Periodic and chaotic host-parasite interactions in human malaria.

Abstract:

:It has been recognized since ancient times that malaria fever is highly periodic but the mechanism has been poorly understood. Malaria fever is related to the parasite growth cycle in erythrocytes. After a fixed period of replication, a mature parasite (schizont) causes the infected erythrocyte to rupture, releasing progeny that quickly invade other erythrocytes. Simultaneous rupture of a large number of schizonts stimulates a host fever response. Febrile temperatures are damaging to Plasmodium falciparum, particularly in the second half of its 48-hr replicative cycle. Using a mathematical model, we show that these interactions naturally tend to generate periodic fever. The model predicts chaotic parasite population dynamics at high multiplication rates, consistent with the classical observation that P. falciparum causes less regular fever than other species of parasite.

authors

Kwiatkowski D,Nowak M

doi

10.1073/pnas.88.12.5111

subject

Has Abstract

pub_date

1991-06-15 00:00:00

pages

5111-3

issue

12

eissn

0027-8424

issn

1091-6490

journal_volume

88

pub_type

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