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Prevalence and clonal characterization of Streptococcus pyogenes clinical isolates with reduced fluoroquinolone
Milagrosa Montes1, Esther Tamayo, Beatriz Orden
1Centro de Investigación Biomédica en Red Enfermedades Respiratorias (CIBERES), San Sebastian, Spain.
Abstract:
The aim of this study was to determine the prevalence and characteristics of non-fluoroquinolone (FQ)-susceptible Streptococcus pyogenes isolates and to study their mechanisms of resistance. We performed a prospective prevalence study with 468 isolates collected from 2005 to 2007 and a retrospective study that was based on the examination of existing data collected from 1999 to 2008. The retrospective study included data for isolates with high-level resistance (HR) to ciprofloxacin (MIC >or= 32 microg/ml) (HR isolates) and isolates with the same emm types as those reported in the literature with low-level resistance (LR) to ciprofloxacin (MICs, 2 to 8 microg/ml) (LR isolates, n = 205). Genetic characterization of the isolates was performed by means of emm typing and multilocus sequence typing. The prevalence of LR ranged from 1.9% in 2005 to 30.8% in 2007. This increase was mainly due to the circulation of an emm6 subtype (emm6.4) that represented 77.1% of the LR isolates in 2007. Notably, another emm6 subtype, also detected in 2007 (emm6.37), showed coresistance to 14- and 15-membered macrolides mediated by the mefA gene. Only three HR isolates were detected (isolates emm68.1/ST247/T3,13,B3264, emm77/ST399/T28, and emm28/ST52/T28), and all were identified in the retrospective study. Overall, the 673 isolates represented 25 emm types. All LR isolates were clustered into two emm types: emm6 (six emm6 subtypes) and emm75. All the 156 emm6 isolates had LR, harbored the Ser79/Ala mutation in the parC gene product, and had the same sequence type (ST), ST382. Most (21/33) of the emm75 isolates had LR, showed the Ser79/Phe plus Asp91/Asn double mutation in the parC gene product, and were ST150. The Asp91/Asn mutation by itself did not confer resistance to FQs.
Insights
Non-fluoroquinolone (FQ)-susceptible Streptococcus pyogenes, particularly emm6 subtypes, showed increasing low-level resistance (LR) from 2005-2007. Mechanisms involved specific parC gene mutations, with some strains also exhibiting macrolide co-resistance.
Area of Science:
- Microbiology
- Infectious Diseases
- Genetics
Background:
- Streptococcus pyogenes resistance to fluoroquinolones (FQs) is a growing concern.
- Understanding resistance mechanisms is crucial for effective treatment strategies.
Purpose of the Study:
- To determine the prevalence and characteristics of non-FQ-susceptible Streptococcus pyogenes.
- To investigate the genetic mechanisms underlying FQ resistance in these isolates.
Main Methods:
- Prospective and retrospective analysis of 673 Streptococcus pyogenes isolates collected between 1999 and 2008.
- emm typing and multilocus sequence typing for genetic characterization.
- Analysis of mutations in the parC gene associated with FQ resistance.
Main Results:
- Prevalence of low-level FQ resistance (LR) increased significantly from 1.9% in 2005 to 30.8% in 2007.
- The emm6 subtype (emm6.4) was the primary driver of LR, accounting for 77.1% of LR isolates in 2007.
- Specific parC gene mutations (Ser79/Ala or Ser79/Phe plus Asp91/Asn) were identified in LR isolates.
- One emm6 subtype also exhibited co-resistance to macrolides mediated by the mefA gene.
Conclusions:
- A notable increase in non-FQ-susceptible Streptococcus pyogenes, particularly emm6 subtypes, occurred between 2005 and 2007.
- Specific parC mutations are key mechanisms for FQ resistance in Streptococcus pyogenes.
- The emergence of macrolide co-resistance in FQ-resistant strains warrants further monitoring.
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