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.

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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