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Measuring Influenza Neutralizing Antibody Responses to AH3N2 Viruses in Human Sera by Microneutralization Assays Using MDCK-SIAT1 Cells
Published on: November 22, 2017
Controlled Human Malaria Infection (CHMI) differentially affects cell-mediated and antibody responses to CSP and AMA1
Martha Sedegah1, Michael R Hollingdale1, Fouzia Farooq1
1a Naval Medical Research Center ; Silver Spring , MD USA.
Abstract:
We have previously shown that a DNA-prime followed by an adenovirus-5 boost vaccine containing CSP and AMA1 (DNA/Ad) successfully protected 4 of 15 subjects to controlled human malaria infection (CHMI). However, the adenovirus-5 vaccine alone (AdCA) failed to induce protection despite eliciting cellular responses that were often higher than those induced by DNA/Ad. Here we determined the effect of CHMI on pre-CHMI cellular and antibody responses against CSP and AMA1 expressed as fold-changes in activities. Generally, in the DNA/Ad trial, CHMI caused pre-CHMI ELISpot IFN-γ and CD8+ T cell IFN-γ responses of the protected subjects to fall but among non-protected subjects, CHMI caused rises of pre-CHMI ELISpot IFN-γ but falls of CD8+ T cell IFN-γ responses. In contrast in the AdCA trial, CHMI caused both pre-CHMI ELISpot IFN-γ and CD8+ T cell IFN-γ responses of the AdCA subjects to fall. We suggest that the falls in activities are due to migration of peripheral CD8+ T cells to the liver in response to developing liver stage parasites, and this fall, in the DNA/Ad trial, is masked in ELISpot responses of the non-protected subjects by rises in other immune cell types. In addition, CHMI caused falls in antibody activities of protected subjects, but rises in non-protected subjects in both trials to CSP, and dramatically in the AdCA trial to AMA1, reaching 380 μg/ml that is probably due to boosting by transient blood stage infection before chloroquine treatment. Taken together, these results further define differences in cellular responses between DNA/Ad and AdCA trials, and suggest that natural transmission may boost responses induced by these malaria vaccines especially when protection is not achieved.
Insights
Controlled human malaria infection (CHMI) impacts immune responses differently in subjects receiving DNA/adenovirus-5 (DNA/Ad) or adenovirus-5 alone (AdCA) malaria vaccines. Natural transmission may boost vaccine responses when initial protection is not achieved.
Area of Science:
- Immunology
- Vaccinology
- Infectious Diseases
Background:
- Previous studies showed a DNA-prime/adenovirus-5 boost vaccine (DNA/Ad) partially protected against malaria, while adenovirus-5 alone (AdCA) did not.
- Understanding immune responses post-vaccination and challenge is crucial for developing effective malaria vaccines.
Purpose of the Study:
- To determine the impact of controlled human malaria infection (CHMI) on pre-existing cellular and antibody responses against CSP and AMA1 antigens.
- To compare the effects of CHMI on immune responses elicited by DNA/Ad and AdCA malaria vaccines.
Main Methods:
- Analysis of fold-changes in ELISpot IFN-γ and CD8+ T cell IFN-γ responses before and after CHMI.
- Measurement of antibody activities against CSP and AMA1 antigens following CHMI in both vaccine groups.
Main Results:
- CHMI differentially affected cellular responses: protected DNA/Ad subjects showed decreased responses, while non-protected subjects had mixed changes. AdCA subjects consistently showed decreased responses.
- Antibody levels generally decreased in protected subjects but increased in non-protected subjects after CHMI, with a significant rise in anti-AMA1 antibodies in the AdCA group.
Conclusions:
- CHMI modulates immune responses, with distinct patterns observed between the DNA/Ad and AdCA vaccine trials.
- Observed changes in cellular responses suggest migration of CD8+ T cells to the liver. Antibody boosts in non-protected individuals may result from transient blood-stage parasitemia.
- Findings suggest natural transmission could enhance responses induced by these malaria vaccines, particularly when initial protection is insufficient.
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