PfCap380 as a marker for Plasmodium falciparum oocyst development in vivo and in vitro

Leslie S Itsara1, Yaxian Zhou1, Julie Do1

  • 1MalarVx, Inc., 307 Westlake Ave N Suite 200, Seattle, WA, 98109, USA.

Malaria Journal
|April 4, 2018
PubMed
Abstract

Insights

Plasmodium falciparum oocyst capsule protein (PfCap380) is a key marker for tracking parasite development in mosquitoes and cultures. Antibodies against PfCap380 enable early detection of oocysts, aiding malaria vaccine research.

Area of Science:

  • Malariology
  • Parasitology
  • Infectious Diseases

Background:

  • Plasmodium falciparum oocyst capsule protein (PfCap380) function is largely unknown, unlike its Plasmodium berghei ortholog (PbCap380).
  • Understanding PfCap380 is crucial for studying malaria parasite development and survival.

Purpose of the Study:

  • To investigate Plasmodium falciparum oocyst development using PfCap380 as a novel developmental marker.
  • To establish methods for monitoring oocyst growth in both mosquito (in vivo) and culture (in vitro) systems.

Main Methods:

  • Developed polyclonal antisera against PfCap380 for immunofluorescence assays (IFA).
  • Studied in vivo oocyst development in Anopheles stephensi mosquitoes post-infection.
  • Optimized in vitro culture of gametocytes, ookinetes, and oocysts on collagen IV-coated surfaces.
  • Utilized IFA to monitor PfCap380 expression during oocyst development in both settings.

Main Results:

  • Anti-PfCap380 antisera detected early midgut oocysts by day 2 post-infection.
  • Achieved significant in vitro transformation rates: 24% gametocytes to ookinetes and 85% ookinetes to oocysts.
  • Collagen IV was identified as optimal for ookinete binding and oocyst transformation.
  • PfCap380 was localized to the surface of developing oocysts, not gametocytes or ookinetes.

Conclusions:

  • PfCap380 serves as a reliable marker for monitoring Plasmodium falciparum oocyst development in vivo and in vitro.
  • The developed anti-PfCap380 antisera is a valuable tool for oocyst developmental studies.
  • This research supports the development of malaria vaccines by advancing in vitro oocyst and sporozoite maturation studies.

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