Molecular Characterization of High-Level Aminoglycoside Resistance among Enterococcus Species

Harish Manoharan1, Aishwarya K V Lalitha1, Shanthi Mariappan1

  • 1Department of Microbiology, Sri Ramachandra Institute for Higher Education and Research, Chennai, Tamil Nadu, India.

Insights

High-level aminoglycoside resistance is common in clinical Enterococci. Polymerase chain reaction (PCR) is crucial for detecting aminoglycoside modifying enzymes (AMEs) as phenotypic methods may miss resistant strains, preventing therapeutic failure.

Area of Science:

  • Medical Microbiology
  • Antimicrobial Resistance

Background:

  • Enterococci are significant nosocomial pathogens.
  • High-level aminoglycoside resistance in enterococci is often plasmid-mediated, involving aminoglycoside modifying enzymes (AMEs).
  • The bifunctional enzyme AAC(6')-APH(2″), encoded by aac(6')-Ie-aph(2″)-Ia, is a primary cause of high-level gentamicin resistance.

Purpose of the Study:

  • To investigate the prevalence and patterns of AME genes in clinical Enterococci isolates.
  • To compare genotypic detection of AMEs with phenotypic antibiotic susceptibility testing.

Main Methods:

  • Phenotypic antibiotic susceptibility testing (disc diffusion, MIC) was performed on 150 clinical Enterococci isolates.
  • Polymerase chain reaction (PCR) was used to screen for specific AME genes: aac(6')-Ie-aph(2″)-Ia, aph(2″)-Ib, aph(2″)-Ic, aph(2″)-Id, and aph(3')-IIIa.

Main Results:

  • 51.3% of isolates showed high-level gentamicin resistance.
  • The aph(3')-IIIa gene was the most prevalent AME, followed by aac(6')-Ie-aph(2″)-Ia.
  • The combination of both genes was found in 44.1% of isolates.
  • A significant proportion of isolates showed discrepancies between genotypic and phenotypic resistance patterns.

Conclusions:

  • High-level aminoglycoside resistance is widespread in Enterococci within the studied region.
  • PCR detection of AMEs is essential, as phenotypic methods may fail to identify all resistant strains.
  • Failure to detect AME genes can lead to therapeutic failures when treating Enterococcal infections.