2007Journal of ChemotherapyRequires access

Antipneumococcal Activity of Ertapenem Compared with Gatifloxacin in a Temperature-Sensitive Murine Model of Acute Pneumonia

Joyce C. S. de Azavedo, Linda Dresser, Carla Duncan, S.E. Walker, Donald E. Low, Darrin J. Bast

Open publisher page 3 citations

Abstract

Fluoroquinolone-resistance among pneumococci is low; however the number of isolates with a single ParC mutation has increased. Consequently, more potent agents are needed to minimize resistance selection. We investigated the efficacy of ertapenem versus gatifloxacin in a temperature-sensitive mouse model of pneumonia caused by a wildtype Streptococcus pneumoniae strain (A66) and an isogenic mutant with a ParC mutation (R222). Treatment started at 24 h and lasted for 5 days. Temperature was used to assess disease progression before and during treatment. Of mice infected with either strain and treated at an early stage of infection, 79-94% of those given ertapenem survived compared with 56-61% given gatifloxacin. If treated at a later stage, the results were similar for ertapenem (71-84%) but were considerably lower for gatifloxacin (17-33%). Ertapenem was as bactericidal as gatifloxacin against A66 (94-100% vs 92-100%) but was superior to gatifloxacin against R222 (95-100% vs 50-77%). Ertapenem is a promising new treatment for patients with pneumococcal pneumonia, including those at risk of infection with a fluoroquinolone-resistant strain.

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What this paper is about

Fluoroquinolone-resistance among pneumococci is low; however the number of isolates with a single ParC mutation has increased. Consequently, more potent agents are needed to minimize resistance selection. We investigated the efficacy of ertapenem versus gatifloxacin in a temperature-sensitive mouse model of pneumonia caused by a wildtype Streptococcus pneumoniae strain (A66) and an isogenic mutant with a ParC mutation (R222). Treatment started at 24 h and lasted for 5 days. Temperature was used to assess disease progression before and during treatment. Of mice infected with either strain and treated at an early stage of infection, 79-94% of those given ertapenem survived compared with 56-61% given gatifloxacin. If treated at a later stage, the results were similar for ertapenem (71-84%) but were considerably lower for gatifloxacin (17-33%). Ertapenem was as bactericidal as gatifloxacin against A66 (94-100% vs 92-100%) but was superior to gatifloxacin against R222 (95-100% vs 50-77%). Ertapenem is a promising new treatment for patients with pneumococcal pneumonia, including those at risk of infection with a fluoroquinolone-resistant strain.

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Available abstract

Fluoroquinolone-resistance among pneumococci is low; however the number of isolates with a single ParC mutation has increased. Consequently, more potent agents are needed to minimize resistance selection. We investigated the efficacy of ertapenem versus gatifloxacin in a temperature-sensitive mouse model of pneumonia caused by a wildtype Streptococcus pneumoniae strain (A66) and an isogenic mutant with a ParC mutation (R222). Treatment started at 24 h and lasted for 5 days. Temperature was used to assess disease progression before and during treatment. Of mice infected with either strain and treated at an early stage of infection, 79-94% of those given ertapenem survived compared with 56-61% given gatifloxacin. If treated at a later stage, the results were similar for ertapenem (71-84%) but were considerably lower for gatifloxacin (17-33%). Ertapenem was as bactericidal as gatifloxacin against A66 (94-100% vs 92-100%) but was superior to gatifloxacin against R222 (95-100% vs 50-77%). Ertapenem is a promising new treatment for patients with pneumococcal pneumonia, including those at risk of infection with a fluoroquinolone-resistant strain.

Key concepts: Gatifloxacin, Ertapenem, Streptococcus pneumoniae, Microbiology, Pneumonia, Medicine, Pneumolysin, Antibiotics

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