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青霉素结合蛋白的过量产生并非粪肠球菌对青霉素耐药的唯一机制。

Overproduction of a penicillin-binding protein is not the only mechanism of penicillin resistance in Enterococcus faecium.

作者信息

Klare I, Rodloff A C, Wagner J, Witte W, Hakenbeck R

机构信息

Robert-Koch Institut des Bundesgesundheitsamtes, Wernigerode, Germany.

出版信息

Antimicrob Agents Chemother. 1992 Apr;36(4):783-7. doi: 10.1128/AAC.36.4.783.

Abstract

In 1989 and 1990, a large number of ampicillin-resistant strains of Enterococcus faecium were isolated from infected patients treated at intensive care units in Berlin, Germany. Twenty-five clinical isolates, including five different biotypes as classified by acid production from various sugars and a wide range of susceptibilities to ampicillin (MICs between 0.5 and 128 micrograms/ml), were selected for a detailed analysis of penicillin-binding proteins (PBPs). All strains contained a slowly reacting PBP with low penicillin affinity known to be present in enterococci. Overproduction of this PBP relative to susceptible isolates was noted, especially in all strains for which the MIC of ampicillin was 8 micrograms/ml, to a lesser degree in the more resistant strains, but not at all in the three highly resistant isolates for which the MIC was 128 micrograms/ml. In these three strains, this PBP appears to have a reduced affinity for beta-lactams. The results suggest that overproduction of PBP 6 correlates only with intermediate resistance levels and that higher resistance is mediated by yet another, still unknown mechanism, probably including reduction of beta-lactam affinity in one or more PBPs.

摘要

1989年和1990年,从德国柏林重症监护病房接受治疗的感染患者中分离出大量耐氨苄西林的粪肠球菌菌株。选择了25株临床分离株进行青霉素结合蛋白(PBPs)的详细分析,这些分离株包括根据各种糖产酸分类的5种不同生物型,以及对氨苄西林的广泛敏感性(MIC在0.5至128微克/毫升之间)。所有菌株都含有一种反应缓慢、对青霉素亲和力低的PBP,已知存在于肠球菌中。相对于敏感分离株,该PBP过量产生,尤其是在所有氨苄西林MIC为8微克/毫升的菌株中,在耐药性更强的菌株中程度较轻,但在MIC为128微克/毫升的三个高度耐药分离株中则完全没有。在这三个菌株中,这种PBP对β-内酰胺的亲和力似乎降低了。结果表明,PBP 6的过量产生仅与中度耐药水平相关,而更高的耐药性是由另一种尚不清楚的机制介导的,可能包括一个或多个PBPs中β-内酰胺亲和力的降低。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/efa0/189409/80b578660950/aac00038-0121-a.jpg

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