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Tympanostomy Tube Otorrhea: Microbiological Differences Between Children with and Without Cleft Palate
Roberto N Solis1, Kurtis Young2, Oscar S Velazquez-Castro1
1Department of Otolaryngology-Head and Neck Surgery, University of California, Davis, Sacramento, California, USA.
Insights
Children with cleft palate experience more ear infections after tympanostomy tube placement. Methicillin-resistant Staphylococcus aureus (MRSA) is the most common cause, often resistant to standard antibiotic treatments.
Area of Science:
- Otolaryngology
- Microbiology
- Pediatric Health
Background:
- Tympanostomy tubes are common for treating otitis media in children.
- Otorrhea (ear discharge) can occur post-tube placement, sometimes becoming recalcitrant.
- Cleft palate is associated with increased risk of ear infections.
Purpose of the Study:
- To compare microbiological profiles of ear infections in children with and without cleft palate.
- To identify common pathogens and antibiotic resistance patterns in recalcitrant otorrhea.
Main Methods:
- Retrospective cohort study at a tertiary care center.
- Analyzed ear culture data from children (<18 years) with tympanostomy tubes (2017-2021).
- Compared otorrhea rates and pathogen profiles between cleft palate and non-cleft palate groups.
Main Results:
- Children with cleft palate had higher rates of otorrhea (50.0% vs 35.7%).
- Staphylococcus aureus, including MRSA (49%), was the most frequent isolate in both groups.
- Pseudomonas aeruginosa was also common; Corynebacterium species were more frequent in cleft palate cases.
Conclusions:
- Recalcitrant otorrhea is more prevalent in children with cleft palate.
- MRSA is a significant pathogen in pediatric tympanostomy tube otorrhea.
- High fluoroquinolone resistance in S. aureus and P. aeruginosa necessitates careful antibiotic selection.
Abstract:
ObjectiveTo characterize and compare microbiological profiles in tympanostomy tube otorrhea for children with and without cleft palate.DesignRetrospective cohort study.SettingPediatric otolaryngology and multidisciplinary cleft/craniofacial clinic at a single tertiary care center.PatientsChildren with and without cleft palate <18 years of age who underwent tympanostomy tube placement between 2017-2021.Main outcome measuresOtopathogen profiles and antibiotic resistance patterns in ear culture specimens obtained in children presenting for treatment of recalcitrant post-tympanostomy tube otorrhea.ResultsOf the 886 children with tympanostomy tubes placed between 2017-2021, 345 (38.9%) had clinically significant otorrhea defined as requiring at least one otolaryngology visit for treatment. Children with cleft palate had higher rates of otorrhea (50.0% versus 35.7%; P < .01). In the 128 cultures obtained, Staphylococcus aureus was the most common organism in both groups present in 39.8% of cultures; 49% were methicillin-resistant (MRSA). Pseudomonas aeruginosa was also frequently isolated (20.0% versus 23.4%, P = .69) in children with and without cleft palate. Collectively, fluoroquinolone resistance was observed in 68.6% and 27.6% of the S. aureus and P. aeruginosa isolates, respectively, however, no differences in fluoroquinolone resistance were observed between cleft and non-cleft cohorts. Corynebacterium species were isolated more frequently in children with cleft palate (26.7% versus 6.1%, P < .01), a finding of unclear significance.ConclusionsRecalcitrant post-tympanostomy tube otorrhea is more common in children with cleft palate. MRSA was the most common isolate, which was commonly resistant to first-line fluoroquinolone therapy.
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