The Use of Ketolides in Treatment of Upper Respiratory Tract Infections

George G. Zhanel1, Aleksandra K. Wierzbowski, PhD Hisanaga

  • 1Department of Medical Microbiology, Faculty of Medicine, University of Manitoba, MS673-Microbiology, Health Sciences Centre, 820 Sherbrook Street, Winnipeg, Manitoba R3A 1R9, Canada. ggzhanel@pcs.mb.ca

Insights

Increasing macrolide resistance in respiratory pathogens necessitates new treatments. Ketolides like telithromycin offer a promising solution, effectively targeting resistant bacteria and showing efficacy in clinical trials for upper respiratory tract infections.

Area of Science:

  • Microbiology
  • Pharmacology
  • Infectious Diseases

Background:

  • Rising macrolide antibiotic resistance in Streptococcus pneumoniae and Streptococcus pyogenes impacts community-acquired respiratory tract infection (RTI) treatment.
  • Novel antibacterial agents are needed to overcome resistance in common respiratory pathogens.

Purpose of the Study:

  • To introduce ketolides, a new class of antibacterials, with telithromycin as the first clinical example.
  • To highlight the structural modifications and mechanism of action of ketolides against macrolide-resistant bacteria.

Main Methods:

  • Review of surveillance studies on antibiotic resistance patterns.
  • Description of the novel chemical structure of ketolides, including telithromycin.
  • Summary of early clinical trial data on telithromycin's efficacy and safety.

Main Results:

  • Ketolides possess unique structural features (3-keto group, carbamate side chain) enhancing ribosomal binding and overcoming macrolide resistance.
  • Telithromycin demonstrates stability in acidic conditions, improving potential for gastric and cellular penetration.
  • Clinical trials indicate telithromycin's efficacy in treating upper RTIs, including those caused by macrolide-resistant S. pneumoniae and S. pyogenes.

Conclusions:

  • Telithromycin represents a viable therapeutic option for empiric treatment of upper RTIs.
  • The development of ketolides addresses the growing challenge of macrolide resistance in respiratory pathogens.
  • Continued increase in macrolide resistance supports the clinical utility of novel agents like telithromycin.

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