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Published on: March 29, 2024
Polymicrobial acute respiratory infections in a hospital-based pediatric population
Margaret L Chorazy1, Mark G Lebeck, Troy A McCarthy
1Department of Epidemiology, College of Public Health, University of Iowa, Iowa City, IA 52242, USA. margaret-chorazy@uiowa.edu
Insights
Polymicrobial respiratory infections, including rhinovirus (HRV) and respiratory syncytial virus (RSV), are common in children. Further research is needed to understand their impact on disease severity.
Area of Science:
- Pediatric Infectious Diseases
- Virology
- Clinical Microbiology
Background:
- The clinical significance of polymicrobial respiratory infections in children is not well-established.
- Existing research presents conflicting data on the association between these infections and disease severity.
Purpose of the Study:
- To investigate the prevalence of viral coinfections in children with acute respiratory illness.
- To identify risk factors associated with viral coinfections.
- To explore the relationship between viral coinfections and disease severity.
Main Methods:
- Analysis of 346 respiratory specimens from children with acute respiratory illness.
- Utilized direct immunofluorescent assay, viral culture, and molecular methods.
- Collected demographic and clinical data from medical records.
Main Results:
- Viral coinfections were detected in 21.7% of virus-positive specimens.
- The most common coinfections involved rhinovirus (HRV) with respiratory syncytial virus (RSV), human bocavirus, and parainfluenza virus 3.
- Risk factors for coinfection included male gender, age 6 months to 1 year, and immunosuppression history.
Conclusions:
- HRV, RSV, human bocavirus, and polymicrobial infections are prevalent in pediatric respiratory illnesses.
- The study's cross-sectional design limited the examination of infection and disease severity.
- Prospective, population-based studies are recommended to clarify the clinical impact of polymicrobial respiratory infections.
Background:
The clinical impact of polymicrobial respiratory infections remains uncertain. Previous reports are contradictory regarding an association with severe disease.
Methods:
Three hundred forty-six specimens from children with acute respiratory illness identified at the University of Iowa Hospitals and Clinics Clinical Microbiology Laboratory were evaluated by direct immunofluorescent assay and/or viral culture by Clinical Microbiology Laboratory and later by molecular study for the presence of influenza, parainfluenza, respiratory syncytial virus, adenovirus, human metapneumovirus, rhinovirus and human bocavirus. Demographic and clinical data were abstracted from medical records.
Results:
Multiple viruses were detected in 46 (21.7%) of 212 virus-positive specimens with the most frequent virus-virus combinations being HRV-respiratory syncytial virus (n = 12), HRV-human bocavirus (n = 6) and HRV-parainfluenza virus 3 (n = 4). Risk factors for coinfection included male gender (OR [odds ratio]: 1.70, 95% confidence interval [CI]: 0.83-3.46), 6 months to 1 year age (OR: 2.15, 95% CI: 0.75-6.19) and history of immunosuppression (OR: 2.05, 95% CI: 0.99-4.23). Children with viral coinfections were less likely than children with single virus infections to be admitted to an intensive care unit (OR: 0.32, 95% CI: 0.08-1.27); however, this may be explained by undetected viral-bacterial coinfections.
Conclusions:
HRV, respiratory syncytial virus, human bocavirus, and polymicrobial infections were prevalent in this study. Although the cross-sectional design could not easily examine polymicrobial infection and disease severity, prospective, population-based research regarding the clinical impact of such infections is warranted.
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