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Biomedical subjects

J Karbwang

Publications and source records attributed to J Karbwang.

At least 91 records · Page 5Linked to original sources

Mefloquine metabolism by human liver microsomes. Effect of other antimalarial drugs.

A number of drugs have been studied for their effect on the metabolism of the antimalarial drug mefloquine by human liver microsomes (N = 6) in vitro. The only metabolite generated was identified as carboxymefloquine by co-chromatography with the authentic standard. Ketoconazole caused marked inhibition of carboxymefloquine formation with IC50 and Ki values of 7.5 and 11.2 microM, respectively. The inhibition of ketoconazole, a known inhibitor of cytochrome P450 isozymes, and the dependency of metabolite formation on the presence of NADPH indicated that cytochrome P450 isozyme(s) catalysed metabolite production. Of compounds actually or likely to be coadministered with mefloquine to malaria patients only primaquine and quinine produced marked inhibition (IC50, 17.5 and 122 microM; Ki, 8.6 and 28.5 microM, respectively). However, despite these in vitro data with primaquine, clinical studies have failed to show any significant effect of single dose primaquine on the pharmacokinetics of mefloquine. With quinine, because peak plasma concentrations are very close to the Ki value, there is likely to be inhibition of mefloquine metabolism in patients receiving both drugs. Sulfadoxine, artemether, artesunate and tetracycline did not significantly inhibit carboxymefloquine formation.

Biotransformation↗

Effect of tetracycline on mefloquine pharmacokinetics in Thai males.

The kinetics of a single oral dose of mefloquine given either alone or with tetracycline has been studied in 20 healthy Thai male volunteers. There was a significantly higher maximum whole blood mefloquine concentration after coadministration with tetracycline (1600 vs 1160 ng.ml-1), as well as a significantly reduced terminal half-life (14.4 vs 19.3 days), mean residence time (11.9 vs 16.0 days) and volume of distribution at steady state (13.3 vs 19.9 1.kg-1). Although there was no significant change in the AUC from zero time to infinity, the AUC from zero time to 7 days was significantly increased by tetracycline (6.18 vs 4.76 micrograms.ml-1.day). The changes in mefloquine disposition after tetracycline treatment are probably due to a reduction in enterohepatic recycling. The initial increase in mefloquine AUC without an apparent increase in side-effects suggests that this combination may have a place in the treatment of multi-drug resistant falciparum malaria.

Adult↗

Artemether in the treatment of multiple drug resistant falciparum malaria.

Artemether has the potential to be an alternative antimalarial for multiple drug resistant falciparum malaria. However, it has been associated with high recrudescent rates which may be due to incorrect dosage regimens. The dosage regimens are varied from country to contry. We have carried out a comparative study of two dosage regimens, ie 480 mg and 600 mg total dose given over 5 days in uncomplicated and severe falciparum malaria. 167 patients were included in the study, 61 with acute uncomplicated falciparum malaria and 106 with severe malaria. All patients showed a good initial response. The difference in total dose had no effect on the parasite or fever clearance time (PCT or FCT). However, the severity of the disease did have some influence of these times. The PCT and FCT from either regimen of uncomplicated malaria were significantly faster than those of severe malaria (p < 0.005 and = 0.05, respectively). The cure rate seems to have some correlation with the amount of drug given and severity of the disease. The cure rates in uncomplicated malaria were 84 and 92%, respectively, for 480 mg and 600 mg. In severe malaria the cure rates dropped to 65 and 76%, respectively, for 480 and 600 mg. We conclude that artemether can be considered as an alternative antimalarial for multiple drug resistant falciparum malaria. However, the cure rate of severe falciparum malaria in this study is not considered satisfactory in areas with multiple drug resistant falciparum malaria. Further studies are needed to assess the curative efficacy with different dosage regimens.(ABSTRACT TRUNCATED AT 250 WORDS)

Adolescent↗

Preliminary report: a comparative clinical trial of artemether and quinine in severe falciparum malaria.

Twenty-six patients with severe falciparum malaria were randomized to be treated with quinine or artemether. Twelve patients received quinine at the standard dose and fourteen patients received artemether intramuscularly at a total dose of 640 mg over 7 days. The patients were kept in the hospital for at least 7 days. Peripheral smear was performed 6-hourly until there was no parasitemia, then daily until discharged. Adverse effects were monitored through physical examination, laboratory findings and questionnaires. Laboratory examination was performed on admission, day 2, day 4 weekly until discharged. The patients in both groups were comparable in age, body weight, admission parasitemia, hemoglobin and white blood cell count. The survival rates were 93% and 58% in artemether and quinine groups, respectively (p = 0.052 at 95% confidence, using Fisher's exact test). The parasite and fever clearance times, and the time taken to gain consciousness in cerebral malaria patients were not significantly different between the two groups. Adverse effects in the quinine group consisted of dizziness and vertigo which were found in 4 patients. No adverse effects were noticed in the artemether group. This preliminary report suggests that artemether is a good alternative drug for severe falciparum malaria and seems to be better than quinine regarding survival rate and side effects. Confirmation of these findings in a larger study size is needed.

Acute Kidney Injury↗

Pharmacokinetics of quinine, quinidine and Cinchonine when given as combination.

Pharmacokinetics of quinine, quinidine and cinchonine when given as a combination were evaluated in Thai patients with falciparum malaria during acute infection and convalescence. The combination of quinine, quinidine and cinchonine was randomly given to thirteen patients at 400 mg or 600 mg (consisting of one-third of each component; 7 patients were enrolled in 400 mg regimen and 6 in 600 mg regimen) intravenously every 8 hours for 7 days. The drug combination was given again at day 35 to define the pharmacokinetics of each drug during convalescence. All patients with the 600 mg regimen had good response with 100% cure rate while patients with the 400 mg regimen had a good initial response but one patient recrudesed on day 46. This particular patient had plasma concentrations of all three drugs lower than the mean values of patients with sensitive responses. The plasma levels of quinine and quinidine obtained from the present study were higher than that expected from one-third of the conventional dose (600 mg) when given alone, suggesting drug combination interaction. The terminal half-lives of each of the three components were prolonged during acute malaria when compared to those obtained during convalescence.

Adult↗

Overview: clinical pharmacology of antimalarials.

The effectiveness of antimalarials depends on its pharmacodynamics ie inhibitory effect on the parasites and unwanted effects on the host. It also depends on the pharmacokinetics of the drugs. The ideal antimalarials are drugs that show curative activity in the absence of toxicity to the host. Recommendation for antimalarial dosage regimens should be based on pharmacokinetic and pharmacodynamic studies in appropriate populations ie ethnic groups, adults children, and in pregnancy. Chloroquine remains the drug of choice for treating malaria caused by Plasmodium species other than P. falciparum. Even in the presence of chloroquine resistance the drug may still be quite useful, especially in areas with high communal immunity. In general sulfadoxine/pyrimethamine (S/P) should be used as an alternative antimalarial when chloroquine fails. The decision to change to S/P from chloroquine depends on many factors. Quinine still remains the drug of choice for severe chloroquine-resistant falciparum malaria. Resistance to mefloquine has appeared the exact mechanism being unknown. In general, before the use of any combination of antimalarial drugs the superiority (efficacy and side-effects) over each of the individual drugs should be clearly demonstrated. The combination of mefloquine with sulfadoxine/pyrimethamine was made on the grounds that the combination would delay the resistance to mefloquine. Desferrioxamine will hardly be an agent to be used on its own for treating malaria due to the high recrudescent rate. However, a recent report indicated that its association with antimalarial drugs in the management of severe and complicated falciparum malaria shortens fever and parasite clearance time and resolves complications faster than the standard antimalarial drug alone. Clinical trials with halofantrine has been done in several countries in the region from 1988 to the present with diverse results. Further studies on a larger scale should be carried out to ascertain whether these are due to variation in drug absorption or drug resistance. An improved formulation of halofantrine must be developed to ensure adequate absorption and bioavailability. The artermisinin group of antimalarials is known to be highly effective and independent, in its mode of action, from standard malaria drugs but associated with high recrudescent rate. Phase II studies are needed for determining/optimizing therapeutic dose regimens and to ensure safer and more effective use of these compounds.

Antimalarials↗

Clinical trials of mefloquine with tetracycline.

A comparative trial of the combination of mefloquine or MSP with tetracycline was carried out in fifty-one adult Thai male patients with acute falciparum malaria. The patients were randomized to receive either the combination of tetracycline (250 mg qid for 7 days) with mefloquine 4 tablets (1,000 mg) or with MSP 4 tablets (one tablet contains 250 mg mefloquine, 500 mg sulfadoxine and 25 mg pyrimethamine). Fifty patients had a complete 28-day follow-up period. Both regimens produced similar efficacy with no difference in adverse effects. In the mefloquine plus tetracycline group, the cure rate was 72% (18/25). One patient had an RIII response, the others showed initial response to the treatment with FCT and PCT of 40.7 +/- 27.4 and 76.2 +/- 34.2 hours (mean +/- SD) respectively. However, 6 patients developed recrudescence between days 17 and 29 (RI), 3 of these had vomiting. In the MSP plus tetracycline group, the cure rate was 76% (19/25). The means (+/- SD) of FCT and PCT were 44.7 +/- 38.0 and 80.6 +/- 25.0 hours, respectively. Six patients had recrudescence between days 17 and 31 (RI), 2 of these had vomiting. Although the addition of tetracycline improved the cure rate of mefloquine when compared with standard dose of mefloquine alone (3 tablets), these combinations seem to be useful in areas where alternative drugs are not available.

Acute Disease↗

Effect of mefloquine on electrocardiographic changes in uncomplicated falciparum malaria patients.

Asymptomatic sinus bradycardia and sinus arrhythmia have been noted in malarial patients receiving mefloquine. The present study was designed to assess the effect of mefloquine on electrocardiogram in malarial patients. The study was carried out in 102 acute uncomplicated falciparum malarial patients who were treated with mefloquine 750 mg and 1,250 mg regimens and 18 healthy male volunteers receiving 750 mg of mefloquine. Electrocardiogram was performed at intervals after mefloquine administration for a period of 42 days. PR, QRS, QT, QTc, RR interval and cardiac arrhythmia were measured and read by EKG-analyser with confirmation by a cardiologist. Sinus bradycardia and sinus arrhythmia were found in 61.8% and 45.1%, respectively during the first week after treatment. The patients' heart rate decreased significantly on day 6 after mefloquine administration when compared to day 0. The occurrence of sinus bradycardia and sinus arrhythmia were significantly higher in malarial patients when compared with findings in healthy subjects of the same age group. It is unlikely that these changes are associated with mefloquine concentration as mefloquine peaks around 12-24 hours after administration. There were no significant changes in PR-interval, QRS-interval and QTc interval on the electrocardiogram. The findings in this study suggest that cardiotoxicity from mefloquine is unlikely. Bradycardia may be the result of autonomic control modulation after resolution of high fever.

Adolescent↗

Effect of ampicillin on mefloquine pharmacokinetics in Thai males.

The kinetics of a single oral dose of mefloquine given either alone or with ampicillin has been studied in 8 healthy Thai male volunteers. There was a significantly higher maximum whole blood mefloquine concentration after coadministration with ampicillin (1648 vs 1228 ng.ml-1), as well as a significantly reduced terminal half life (15.3 vs 17.7 days), mean residence time (20.1 vs 23.4 days) and volume of distribution at steady state (14.1 vs 19.4 l.kg-1). Although there was no significant change in the AUC from zero time to infinity, the AUC from zero time to 5 days was significantly increased by ampicillin (4.86 vs 3.27 micrograms.ml-1 day). These changes in mefloquine disposition after antibiotic treatment may be due both to an increase in fractional bioavailability and a reduction in the enterohepatic recycling of mefloquine.

Administration, Oral↗

Disposition of oral quinine in acute falciparum malaria.

Plasma quinine concentrations following oral quinine sulphate 10 mg salt/kg have been measured by HPLC in 15 adult Thai patients with uncomplicated falciparum malaria. In 10 of the same patients the study was repeated in convalescence. In acute malaria plasma concentrations were approximately 50% higher than in convalescence; the mean acute peak plasma quinine concentration was 8.4 mg.l-1 compared to 5.7 mg.l-1 in convalescence. There was considerable variation in the rate of drug absorption, particularly in acute malaria. The mean time to peak plasma concentration was 5.9 h in acute malaria and 3.2 h in convalescence. The apparent clearance of oral quinine (CL/f) during the illness was 1.51 ml.kg-1.min-1, which was significantly lower than in convalescence--2.67 ml.kg-1.min-1. Estimated free quinine clearance was also lower in the acute phase: 30.6 compared to 49.0 ml.kg-1.min-1 in convalescence. Mean (SD) plasma protein binding of quinine was 94.7% in acute malaria and 92.8% in convalescence. Binding was significantly correlated with the plasma concentration of alpha 1 acid glycoprotein (r = 0.5), which was significantly higher in the acute phase; 1.48 g.l-1 compared to 1.05 g.l-1 during convalescence. Oral quinine sulphate was well absorbed in uncomplicated falciparum malaria. High blood concentrations following the administration of oral quinine in acute malaria are probably related to increased plasma protein binding, lower apparent volume of distribution, and a reduction in its systemic clearance.

Administration, Oral↗

Pharmacokinetics of halofantrine in Thai patients with acute uncomplicated falciparum malaria.

Twelve patients with acute uncomplicated falciparum malaria were admitted to the Hospital for Tropical Diseases for 42 days. The patients were treated with halofantrine 500 mg 6 hourly for three doses and halofantrine and its desbutyl metabolite were analysed in plasma by h.p.l.c. Cmax values of halofantrine and desbutylhalofantrine (n = 12) were 1192 +/- 410 (mean +/- s.d.) and 397 +/- 160 ng ml-1 with tmax values of 16 +/- 2 and 55 +/- 26 h, respectively. AUC was 60.6 +/- 23.9 and 48.5 +/- 22.2 mg l-1 h, respectively, for halofantrine and its metabolite. Halofantrine cured 83% of the patients but in two patients a reduction only in asexual parasitaemia was seen and no overall parasite clearance occurred. One of these, however had relatively low plasma concentrations of both halofantrine and its desbutyl metabolite and it appeared to be a case of inadequate treatment rather than true resistance. We suggest that the large intersubject variability in plasma drug concentrations may relate in part to its poor and inconsistent bioavailability and this rather than true resistance might be responsible for some of the treatment failures.

Acute Disease↗

Mefloquine pharmacokinetics and resistance in children with acute falciparum malaria.

The pharmacokinetic properties of mefloquine hydrochloride (15 mg base kg -1) were studied in 12 Karen children (five girls, seven boys) aged between 5 and 10 years presenting with uncomplicated falciparum malaria. The drug was well tolerated. Mean (s.d.) peak blood drug concentrations of 2031 (831) ng ml-1 were reached in a median of 8 (range 6-24) h. Mean (s.d.) estimates for oral clearance and mean residence time were 0.52 (0.27) ml min -1 kg -1 and 15.3 (4.7) days, respectively. These values are similar to those reported previously in adults. In one child parasitaemia failed to clear despite whole blood mefloquine concentrations which peaked at 1744 ng ml -1; parasitaemia rose and fever recurred when blood drug concentrations had fallen to 442 ng ml -1. The prevalence of highly mefloquine resistant parasites such as this can be expected to increase under drug pressure in this area.

Animals↗

Clinical trial of artesunate and artemether on multidrug resistant falciparum malaria in Thailand. A preliminary report.

A 5-day course of oral artesunate at total doses of 1200, 600, 650 mg and intramuscular artemether 480 mg proved effective (90-100% cured) in the treatment of multidrug resistant falciparum malaria in Thailand. Shorter courses yielded high recrudescence rates. The fever clearance and parasite clearance times were short. The side effects were mild and transient including occasional abnormal electrocardiograms and pain at the injection site. Slight reduction of neutrophil leucocytes and reticulocytes was observed. Further studies of artesunate and artemether should be carried out to find the optimum dosage regimen and to clarify the hematological effects.

Administration, Oral↗

Pharmacokinetics of prophylactic mefloquine.

The pharmacokinetics of the prophylactic dose of mefloquine (Lariam: 500 mg every 4 weeks, with a loading dose of 750 mg on the first week) was studied in six healthy Thai male volunteers. Mefloquine was well tolerated during the study period of 16 weeks. The only side-effects found were nausea and diarrhea in 2 volunteers after the first dose of mefloquine. The mean minimum concentration of mefloquine at steady state ranged from 290 to 460 ng/ml. The maximum concentration on week 16 after the last dose was 1558 +/- 48 ng/ml at the mean time of 38 +/- 19 hours. The other pharmacokinetic parameters obtained were: absorption half life = 6.6 +/- 3.0 hours; distribution = 5.1 +/- 3.1 days; terminal half life = 12.9 +/- 2.2 days; apparent volume of distribution = 10.5 +/- 2.3 l/kg; area under the concentration-time curve = 26.9 +/- 2.2 mg/dl. Although this prophylaxis regimen is ideal when considering the compliance, the minimum concentration obtained was much too low for optimum therapeutic concentration. We therefore suggest that weekly prophylaxis schedule should be a better regimen as the difference between minimum and maximum mefloquine concentration would be smaller.

Absorption↗

Pharmacokinetics of mefloquine in treatment failure.

The pharmacokinetics of mefloquine at the therapeutic dose of 750 mg single orally were compared between cured and recrudescent patients with acute uncomplicated falciparum malaria. Mefloquine was well-tolerated during the study. The side-effects found were nausea, vomiting and diarrhea. Five patients showed R-I and two showed R-II types of response. All recrudescent patients came from the eastern border of Thailand. The time taken to clear the parasites (PCT) was significantly longer in patients with recrudescence (99.6 +/- 36.9 and 63.0 +/- 8.9 hours); however, there was no difference regarding fever clearance time (FCT: 39.0 +/- 16.1 and 31.0 +/- 21.3 hours). The maximum concentration (Cmax) and the concentration on the first and second days in cured patients were significantly higher than those of treatment failure patients. Other pharmacokinetic parameters appeared to be similar in both groups. The present study indicates the existence of mefloquine-resistant falciparum malaria in the eastern border of Thailand. Inadequate mefloquine concentration may play an important role in this aspect. In addition, this study also suggests that Cmax or the concentrations on the first or second day of treatment may be used as guidelines to predict the outcome of treatment.

Absorption↗