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D组链球菌对β-内酰胺类抗生素固有耐药机制的研究。

Studies on the mechanism of intrinsic resistance to beta-lactam antibiotics in group D streptococci.

作者信息

Williamson R, Calderwood S B, Moellering R C, Tomasz A

出版信息

J Gen Microbiol. 1983 Mar;129(3):813-22. doi: 10.1099/00221287-129-3-813.

Abstract

Six penicillin-binding proteins (PBPs) were detected in clinical isolates of each one of three group D streptococci: Streptococcus bovis, S. faecalis and S. faecium. When examined in whole organisms, the PBPs of S. faecium, the most penicillin-resistant species of group D streptococci, generally had lower affinities for the antibiotic than those of S. faecalis (intermediate penicillin resistance), which in turn were of lower affinity than those of S. bovis (penicillin-sensitive). On the other hand, no quantitative correlation could be established between the binding of penicillin to any one PBP or group of PBPs, and the penicillin MIC value for the corresponding micro-organism. Examination of the amounts of antibiotic bound and the rates of binding to PBPs of equal numbers of protoplasts and whole bacteria of S. faecalis and S. faecium, indicated that there was no permeability barrier to benzylpenicillin in the cell walls of these species. The lower antibacterial effectiveness of cephalothin compared with ampicillin in group D streptococci was paralleled by the higher concentrations of cephalothin needed in competition assays to inhibit the lower molecular size PBPs of these bacteria.

摘要

在三种D群链球菌(牛链球菌、粪肠球菌和屎肠球菌)的每一种临床分离株中均检测到六种青霉素结合蛋白(PBPs)。在完整生物体中检测时,屎肠球菌(D群链球菌中对青霉素耐药性最强的菌种)的PBPs对该抗生素的亲和力通常低于粪肠球菌(对青霉素具有中等耐药性)的PBPs,而粪肠球菌的PBPs对青霉素的亲和力又低于牛链球菌(对青霉素敏感)的PBPs。另一方面,无法在青霉素与任何一种PBP或一组PBP的结合与相应微生物的青霉素MIC值之间建立定量相关性。对等量粪肠球菌和屎肠球菌原生质体及完整细菌与PBPs结合的抗生素量和结合速率的检测表明,这些菌种的细胞壁对苄青霉素不存在通透性屏障。在D群链球菌中,头孢噻吩与氨苄西林相比抗菌效果较差,这与在竞争试验中抑制这些细菌较低分子大小的PBPs所需头孢噻吩的浓度较高是平行的。

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