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F Nosten

Publications and source records attributed to F Nosten.

At least 73 records · Page 4Linked to original sources

Randomised double-blind placebo-controlled trial of SPf66 malaria vaccine in children in northwestern Thailand. Shoklo SPf66 Malaria Vaccine Trial Group.

BACKGROUND: Previous efficacy trials of SPf66 malaria vaccine have produced conflicting results in different populations. We report a randomised double-blind trial of the SPf66 vaccine conducted in Karen children aged 2-15 living in a malarious region of northwestern Thailand. Recombinant hepatitis B vaccine was used as a comparator. METHODS: The study had a power of 90% to detect an efficacy of 30%, defined as a reduction in the incidence of first cases of symptomatic falciparum malaria after three doses of vaccine. 1221 children received three immunisations and were eligible for the primary efficacy analysis. Intense active and passive case detection continued over 15 months of follow-up. FINDINGS: The SPf66 vaccine was well tolerated, although 26 children had mild or moderately severe local or systemic allergic reactions, compared with none in the comparator group. The vaccine was immunogenic; after three doses, 73% of recipients had seroconverted. There were no deaths due to malaria during the study. During the 15-month period of evaluation there were 379 first cases of symptomatic falciparum malaria (195 in the SPf66 recipients, 184 in the comparator group); an SPf66 efficacy of -9% (95% CI -33 to 14, p = 0.41). No significant differences between the two study groups in parasite density or any other measure of malaria-related morbidity were detected. INTERPRETATION: These findings are consistent with a recent study showing lack of efficacy of SPf66 among Gambian infants and differ from earlier positive reports from South America and evidence of borderline efficacy from Tanzania. We conclude that SPf66 does not protect against clinical falciparum malaria and that further efficacy trials are not warranted.

Adolescent↗

Effects of artemisinin derivatives on malaria transmissibility.

BACKGROUND: On the western border of Thailand the efficacy of mefloquine in the treatment of falciparum malaria has declined while gametocyte carriage rates have increased, which suggests increased transmissibility of these resistant infections. We compared the following antimalarial drugs in relation to subsequent Plasmodium falciparum gametocyte carriage: mefloquine, halofantrine, quinine, and the artemisinin derivatives. METHODS: Between 1990 and 1995 we assessed gametocytaemia in a series of prospective studies of antimalarial drug treatment in 5193 adults and children with acute uncomplicated falciparum malaria in an area of malarious hill forest on the western border of Thailand. Weekly parasite counts from thick and thin blood films were done during the 4-week (1990-93) or 9-week (1993-95) follow-up period. Gametocyte positivity rates and person gametocyte week (PGW) rates were calculated to measure gametocyte carriage and transmission potential. FINDINGS: In primary P falciparum infections the gametocyte carriage rate was significantly higher after treatment with mefloquine than after treatment with the artemisinin derivatives (PGW 34.1 [95% CI 25.2-42.9] vs 3.9 [1.9-5.9] per 1000 person weeks; relative risk 8.0 [4.1-15.6]; p<0.0001). Recrudescent infections were associated with increased gametocyte carrier rates (relative risk 2.2 [1.6-3.0]; p<0.0001), but retreatment with artemisinin derivatives reduced subsequent gametocyte carriage 18.5 fold [3.5-98] compared with mefloquine retreatment and 6.8 fold (3.1-15.1) compared with quinine retreatment (p<0.001). The introduction of the artemisinin derivatives in routine treatment at this study site in mid 1994 was associated with a reduction in the subsequent incidence of falciparum malaria of 47 (25-69)% INTERPRETATION: Although environmental changes affect vector numbers, and hence malaria incidence, artemisinin derivatives were found to reduce the transmission potential of falciparum malaria. Widespread introduction of artemisinin derivatives in the treatment of falciparum malaria may prevent the spread of multidrug resistance.

Adolescent↗

Mefloquine in infants and young children.

In an area where multi-drug resistance in Plasmodium falciparum is a particular problem, more than 500 children under 5 years of age weighing > 5 kg were treated with mefloquine, either alone or combined with an artemisinin derivative, and followed up for a minimum of 28 days. The principal adverse effect was vomiting and this was associated with reduced efficacy of treatment (even when treatment was repeated). Later adverse effects occurred less frequently than in adults. There was no serious toxicity and, in particular, there were no neuropsychiatric side-effects. The high dose of mefloquine (25 mg/kg) required in this area is well tolerated by young children. It should be given in a divided dose of 15 mg/kg initially, followed by 10 mg/kg > or = 12 hours later.

Administration, Oral↗

Comparative bioavailability of oral, rectal, and intramuscular artemether in healthy subjects: use of simultaneous measurement by high performance liquid chromatography and bioassay.

1. The pharmacokinetic and effect kinetic properties of oral (p.o.), intramuscular (i.m.), and intrarectal (i.r.) artemether (5 mg kg-1) were compared in a crossover study in eight healthy adult volunteers. Plasma concentrations of artemether (AM) and its active metabolite dihydroartemisinin (DHA) were measured by high performance liquid chromatography with reductive mode electrochemical detection (h.p.l.c.-ECD), and plasma antimalarial activity in vitro (effect) was assessed on the same samples by a sensitive bioassay (BA). 2. Artemether was absorbed rapidly after oral administration with a mean (95% CI) Cmax for the parent compound of 406 (249 to 561) nmol l-1 and for DHA of 1009 (639 to 1379) nmol l-1 with tmax values of 1.7 (1.2 to 2.2) and 1.8 (1.4 to 2.2) h respectively. The mean (95% CI) elimination half-life of AM was 2.6 (1.8 to 3.4) h and for DHA was 1.9 (1.4 to 2.4) h. Plasma concentration and effect profiles with h.p.l.c.-ECD and BA were similar suggesting that other unidentified bioactive metabolites contributed little to antimalarial activity in vivo. 3. Absorption was slower, more variable, and DHA concentrations were lower following the i.m. and i.r. routes of administration. The mean (95% CI) relative bioavailability compared with oral artemether in the 6 h following administration AUC (0.6h) was 25 (9 to 41)% following i.m. and 35 (10 to 60)% following i.r. artemether. 4. These data demonstrate that oral artemether undergoes extensive first pass metabolism to the more active metabolite DHA. Plasma antimalarial activity following oral administration is significantly greater than following i.m. administration. The i.r. route of administration provided similar bioavailability to i.m. injection but there was considerable variability in absorption following both routes. Further studies are needed to determine whether i.r. artemether would be an effective treatment of severe malaria in the rural tropics in situations where oral or parenteral administration is not possible.

Absorption↗

Field trials of an asexual blood stage malaria vaccine: studies of the synthetic peptide polymer SPf66 in Thailand and the analytic plan for a phase IIb efficacy study.

Several years ago the Walter Reed Army Institute of Research (WRAIR) initiated an independent analysis of the candidate malaria blood stage vaccine SPf66. WRAIR contracted for the synthesis and formulation of SPf66 in United States Food and Drug Administration (FDA) inspected laboratories within the U.S., and in 1992, filed an Investigational New Drug (IND) application with the FDA. Preclinical studies indicated that the vaccine could be synthesized to meet its release specifications, and when adjuvanted with alum, was essentially equivalent to Colombian produced SPf66 in regards to immunogenicity in preclinical studies of rodents and primates, and in human volunteers in Phase I studies. The goal of these efforts was ultimately to conduct a Phase IIb field trial to determine the safety and efficacy of SPf66 produced under current Good Manufacturing Practices (cGMP). Such a trial is currently underway in a malaria endemic refugee camp along the Thai-Burmese border. Here we briefly describe the study and present the formal analytic plan that was submitted to regulatory authorities in the United States for analysis of the study results. We believe such independent confirmatory studies are an essential part of the vaccine development process and are required to provide important data regarding the safety and efficacy of candidate vaccines in diverse geographical regions, and as a means to assess their role in the context of broader malaria control programmes.

Adolescent↗

Non specific resistance against malaria pre-erythrocytic stages: involvement of acute phase proteins.

Levels of different acute phase proteins were compared in sera from parasitaemic and non-parasitaemic women living in a Plasmodium falciparum endemic area of Thailand. The ability of their sera to interfere with hepatic stage development of the parasite was examined. Correlations were found between levels of alpha-1 antitrypsin, alpha-2 macroglobulin, hemopexin and the potential of sera to block hepatocyte invasion by the sporozoite.

Acute-Phase Proteins↗

Clinical features and outcome of severe malaria in Gambian children.

The clinical and laboratory features of severe falciparum malaria in 180 Gambian children were studied between 1985 and 1989. Of the 180 children, 118 (66%) presented with seizures, 77 (43%) had cerebral malaria, 35 (20%) had witnessed seizures after admission, 29 (16%) were hypoglycemic, and 27 (15%) died. Respiratory distress was a common harbinger of a fatal outcome. The differences in admission parasite counts in the blood, hematocrit, and opening cerebrospinal pressures for patients who died and survivors were not significant. A multiple logistic regression model identified neurological status (coma, particularly if associated with extensor posturing), stage of parasite development on the peripheral blood film, pulse rate of > 150 or respiratory rate of > 50, hypoglycemia, and hyperlactatemia (plasma lactate level, > 5 mmol/L) as independent indicators of a fatal outcome. Biochemical evidence of hepatic and renal dysfunction was an additional marker of a poor prognosis, but, in contrast to severe malaria in adults, none of these children with severe malaria had acute renal failure.

Adult↗

New antimalarials. A risk-benefit analysis.

Although more than 40% of the world's population live in malaria endemic areas, there are only 6 available antimalarial drugs for the treatment of Plasmodium falciparum infections. Three of these have been developed in the last 20 years and are discussed in this review. Mefloquine is relatively well tolerated and has the advantage of a single day regimen. It has ideal properties for prophylactic use. However, although rare, serious adverse reactions do occur and the drug cannot be used in severe malaria. Resistance has already emerged in some parts of the world. Halofantrine is also well tolerated and has a rapid antimalarial activity. It is more expensive than other antimalarials and the existence of cross-resistance links its usefulness to the demise of mefloquine. The discovery of a potentially lethal cardiotoxicity associated with halofantrine casts a further shadow over its use. The artemisinin derivatives represent an exciting breakthrough in the treatment of malaria. They are cheap and have a very rapid action. They seem remarkably free from toxic adverse effects, although the neurotoxicity seen in animal studies with the liposoluble derivatives gives rise for concern. However, the lack of pharmacokinetic and toxicity data as yet preclude their approval by Western drug regulation authorities. All antimalarials are threatened by the emergence of parasite resistance. Combination therapy using mefloquine and an artemisinin derivative may provide a way in which resistance can be combated.

Animals↗

Oral artesunate in the treatment of uncomplicated hyperparasitemic falciparum malaria.

Patients with uncomplicated hyperparasitemic falciparum malaria are usually given parenteral antimalarial treatment to prevent a progression to vital organ dysfunction and death. Since the oral artemisinin derivatives are more rapidly effective than other antimalarial drugs, we compared oral artesunate (4 mg/kg/day for three days with mefloquine 25 mg/kg on the second day) with an intravenous quinine loading dose (20 mg of salt/kg initially then 10 mg/kg every 8 hr, followed by mefloquine 25 mg/kg) in an open paired randomized trial in 60 patients with acute falciparum malaria and greater than 4% parasitemia, but no evidence of vital organ dysfunction. There were no deaths and none of the patients progressed to develop severe malaria. Oral artesunate treatment resulted in shorter median [range] times to fever clearance (19 hr [4-45] versus 47 hr [4-107]) (P < 0.0001), parasite clearance (36 hr [18-61] versus 82 hr [36-104]) (P < 0.0001), and discharge from the hospital (25 hr [12-44] versus 58 hr [24-115]) (P < 0.0001). There was no toxicity attributable to artesunate. The cure rates by day 28 were 70% (19 of 27) and 39% (11 of 27) in the artesunate and quinine groups, respectively (relative risk = 1.7; 95% confidence interval = 1.0-3.0). Oral artesunate was simpler, cheaper, safer, and more effective than intravenous quinine for the treatment of uncomplicated hyperparasitemia.

Administration, Oral↗

Mefloquine treatment of acute falciparum malaria: a prospective study of non-serious adverse effects in 3673 patients.

Between 1990 and 1994, a series of prospective studies were conducted to optimize the treatment of multidrug-resistant falciparum malaria on the borders of Thailand. The tolerance of various treatment regimens containing either mefloquine 15 mg/kg (M15) or 25 mg/kg (M25) was evaluated in 3673 patients aged between 6 months and 88 years. Early vomiting (within 1 hour) is an important determinant of treatment outcome in these areas, despite re-administration of the dose. Overall, 7 % of the patients vomited within an hour. Significant risk factors were age < or = 6 years (relative risk (RR), 3.9) or > or 50 years (RR, 2.7), the higher mefloquine dose (M25) (RRm 2.7), vomiting < 24 hours before enrolment (RR, 2.5), axillary temperature > 38.0 degrees C (RR, 1.6), and parasitaemia > 10,000/microliter (RR, 1.3). In children < or = 2 years, 30% vomited with M25, and 13% did not tolerate a repeat dose. Vomiting was reduced 40% by splitting the higher dose (RR, 0.6; 95% CI, 0.4-0.8), and 50% by giving mefloquine on the second day in combination with artesunate (RR, 0.5; CI, 0.3-0.9). Anorexia, nausea, vomiting, dizziness, and sleeping disorders were 1.1-1.4 times more frequent with M25 than M15 in the three days following treatment, but were similar in the single or split-dose M25 groups, despite twofold higher mefloquine concentrations obtained with the latter. There was no evidence that diarrhoea, headache, and abdominal pain were associated with mefloquine use. High-dose mefloquine is well tolerated but should be given as a split dose.

Acute Disease↗

Artemisinin: large community studies.

Prospective randomized trials with oral artemisinin derivatives have been conducted in over 1000 patients to determine the optimum treatment of multi-drug resistant falciparum malaria on the Thai-Burmese border. These drugs have proved valuable in 3 settings. (i) Primary treatment of uncomplicated malaria in combination with mefloquine, when they accelerate the rate of recovery, eliminate the risk of dangerous early failures, and if given for 3 d or more improve overall cure rates; (ii) treatment of recrudescent infections, which otherwise have a high failure rate; and (iii) oral treatment of patients with high parasitaemias (> or = 4%) but no clinical evidence of severity (a group who would usually receive parenteral quinine). The parenteral formulation of artemether is absorbed if given rectally, and this may offer a practical alternative method of treating severe malaria in rural areas.

Administration, Oral↗

Mefloquine prophylaxis prevents malaria during pregnancy: a double-blind, placebo-controlled study.

A double-blind, placebo-controlled study of mefloquine antimalarial prophylaxis in pregnancy (> 20 weeks of gestation) was conducted in 339 Karen women living in an area of multidrug-resistant malaria transmission on the Thai-Burmese border. Mefloquine gave > or = 86% (95% confidence interval [CI], 59%-94%) protection against Plasmodium falciparum and complete protection against Plasmodium vivax infections. Mefloquine prophylaxis was well tolerated; use of an initial loading dose (10 mg/kg) was associated with transient dizziness, but there were no other significant adverse effects on the mother, the pregnancy, or infant survival or development (followed for 2 years). Falciparum malaria was associated with maternal anemia and a mean reduction in birth weight in gravidae I, II, and III of 225 g (95% CI, 26-423). Maternal anemia at delivery (hematocrit < 30%) was associated with increased infant mortality: 26% versus 15% (relative risk, 1.9; 95% CI, 1.1-3.2). Mefloquine is safe and effective for antimalarial prophylaxis in the second half of pregnancy.

Adult↗

Treatment of multidrug-resistant Plasmodium falciparum malaria with 3-day artesunate-mefloquine combination.

Studies of 652 adults and children with acute uncomplicated falciparum malaria were done to determine the optimum treatment of multidrug-resistant Plasmodium falciparum malaria on the Thai-Burmese border. Single-dose artesunate (4 mg/kg) plus mefloquine (25 mg of base/kg) gave more rapid symptomatic and parasitologic responses than high-dose mefloquine alone but did not improve cure rates. Three days of artesunate (total dose, 10 mg/kg) plus mefloquine was 98% effective compared with a 28-day failure rate of 31% with high-dose mefloquine alone (relative risk [RR], 0.06; 95% confidence interval [CI], 0.02-0.2; P < .0001). By day 63, the reinfection adjusted failure rates were 2% and 44%, respectively (P < .0001). Artesunate also prevented high-grade failures. Both drugs were well tolerated. No adverse effects were attributable to artesunate. Vomiting was reduced significantly by giving mefloquine on day 2 of treatment (RR, 0.40; 95% CI, 0.20-0.79; P = .009. Artesunate (10 mg/kg over 3 days) plus mefloquine (25 mg/kg) is currently the most effective treatment for falciparum malaria in this area of increasing mefloquine resistance.

Adult↗

Comparison of capillary whole blood, venous whole blood, and plasma concentrations of mefloquine, halofantrine, and desbutyl-halofantrine measured by high-performance liquid chromatography.

Whole blood mefloquine, halofantrine, and desbutyl-halofantrine concentrations were measured by high-performance liquid chromatography in capillary blood, venous blood, and venous plasma samples from patients along the Thai/Burmese border with falciparum malaria who were treated with either mefloquine (25 mg/kg) or halofantrine (24 mg/kg or 72 mg/kg). The limits of detection for mefloquine, halofantrine, and desbutyl-halofantrine were 50, 15, and 10 ng/ml, respectively, with 200 microliters whole blood samples. There was a good linear correlation (r > 0.9) between capillary and venous blood and between whole blood and plasma for all three compounds. Mefloquine concentrations in venous and capillary blood were very similar (mean ratio 1.02, 95% confidence intervals [CI] 0.95-1.09, n = 60), but were 1.15 times higher (95% CI 1.03-1.29) in whole blood than in plasma (n = 22). The halofantrine and desbutyl-halofantrine concentrations were 1.27 (1.12-1.45, n = 23) and 1.34 (1.16-1.55, n = 24) times higher in venous compared to capillary blood, while halofantrine but not desbutyl-halofantrine concentrations were lower in whole blood than in plasma (mean ratios: halofantrine: 0.83 [0.72, 0.94], n = 39 and desbutyl-halofantrine: 1.05 [0.96-1.15], n = 41). Measurement of mefloquine, halofantrine, or desbutyl-halofantrine in capillary blood is an accurate and practical alternative to venous blood sampling, and is particularly useful for sampling with children, and under field conditions when technical facilities are limited.

Adolescent↗

Halofantrine versus mefloquine in treatment of multidrug-resistant falciparum malaria.

The continuing spread of multidrug resistance in Plasmodium falciparum malaria makes the search for alternative treatments ever more urgent. We have investigated the relative efficacy of halofantrine and mefloquine in two paired randomised trials on the Thai-Burmese border, a multidrug-resistant area. In the first trial, 198 patients with acute uncomplicated falciparum malaria were randomly assigned either the standard halofantrine regimen (24 mg/kg) or mefloquine (25 mg/kg). The cumulative failure rates by day 28 were 35% with halofantrine and 10% with mefloquine (p = 0.0002). In the second study of 437 patients, a higher dose of halofantrine (8 mg/kg every 8 h for 3 days = 72 mg/kg) was both more effective and better tolerated than mefloquine 25 mg/kg; the failure rates were 3% and 8% (p = 0.03), respectively, or 1% vs 6% after adjustment for possible reinfections (p = 0.009). The rate of failure was higher after retreatment than after primary treatment in all study groups. Halofantrine 72 mg/kg was especially effective in the retreatment of these recrudescent infections; the failure rate was 44% with mefloquine and 15% with high-dose halofantrine (relative risk 3.0 [95% CI 1.2-7.3], p = 0.008). Thus, high-dose halofantrine is better tolerated and more effective than mefloquine for the treatment of uncomplicated falciparum malaria in this area. However, evidence of possible cardiotoxicity will need to be investigated fully before a role can be established for halofantrine in the treatment of multidrug-resistant malaria.

Acute Disease↗