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Updated: Aug 23, 2026

Assays for the Specific Growth Rate and Cell-binding Ability of Rotavirus
Published on: January 28, 2019
Rotavirus-specific T-cell responses in young prospectively followed-up children
M Mäkelä1, J Marttila, O Simell
1JDRF Centre for Prevention of Type 1 Diabetes in Finland, Department of Virology, University of Turku, Turku, Finland. miia.makela@utu.fi
Insights
This study shows that while rotavirus antibody rises are common in children, T-cell responses are less frequent and transient. Consistent, strong T-cell immunity to rotavirus likely requires multiple infections over time.
Area of Science:
- Immunology
- Virology
- Pediatrics
Background:
- Rotavirus is a primary cause of gastroenteritis in young children.
- Antibodies are crucial for protection, but cell-mediated immunity, particularly T-cell responses, likely plays a significant role in combating rotavirus infections.
Purpose of the Study:
- To investigate the development of T-cell responses to rotavirus in children and adults.
- To correlate T-cell responses with antibody production following rotavirus infection.
Main Methods:
- Longitudinal analysis of T-cell proliferation in response to human (Wa) and bovine (NCDV) rotavirus strains in children (3 months to 4-5 years) and adults.
- Detection of rotavirus-specific IgG and IgA antibodies using an enzyme immunoassay (EIA) method.
Main Results:
- Antibody analysis revealed 24 rotavirus infections. T-cell responses accompanied antibody rises in 9 of these cases.
- T-cell responses to rotavirus antigens were significantly stronger after antibody rises.
- Strong T-cell responses were transient, typically waning within a year, while adults exhibited consistently strong responses, suggesting repeated exposure is necessary.
Conclusions:
- Rotavirus infections elicit both antibody and T-cell responses, though T-cell responses are less consistently observed and often transient in children.
- The development of robust, sustained T-cell immunity to rotavirus appears to necessitate multiple infections throughout life.
Abstract:
Rotavirus is a major cause of gastroenteritis in young children. Antibodies seem to protect against rotavirus infection but cell-mediated immune responses are probably also important for protection. We evaluated the development of T-cell responses to rotavirus in follow-up samples from 20 healthy children with an increased genetic risk for type 1 diabetes. Blood samples from 16 healthy adults were also available for the study. T-cell proliferation was analysed at 3-6 month intervals from the age of 3 months to the age of 4-5 years using the Wa strain of human rotavirus and the NCDV strain of bovine rotavirus as antigens. IgG and IgA antibodies to rotavirus were studied from simultaneously drawn plasma samples with EIA method using NCDV as an antigen. A total of 24 infections were revealed by antibody analysis. Sixteen children showed diagnostic increases in both IgG and IgA antibodies to rotavirus, while 5 children showed increases in IgA antibodies only and 3 in IgG only. Antibody rises were accompanied by T-cell responses to rotavirus (SI > 3) in 9 of the 24 cases. T-cell responses to purified or lysed human rotavirus were stronger after a rise in rotavirus antibodies than the responses before infection (P = 0.017 and 0.027, respectively). There was a correlation between T-cell responses to purified and lysed human rotavirus and NCDV. Strong T-cell responses to rotavirus were transient and the ability to respond usually disappeared in one year, but in all adults T-cell responses to rotavirus were strong implicating that several infections are needed to develop consistent, strong T-cell responsiveness.
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