Linezolid-resistant Staphylococcus aureus isolated from 2006 through 2008 at six hospitals in Japan

Insights

Linezolid resistance in methicillin-resistant Staphylococcus aureus (MRSA) emerged in Japan. Mutations in 23S ribosomal RNA (rRNA) genes correlated with resistance levels, suggesting potential nosocomial spread.

Area of Science:

  • Microbiology
  • Infectious Diseases
  • Genetics

Background:

  • Linezolid is crucial for treating methicillin-resistant Staphylococcus aureus (MRSA) infections.
  • Limited use of linezolid was approved in Japan in 2006.
  • Monitoring for linezolid-resistant MRSA is essential.

Purpose of the Study:

  • To investigate the prevalence and characteristics of linezolid-resistant MRSA in Japan.
  • To identify genetic mutations associated with linezolid resistance.
  • To assess the potential for nosocomial transmission.

Main Methods:

  • Collected 11 linezolid-resistant MRSA clinical isolates from 2006-2008.
  • Determined minimal inhibitory concentrations (MICs) for linezolid.
  • Analyzed mutations in 23S ribosomal RNA (rRNA) genes using PCR.
  • Classified strains using pulsed-field gel electrophoresis (PFGE).

Main Results:

  • All isolates exhibited linezolid MICs ranging from 8 to 64 μg/ml.
  • A G2576T mutation in 23S rRNA genes was present in all strains.
  • The number of mutated 23S rRNA gene copies correlated with linezolid MIC.
  • Eleven strains belonged to seven distinct clones, with some patients having no prior linezolid exposure.

Conclusions:

  • The level of linezolid resistance in MRSA is associated with the number of mutations in 23S rRNA genes.
  • Nosocomial infections with linezolid-resistant MRSA are a concern.
  • Continued surveillance for linezolid resistance is critical.

Related Concept Videos

Clinical Significance of Antibiotic Resistance01:25

Clinical Significance of Antibiotic Resistance

Methicillin-resistant Staphylococcus aureus (MRSA) presents a critical public health threat, arising from its capacity to resist β-lactam antibiotics due to acquisition of the mecA gene within the staphylococcal cassette chromosome mec (SCCmec). This gene encodes penicillin-binding protein 2a (PBP2a), which impairs binding efficacy of methicillin and other β-lactams. MRSA has evolved into distinct clonal lineages impacting humans and animals alike, reinforcing its significance within...
33
Mechanism of Antibiotic Resistance in MRSA01:25

Mechanism of Antibiotic Resistance in MRSA

Antibiotic resistance in bacteria arises when microorganisms evolve the ability to withstand drugs designed to kill them or inhibit their growth, rendering once-effective treatments useless. This phenomenon, driven by genetic change and selection under antibiotic exposure, poses a profound threat to modern medicine. Mechanisms include drug-inactivating enzymes (e.g., β-lactamases), efflux pumps that eject antibiotics, mutations altering antibiotic targets, decreased drug uptake, and...
99
Staphylococcal Skin Infections01:29

Staphylococcal Skin Infections

Staphylococcus aureus is a Gram-positive coccus that resides harmlessly on the skin and mucous membranes of healthy individuals. When the skin barrier is breached, it can shift from a commensal to an opportunistic pathogen. This transition is facilitated by surface adhesins, such as clumping factor B and S. aureus surface protein G (SasG), which bind to structural proteins, including loricrin and cytokeratin, in the damaged epidermis. Protein A, another key factor, binds the Fc region of...
62
Antimicrobial Effectiveness01:28

Antimicrobial Effectiveness

The effectiveness of antimicrobial agents depends on various factors influencing their ability to eliminate microbial populations. Larger microbial populations require more time for complete eradication, emphasizing the importance of population size analysis when evaluating antimicrobial efficacy.Microbial resistance to antimicrobial agents varies significantly. Highly resilient microorganisms include endospores, gram-negative bacteria, and non-enveloped viruses, while prions are exceptionally...
2.0K
Development of Antibiotic Resistance01:30

Development of Antibiotic Resistance

Antibiotic resistance is a major public health concern that arises when bacteria evolve mechanisms to withstand the effects of antibiotic treatments. This resistance can be intrinsic, acquired through genetic mutations, or transferred between bacteria via horizontal gene transfer. The development of antibiotic resistance poses significant challenges in treating bacterial infections and necessitates ongoing research to develop new therapeutic strategies.Intrinsic resistance occurs when bacterial...
1.9K
Antibiotic Selection00:57

Antibiotic Selection

Overview
62.1K