安全性和功效。

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