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K Na-Bangchang

Publications and source records attributed to K Na-Bangchang.

At least 19 recordsLinked to original sources

An alternative high-performance liquid chromatographic method for determination of clindamycin in plasma.

A simple, sensitive, selective and reproducible method based on a reversed-phase chromatography was developed for the determination of clindamycin in human plasma. Clindamycin was separated from the internal standard (phenobarbital) on a Luna C18 column (250 x 4.6 mm, 5 mm particle size: Phenomenex, USA), with retention times of 5.6 and 14.2 minutes, respectively. Ultraviolet detection was set at 210 nm. The mobile phase consisted of a solution of 0.02 M disodiumhydrogenphosphate (pH 2.8) and acetonitrile (76:24 v/v), running through the column at a flow rate of 1.0 ml/min. The chromatographic analysis was operated at 25 degrees C. Sample preparation (1 ml plasma) was done by a single step liquid-liquid extraction with water saturated ethylacetate. Calibration curves in plasma at concentrations of 0.25, 0.5, 1.0, 2.0, 4.0, 8.0 and 16.0 microg/ml were all linear with correlation coefficients better than 0.999. The precision of the method based on within-day repeatability and reproducibility (day-to-day variation) was below 15% (% coefficient of variations: %CV). Good accuracy was observed for both the intra-day and inter-day assays, as indicated by the minimal deviation of mean values found with measured samples from that of the theoretical values (below +/- 15%). Limit of quantification was accepted as 0.07 microg using 1 ml plasma sample. The mean recovery for clindamycin and the internal standard were greater than 95%. The method was free from interference from fosmidomycin, including commonly used drugs, antimalarials and antihelminthics. The method appears to be robust and has been applied to a pharmacokinetic study of clindamycin in a patient with malaria following oral doses of clindamycin at 10 mg/kg body weight given twice daily for 7 days.

Anti-Bacterial Agents↗

Assessments of pharmacokinetic drug interactions and tolerability of albendazole, praziquantel and ivermectin combinations.

The pharmacokinetic interactions and tolerability of albendazole, praziquantel and ivermectin combinations were assessed in 23 healthy Thai volunteers (12 males and 11 females). The study was an open, randomised, three-way crossover design in which each subject attended the study on three separate occasions (Phases I, II and III), of 4 d or 8 d each, with at least 1 or 2 weeks (but not longer than 2 months) between each phase. All subjects received the three study drug regimens as follows: regimen I, oral praziquantel (40 mg/kg body weight); regimen II, oral ivermectin (200 microg/kg body weight) given concurrently with an oral dose of albendazole (400 mg); and regimen III, oral ivermectin given concurrently with albendazole and praziquantel. All treatment regimens showed acceptable tolerability profiles. The incidence of overall drug-related adverse events was significantly higher following regimens I (12/23) and III (7/23) compared with that following regimen II (0/23). Six statistically significant changes in the pharmacokinetic parameters of albendazole sulphoxide (Cmax, AUC0-infinity, Vz/F, CL/F), praziquantel (Vz/F) and ivermectin (AUC0-infinity) were observed when the three drugs were given concurrently. However, based on US Food and Drug Administration criteria, these changes were not considered of clinical relevance.

Adult↗

The pharmacokinetics and pharmacodynamics of atovaquone and proguanil for the treatment of uncomplicated falciparum malaria in third-trimester pregnant women.

OBJECTIVE: To investigate the pharmacokinetics, safety and efficacy of the recommended 3-day treatment regimen of Malarone in third-trimester pregnant women with acute uncomplicated falciparum malaria. METHODS: Twenty-six pregnant women in their third trimester (gestational age: 24-34 weeks) with acute uncomplicated Plasmodium falciparum malaria who fulfilled the enrollment criteria were recruited from the antenatal clinics of Mae Sot Hospital, Tak Province, Thailand, (n = 8) and the Tropical Diseases Research Centre, Ndola, Zambia (n = 18). Patients were treated with four Malarone tablets (GlaxoSmithKline: each tablet contains 250 mg atovaquone and 100 mg proguanil) once daily for 3 consecutive days. Blood samples were taken for pharmacokinetic investigations of atovaquone, proguanil, and cycloguanil up to 288 h (day 14) after the last dose. Urine samples were collected for the evaluation of proguanil and cycloguanil 0-8, 8-16, 16-24 and 24-48 h after the last dose. Efficacy assessments included the clinical and parasitological evaluation of mothers and newborns. Adverse events were evaluated at each visit to the antenatal clinics. RESULTS: Malarone appeared to be effective and well tolerated when used for the treatment of falciparum malaria in pregnant women. All patients showed prompt clinical improvement and the disappearance of parasitaemia after treatment. There were no serious adverse effects or unexpected adverse effects and no stillbirths or spontaneous abortions. The plasma concentration-time profiles of atovaquone and proguanil in most cases were best characterised by the two-compartment open model with zero-order input with/without absorption lag time and first-order elimination. There were no significant differences in any of the pharmacokinetic parameters of atovaquone, proguanil or cycloguanil between patients from Thailand and Zambia. For atovaquone, a Cmax of 1.33-8.33 microg/ml was reached at 2.0-9.3 h after the last dose on day 2. V/F, CL/F and t(1/2beta) were 6.9-39.5 l/kg, 83-384 ml/h/kg, and 57.8-130.8 h, respectively. The Cmax and t(max) values for proguanil versus cycloguanil were 383-918 versus 0-129 ng/ml and 3.3-8.6 versus 3-12 h, respectively. V/F, CL/F, and t(1/2beta) values for proguanil were 10.7-34.0 l/kg, 431-1,662 ml/h/kg and 11.2-30.3 h. The CL(R-CG), t(1/2z), (CG), proguanil/cycloguanil metabolic ratios, AUC ratios for proguanil to cycloguanil (AUC(PG/CG)) were 107.2-1,001 ml/h/kg, 5-95 ml/h/kg, 7.8-20.7 h, 5-57, and 4.7-20.2, respectively. CONCLUSION: The pharmacokinetics of atovaquone and cycloguanil appeared to be influenced by the pregnancy status, resulting in an decrease in the Cmax and AUC of approximately twofold.

Adolescent↗

Standard dose enteric-coated mycophenolate sodium (myfortic) delivers rapid therapeutic mycophenolic acid exposure in kidney transplant recipients.

Previous studies have shown poor absorption of enteric-coated mycophenolate sodium (E-MPS) during the initial post-kidney transplantation (KT) period. The percentage of patients with adequate therapeutic exposure (target AUC 30-60 microg.h/mL) of mycophenolic acid is 55%, 86%, and 100% at days 14, 90, and 180 postgrafting. To assess the adequacy of mycophenolic acid (MPA) delivery during the initial period, we prospectively studied the pharmacokinetics (AUC0-12 h of MPA (measured by high-performance liquid chromatography) in 12 patients after their first single dose of 720 mg of oral E-MPS and 3 to 8 months after 720 mg twice a day prescribed daily. Concomitant immunosuppression included CsA and prednisolone. Evaluation of the pharmacokinetic profiles was repeated at 2 weeks. The patients' mean +/- SD body weight was 48.1 +/- 8.8 kg; their mean (range) values of AUC0-12 h for MPA were 73.9 +/- 49.5 microg.h/ml (31.9-190) on day 1 and 74.3 +/- 44.3 (30.5-178) microg.h/ml on day 14. The mean nadir serum creatinine was 1.1 +/- 0.4 mg/dL. The patient and graft survival rates were 100%. Two patients (15%) developed significant diarrhea requiring E-MPS dose reduction. Other complications included urinary tract infections (n = 2), CMV syndrome (n = 1), borderline acute rejection (n = 1), and reversible CsA nephrotoxicity (n = 3). We conclude that the use of a standard dose of E-MPS results in immediate delivery of adequate therapeutic systemic MPA exposure in all patients. The absorption profile was better than that described previously.

Administration, Oral↗

Investigation of bioavailability, pharmacokinetics and safety of new pediatric formulations of artesunate and mefloquine.

The bioavailability/pharmacokinetics of dihydroartemisinin and mefloquine following the oral doses of 4 mg/kg body weight artesunate (Cambodian Pharmaceutical Enterprise) given concurrently with 10 mg/kg body weight oral mefloquine artesunate (Cambodian Pharmaceutical Enterprise) were investigated in 15 healthy Cambodian male volunteers. Both formulations were generally well tolerated. Both produced satisfactory plasma/blood concentration-time profiles. Oral artesunate and mefloquine were rapidly absorbed from gastrointestinal tract with marked inter-individual variation. For the dihydroartemisinin, the median (95% Cl) Cmax of 748 (304-1,470) ng/ml was observed at 1.5 (0.3-3.0) hours (tmax) after drug administration. The median (95% CI) values for AUC0-infinity, lambda(z) and tl/2z were 1.673 (1.08-2.88) microg.h/ml, 0.54(0.24-1.1)/hour and 1.3 (0.6-2.9) hours, respectively. For mefloquine, a median (95% Cl) Cmax of 1,000 (591-1,500) ng/ml was observed at 4 (2-6) hours (tmax) after drug administration. The median (95% CI) value for AUC0-168h was 3.92 (2.88-7.02) microg.h/ml.

Administration, Oral↗

The pharmacokinetics of eflornithine (alpha-difluoromethylornithine) in patients with late-stage T.b. gambiense sleeping sickness.

OBJECTIVE: To investigate the plasma, cerebrospinal fluid (CSF) levels and pharmacokinetics of eflornithine (DFMO) in patients with late-stage T.b. gambiense sleeping sickness who were treated with an oral DFMO at 100 mg/kg or 125 mg/kg body weight every 6 h for 14 days. METHODS: Plasma and CSF concentrations of DFMO were measured during day 10 and day 15 in patients following oral DFMO at 100 mg/kg (group I: n=12) and 125 mg/kg (group II: n=13) body weight every 6 h for 14 days. Clinical and parasitological assessments were performed at 24 h after the last dose of DFMO and at 12 months. RESULTS: Patients in each group had a good initial response, but relapse was observed in six patients (three patients for each group) during 12 months follow-up. Plasma DFMO concentrations did not increase proportionally to doses when the dose increased from 100 mg/kg to 125 mg/kg body weight given every 6 h (60-70% of the expected increase). In most cases, concentration-time profiles of DFMO in each group were best fit using a two-compartment open model with first-order input, with absorption lag-time and first-order elimination. Average trough (C(ss-min)) and average (C(ss-ave)) plasma DFMO concentrations during steady state varied between 189-448 nmol/ml and 234-528 nmol/ml, following 100 mg/kg and 125 mg/kg dose group, respectively. C(max), t(max) and AUC(0- infinity ) values following the last dose were 296-691 nmol/l, 2-3 h, and 2911-6286 nmol h/ml, respectively. V(z)/F, CL/F and t(1/2z) values were 0.47-2.66 l/kg, 0.064-0.156 l/h/kg, and 3.0-16.3 h, respectively. CSF concentrations at steady state varied between 22.3 nmol/ml and 64.7 nmol/ml. Patients who had treatment failure tended to have lower plasma and CSF DFMO concentrations than those who had successful treatment. CONCLUSION: Oral DFMO at the dose of 125 mg/kg body weight given every 6 h for 14 days may not produce adequate therapeutic plasma and CSF levels for patients with late-stage T.b. gambiense sleeping sickness.

Adolescent↗

The pharmacokinetics of mycophenolate mofetil in Thai kidney transplant recipients.

Mycophenolate mofetil, in addition to cyclosporine and prednisolone significantly reduces the rate of acute rejection. The original recommended dose of MMF is fixed at 2 g/day. However, Thai patients cannot tolerate this dose due to gastrointestinal adverse effects. So the majority of patients are maintained on MMF at doses ranging from 0.5 to 2 g/day, according to their tolerability with an acceptable rate of acute rejection episodes. This study sought to determine the steady state pharmacokinetics of MMF in Thai kidney transplant recipients on stable doses of MMF. Forty-six kidney transplant patients more than 3 months on a stable MMF dose of 0.5, 1, 1.5, and 2 g/day together with cyclosporine and prednisolone underwent a single pharmacokinetic blood sampling for 12 hours following the morning dose of MMF. The analysis of plasma concentrations of mycophenolic acid (MPA), the sole pharmacologically active metabolite of MMF, was performed by using an high performance liquid chromatography method. Sparse efficient sampling strategies were employed to optimize the blood sampling schedule. Hence, blood samples were collected at 0, 0.5, 2, 12 hours after the MMF dose. The sampling time was designed to best estimate AUC(0-tau) at steady state. The initial MPA-Bayesian estimator were used for MPA concentrations that would allow the best estimation of Vc, CLt, and Ka. In this study, there is a high interindividual variability in the AUC. The median MPA AUC was 34.3 ug.h/mL (range 14.1-65.4). Thirty-one of 45 (68.9%) patients had a MPA AUC within 20 to 40 ug.h/mL, which is the most reasonable risk: benefit ratio in terms of preventing acute rejection episodes. Forty-one of 45 (91.1%) patients had MPA AUC within 20 to 60 ug.h/mL, which is the MPA therapeutic range. The highest Pearson correlation coefficient of determination between MPA AUC and a single concentration was observed with MPA 2 hours (r = 0.622) Without a fixed dosing regimen, most Thai kidney transplant recipients who receive MMF as part of a maintenance immunosuppressive regimen have the MPA AUC within the therapeutic window. The single drug concentration that correlates well with the AUC is MPA at 2 hours postdose.

Adult↗

Pharmacokinetic investigation of albendazole and praziquantel in Thai children infected with Giardia intestinalis.

The pharmacokinetics of albendazole/albendazole sulphoxide and praziquantel were investigated in Thai children with Giardia infection. Twenty school-age children were randomly allocated to receive either a single oral dose of albendazole (400 mg/child) or the same dose of albendazole given concurrently with a single oral dose of praziquantel (20 mg/kg). The concentrations of albendazole/albendazole sulphoxide and praziquantel in plasma samples, collected at intervals in the first 24 h post-treatment, were then quantified using HPLC with ultra-violet detection. No significant pharmacokinetic interaction between the albendazole and praziquantel was demonstrated. For albendazole sulphoxide, the active metabolite of albendazole, there was marked inter-individual variation in the maximum plasma concentration and the 'area under the curve'. The pharmacokinetics of albendazole sulphoxide were similar whether albendazole was given alone or in combination with praziquantel.

Administration, Oral↗

The pharmacokinetics of oral dihydroartemisinin and artesunate in healthy Thai volunteers.

The pharmacokinetics of oral dihydroartemisinin (DHA) following the dose of 2 and 4 mg/ kg body weight dihydroartemisinin (Twisinin, T-2 Program, Thailand) and 4 mg/kg body weight oral artesunate (AS; Guilin Pharmaceutical Works, Guangxi, China) were investigated in 20 healthy Thai volunteers (10 males, 10 females). All formulations were generally well tolerated. Oral DHA was rapidly absorbed from gastrointestinal tract with marked inter-individual variation. The pharmacokinetics of DHA following the two dose levels were similar and linearity in its kinetics was observed. Based on the model-independent pharmacokinetic analysis, median (95% CI) values for Cmax of 181 (120-306) and 360 (181-658) ng/ml were achieved at 1.5 hours following 2 and 4 mg/kg body weight dose, respectively. The corresponding values for AUC0-infinity, t1/2z, CL/f and Vz/f were 377 (199-1,128) vs 907 (324-2,289) ng.h/ml, 0.96 (0.70-1.81) vs 1.2 (0.75-1.44) hours, 7.7 (4.3-12.3) vs 6.6 (3.1-10.1) l/kg, and 90.5 (28.6-178.2) vs 6.6 (3.1-10.1) ml/min/kg, respectively (2 vs 4 mg/kg dose). Oral AS was rapidly biotransformed to DHA, which was detectable in plasma as early as 15 minutes of AS dosing. Following 4 mg/kg dose, median (95% CI) value for Cmax of 519 (236-284) ng/ml was achieved at 0.7 (0.25-1.5) hours. AUC0-infinity, and t1/2z were 657 (362-2,079) ng.h/ml, 0.74 (0.34-1.42) hours, respectively. Cmax of DHA following oral AS were significantly higher, but total systemic exposure was greater following oral DHA at the same dose level (4 mg/kg body weight). There was no significant sex difference in pharmacokinetics of DHA.

Administration, Oral↗

High-performance liquid chromatographic method for determination of 2-difluoromethyl-DL-ornithine in plasma and cerebrospinal fluid.

A simple, sensitive, selective and reproducible method based on anion-exchange liquid chromatography with post-column derivatisation was developed for the determination of eflornithine (2-difluoromethyl-DL-ornithine; DFMO) in human plasma and cerebrospinal fluid. The 1-alkylthio-2-alkyl-isoindoles fluorescent derivative of the drug was separated from the internal standard (MDL 77246A) on an anion-exchange column (PRP-X300, 250x2.1 mm, 7-microm particle size: Hamilton, USA), with retention times of 6.9 and 10.7 min, respectively. Fluorescence detection was set at 430/340 nm (emission/excitation wavelength). The elution solvent consisted of a solution of 30 mM potassium dihydrogen phosphate buffer (pH 2.2) and acetonitrile (50:50, v/v), running through the column at a flow-rate of 0.3 ml/min. The chromatographic analysis was operated at 37 degrees C. Sample preparation for either plasma or CSF (100 microl) was done by single-step protein precipitation with 20% trichloroacetic acid after incubation at 4 degrees C for 1 h. Calibration curves for plasma (100, 200, 400, 600, 800 and 1200 nmol/100 microl, and 10, 20, 40, 80, 120 and 160 nmol/100 microl for the high and low concentration range curves, respectively) and CSF (1, 2, 4, 8, 16, 32 nmol/100 microl) were all linear with correlation coefficients better than 0.999. The precision of the method based on within-day repeatability and reproducibility (day-to-day variation) at high concentration range was below 15%, whereas at low concentration range was below 20% (% coefficient of variations: %C.V.) Good accuracy was observed for both the intra-day or inter-day assays, as indicated by the minimal deviation of mean values found with measured samples from that of the theoretical values (below +/-15 and +/-20% at high and low concentration range, respectively. The limit of quantification was accepted as 0.1 nmol using 100-microl samples. The mean recovery for DFMO and the internal standard were greater than 95%. The method was free from interference from commonly used drugs including antimalarials and antihelminthics. The method appears to be robust and has been applied to a pharmacokinetic study of DFMO in patients with African trypanosomiasis following oral doses of Ornidyl (Aventis Pharma, Frankfurt, Germany) at 500 mg/kg body weight (125 mg q.i.d.) for 14 days.

Calibration↗

Sensitivity of Plasmodium vivax to chloroquine in Sa Kaeo Province, Thailand.

Following a recent, abrupt local increase in the incidence of vivax malaria, a study was conducted in order to evaluate the efficacy of chloroquine for the treatment of 26 adult patients with acute vivax malaria in Sa Kaeo Province, Thailand. The chloroquine sensitivity of Plasmodium vivax has been assessed in parallel, using a growth inhibition method. Blood samples for the in vitro tests were taken prior to the administration of the standard treatment with chloroquine--in total 25 mg base/kg over 3 days--and primaquine 0.25 mg base/kg once daily for 14 days. The efficacy has been assessed according to the WHO standard in vivo test. The cure rate was 100%. No recrudescence was observed during the follow-up period of 28 days. The mean fever clearance time (FCT) was 40 h, the mean parasite clearance time (PCT) was 49 h. Mean IC(50) and IC(90) of the parasites were 28 and 171 nM, respectively. These results show that local P. vivax is still sensitive to chloroquine. The epidemic outbreak was therefore obviously not due to the presence of chloroquine-resistant P. vivax.

Adolescent↗

The pharmacokinetics, safety and tolerability of the co-administration of diethylcarbamazine and albendazole.

The pharmacokinetics, safety and tolerability of single, oral doses of diethylcarbamazine (DEC) and albendazole, given alone or in combination, were investigated in a double-blind, randomized and placebo-controlled trial involving 42 amicrofilaraemic subjects living in an area of India where lymphatic filariasis is endemic. The subjects (34 males and eight females, aged 18-52 years and weighing 46-66.5 kg) were randomly allocated to one of the three drug groups. Fourteen were given just DEC (6 mg/kg), another 14 were given just albendazole (400 mg) and the remaining 14 were given both DEC (6 mg/kg) and albendazole (400 mg). Blood samples for pharmacokinetic study were collected at specified intervals before and after drug administration. Plasma concentrations of DEC and albendazole/albendazole sulphoxide were estimated using gas chromatography and HPLC, respectively. The safety and tolerability of the treatments were evaluated through clinical and laboratory assessments. Both the DEC and albendazole were well tolerated when given alone or in combination, no adverse events being observed. In all three treatment groups, the drugs were rapidly absorbed from the gastro-intestinal tract although there was marked inter-individual#10; variation. The pharmacokinetics of DEC, albendazole and albendazole sulphoxide were similar, whether each drug was given alone or in combination. These results indicate that there is no adverse pharmacokinetic or pharmacodynamic reason why DEC and albendazole should not be co-administered to control lymphatic filariasis.

Administration, Oral↗

Association of adhesion molecule PECAM-1/CD31 polymorphism with susceptibility to cerebral malaria in Thais.

Adhesion molecules on endothelial cells are known to be important ligands for malaria infected red blood cells (PRBC) [Mol Biochem Parasitol, 76, (1996) 1], and may be involved in the pathogenic process of cerebral malaria (CM) which is the most serious complication of falciparum malaria, through enhancing micro embolism or sequestration in the capillaries of the brain. PECAM-1/CD31 is one of these candidate ligands and is coded by a polymorphic gene. Two hundred and ten Thai malaria patients (43 cerebral, 89 severe and 78 uncomplicated) were analyzed for their genetic polymorphism of CD31 to examine the clinical relationship between the disease and specific genotypes. Four alleles were defined 125 valine (V)-563 asparagine (N); 125V-563 serine (S); 125 leucine (L)-563N; and 125L-563S. We found that the frequency of the 125 V/V 563 N/N genotype was significantly high in CM patients as compared with severe cases without CM (P<0.01, OR=2.92), suggesting that this genotype is one of the risk factors for CM.

Adult↗

Strong association of a tumor necrosis factor-alpha promoter allele with cerebral malaria in Myanmar.

To investigate the host genetic factors affecting the clinical course of falciparum malaria, polymorphism of the tumor necrosis factor-alpha (TNF-alpha) promoter region was analyzed in patients with cerebral malaria. Two hundred and forty-three Myanmar patients with falciparum malaria at Mae Sot Malaria clinic and Mae Sot General Hospital located at the border between Thailand and Myanmar, were included in this study. Among the patients (128 from Karen, 115 from Burma), 200 were uncomplicated and 43 had cerebral malaria. The TNF-alpha 5'- flanking region showed biallelic polymorphic sites at -238, -308, -857, -863, -1031, and there were 7 alleles (TNFP-A, B, C, D, M1, M4, M7) found in the patients from Myanmar. We found that the TNFP-D allele was significantly associated with cerebral malaria in the populations from Karen (Pc<0.0001, OR=124.86) and Burma (Pc<0.0001, OR=34.50). TNFP-D showed no significant linkage disequilibrium with any alleles of HLA-B or HLA-DRB1, suggesting that TNFP-D was primarily associated with cerebral malaria in Myanmar.

Gene Frequency↗

Mefloquine concentration profiles during prophylactic dose regimens.

A pharmacokinetic study with (malaria) prophylactic doses of mefloquine hydrochloride was conducted in 12 healthy adult subjects (Caucasians), 6 females and 6 males, mean age 29.2 +/- 6.4 years, mean weight 70.6 +/- 13.4 kg. Doses of 250 mg mefloquine were administered on days 0, 1, 7, 14, 21 and 28. Six subjects received a further 5 weekly doses of 250 mg mefloquine, the others 5 further weekly doses of 125 mg. After the third dose the protective threshold mefloquine concentration in blood plasma was achieved in all subjects. In female subjects, mean Cmin ss, Cmax ss and AUCd 0-35 were significantly higher than in males. After the fifth dose, mean Cmax in females reached 1692 ng/ml (4.48 mumol/l), equivalent to a high therapeutic concentration. This is apparently due to a generally lower body weight and a narrower volume of distribution in women. Adverse reactions were significantly more frequent in women than in men. Headache, anorexia, insomnia and vertigo were the most common side effects. The lesser tolerability of mefloquine in females may be due to the higher drug concentrations in this group. This may indicate the need for appropriate adjustment of the prophylactic dose regimen of mefloquine in females.

Adult↗

Simple and sensitive high-performance liquid chromatographic.

A rapid, selective, sensitive, and reproducible reversed-phase HPLC procedure for the quantitative determination of mycophenolic acid (MPA)--an active plasma metabolite of the immunosuppressant mycophenolate mofetil (MMF) in plasma is described. The procedure involves one-step extraction of MPA and the internal standard, standard [RS-60461-000: (E)-6-[1,3-dihydro-4-(4-carboxy-butoxy)-6-methoxy-7-methyl-3-oxo-5-is obenzo-furanyl-4-methyl-4-hexenoic acid] with dichloromethane-dichloroethane (1:1, v/v) at acidic pH. Chromatographic separation consisted of the mobile phase [acetonitrile-0.05% phosphate buffer, pH 3.4 (45:55, v/v)] running through the column (Techopak-10 C18) at flow-rate of 0.8 ml/min. Detection was at UV wavelength of 254 nm. The mean recoveries of MPA and the internal standard at concentrations of 0.1 and 20 microg/ml were 89-98%, and 90-96%, respectively. The within-day coefficients of variation for MPA were 0.3-7.8% and the day-to-day coefficients of variation were 1.1-2.0%. The minimum detectable concentrations for both MPA and the internal standard in plasma were 0.005 microg/ml. The method was found to be suitable for use in clinical pharmacokinetic study.

Chromatography, High Pressure Liquid↗

Pharmacokinetics and bioequivalence evaluation of three commercial tablet formulations of mefloquine when given in combination with dihydroartemisinin in patients with acute uncomplicated falciparum malaria.

OBJECTIVE: To assess the pharmacokinetics and relative bioavailability/bioequivalence of three commercial tablet formulations of mefloquine, i.e. Lariam (reference formulation), Mephaquin 100 Lactab and Eloquin-250, when given sequentially after dihydroartemisinin in Thai patients with acute uncomplicated falciparum malaria. METHODS: Twenty-nine Thai patients with acute uncomplicated falciparum malaria were randomised to receive an initial dose of 300 mg dihydroartemisinin, followed by 1250 mg mefloquine (at 24 h and 30 h after dihydroartemisinin) given as either Lariam (n=10 cases), Mephaquin (n=9 cases) or Eloquin-250 (n=10 cases). Serial blood samples were obtained up to day 42 after treatment with mefloquine. Mefloquine concentrations were determined in whole blood by means of ultraviolet high-performance liquid chromatography. The pharmacokinetic parameters of mefloquine were estimated using non-compartmental and compartmental analysis. RESULTS: The three combination regimens were well tolerated. Patients in all treatment groups had a rapid initial response. However, nine patients (four and five cases in regimen containing Mephaquin 100 Lactab and Eloquin-250, respectively) had reappearance of parasitaemia during the follow-up period. Mefloquine from the three formulations showed significantly different pharmacokinetic and bioavailability metrics. Significantly lower peak plasma concentrations (C(max)) and areas under the plasma concentration-time curve (AUC; AUC(0-48h), AUC(0-7days), and total AUC) were observed with Mephaquin 100 Lactab than with the other two formulations. Mean values for relative bioavailability of the test to standard products were 49.1% (Mephaquin 100 Lactab) and 72.4% (Eloquine-250). Based on the criteria set, the bioavailability of the two test products (Mephaquin 100 Lactab and Eloquine-250) was considered non-equivalent to the reference product with respect to the rate (t(max), C(max)) and extent (AUC(0-48h), AUC(0-7days), total AUC) of mefloquine absorption.

Acute Disease↗

Mathematical modelling of the chemotherapy of Plasmodium falciparum malaria with artesunate: postulation of 'dormancy', a partial cytostatic effect of the drug, and its implication for treatment regimens.

Although artesunate, one of the potent derivatives of the qinghaosu family of drugs for treating falciparum malaria, is already in use in the field, its therapeutic protocol has only been developed empirically by hit-or-miss. A pharmacokinetic-pharmacodynamic (PK-PD) model, required for creating such a protocol, is not straightforward. Artesunate presents extremely fast pharmacokinetics. As a result the stage specificity of its action must be treated explicitly. Also, use of standard PK-PD modelling fails to explain the clinical results. Our PK-PD modelling of its activity leads us to the postulation of the existence of a novel effect: a small fraction of the parasites, as a result of chemotherapeutic pressure, become cytostatic, or 'dormant'. At this stage, the parasite cycle is halted, making them unsusceptible to further dosing until wakening. This slows down the antimalarial activity of the drug, entailing either many frequent doses or an extended period of treatment and surveillance. Based on our modelling, we suggest a method for deciding on rational models of chemotherapy against falciparum malaria.

Animals↗