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林可酰胺类:化学结构、生物合成、作用机制、耐药性和应用。

Lincosamides: Chemical structure, biosynthesis, mechanism of action, resistance, and applications.

机构信息

Institute of Microbiology, Academy of Sciences of the Czech Republic, 142 20 Prague 4, Czech Republic.

Institute of Microbiology, Academy of Sciences of the Czech Republic, 142 20 Prague 4, Czech Republic.

出版信息

Biochem Pharmacol. 2017 Jun 1;133:20-28. doi: 10.1016/j.bcp.2016.12.001. Epub 2016 Dec 7.

Abstract

Lincomycin and its derivatives are antibiotics exhibiting biological activity against bacteria, especially Gram-positive ones, and also protozoans. Lincomycin and its semi-synthetic chlorinated derivative clindamycin are widely used in clinical practice. Both antibiotics are bacteriostatic, inhibiting protein synthesis in sensitive bacteria; however, at higher concentrations, they may be bactericidal. Clindamycin is usually much more active than lincomycin in the treatment of bacterial infections, in particular those caused by anaerobic species; it can also be used for the treatment of important protozoal diseases, e.g. malaria, most effectively in combination with other antibiotic or non-antibiotic antimicrobials (primaquine, fosfidomycin, benzoyl peroxide). Chemical structures of lincosamide antibiotics and the biosynthesis of lincomycin and its genetic control have been summarized and described. Resistance to lincomycin and clindamycin may be caused by methylation of 23S ribosomal RNA, modification of the antibiotics by specific enzymes or active efflux from the bacterial cell.

摘要

林可霉素及其衍生物是一类具有生物活性的抗生素,可对抗细菌,尤其是革兰氏阳性菌和原生动物。林可霉素及其半合成氯化衍生物克林霉素在临床实践中被广泛应用。这两种抗生素均具有抑菌作用,可抑制敏感菌的蛋白质合成;但在较高浓度下,它们也可能具有杀菌作用。克林霉素在治疗细菌感染方面通常比林可霉素更有效,特别是治疗由厌氧菌引起的感染;它还可用于治疗重要的原生动物疾病,如疟疾,与其他抗生素或非抗生素抗菌药物(如伯氨喹、磷霉素、过氧化苯甲酰)联合使用效果最佳。本文总结并描述了林可酰胺类抗生素的化学结构、林可霉素的生物合成及其遗传调控。林可霉素和克林霉素的耐药性可能是由 23S 核糖体 RNA 的甲基化、抗生素的特定酶修饰或细菌细胞的主动外排引起的。

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