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Plasmodium falciparum Gametocyte Culture and Mosquito Infection Through Artificial Membrane Feeding
Published on: July 3, 2020
Plasmodium chabaudi: effect of antimalarial drugs on gametocytogenesis
1Institute of Cell, Animal & Population Biology, Division of Biological Sciences, University of Edinburgh, Edinburgh EH9 3JT, United Kingdom. angus.buckling@plant-sciences.ox.ac.uk
Abstract:
The proportion of asexual blood-stage malaria parasites that develop into transmission stages (gametocytes) can increase in response to stress. We investigated whether stress imposed by a variety of antimalarial drugs administered before or during infection increased gametocyte production (gametocytogenesis) in vivo in the rodent malaria parasite, Plasmodium chabaudi. All methods of drug treatment greatly reduced the numbers of asexual parasites produced during an infection but resulted in either no reduction in numbers of gametocytes or a smaller reduction than that experienced by asexuals. We used a simple model to estimate temporal variation in gametocyte production. Temporal patterns of gametocytogenesis did not greatly differ between untreated and prophylaxis infections, with rates of gametocytogenesis always increasing as the infection progressed. In contrast, administration of drugs 5 days after infection stimulated increased rates of gametocytogenesis early in the infection, resulting in earlier peak gametocyte densities relative to untreated infections. Given the correlation between gametocyte densities and infectivity to mosquito vectors, and the high frequency of subcurative drug therapy and prophylaxis in human populations, these data suggest that antimalarial drugs may frequently have only a small effect on reducing malaria transmission and may help to explain the rapid spread of drug-resistant geno-types.
Insights
Antimalarial drugs can increase malaria parasite transmission stages (gametocytes) despite reducing asexual parasite numbers. This suggests drugs may not effectively reduce malaria transmission and could contribute to drug resistance spread.
Area of Science:
- Malariology
- Parasitology
- Drug Resistance Studies
Background:
- Stress can increase malaria parasite (Plasmodium) gametocyte production.
- Antimalarial drugs are widely used for treatment and prophylaxis.
Purpose of the Study:
- To investigate if antimalarial drugs increase gametocyte production (gametocytogenesis) in Plasmodium chabaudi.
- To assess the impact of drug stress on malaria parasite development and transmission stages.
Main Methods:
- Administered various antimalarial drugs to infected rodents (Plasmodium chabaudi) before or during infection.
- Used a mathematical model to estimate temporal variation in gametocyte production.
- Compared gametocyte densities and asexual parasite reduction between treated and untreated infections.
Main Results:
- Drug treatments significantly reduced asexual parasite numbers but had minimal impact on gametocyte numbers.
- Prophylactic drug administration showed similar gametocytogenesis patterns to untreated infections.
- Treatment initiated during infection stimulated earlier gametocyte production and higher peak densities.
Conclusions:
- Antimalarial drugs may not substantially reduce malaria transmission due to increased gametocyte production.
- Drug pressure might inadvertently promote the spread of drug-resistant malaria genotypes.
- Subcurative drug therapy and prophylaxis could play a role in malaria transmission dynamics.
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