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Assays for the Specific Growth Rate and Cell-binding Ability of Rotavirus
Published on: January 28, 2019
Rotavirus vaccine response correlates with the infant gut microbiota composition in Pakistan
Vanessa Harris1,2, Asad Ali3, Susana Fuentes3
1a Amsterdam Institute for Global Health and Development and Department of Global Health, Academic Medical Center , University of Amsterdam , Amsterdam , The Netherlands.
Insights
Infant gut bacteria composition influences rotavirus vaccine effectiveness. Specific bacteria like Proteobacteria are linked to better vaccine response, similar to healthy Dutch infants.
Area of Science:
- Microbiology
- Immunology
- Pediatrics
Background:
- Rotavirus (RV) is a major cause of childhood diarrhea deaths, particularly in low-income regions.
- Rotavirus vaccines (RVV) show reduced efficacy in these settings, potentially due to the intestinal microbiome.
- Understanding the gut microbiota's role is crucial for improving RVV effectiveness.
Purpose of the Study:
- To investigate the correlation between infant intestinal microbiota composition and rotavirus vaccine immune responses.
- To compare the gut microbiota of rotavirus vaccine responders versus non-responders in Pakistani infants.
- To identify potential microbial signatures associated with vaccine efficacy.
Main Methods:
- A nested, matched case-control study comparing pre-vaccination fecal microbiota.
- Matched Pakistani RVV responders (n=10), non-responders (n=10), and healthy Dutch infants (n=10).
- Phylogenetic microarray analysis of fecal microbiota composition.
Main Results:
- RVV response correlated with higher abundance of Clostridium cluster XI and Proteobacteria (e.g., Serratia, Escherichia coli).
- Proteobacteria abundance was significantly higher in RVV responders and healthy Dutch infants compared to Pakistani non-responders.
- Identified specific microbial signatures associated with RV1 seroconversion in Pakistani infants.
Conclusions:
- Infant intestinal microbiota composition correlates with rotavirus vaccine immune response.
- Microbial signatures associated with vaccine response in Pakistani infants show similarities to healthy Dutch infants.
- Targeting the gut microbiome may enhance rotavirus vaccine efficacy in low-income settings.
Abstract:
Rotavirus (RV) is the leading cause of diarrhea-related death in children worldwide and ninety-five percent of rotavirus deaths occur in Africa and Asia. Rotavirus vaccines (RVV) can dramatically reduce RV deaths, but have low efficacy in low-income settings where they are most needed. The intestinal microbiome may contribute to this decreased RVV efficacy. This pilot study hypothesizes that infants' intestinal microbiota composition correlates with RVV immune responses and that RVV responders have different gut microbiota as compared to non-responders. We conducted a nested, matched case-control study comparing the pre-vaccination intestinal microbiota composition between 10 6-week old Pakistani RVV-responders, 10 6-week old Pakistani RVV non-responders, and 10 healthy Dutch infants. RVV response was defined as an Immunoglobulin A of ≥20 IU/mL following Rotarix™(RV1) vaccination in an infant with a pre-vaccination IgA<20. Infants were matched in a 1:1 ratio using ranked variables: RV1 dosing schedule (6/10/14; 6/10; or 10/14 weeks), RV season, delivery mode, delivery place, breastfeeding practices, age and gender. Fecal microbiota analysis was performed using a highly reproducible phylogenetic microarray. RV1 response correlated with a higher relative abundance of bacteria belonging to Clostridium cluster XI and Proteobacteria, including bacteria related to Serratia and Escherichia coli. Remarkably, abundance of these Proteobacteria was also significantly higher in Dutch infants when compared to RV1-non-responders in Pakistan. This small but carefully matched study showed the intestinal microbiota composition to correlate with RV1 seroconversion in Pakistan infants, identifying signatures shared with healthy Dutch infants.
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