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Mycoplasma pneumoniae: Current Knowledge on Macrolide Resistance and Treatment
Sabine Pereyre1, Julien Goret1, Cécile Bébéar1
1USC EA 3671 Mycoplasmal and Chlamydial Infections in Humans, Univ. BordeauxBordeaux, France; USC EA 3671 Mycoplasmal and Chlamydial Infections in Humans, INRABordeaux, France; Laboratoire de Bactériologie, Centre Hospitalier Universitaire de BordeauxBordeaux, France.
Abstract:
Mycoplasma pneumoniae causes community-acquired respiratory tract infections, particularly in school-aged children and young adults. These infections occur both endemically and epidemically worldwide. M. pneumoniae lacks cell wall and is subsequently resistant to beta-lactams and to all antimicrobials targeting the cell wall. This mycoplasma is intrinsically susceptible to macrolides and related antibiotics, to tetracyclines and to fluoroquinolones. Macrolides and related antibiotics are the first-line treatment of M. pneumoniae respiratory tract infections mainly because of their low MIC against the bacteria, their low toxicity and the absence of contraindication in young children. The newer macrolides are now the preferred agents with a 7-to-14 day course of oral clarithromycin or a 5-day course of oral azithromycin for treatment of community-acquired pneumonia due to M. pneumoniae, according to the different guidelines worldwide. However, macrolide resistance has been spreading for 15 years worldwide, with prevalence now ranging between 0 and 15% in Europe and the USA, approximately 30% in Israel and up to 90-100% in Asia. This resistance is associated with point mutations in the peptidyl-transferase loop of the 23S rRNA and leads to high-level resistance to macrolides. Macrolide resistance-associated mutations can be detected using several molecular methods applicable directly from respiratory specimens. Because this resistance has clinical outcomes such as longer duration of fever, cough and hospital stay, alternative antibiotic treatment can be required, including tetracyclines such as doxycycline and minocycline or fluoroquinolones, primarily levofloxacin, during 7-14 days, even though fluoroquinolones and tetracyclines are contraindicated in all children and in children < 8 year-old, respectively. Acquired resistance to tetracyclines and fluoroquinolones has never been reported in M. pneumoniae clinical isolates but reduced susceptibility was reported in in vitro selected mutants. This article focuses on M. pneumoniae antibiotic susceptibility and on the development and the evolution of acquired resistance. Molecular detection of resistant mutants and therapeutic options in case of macrolide resistance will also be assessed.
Insights
Macrolide resistance in Mycoplasma pneumoniae is increasing globally, necessitating alternative treatments like tetracyclines or fluoroquinolones for respiratory infections. Molecular detection aids in identifying resistant strains.
Area of Science:
- Microbiology
- Infectious Diseases
- Pharmacology
Background:
- Mycoplasma pneumoniae is a common cause of respiratory infections worldwide, particularly in children and young adults.
- M. pneumoniae lacks a cell wall, making it resistant to beta-lactams but susceptible to macrolides, tetracyclines, and fluoroquinolones.
- Macrolides are the preferred first-line treatment due to efficacy, low toxicity, and suitability for pediatric use.
Purpose of the Study:
- To review the antibiotic susceptibility of Mycoplasma pneumoniae.
- To examine the development and spread of macrolide resistance.
- To discuss molecular detection methods and alternative therapeutic options.
Main Methods:
- Literature review focusing on Mycoplasma pneumoniae antibiotic resistance.
- Analysis of prevalence data for macrolide resistance globally.
- Assessment of molecular diagnostic techniques and alternative antibiotic therapies.
Main Results:
- Macrolide resistance in M. pneumoniae is increasing globally, with prevalence varying significantly by region (0-100%).
- Resistance is primarily caused by point mutations in the 23S rRNA, leading to high-level resistance.
- Alternative treatments like doxycycline or levofloxacin are effective but have age restrictions.
Conclusions:
- Rising macrolide resistance in M. pneumoniae poses a significant clinical challenge.
- Molecular detection of resistance is crucial for guiding treatment decisions.
- Alternative antibiotics are necessary, but their use must consider age-related contraindications.
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