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Published on: February 9, 2011
Overview of anaerobic infections in children and their treatment
1Georgetown University School of Medicine, Washington DC, USA.
Insights
Anaerobic bacteria cause common childhood infections, often missed due to difficult isolation. Growing antimicrobial resistance complicates treatment, requiring careful antibiotic selection for effective management.
Area of Science:
- Pediatric Infectious Diseases
- Microbiology
- Antimicrobial Resistance
Background:
- Anaerobic bacteria are prevalent in human flora and frequently cause pediatric infections.
- These infections can occur systemically and are often associated with skin and mucous membrane sites.
- Neonates are susceptible to anaerobic colonization and infections.
Purpose of the Study:
- To highlight the challenges in diagnosing and managing anaerobic bacterial infections in children.
- To discuss the spectrum of anaerobic infections in pediatric populations.
- To review current antimicrobial strategies and emerging resistance patterns.
Main Methods:
- Review of anaerobic bacterial infections in pediatric patients.
- Analysis of common sites and types of anaerobic infections.
- Evaluation of antimicrobial susceptibility data and treatment guidelines.
Main Results:
- Anaerobic infections are diverse, affecting multiple body sites including the CNS, abdomen, and soft tissues.
- Neonatal infections like cellulitis, pneumonia, and bacteremia can be caused by anaerobes.
- Increasing antimicrobial resistance is noted for clindamycin, cephamycins, and moxifloxacin against key anaerobic strains.
Conclusions:
- Effective management of anaerobic infections requires timely diagnosis and appropriate antimicrobial therapy.
- Polymicrobial infections necessitate broad-spectrum coverage against both aerobic and anaerobic pathogens.
- Awareness of regional resistance patterns is crucial for optimizing antibiotic choices against anaerobic bacteria.
Abstract:
Anaerobic bacteria can cause many infections in children. Because they predominant in the normal human skin and mucous membranes bacterial flora, they are often associated with bacterial infections that originate from these sites. They are difficult to isolate from infectious sites, and are frequently missed. Anaerobic infections can occur in all body sites, including the central nervous system, oral cavity, head and neck, chest, abdomen, pelvis, skin, and soft tissues. Anaerobes colonize the newborn after birth and have been isolated in several types of neonatal infections. These include cellulitis of the site of fetal monitoring, neonatal aspiration pneumonia, bacteremia, conjunctivitis, omphalitis, and infant botulism. Management of anaerobic infection is challenging because of the slow growth of these bacteria, by their polymicrobial nature and by the growing antimicrobial resistance of anaerobic. Antimicrobial therapy may be the only treatment required, and may also be an adjunct to a surgical approach. Polymicrobial aerobic-anaerobic infection generally requires delivering antimicrobial therapy effective against all pathogens. The antibiotics with the greatest activity against anaerobes include carbapenems, beta-lactam/beta-lactamase inhibitor combinations, metronidazole, and chloramphenicol. Antimicrobial resistance is growing among anaerobic bacteria. The major increased in resistance have been reported with clindamycin, cephamycins, and moxifloxacin against Bacteroides fragilis group and related strains. Resistance patterns vary between different geographic areas and medical facilities.
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