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Development of Multiplex Real-Time RT-qPCR Assays for the Detection of SARS-CoV-2, Influenza A/B, and MERS-CoV
Published on: November 10, 2023
Clinical disease in children associated with newly described coronavirus subtypes
Jane Kuypers1, Emily T Martin, Judson Heugel
1Department of Laboratory Medicine, University of Washington, Seattle, Washington, USA. jane.kuypers@seattlechildrens.org
Insights
Human coronaviruses, including newer subtypes NL63 and HKU1, are common causes of respiratory illness in children. These viruses, particularly when present alone, are linked to more severe disease and chronic conditions in pediatric patients.
Area of Science:
- Pediatric infectious diseases
- Virology
- Respiratory medicine
Background:
- Human coronaviruses (HCoVs) are known to cause respiratory illnesses in various populations.
- The prevalence and specific subtypes circulating in pediatric populations require ongoing investigation.
Purpose of the Study:
- To determine the prevalence of four human coronavirus subtypes (OC43, 229E, NL63, and HKU1) in children presenting with acute respiratory illness.
- To analyze the clinical and demographic characteristics associated with coronavirus infections in this pediatric cohort.
Main Methods:
- Real-time reverse-transcription polymerase chain reaction (RT-PCR) assays were used to detect HCoV subtypes in respiratory specimens.
- A retrospective analysis of clinical and demographic data was performed for infected children.
Main Results:
- Human coronaviruses were detected in 6.3% (66/1043) of pediatric patients.
- Subtypes HKU1 (28 cases) and NL63 (11 cases) were the most prevalent, followed by OC43 (19 cases) and 229E (8 cases).
- Children infected solely with HCoV were more likely to have underlying chronic conditions and lower respiratory tract disease compared to those with co-infections.
Conclusions:
- The recently identified HCoV subtypes NL63 and HKU1 were the predominant strains in this pediatric cohort.
- These findings suggest that novel HCoV subtypes contribute significantly to previously unexplained respiratory illnesses in children.
- HCoV infections, especially when isolated, may indicate a higher risk for severe respiratory outcomes in children with underlying health issues.
Objectives:
Coronaviruses cause upper respiratory illness and occasionally lower tract disease in susceptible populations. In this study we examined the prevalence of 4 human coronaviruses, including subtypes OC43, 229E, and the recently described NL63 and HKU1 in a pediatric population presenting to a children's hospital.
Patients And Methods:
Specimens collected over a 1-year period from pediatric patients presenting with acute respiratory illness were analyzed for the presence of 4 coronavirus subtypes using consensus and subtype-specific real-time reverse-transcription polymerase chain reaction assays. The demographic and clinical characteristics associated with coronavirus infection were examined retrospectively.
Results:
Coronaviruses were detected in 66 of 1043 children. Eight, 11, 19, and 28 specimens were positive for subtypes 229E, NL63, OC43, and HKU1, respectively. Coronaviruses were detected throughout the study period; all 4 of the subtypes were present simultaneously in December. The acute clinical features were similar across subtypes. Of 32 children infected with a coronavirus as the sole respiratory pathogen, 13 had lower respiratory tract disease. Children whose only detectable respiratory virus was a coronavirus were more likely to have underlying chronic disease than were children coinfected with another respiratory virus.
Conclusions:
Although 4 subtypes of coronavirus were detected, the recently discovered coronavirus subtypes NL63 and HKU1 accounted for the majority of coronaviruses detected in our cohort of mostly hospitalized children with respiratory symptoms. New subtypes likely represent a substantial portion of previously unexplained respiratory illnesses.
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