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Published on: May 30, 2017
Critical analysis of compositions and protective efficacies of oral killed cholera vaccines
1Academic Research and Information Management, Uppsala, Sweden acarim99@gmail.com.
Insights
Current cholera vaccines Shanchol and Dukoral show limited protective efficacy, especially in young children. Their composition and logistical challenges hinder effective cholera control in resource-poor settings.
Area of Science:
- Public Health
- Infectious Diseases
- Vaccinology
Background:
- Cholera remains a significant threat, particularly to children under 5, who experience the highest incidence and mortality.
- Two oral cholera vaccines, Shanchol and Dukoral, are available but their efficacy requires critical evaluation.
Purpose of the Study:
- To critically analyze the protective efficacies of Shanchol and Dukoral cholera vaccines.
- To assess the suitability of these vaccines for cholera control in resource-poor settings.
Main Methods:
- Review of field trial data for Shanchol in Kolkata and Dukoral in Peru.
- Analysis of vaccine composition, including bacterial strains and inactivation methods.
- Examination of immunological study endpoints for vaccine efficacy.
Main Results:
- Shanchol demonstrated 45% efficacy overall and 17% in children under 5 in Kolkata.
- Dukoral showed negative protection in children under 5 and 15% efficacy in older individuals in Peru.
- Both vaccines utilize outdated strains and inactivation methods, potentially compromising efficacy.
Conclusions:
- Shanchol and Dukoral exhibit limited and short-lived protective efficacy, with particular concerns for young children.
- Vaccine composition, cold chain requirements, cost, and logistics present significant barriers to effective cholera control.
Abstract:
Two cholera vaccines, sold as Shanchol and Dukoral, are currently available. This review presents a critical analysis of the protective efficacies of these vaccines. Children under 5 years of age are very vulnerable to cholera and account for the highest incidence of cholera cases and more than half of the resulting deaths. Both Shanchol and Dukoral are two-spaced-dose oral vaccines comprising large numbers of killed cholera bacteria. The former contains Vibrio cholerae O1 and O139 cells, and the latter contains V. cholerae O1 cells with the recombinant B subunit of cholera toxin. In a field trial in Kolkata (India), Shanchol, the preferred vaccine, protected 45% of the test subjects in all of the age groups and only 17% of the children under 5 years of age during the first year of surveillance. In a field trial in Peru, two spaced doses of Dukoral offered negative protection in children under 5 years of age and little protection (15%) in vaccinees over 6 years of age during the first year of surveillance. Little is known about Dukoral's long-term protective efficacy. Both of these vaccines have questionable compositions, using V. cholerae O1 strains isolated in 1947 that have been inactivated by heat and formalin treatments that may denature protein. Immunological studies revealed Dukoral's reduced and short-lived efficacy, as measured by several immunological endpoints. Various factors, such as the necessity for multiple doses, poor protection of children under 5 years of age, the requirement of a cold supply chain, production costs, and complex logistics of vaccine delivery, greatly reduce the suitability of either of these vaccines for endemic or epidemic cholera control in resource-poor settings.
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