Mefloquine Pharmacokinetic-Pharmacodynamic Models: Implications for Dosing and Resistance

Author:

Simpson Julie A.12,Watkins Emmeline R.3,Price Ric N.42,Aarons Leon5,Kyle Dennis E.6,White Nicholas J.12

Affiliation:

1. Faculty of Tropical Medicine, Mahidol University,1 and

2. Centre for Tropical Medicine, Nuffield Department of Clinical Medicine, John Radcliffe Hospital, Headington,2 and

3. Wellcome Trust Centre for the Epidemiology of Infectious Diseases, University of Oxford, Oxford,3 and

4. Shoklo Malaria Research Unit, Mae Sod 63110, Tak Province,4Thailand, and

5. School of Pharmacy and Pharmaceutical Sciences, University of Manchester, Manchester,5 United Kingdom

6. Department of Immunology and Medicine, U.S. Armed Forces Research Institute of Medical Sciences,6 Bangkok, and

Abstract

ABSTRACT Antimalarial resistance develops and spreads when spontaneously occurring mutant malaria parasites are selected by concentrations of antimalarial drug which are sufficient to eradicate the more sensitive parasites but not those with the resistance mutation(s). Mefloquine, a slowly eliminated quinoline-methanol compound, is the most widely used drug for the treatment of multidrug-resistant falciparum malaria. It has been used at doses ranging between 15 and 25 mg of base/kg of body weight. Resistance to mefloquine has developed rapidly on the borders of Thailand, where the drug has been deployed since 1984. Mathematical modeling with population pharmacokinetic and in vivo and in vitro pharmacodynamic data from this region confirms that, early in the evolution of resistance, conventional assessments of the therapeutic response ≤28 days after treatment underestimate considerably the level of resistance. Longer follow-up is required. The model indicates that initial deployment of a lower (15-mg/kg) dose of mefloquine provides a greater opportunity for the selection of resistant mutants and would be expected to lead more rapidly to resistance than de novo use of the higher (25-mg/kg) dose.

Publisher

American Society for Microbiology

Subject

Infectious Diseases,Pharmacology (medical),Pharmacology

Reference18 articles.

1. Clearance kinetics of parasites and pigment-containing leukocytes in severe malaria.;Day N. P. J.;Blood,1996

2. Quantitative assessment of antimalarial activity in vitro by a semiautomated microdilution technique

3. Modelling the chloroquine chemotherapy of falciparum malaria: the value of spacing a split dose.;Hoshen M. B.;Parasitology,1998

4. Clinical pharmacokinetics of mefloquine.;Karbwang J.;Clin. Pharmacokinet.,1990

5. Kitchen S. F. The infection in the intermediate host: symptomatology falciparum malaria A symposium on human malaria. Moulton F. R. 1941 196 207 American Association for the Advancement of Science Washington D.C.

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