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Assays for the Specific Growth Rate and Cell-binding Ability of Rotavirus
Published on: January 28, 2019
Oral rotavirus vaccine shedding as a marker of mucosal immunity
Benjamin Lee1,2, Md Abdul Kader3, E Ross Colgate4,5
1Translational Global Infectious Diseases Research Center, Larner College of Medicine, University of Vermont, 95 Carrigan Drive, Stafford 208, Burlington, VT, 05405, USA. blee7@uvm.edu.
Insights
The second dose of the Rotarix rotavirus vaccine in infants generated intestinal immunity, reducing diarrhea risk. This suggests using vaccines as challenge agents could help study rotavirus vaccine effectiveness.
Area of Science:
- Immunology
- Vaccinology
- Pediatric Infectious Diseases
Background:
- Group A rotaviruses (RVA) cause significant pediatric diarrhea globally.
- Current oral RVA vaccines underperform in low-income countries.
- Improved immune correlates of protection (CoP) and evaluation strategies for RVA vaccines are needed.
Purpose of the Study:
- To explore the potential of using the second dose of an oral RVA vaccine (Rotarix) as a challenge agent in a controlled human infection model.
- To assess RVA mucosal immunity by examining fecal virus shedding post-vaccination.
Main Methods:
- An efficacy trial of the live-attenuated oral rotavirus vaccine Rotarix in infants in Dhaka, Bangladesh.
- Analysis of fecal virus shedding following the second vaccine dose in 180 infants.
- Evaluation of RVA diarrhea risk up to 2 years of age.
Main Results:
- Absence of fecal vaccine shedding after the second Rotarix dose was observed.
- This suggests intestinal mucosal immunity was induced by the first dose.
- A decreased risk of RVA diarrhea was noted (RR 0.616, 95% CI 0.392-0.968).
Conclusions:
- The second vaccine dose can serve as a model to explore RVA immunity.
- Controlled human infection models for RVA warrant further development for vaccine efficacy and CoP assessment.
- Larger prospective studies are recommended for robust evaluation.
Abstract:
Group A rotaviruses (RVA) remain a leading cause of pediatric diarrhea worldwide, in part due to underperformance of currently approved live-attenuated, oral vaccines in low-and-middle income countries. Improved immune correlates of protection (CoP) for existing oral vaccines and novel strategies to evaluate the performance of next-generation vaccines are needed. Use of oral vaccines as challenge agents in controlled human infection models is a potential approach to CoP discovery that remains underexplored. In a live-attenuated, oral rotavirus vaccine (Rotarix, GlaxoSmithKline) efficacy trial conducted among infants in Dhaka, Bangladesh, we explored the potential for the second dose of the two-dose series to be considered a challenge agent through which RVA immunity could be explored, using fecal virus shedding post-dose 2 as a marker of mucosal immunity. Among 180 vaccinated infants who completed the parent study per protocol, the absence of fecal vaccine shedding following the second dose of Rotarix suggested intestinal mucosal immunity generated by the first dose and a decreased risk of RVA diarrhea through 2 years of life (RR 0.616, 95% CI 0.392-0.968). Further development of controlled human infection models for group A rotaviruses, especially in prospective studies with larger sample sizes, may be a promising tool to assess rotavirus vaccine efficacy and CoPs.
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