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dc.contributor.authorKokwaro, G
dc.contributor.authorIchagichu, M
dc.contributor.authorNgotho, M
dc.contributor.authorKaranja, SM
dc.contributor.authorKariuki, T
dc.contributor.authorNzila, A
dc.contributor.authorOzwara, H
dc.date.accessioned2013-06-10T08:43:20Z
dc.date.available2013-06-10T08:43:20Z
dc.date.issued2013
dc.identifier.citationJ Med Primatol. 2013 Apr;42(2):62-70. doi: 10.1111/jmp.12034. Epub 2013 Jan 7en
dc.identifier.uriwww.ncbi.nlm.nih.gov/whalecom0/pubmed/23294369
dc.identifier.urihttp://hdl.handle.net/11295/30513
dc.description.abstractDrug resistance against first-line antimalarials warrants search for new lead compounds and repurposing of drugs such as methotrexate. Animal models are required for preclinical drug development before clinical testing. This study aimed to develop a preclinical drug development system in baboons infected with Plasmodium knowlesi. METHODS: Protocols for drug administration, pharmacokinetics, clinical chemistry and haematology were developed in the baboon model. Baboons were infected with P. knowlesi and methotrexate administered orally for 5 days. Clinical signs, parasitaemia, gross and histopathology examinations were conducted to determine effect of methotrexate in baboons. RESULTS: No major clinical chemistry, haematology and pathological changes attributable to methotrexate were observed. Parasitaemia suppression of 77.67% was achieved at a methotrexate dose of 3.0 mg/kg. CONCLUSIONS: A protocol for preclinical drug development in the baboon was optimized. Methotrexate suppressed P. knowlesi malaria in baboons. These findings warrant further characterization of methotrexate for use in combination therapy.en
dc.language.isoenen
dc.publisherUniversity of Nairobien
dc.titlePreclinical drug evaluation system in the Plasmodium knowlesi baboon model of malaria: the methotrexate studyen
dc.typeArticleen
local.publisherDepartment of Tropical and Infectious Diseases, Institute of Primate Research, Karen, Nairobi, Kenyaen


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