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Updated: Apr 20, 2026

In Vitro Assay of Plasmodium-Infected Red Blood Cell Killing by Cytotoxic Lymphocytes
Published on: August 17, 2022
In vitro alterations do not reflect a requirement for host cell cycle progression during Plasmodium liver stage
Kirsten K Hanson1, Sandra March2, Shengyong Ng3
1Instituto de Medicina Molecular, Faculdade de Medicina da Universidade de Lisboa, Lisbon, Portugal.
Abstract:
Prior to invading nonreplicative erythrocytes, Plasmodium parasites undergo their first obligate step in the mammalian host inside hepatocytes, where each sporozoite replicates to generate thousands of merozoites. While normally quiescent, hepatocytes retain proliferative capacity and can readily reenter the cell cycle in response to diverse stimuli. Many intracellular pathogens, including protozoan parasites, manipulate the cell cycle progression of their host cells for their own benefit, but it is not known whether the hepatocyte cell cycle plays a role during Plasmodium liver stage infection. Here, we show that Plasmodium parasites can be observed in mitotic hepatoma cells throughout liver stage development, where they initially reduce the likelihood of mitosis and ultimately lead to significant acquisition of a binucleate phenotype. However, hepatoma cells pharmacologically arrested in S phase still support robust and complete Plasmodium liver stage development, which thus does not require cell cycle progression in the infected cell in vitro. Furthermore, murine hepatocytes remain quiescent throughout in vivo infection with either Plasmodium berghei or Plasmodium yoelii, as do Plasmodium falciparum-infected primary human hepatocytes, demonstrating that the rapid and prodigious growth of liver stage parasites is accomplished independent of host hepatocyte cell cycle progression during natural infection.
Insights
Plasmodium parasites do not require host hepatocyte cell cycle progression for liver stage development. This finding is crucial for understanding malaria parasite biology and developing new treatments.
Area of Science:
- Parasitology
- Cell Biology
- Hepatology
Background:
- Plasmodium parasites infect hepatocytes during their mammalian life cycle.
- Hepatocytes, normally quiescent, can re-enter the cell cycle.
- Pathogens often manipulate host cell cycles for replication.
Purpose of the Study:
- To investigate the role of hepatocyte cell cycle progression in Plasmodium liver stage infection.
- To determine if Plasmodium parasites manipulate hepatocyte cell division.
Main Methods:
- Observing Plasmodium parasites in mitotic and cell cycle-arrested hepatoma cells in vitro.
- Infecting murine hepatocytes and primary human hepatocytes with Plasmodium parasites in vivo and in vitro.
- Assessing parasite development and host cell phenotypes.
Main Results:
- Plasmodium parasites were observed in mitotic hepatoma cells, initially reducing mitosis and causing binucleation.
- Complete Plasmodium liver stage development occurred in hepatoma cells arrested in S phase.
- Murine and human hepatocytes remained quiescent during infection in vivo and in vitro.
Conclusions:
- Plasmodium liver stage development is independent of host hepatocyte cell cycle progression.
- Parasite replication does not necessitate host cell division or proliferation.
- This clarifies a key aspect of the Plasmodium lifecycle in the mammalian host.
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