Plasmodium falciparum Maturation Abolishes Physiologic Red Cell Deformability
- 27 January 1984
- journal article
- research article
- Published by American Association for the Advancement of Science (AAAS) in Science
- Vol. 223 (4634) , 400-403
- https://doi.org/10.1126/science.6362007
Abstract
Normal red cells deform markedly as they pass through the spleen and the peripheral capillaries. In these studies, the effects of Plasmodium falciparum infection and maturation on the deformability of parasitized red cells exposed to fluid shear stress in vitro were examined by means of a rheoscope. Red cells containing the early (ring) erythrocytic stage of the parasite have impaired deformability at physiologic shear stresses, and recover their normal shape more slowly. Red cells containing more mature parasites (trophozoites or schizonts) exhibit no deformation under the same conditions. These results provide a mechanism to explain the ability of the spleen to remove parasitized red cells from the circulation of both immune and nonimmune hosts.Keywords
This publication has 28 references indexed in Scilit:
- Permselectivity changes in malaria (Plasmodium falciparum) infected human red blood cell membranesJournal of Cellular Physiology, 1983
- A two-dimensional model for capillary flow of an asymmetric cellMicrovascular Research, 1982
- Falciparum Malaria-Infected Erythrocytes Specifically Bind to Cultured Human Endothelial CellsScience, 1981
- Periarterial macrophage sheaths (Ellipsoids) in cat spleen—an electron microscope studyJournal of Anatomy, 1981
- Relationship of alterations in splenic clearance function and microcirculation to host defense in acute rodent malaria.Journal of Clinical Investigation, 1981
- What is red cell deformability?Scandinavian Journal of Clinical and Laboratory Investigation, 1981
- Analysis of factors regulating erythrocyte deformability.Journal of Clinical Investigation, 1980
- Human Malaria Parasites in Continuous CultureScience, 1976
- Alteration in the rheologic properties of plasmodium knowlesi-infected red cells. A possible mechanism for capillary obstructionJournal of Clinical Investigation, 1971