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[Cytoadherence of Plasmodium falciparum and complications of malaria].

Marc Trossaërt, Alioune Dièye, Yakhya Dièye, Sarthou Jl

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Abstract

Sequestration is a phenomenon where mature Plasmodium falciparum infected-erythrocytes block microvessels. Many cells (particularly epithelial cells) can cytoadhere to these erythrocytes and this may play an important role in the physiopathology of cerebral malaria. Many in vitro models have been proposed. They permitted different studies about cytoadherence and clinical effects. Contradictory results have been yet published. Investigations at a molecular level of cytoadherence moiety contribute to a better understanding of physiopathology and therapeutic improvements of cerebral malaria.

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What this paper is about

Sequestration is a phenomenon where mature Plasmodium falciparum infected-erythrocytes block microvessels. Many cells (particularly epithelial cells) can cytoadhere to these erythrocytes and this may play an important role in the physiopathology of cerebral malaria. Many in vitro models have been proposed. They permitted different studies about cytoadherence and clinical effects. Contradictory results have been yet published. Investigations at a molecular level of cytoadherence moiety contribute to a better understanding of physiopathology and therapeutic improvements of cerebral malaria.

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Available abstract

Sequestration is a phenomenon where mature Plasmodium falciparum infected-erythrocytes block microvessels. Many cells (particularly epithelial cells) can cytoadhere to these erythrocytes and this may play an important role in the physiopathology of cerebral malaria. Many in vitro models have been proposed. They permitted different studies about cytoadherence and clinical effects. Contradictory results have been yet published. Investigations at a molecular level of cytoadherence moiety contribute to a better understanding of physiopathology and therapeutic improvements of cerebral malaria.

Key concepts: Cerebral Malaria, Plasmodium falciparum, Malaria, Pathophysiology, In vitro, Plasmodium (life cycle), Immunology, Severe Malaria

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