Population pharmacokinetics and therapeutic response of CGP 56697 (artemether+benflumetol) in malaria patients
- 1 December 1998
- journal article
- clinical trial
- Published by Wiley in British Journal of Clinical Pharmacology
- Vol. 46 (6) , 553-561
- https://doi.org/10.1046/j.1365-2125.1998.00830.x
Abstract
Aims To investigate the pharmacokinetic and pharmacodynamic properties of artemether and benflumetol in a fixed combination tablet (CGP 56697) and to offer an explanation for the lower than expected cure rate in a Thai clinical trial. Methods Two hundred and sixty patients were enrolled into a randomized, double-blind, parallel group, dose-finding trial. CGP 56697 was given orally, either as: A, 4×4 tablets over 48 h; B, 4×2 tablets over 48 h or C, 3×4 tablets over 24 h. Each tablet contained artemether 20 mg amd benflumetol 120 mg. The pharmacokinetics were determined using a population-based approach combining full profiles (42 patients) and sparse data (218 patients). Parasite clearance time and 28 day cure rate were correlated with the derived pharmacokinetic parameters. Results The median absorption half-life of benflumetol was 5.3 h, with a tmax of 10 h and terminal elimination half-life of 4.5 days. For artemether (and its metabolite, dihydroartemisinin), the corresponding values were 1.9 (1.9) h, 1.8 (1.2) h, and 0.84 (0.43) h. The variability in bioavailability of artemether and dihydroartemisinin was large both between doses and between patients, but was less pronounced for benflumetol. Compared with the first dose, benflumetol bioavailability was estimated to increase three-fold by the third and fourth doses. Higher artemether or dihydroartemisinin AUC was found to decrease parasite clearance time. Higher benflumetol AUC was found to significantly increase the chance of cure. Conclusions Using a population-based approach it was confirmed that the pharmacokinetic and pharmacodynamic properties of benflumetol and artemether differ markedly. Benflumetol AUC is associated with cure and the effect of benflumetol when coadministered with artemether is to prevent recrudescence. The mode of action of benflumetol is consistent with its longer elimination half-life. A short course of low-dose artemether, which is rapidly absorbed and has a short elimination half-life, produced effective parasite clearance. The complementary pharmacokinetic and pharmacodynamic properties of benflumetol and artemether was the main rationale for developing a fixed-dose combination. While the 4×4 dose regimen is very effective in most endemic areas, the poorer absorption (2.5 fold lower than in China) and the more resistant parasites in Thailand require higher doses of this drug.Keywords
This publication has 25 references indexed in Scilit:
- Artemisinin population pharmacokinetics in children and adults with uncomplicated falciparum malariaBritish Journal of Clinical Pharmacology, 1998
- Single dose pharmacokinetics of oral artemether in healthy Malaysian volunteersPublished by Wiley ,1997
- Clinical Pharmacology and Therapeutic Potential of Artemisinin and its Derivatives in the Treatment of MalariaDrugs, 1996
- Comparative bioavailability of oral, rectal, and intramuscular artemether in healthy subjects: use of simultaneous measurement by high performance liquid chromatography and bioassayBritish Journal of Clinical Pharmacology, 1996
- Population pharmacokinetics of proguanil in patients with acute P. falciparum malaria after combined therapy with atovaquoneBritish Journal of Clinical Pharmacology, 1996
- Clinical efficacy and pharmacokinetics of artemisinin monotherapy and in combination with mefloquine in patients with falciparum malariaBritish Journal of Clinical Pharmacology, 1996
- PCR and strain identification in Plasmodium falciparumParasitology Today, 1993
- Comparison of oral artemether and mefloquine in acute uncomplicated falciparum malariaThe Lancet, 1992
- Effects of food on drug absorptionPharmacology & Therapeutics, 1989
- Estimation of population characteristics of pharmacokinetic parameters from routine clinical dataJournal of Pharmacokinetics and Biopharmaceutics, 1977