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Assays for the Specific Growth Rate and Cell-binding Ability of Rotavirus
Published on: January 28, 2019
Protective effect of natural rotavirus infection in an Indian birth cohort
Beryl P Gladstone1, Sasirekha Ramani, Indrani Mukhopadhya
1Wellcome Trust Research Laboratory, Department of Gastrointestinal Sciences, Christian Medical College, Vellore, India.
Background:
More than 500,000 deaths are attributed to rotavirus gastroenteritis annually worldwide, with the highest mortality in India. Two successive, naturally occurring rotavirus infections have been shown to confer complete protection against moderate or severe gastroenteritis during subsequent infections in a birth cohort in Mexico. We studied the protective effect of rotavirus infection on subsequent infection and disease in a birth cohort in India (where the efficacy of oral vaccines in general has been lower than expected).
Methods:
We recruited children at birth in urban slums in Vellore; they were followed for 3 years after birth, with home visits twice weekly. Stool samples were collected every 2 weeks, as well as on alternate days during diarrheal episodes, and were tested by means of enzyme-linked immunosorbent assay and polymerase-chain-reaction assay. Serum samples were obtained every 6 months and evaluated for seroconversion, defined as an increase in the IgG antibody level by a factor of 4 or in the IgA antibody level by a factor of 3.
Results:
Of 452 recruited children, 373 completed 3 years of follow-up. Rotavirus infection generally occurred early in life, with 56% of children infected by 6 months of age. Levels of reinfection were high, with only approximately 30% of all infections identified being primary. Protection against moderate or severe disease increased with the order of infection but was only 79% after three infections. With G1P[8], the most common viral strain, there was no evidence of homotypic protection.
Conclusions:
Early infection and frequent reinfection in a locale with high viral diversity resulted in lower protection than has been reported elsewhere, providing a possible explanation why rotavirus vaccines have had lower-than-expected efficacy in Asia and Africa. (Funded by the Wellcome Trust.).
Insights
Rotavirus infections in Indian children led to lower protection than expected, with only 79% protection after three infections. High viral diversity and early, frequent reinfections may explain lower rotavirus vaccine efficacy in Asia and Africa.
Area of Science:
- Virology
- Immunology
- Public Health
Background:
- Rotavirus gastroenteritis causes over 500,000 deaths annually worldwide, particularly in India.
- Previous studies in Mexico showed natural rotavirus infections confer complete protection against severe disease.
- Rotavirus vaccine efficacy has been lower than anticipated in parts of Asia and Africa.
Purpose of the Study:
- To investigate the protective effect of natural rotavirus infection on subsequent infections and disease.
- To study rotavirus infection dynamics in a birth cohort in India.
Main Methods:
- Recruited 452 infants in urban Indian slums, followed for 3 years.
- Collected stool samples bi-weekly and during diarrhea for rotavirus detection (ELISA, PCR).
- Monitored serum antibody levels (IgG, IgA) every 6 months for seroconversion.
Main Results:
- 373 children completed follow-up; 56% were infected by 6 months.
- High reinfection rates observed; only 30% of infections were primary.
- Protection against moderate/severe disease increased with infection order, reaching 79% after three infections.
- No homotypic protection observed for the common G1P[8] strain.
Conclusions:
- Early and frequent rotavirus reinfections in India resulted in lower-than-expected protection.
- High viral diversity may contribute to reduced protection.
- Findings offer a potential explanation for lower rotavirus vaccine efficacy in Asia and Africa.
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