[Pathogenic agents causing acute respiratory tract infections in pediatric patients in Spring, 2023, in Beijing]

Y Sun1, R N Zhu1, F Wang1

  • 1Laboratory of Virology, Beijing Key Laboratory of Etiology of Viral Diseases in Children, Capital Institute of Pediatrics, Beijing 100020, China.

Insights

In spring 2023, Beijing children experienced a significant influenza (Flu) epidemic, initially dominated by H1N1 then H3N2. A subsequent respiratory syncytial virus (RSV) epidemic and increased human metapneumovirus (HMPV) detections were also observed.

Area of Science:

  • Pediatric infectious diseases
  • Virology
  • Epidemiology

Context:

  • Acute respiratory infections (ARIs) pose a significant health burden on children globally.
  • Understanding the specific viral agents and their epidemiological patterns is crucial for effective public health interventions.
  • This study focuses on Beijing, a major urban center with a large pediatric population.

Purpose:

  • To identify and characterize the primary viral pathogens responsible for ARIs in children in Beijing during the spring of 2023.
  • To analyze the temporal trends and predominant strains of key respiratory viruses, including influenza (Flu), respiratory syncytial virus (RSV), and human metapneumovirus (HMPV).
  • To provide insights for strengthening early warning systems for pediatric respiratory epidemics.

Summary:

  • A cross-sectional study in Beijing from February to May 2023 analyzed viral pathogens in three groups of children: influenza-like cases, outpatient ARI, and inpatient ARI.
  • Influenza A (Flu A) was the dominant pathogen overall, with H1N1 prevalent early and H3N2 later in the season. Respiratory syncytial virus (RSV) showed a delayed epidemic peak, and human metapneumovirus (HMPV) detection increased.
  • Rhinovirus (Rh) was frequently detected in inpatients, while Mycoplasma pneumoniae (Mp) and Chlamydia pneumoniae (Cp) were also investigated.

Impact:

  • The findings highlight the dynamic nature of viral respiratory infections in children, with distinct epidemiological patterns for Flu, RSV, and HMPV.
  • This research underscores the importance of robust nucleic acid testing and surveillance systems for timely detection and response to pediatric respiratory epidemics.
  • Results can inform public health strategies, vaccination campaigns, and clinical management of ARIs in pediatric populations.

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