1987Antimicrobial Agents and ChemotherapyOpen access

Early effects of beta-lactams on aminoglycoside uptake, bactericidal rates, and turbidimetrically measured growth inhibition in Pseudomonas aeruginosa

Michael H. Miller, Stuart A. Feinstein, R T Chow

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Abstract

In vitro studies of tircarcillin or cefsulodin combined with [3H]tobramycin were performed with Pseudomonas aeruginosa. The rate of bacterial killing, the uptake of tobramycin, and the effects on optical density were measured. Both beta-lactams increased the uptake of subinhibitory concentrations of tobramycin. This result was quantitatively associated with a 2- to 4-h time-kill potentiation and confirmed earlier studies on the mechanism of beta-lactam-aminoglycoside synergy in Escherichia coli (P. H. Plotz and B. D. Davis, Science 135:1067-1068, 1962).

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What this paper is about

In vitro studies of tircarcillin or cefsulodin combined with [3H]tobramycin were performed with Pseudomonas aeruginosa. The rate of bacterial killing, the uptake of tobramycin, and the effects on optical density were measured. Both beta-lactams increased the uptake of subinhibitory concentrations of tobramycin. This result was quantitatively associated with a 2- to 4-h time-kill potentiation and confirmed earlier studies on the mechanism of beta-lactam-aminoglycoside synergy in Escherichia coli (P. H. Plotz and B. D. Davis, Science 135:1067-1068, 1962).

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Available abstract

In vitro studies of tircarcillin or cefsulodin combined with [3H]tobramycin were performed with Pseudomonas aeruginosa. The rate of bacterial killing, the uptake of tobramycin, and the effects on optical density were measured. Both beta-lactams increased the uptake of subinhibitory concentrations of tobramycin. This result was quantitatively associated with a 2- to 4-h time-kill potentiation and confirmed earlier studies on the mechanism of beta-lactam-aminoglycoside synergy in Escherichia coli (P. H. Plotz and B. D. Davis, Science 135:1067-1068, 1962).

Key concepts: Tobramycin, Aminoglycoside, Cefsulodin, Pseudomonas aeruginosa, Microbiology, Gentamicin, Escherichia coli, Antibacterial agent

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