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Updated: Aug 24, 2026

Microbiological Rapid On-Site Evaluation for Pulmonary Infectious Diseases
Published on: March 1, 2024
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
Abstract:
Recent surveillance studies suggest that the incidence of resistance to macrolide antibiotics in common community-acquired respiratory tract pathogens, particularly Streptococcus pneumoniae and Streptococcus pyogenes, is increasing and limiting the usefulness of these drugs. The ketolides, of which telithromycin is the first to be available for clinical use (but not yet in the United States), represent a new class of antibacterials developed specifically to combat respiratory tract pathogens that have acquired resistance to macrolides. The ketolides possess innovative structural modifications, a 3-keto group and a large N-substituted C11, C12-carbamate side chain. This novel structure allows ketolides, which are inhibitors of protein synthesis, to exert a more effective interaction with domain II of the 23S rRNA, enhancing binding to bacterial ribosomes and allowing binding to macrolide-lincosamide-streptogramin B-resistant ribosomes. This novel chemical structure also promotes greater stability of telithromycin in acid conditions, providing the potential for greater stability in gastric fluid and at cellular/tissue levels. Early clinical trials support the bacteriologic and clinical efficacy of telithromycin in the treatment of upper respiratory tract infections (RTIs) such as streptococcal pharyngitis and acute sinusitis, including infections caused by macrolide-resistant S. pneumoniae and S. pyogenes. Common adverse side effects associated with telithromycin are predominantly gastrointestinal, usually of mild to moderate severity, and rarely involve withdrawal of the drug. Telithromycin represents an attractive option for the empiric treatment of upper RTIs, especially as resistance to macrolides is likely to continue to increase.
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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