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Updated: Jun 2, 2025

Measuring Naturally Acquired Phagocytosis-Inducing Antibodies to Plasmodium falciparum Parasites by a Flow Cytometry-Based Assay
Published on: August 6, 2020
Variable surface antigen expression, virulence, and persistent infection by Plasmodium falciparum malaria parasites
Evi Hadjimichael1, Kirk W Deitsch1
1Department of Microbiology and Immunology, Weill Cornell Medical College, New York, New York, USA.
Abstract:
SUMMARYThe human malaria parasite Plasmodium falciparum is known for its ability to maintain lengthy infections that can extend for over a year. This property is derived from the parasite's capacity to continuously alter the antigens expressed on the surface of the infected red blood cell, thereby avoiding antibody recognition and immune destruction. The primary target of the immune system is an antigen called PfEMP1 that serves as a cell surface receptor and enables infected cells to adhere to the vascular endothelium and thus avoid filtration by the spleen. The parasite's genome encodes approximately 60 antigenically distinct forms of PfEMP1, each encoded by individual members of the multicopy var gene family. This provides the parasite with a repertoire of antigenic types that it systematically cycles through over the course of an infection, thereby maintaining an infection until the repertoire is exhausted. While this model of antigenic variation based on var gene switching explains the dynamics of acute infections in individuals with limited anti-malarial immunity, it fails to explain reports of chronic, asymptomatic infections that can last over a decade. Recent field studies have led to a re-evaluation of previous conclusions regarding the prevalence of chronic infections, and the application of new technologies has provided insights into the molecular mechanisms that enable chronic infections and how these processes evolved.
Insights
Plasmodium falciparum malaria parasites evade immune detection by switching surface antigens, primarily PfEMP1. New research explores mechanisms behind chronic infections lasting over a decade, challenging existing models.
Area of Science:
- Malariology
- Immunology
- Genetics
Background:
- * Plasmodium falciparum causes severe malaria and establishes long-term infections.
- * Parasite evasion relies on antigenic variation of surface proteins like PfEMP1.
- * Existing models explain acute infections but not chronic, decade-long asymptomatic cases.
Purpose of the Study:
- * Re-evaluate the prevalence and mechanisms of chronic Plasmodium falciparum infections.
- * Investigate the molecular basis for extended asymptomatic malaria.
- * Understand the evolutionary aspects of chronic infection strategies.
Main Methods:
- * Analysis of recent field studies on chronic malaria.
- * Application of new technologies for molecular insights.
- * Re-evaluation of established models of antigenic variation.
Main Results:
- * Chronic, asymptomatic Plasmodium falciparum infections are more prevalent than previously thought.
- * Molecular mechanisms enabling long-term infections are being elucidated.
- * Antigenic variation via var gene switching is central to parasite persistence.
Conclusions:
- * The standard model of var gene switching requires expansion to account for chronic infections.
- * New technologies offer deeper understanding of malaria parasite persistence.
- * Further research is needed to fully understand the evolution and impact of chronic malaria.

