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The aim of this study was to assess the most frequent multidrug resistant (MDR) profiles of the main bacteria implicated in community-acquired urinary tract infections (UTI).
The presence of quinolones in 50% of the most common MDR profiles and the high resistance among the main bacteria implicated in community-acquired UTI may be explained by the high consumption levels.
The most common MDR profile observed for the main bacteria implicated in UTI, which includes resistance to "PQS," was the same observed for the bacteria isolated from male and female patients, but the incidence of this MDR profile was higher in bacteria isolated from female patients (12.9%) than from male (11.9%) ones.
The MDR profile more common (which includes resistance to "PQS") in the main bacteria implicated in UTI was the same for bacteria isolated from adolescents, young adults, adults, and elderly patients and its incidence increased with the age of the patients.
To analyze the antibiotic resistance pattern of the main bacteria implicated in UTI, preliminary studies were performed to identify the most frequently used antimicrobials for each uropathogen, including in the study, the antimicrobials that were used in more than 85% of the cases.
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The most common MDR profile (resistance to "PQS") was found in five of the main ten bacteria implicated in UTI (E.
This study aimed to identify the most frequent multidrug resistance profiles of the main ten bacteria implicated in UTI acquired at the community in Aveiro District (Portugal).
To analyze the bacterial multidrug resistance (MDR) patterns of the main ten bacteria implicated in UTI, only the antibiotics that were used in more than 85% of the cases were included.
The quinolones, although included in the most common MDR profile, were the antimicrobial class less frequent in the 6 MDR profiles observed in the main ten bacteria implicated in UTI but were yet present in 50% of the 6 MDR profiles.
The most common MDR profile (among those presenting an incidence higher than 5%) includes resistance to penicillins, quinolones, and sulfonamides (PQS) and was found in five of the main ten bacteria implicated in UTI (responsible for 80.2% of all UTI), namely, in E. coli (21.7%), S. aureus (15.2%), Klebsiella spp. (6.8%), E. faecalis (12%), and S. epidermidis (28.2%).
Fifteen years ago, Mark Lyte and his colleagues, a microbiology team from the Minneapolis Medical Research Foundation, studied the effect of infecting mice with campylobacter, one of the bacteria implicated in the Walkerton epidemic.
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