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Intravital Observation of Plasmodium berghei Sporozoite Infection of the Liver

Author

Listed:
  • Ute Frevert
  • Sabine Engelmann
  • Sergine Zougbédé
  • Jörg Stange
  • Bruce Ng
  • Kai Matuschewski
  • Leonard Liebes
  • Herman Yee

Abstract

Plasmodium sporozoite invasion of liver cells has been an extremely elusive event to study. In the prevailing model, sporozoites enter the liver by passing through Kupffer cells, but this model was based solely on incidental observations in fixed specimens and on biochemical and physiological data. To obtain direct information on the dynamics of sporozoite infection of the liver, we infected live mice with red or green fluorescent Plasmodium berghei sporozoites and monitored their behavior using intravital microscopy. Digital recordings show that sporozoites entering a liver lobule abruptly adhere to the sinusoidal cell layer, suggesting a high-affinity interaction. They glide along the sinusoid, with or against the bloodstream, to a Kupffer cell, and, by slowly pushing through a constriction, traverse across the space of Disse. Once inside the liver parenchyma, sporozoites move rapidly for many minutes, traversing several hepatocytes, until ultimately settling within a final one. Migration damage to hepatocytes was confirmed in liver sections, revealing clusters of necrotic hepatocytes adjacent to structurally intact, sporozoite-infected hepatocytes, and by elevated serum alanine aminotransferase activity. In summary, malaria sporozoites bind tightly to the sinusoidal cell layer, cross Kupffer cells, and leave behind a trail of dead hepatocytes when migrating to their final destination in the liver. Tiny parasites of the Plasmodium genus cause malaria. New details of the parasites' life cycle are uncovered through the use of intravital microscopy to observe the parasites' infiltration of the liver.

Suggested Citation

  • Ute Frevert & Sabine Engelmann & Sergine Zougbédé & Jörg Stange & Bruce Ng & Kai Matuschewski & Leonard Liebes & Herman Yee, 2005. "Intravital Observation of Plasmodium berghei Sporozoite Infection of the Liver," PLOS Biology, Public Library of Science, vol. 3(6), pages 1-1, May.
  • Handle: RePEc:plo:pbio00:0030192
    DOI: 10.1371/journal.pbio.0030192
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    Cited by:

    1. Jacqueline M Leung & Mark A Rould & Christoph Konradt & Christopher A Hunter & Gary E Ward, 2014. "Disruption of TgPHIL1 Alters Specific Parameters of Toxoplasma gondii Motility Measured in a Quantitative, Three-Dimensional Live Motility Assay," PLOS ONE, Public Library of Science, vol. 9(1), pages 1-10, January.
    2. Sung-Jae Cha & Min-Sik Kim & Chan Hyun Na & Marcelo Jacobs-Lorena, 2021. "Plasmodium sporozoite phospholipid scramblase interacts with mammalian carbamoyl-phosphate synthetase 1 to infect hepatocytes," Nature Communications, Nature, vol. 12(1), pages 1-10, December.

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