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Vaccine Effectiveness Against Long COVID in Children: A Report from the RECOVER EHR Cohort
Insights
COVID-19 vaccination offers moderate protection against long COVID in children and adolescents. Vaccine effectiveness is higher in adolescents and wanes over time, remaining significant at 12 months.
Area of Science:
- Pediatric infectious diseases
- Vaccinology
- Public health
Background:
- COVID-19 vaccination reduces acute illness in children, but its impact on long COVID is less understood.
- Children and adolescents may experience distinct forms of long COVID compared to adults.
Approach:
- A retrospective cohort study analyzed electronic health records from 17 US health systems.
- Data included over 1 million children aged 5-17 years vaccinated against COVID-19.
- Conditional logistic regression estimated vaccine effectiveness against probable and diagnosed long COVID.
Key Points:
- Vaccine effectiveness against probable long COVID was 35.4% and against diagnosed long COVID was 41.7% within 12 months.
- Effectiveness was higher in adolescents (50.3%) than younger children (23.8%).
- Vaccine effectiveness peaked at 6 months and decreased by 18 months.
Conclusions:
- COVID-19 vaccination provides moderate protection against long COVID in children and adolescents.
- The protective effect is more pronounced in adolescents and diminishes over time.
- Further research is needed to understand the mechanisms of vaccine effectiveness against long COVID.
Objective:
Vaccination reduces the risk of acute COVID-19 in children, but it is less clear whether it protects against long COVID. We estimated vaccine effectiveness (VE) against long COVID in children aged 5-17 years.
Methods:
This retrospective cohort study used data from 17 health systems in the RECOVER PCORnet electronic health record (EHR) Program for visits between vaccine availability, and October 29, 2022. Conditional logistic regression was used to estimate VE against long COVID with matching on age group (5-11, 12-17) and time period and adjustment for sex, ethnicity, health system, comorbidity burden, and pre-exposure health care utilization. We examined both probable (symptom-based) and diagnosed long COVID in the year following vaccination.
Results:
The vaccination rate was 56% in the cohort of 1,037,936 children. The incidence of probable long COVID was 4.5% among patients with COVID-19, while diagnosed long COVID was 0.7%. Adjusted vaccine effectiveness within 12 months was 35.4% (95 CI 24.5 - 44.5) against probable long COVID and 41.7% (15.0 - 60.0) against diagnosed long COVID. VE was higher for adolescents 50.3% [36.3 - 61.0]) than children aged 5-11 (23.8% [4.9 - 39.0]). VE was higher at 6 months (61.4% [51.0 - 69.6]) but decreased to 10.6% (-26.8 - 37.0%) at 18-months.
Discussion:
This large retrospective study shows a moderate protective effect of SARS-CoV-2 vaccination against long COVID. The effect is stronger in adolescents, who have higher risk of long COVID, and wanes over time. Understanding VE mechanism against long COVID requires more study, including EHR sources and prospective data.
Article Summary:
Vaccination against COVID-19 has a protective effect against long COVID in children and adolescents. The effect wanes over time but remains significant at 12 months.
What’S Known On This Subject:
Vaccines reduce the risk and severity of COVID-19 in children. There is evidence for reduced long COVID risk in adults who are vaccinated, but little information about similar effects for children and adolescents, who have distinct forms of long COVID.
What This Study Adds:
Using electronic health records from US health systems, we examined large cohorts of vaccinated and unvaccinated patients <18 years old and show that vaccination against COVID-19 is associated with reduced risk of long COVID for at least 12 months.
Contributors’ Statement:
Drs. Hanieh Razzaghi and Charles Bailey conceptualized and designed the study, supervised analyses, drafted the initial manuscript, and critically reviewed and revised the manuscript.Drs. Christopher Forrest and Yong Chen designed the study and critically reviewed and revised the manuscript.Ms. Kathryn Hirabayashi, Ms. Andrea Allen, and Dr. Qiong Wu conducted analyses, and critically reviewed and revised the manuscript.Drs. Suchitra Rao, H Timothy Bunnell, Elizabeth A. Chrischilles, Lindsay G. Cowell, Mollie R. Cummins, David A. Hanauer, Benjamin D. Horne, Carol R. Horowitz, Ravi Jhaveri, Susan Kim, Aaron Mishkin, Jennifer A. Muszynski, Susanna Nagie, Nathan M. Pajor, Anuradha Paranjape, Hayden T. Schwenk, Marion R. Sills, Yacob G. Tedla, David A. Williams, and Ms. Miranda Higginbotham critically reviewed and revised the manuscript.All authors approved the final manuscript as submitted and agree to be accountable for all aspects of the work.
Authorship Statement:
Authorship has been determined according to ICMJE recommendations.
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