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Trends in Antibiotic Use by Birth Season and Birth Year
Alan C Kinlaw1,2, Til Stürmer3,2, Jennifer L Lund2
1Cecil G. Sheps Center for Health Services Research, akinlaw@unc.edu.
Insights
Birth season and year impact infant antibiotic prescribing in Denmark. Vaccinations and guideline changes reduced prescribing rates, highlighting the need to consider cohort effects in pediatric antibiotic studies.
Area of Science:
- Pediatrics
- Epidemiology
- Pharmacology
Background:
- Antibiotic prescribing during infancy is a public health concern.
- Birth cohort effects, including season and year, may influence prescribing patterns.
- Understanding these effects is crucial for antibiotic stewardship and child health.
Purpose of the Study:
- To examine birth season and birth year cohort effects on antibiotic prescribing in Danish infants.
- To assess the impact of pneumococcal vaccination programs and updated prescribing guidelines on infant antibiotic use.
Main Methods:
- Linked data from Danish national registries for over 560,000 live births (2004-2012).
- Estimated 1-year risk, rate, and burden of antibiotic prescriptions during infancy.
- Utilized interrupted time series analysis to evaluate trends across birth year cohorts.
Main Results:
- The overall 1-year risk of antibiotic prescription in infancy was 39.5%.
- Prescribing risk varied by birth season.
- Following vaccination program rollouts and guideline changes, 1-year risk decreased by 4.4% and then by 6.9%.
Conclusions:
- Birth season and year are significant factors influencing infant antibiotic prescribing.
- These cohort effects may affect individual susceptibility to downstream antibiotic impacts.
- Future research on pediatric antibiotic stewardship should account for these birth cohort influences.
Objectives:
We examined 2 birth cohort effects on antibiotic prescribing during the first year of life (henceforth, infancy) in Denmark: (1) the birth season effect on timing and overall occurrence of antibiotic prescribing, and (2) the birth year effect amid emerging nationwide pneumococcal vaccination programs and changing prescribing guidelines.
Methods:
We linked data for all live births in Denmark from 2004 to 2012 (N = 561 729) across the National Health Service Prescription Database, Medical Birth Registry, and Civil Registration System. Across birth season and birth year cohorts, we estimated 1-year risk, rate, and burden of redeemed antibiotic prescriptions during infancy. We used interrupted time series methods to assess prescribing trends across birth year cohorts. Graphical displays of all birth cohort effect data are included.
Results:
The 1-year risk of having at least 1 redeemed antibiotic prescription during infancy was 39.5% (99% confidence interval [CI]: 39.3% to 39.6%). The hazard of a first prescription increased with age throughout infancy and varied by season; subsequently, Kaplan-Meier-derived risk functions varied by birth season cohort. After rollout of a first vaccination program and new antibiotic prescribing guidelines, 1-year risk decreased by 4.4% over 14 months (99% CI: 3.4% to 5.5%); it decreased again after rollout of a second vaccination program by 6.9% over 3 years (99% CI: 4.4% to 9.3%).
Conclusions:
In Denmark, birth season and birth year cohort effects influenced timing and risk of antibiotic prescribing during infancy. Future studies of antibiotic stewardship, effectiveness, and safety in children should consider these cohort effects, which may render some children inherently more susceptible than others to downstream antibiotic effects.
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