[Prevalence of Types TEM, SHV and CTX-M βLES Among Pathogens of Chronic Pyelonephritis]

Insights

Uropathogens increasingly resist β-lactam antibiotics due to plasmid-induced β-lactamases. Identifying TEM, SHV, and CTX-M types is crucial for effective antibiotic selection in urinary tract infections.

Area of Science:

  • Microbiology
  • Molecular Biology
  • Clinical Medicine

Context:

  • Rising antimicrobial resistance in uropathogens is a significant global health concern.
  • Plasmid-mediated β-lactamase production is a primary mechanism for resistance to β-lactam antibiotics.
  • Urinary tract infections (UTIs) are commonly caused by bacteria, with increasing resistance complicating treatment.

Purpose:

  • To identify the prevalence and types of plasmid-encoded β-lactamases (TEM, SHV, CTX-M) in uropathogenic bacteria.
  • To determine the antimicrobial resistance patterns associated with these β-lactamase-producing strains.
  • To assess the susceptibility of these resistant uropathogens to various antibiotic classes.

Summary:

  • 30% of 115 uropathogen isolates produced β-lactamases, with blaTEM and blaCTX-M genes being most common.
  • Resistant strains showed high resistance to ampicillin, ciprofloxacin, levofloxacin, and gentamicin.
  • β-lactamase-producing strains remained largely susceptible to meropenem, nitroxolin, phosphomycin, and amikacin.

Impact:

  • The study highlights the widespread distribution of plasmid-mediated resistance genes among uropathogens.
  • Detecting plasmid-induced β-lactamases is vital for guiding empirical antibiotic therapy choices.
  • Understanding resistance mechanisms aids in developing strategies to combat antimicrobial resistance in UTIs.

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