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Comparison of the surface and core bacteria in tonsillar and adenoid tissue with Beta-lactamase production
Insights
This study investigated tonsil and adenoid microbes in children undergoing surgery. Polymicrobial flora was found, with Staphylococcus aureus and beta-lactamase producers potentially causing treatment failures.
Area of Science:
- Microbiology
- Pediatric Surgery
- Infectious Diseases
Background:
- Adenoidectomy and tonsillectomy are common pediatric surgeries for recurrent infections.
- Understanding the microbial flora of tonsils and adenoids is crucial for effective treatment.
Purpose of the Study:
- To investigate the microbial flora (core and surface) of tonsils and adenoids.
- To determine the beta-lactamase production rate of pathogenic microorganisms.
- To explore the relationship between preoperative antibiotic use and beta-lactamase production.
Main Methods:
- Collected microbial cultures from tonsil and adenoid cores and surfaces of 91 pediatric patients.
- Performed aerobic and anaerobic cultures, identified microorganisms, and detected beta-lactamase production.
- Compared microbial findings with preoperative antibiotic regimens.
Main Results:
- Streptococcus viridans and Neisseria spp. were the most common aerobic microorganisms.
- Adenoid surface aerobic microbial counts were higher than adenoid core counts (P < 0.05).
- No significant difference in beta-lactamase producing bacteria was found based on preoperative antibiotic type (P > 0.05), but Staphylococcus aureus co-occurrence with other beta-lactamase producers was significant (P < 0.05).
Conclusions:
- Tonsils and adenoids harbor a polymicrobial aerobic-anaerobic flora.
- A strong correlation exists between tonsil and adenoid microbial communities.
- Staphylococcus aureus and other beta-lactamase producing bacteria may contribute to treatment failures in tonsillitis.
Abstract:
Adenoidectomy and tonsillectomy, indicated for children with recurrent or persistent symptoms of infection or hypertrophy, are among the most frequent operations performed in children. This study was carried out for investigating the microbial flora of the tonsils and adenoids regarding to core and surface microorganisms and also pathogen microrganisms' beta-lactamase production rate. Cultures were taken from the core and surface of tonsils and adenoids of the 91 patients at the time of the surgery for tonsillectomy and adenoidectomy. Aerobic and anaerobic cultures were inoculated and identified. Beta-lactamase production was detected also. The most frequently isolated aerobic microorganisms were Streptococcus viridans and Neisseria spp. The number of the microorganisms isolated from the tonsil core compared to the surface of the tonsils was found statistically insignificant (P > 0.05). The number of the adenoid surface aerobic microorganisms was found higher from the adenoid core (P < 0.05). The amount of adenoid and tonsil core anaerobic microorganisms were alike. The patients' preoperative antibiotherapy whether using beta-lactam or beta-lactamase resistant were compared for beta-lactamase producing bacteria production and the number of beta-lactamase producing bacteria were found statistically insignificant (P > 0.05). The togetherness of Staphylococcus aureus and other beta-lactamase producing bacteria was found statistically significant (P < 0.05). This study demonstrates that there is polymicrobial aerobic-anaerobic flora in both adenoids and tonsils. There was a close relationship between the bacteriology of the tonsil and adenoid flora. Staphylococcus aureus and and other beta-lactamase producing bacteria may be responsible for treatment failures in patients with tonsillitis.
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