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Published on: July 22, 2012
Rotavirus antigenemia in children is associated with viremia
Sarah E Blutt1, David O Matson, Sue E Crawford
1Department of Molecular Virology and Microbiology, Baylor College of Medicine, Houston, Texas, United States of America.
Insights
Most children with rotavirus infection have rotavirus viremia, confirmed by detecting infectious virus in their blood. This antigenemia is linked to rotavirus presence and inversely correlates with antibody levels, suggesting wider disease involvement.
Area of Science:
- Virology
- Pediatrics
- Immunology
Background:
- Rotavirus antigenemia is common in children, but viremia (presence of infectious virus in blood) remains unproven.
- Previous detection of rotavirus RNA in serum lacked definitive proof of infectious virus.
Purpose of the Study:
- To determine if infectious rotavirus can be detected in the sera of children with confirmed rotavirus antigenemia.
- To investigate the relationship between rotavirus antigenemia, clinical presentation, and host immune response.
Main Methods:
- Serum samples from children with gastroenteritis, bronchiolitis, other conditions, and healthy adults were tested for rotavirus antigen using enzyme immunoassay (EIA).
- Infectious rotavirus was assessed in antigen-positive and antigen-negative sera via serial passages in HT-29 cells and immunofluorescence staining.
- Correlations between antigenemia, clinical data, viral genotype, and serum antibody titers (IgA, IgG) were analyzed.
Main Results:
- Rotavirus antigenemia was detected in 90% of children with rotavirus-positive stools and in 12% of those with rotavirus-negative gastroenteritis or bronchiolitis of unknown etiology.
- Infectious rotavirus was confirmed in 100% of antigen-positive sera and 22% of antigen-negative sera.
- Antigenemia showed a negative correlation with acute rotavirus-specific serum IgA and IgG titers.
Conclusions:
- Most children with rotavirus infection exhibit viremia, directly correlating with antigenemia and independent of diarrhea.
- The presence of infectious rotavirus in blood suggests potential extraintestinal involvement in disease pathogenesis.
- Rotavirus viremia's clinical impact and implications for disease management require further investigation.
Background:
Antigenemia is commonly detected in rotavirus-infected children. Although rotavirus RNA has been detected in serum, definitive proof of rotavirus viremia has not been shown. We aimed to analyze a defined patient population to determine if infectious virus could be detected in sera from children with rotavirus antigenemia.
Methods And Findings:
Serum samples obtained upon hospitalization from children with gastroenteritis (57 stool rotavirus-positive and 41 rotavirus-negative), children with diagnosed bronchiolitis of known (n = 58) or unknown (n = 17) viral etiology, children with noninfectious, nonchronic conditions (n = 17), and healthy adults (n = 28) were tested for rotavirus antigen by enzyme immunoassay (EIA). Results of serum antigen testing were assessed for association with clinical and immunological attributes of the children. Rotavirus antigenemia was detected in 90% (51/57) of children with rotavirus-positive stools, in 89% (8/9) of children without diarrhea but with rotavirus-positive stools, in 12% (2/17) of children with bronchiolitis of unknown etiology without gastroenteritis, and in 12% (5/41) of children with gastroenteritis but with rotavirus-negative stools. Antigenemia was not detected in sera from children with noninfectious nonchronic conditions, children with bronchiolitis of known etiology and no gastroenteritis, or healthy adults. Neither age nor timing of serum collection within eight days after onset of gastroenteritis significantly affected levels of antigenemia, and there was no correlation between antigenemia and viral genotype. However, there was a negative correlation between serum rotavirus antigen and acute rotavirus-specific serum IgA (r = -0.44, p = 0.025) and IgG (r = -0.40, p = 0.01) titers. We examined 11 antigen-positive and nine antigen-negative sera for infectious virus after three blind serial passages in HT-29 cells using immunofluorescence staining for rotavirus structural and nonstructural proteins. Infectious virus was detected in 11/11 (100%) sera from serum antigen-positive children and in two out of nine (22%) sera samples from antigen-negative children (p = 0.002).
Conclusions:
Most children infected with rotavirus are viremic. The presence of viremia is directly related to the detection of antigenemia and is independent of the presence of diarrhea. Antigenemia load is inversely related to the titer of antirotavirus antibody in the serum. The finding of infectious rotavirus in the blood suggests extraintestinal involvement in rotavirus pathogenesis; however, the impact of rotavirus viremia on clinical manifestations of infection is unknown.
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