Population Pharmacokinetics and Pharmacodynamics of Artemether and Lumefantrine during Combination Treatment in Children with Uncomplicated Falciparum Malaria in Tanzania

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dc.contributor.author Hietala, S.F.
dc.contributor.author Mårtensson, A.
dc.contributor.author Ngasala, B.
dc.contributor.author Dahlstrom, S.
dc.contributor.author Lindegårdh, N.
dc.contributor.author Annerberg, A.
dc.contributor.author Premji, Z.
dc.contributor.author Farnert, A.
dc.contributor.author Gil, P.
dc.contributor.author Bjorkman, A.
dc.contributor.author Ashton, M.
dc.date.accessioned 2013-02-11T07:20:56Z
dc.date.available 2013-02-11T07:20:56Z
dc.date.issued 2010
dc.identifier.citation Hietala, S. F., Mårtensson, A., Ngasala, B., Dahlström, S., Lindegårdh, N., Annerberg, A., ... & Ashton, M. (2010). Population pharmacokinetics and pharmacodynamics of artemether and lumefantrine during combination treatment in children with uncomplicated falciparum malaria in Tanzania. Antimicrobial agents and chemotherapy, 54(11), 4780-4788.
dc.identifier.issn 00252-10
dc.identifier.other doi:10.1128/AAC.00252-10
dc.identifier.uri http://hdl.handle.net/123456789/250
dc.description.abstract The combination of artemether (ARM) and lumefantrine is currently the first-line treatment of uncomplicated falciparum malaria in mainland Tanzania. While the exposure to lumefantrine has been associated with the probability of adequate clinical and parasitological cure, increasing exposure to artemether and the active metabolite dihydroartemisinin (DHA) has been shown to decrease the parasite clearance time. The aim of this analysis was to describe the pharmacokinetics and pharmacodynamics of artemether, dihydroartemisinin, and lumefantrine in African children with uncomplicated malaria. In addition to drug concentrations and parasitemias from 50 Tanzanian children with falciparum malaria, peripheral parasite densities from 11 asymptomatic children were included in the model of the parasite dynamics. The population pharmacokinetics and pharmacodynamics of artemether, dihydroartemisinin, and lumefantrine were modeled in NONMEM. The distribution of artemether was described by a two-compartment model with a rapid absorption and elimination through metabolism to dihydroartemisinin. Dihydroartemisinin concentrations were adequately illustrated by a one-compartment model. The pharmacokinetics of artemether was time dependent, with typical oral clearance increasing from 2.6 liters/h/kg on day 1 to 10 liters/h/kg on day 3. The pharmacokinetics of lumefantrine was sufficiently described by a one-compartment model with an absorption lag time. The typical value of oral clearance was estimated to 77 ml/h/kg. The proposed semimechanistic model of parasite dynamics, while a rough approximation of the complex interplay between malaria parasite and the human host, adequately described the early effect of ARM and DHA concentrations on the parasite density in malaria patients. However, the poor precision in some parameters illustrates the need for further data to support and refine this model. en_GB
dc.language.iso en en_GB
dc.publisher American Society for Microbiology en_GB
dc.relation.ispartofseries Antimicrobial Agents and Chemotherapy;54(11)4780–4788
dc.subject Pharmacokinetics en_GB
dc.subject Pharmacodynamics en_GB
dc.subject Artemether en_GB
dc.subject Lumefantrine en_GB
dc.subject Uncomplicated Falciparum Malaria en_GB
dc.subject Tanzania en_GB
dc.title Population Pharmacokinetics and Pharmacodynamics of Artemether and Lumefantrine during Combination Treatment in Children with Uncomplicated Falciparum Malaria in Tanzania en_GB
dc.type Article en_GB


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