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Comparison of oral artemether and mefloquine in acute uncomplicated falciparum malaria.

Plasmodium falciparum malaria in Thailand is highly resistant to available antimalarials, and alternative drugs are needed urgently. Artemether is effective against falciparum malaria but associated with a high recrudescence rate. The proper dosage regimen remains to be defined. We have done a clinical trial comparing mefloquine 1250 mg in divided doses with oral artemether at 700 mg total dose given over 5 days in acute uncomplicated falciparum malaria. 46 patients, admitted to the Bangkok Hospital for Tropical Diseases, were randomised to receive either mefloquine (12) or artemether (34). Hospital follow-up was 28 days for the artemether group and 42 days for the mefloquine group. Oral artemether gave a significantly faster parasite clearance time than mefloquine (30 vs 64 h), and a significantly better cure rate (97 vs 64%) with fewer episodes of dizziness and vomiting. Oral artemether at 700 mg given over 5 days is effective and well tolerated. The cure rate with this regimen is higher than that reported by previous studies with 600 mg intramuscular artemether given over 5 days. Oral artemether can be considered as an alternative drug for multiple-drug-resistant falciparum malaria.

Acute Disease

Comparison of artemether and chloroquine for severe malaria in Gambian children.

Artemether is an oil-soluble methyl ether of artemesinin (qinghaosu). It has been studied extensively in China, where it has been shown to be rapidly effective in severe falciparum malaria. Nearly all the patients studied previously were adults. We have investigated the efficacy of artemether in children with moderate or severe falciparum malaria. In the preliminary study of moderately severe malaria, 30 Gambian children were randomised in pairs to receive either intramuscular artemether (4 mg/kg loading dose followed by 2 mg/kg daily) or intramuscular chloroquine ('Nivaquine') 3.5 mg base/kg every 6 h. Both drugs were well tolerated and rapidly effective. The times to parasite clearance were significantly shorter in the artemether recipients (mean 36.7 [SD 11.3] vs 48.4 [16.8] h, p less than 0.05). 43 children with severe malaria were then randomised to receive intramuscular treatment with the same regimens of artemether (n = 21) or chloroquine (n = 22) as used in the preliminary study. 8 children (19%) died. There were no significant differences between the two groups in the clinical, haematological, biochemical, or parasitological measures of therapeutic response in survivors and there was no evidence of local or systemic toxicity. Despite similar parasite counts on admission, clearance times overall were longer in severe malaria than in moderate malaria. Artemether is a well tolerated and rapidly effective parenteral treatment for severe malaria in children, and would be especially valuable in areas with chloroquine-resistant P falciparum.

Animals

A comparative study of the schizontocidal efficacy and safety of artemether versus chloroquine in uncomplicated malaria.

Forty-seven patients with uncomplicated falciparum malaria were randomly assigned to receive either artemether (n = 24), 9.6 mg/kg body weight intramuscularly over five days or chloroquine (n = 23), 25 mg/kg body weight orally. Patients were kept in hospital for seven days followed by review on days 14, 21 and 28. Five patients on chloroquine were withdrawn before day seven due to treatment failure. Of the remaining patients, parasite clearance time was 33.0 +/- 13.6 hours for the artemether group and 63.3 +/- 14.7 hours for patients on chloroquine (p < 0.001). No significant difference was recorded in fever clearance time between the two groups of patients. Recrudescence rate for patients on artemether was 14.3 pc compared to 57.1 pc for the chloroquine group (p < 0.05). No major adverse events were recorded for either treatment group although five patients on artemether had a transient spike of temperature after clearance of parasitaemia. In conclusion, our study has shown that no major adverse events were experienced by patients on artemether and the rate of parasite clearance for the artemether group was superior to that of patients on chloroquine.

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

The effect of artemether plus mefloquine on Myanmar patients with complicated falciparum malaria.

The effect of artemether plus mefloquine versus quinine on 35 patients with complicated falciparum malaria including 5 patients with cerebral malaria were studied. All patients treated with the artemether-mefloquine combination survived and all were free from toxic effects of the drugs. Three patients on quinine therapy died. The mortality rate was 8.5%. The mean parasite clearance time of patients treated with artemether plus mefloquine was significantly shorter than those treated with quinine but there was no significant difference in the mean fever clearance of the two groups of patients. There was no recrudescence with artemether and mefloquine; the recrudescence rate was 5.5% with quinine. The study showed that the artemether-mefloquine combination is superior to quinine for the treatment of patients with complicated falciparum malaria, including cerebral malaria.

Antimalarials

[Effect of artemether against Schistosoma japonicum].

Artemether (beta-methyl ether of artemisinin) first synthesized by Shanghai Institute of Materia Medica, Chinese Academy of Sciences(1), appears in colorless crystal and is more lipid-soluble than artemisinin. When artemether was given ig or im to mice infected with Schistosoma japonicum for 32-35 d at the dosage of 1/10-1/2 LD50. Its effects in the two administration routes were similar. After artemether 200 mg.kg.d-1 ig or 100 mg.kg-1.d-1 im for 1-2 d was given to mice infected with S japonicum cercariae at different intervals, d 7 schistosomules were more susceptible to the drug with worm reduction rates of 73.9-92.0%. The d 35 adult worms also exhibited susceptibility to the drug and the worm reduction rates were 47.0-70.1%, but less susceptibility to the drug in other developmental stages of schistosomes. The major morphological alteration of adult worms induced by artemether was sustained shrinkage accompanied by atrophy and degeneration of the worm's reproductive glands, eg, the testis in males and ovary as well as vitelline gland in females. The in vitro tests indicated that artemether showed apparent effects on different stages of schistosomes only when a higher concentration of 40 micrograms.ml-1 was used.

Animals

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

Selective determination, in plasma, of artemether and its major metabolite, dihydroartemisinin, by high-performance liquid chromatography with ultraviolet detection.

A sensitive and selective reversed-phase high-performance liquid chromatographic method for the determination of artemether and its major metabolite dihydroartemisinin in plasma has been developed. It involves extraction of plasma with dichloromethane, solid-phase separation of the two analytes and acid decomposition prior to chromatography on a C18 Spherisorb column with a mobile phase of acetonitrile-water (50:50, v/v). Run time is 30 min. The assay satisfies all of the criteria required for use in clinical pharmacokinetic studies.

Artemether

Artemether-lumefantrine for the treatment of Plasmodium falciparum malaria in Laos: a therapeutic efficacy study coupled with genomic and in vitro phenotypic analyses.

BACKGROUND: Artemisinin-based combination therapies (ACTs) have played a crucial role in decreasing the impact of malaria worldwide. Since 2005, artemether-lumefantrine (AL) has been the main first-line treatment for uncomplicated Plasmodium falciparum malaria in Laos. Herein, we aimed to study the efficacy of AL in the context of malaria elimination in Laos. METHODS: Between Aug 1, 2019, and June 11, 2023, AL efficacy was evaluated in four provinces of southern Laos: Attapeu, Champassack, Salavan, and Savannakhet. Adults and children (aged 1-60 years) with microscopically confirmed P falciparum malaria received oral AL twice a day for 3 days, with follow-up on days 7, 14, 21, and 28. The primary outcome was PCR-adjusted adequate clinical and parasitological response (ACPR) by day 28. Resistance to dihydroartemisinin (DHA) and lumefantrine (LM) was assessed by an in vitro phenotypic analysis, and mutations in P falciparum kelch13 (pfkelch13), P falciparum multidrug resistance 1 (pfmdr1), P falciparum plasmepsin 2 (pfpm2), and P falciparum chloroquine resistant transporter (pfcrt) were characterised in parasites collected from enrolled patients. Safety outcomes included the frequency and nature of adverse events and serious adverse events. FINDINGS: A total of 198 patients (median age 16 years [IQR 10-28]; 124 [63%] male and 74 [37%] female) were initially enrolled, of whom three were lost to follow-up, resulting in 195 patients who received the 3-day AL regimen. At day 28, the PCR-adjusted ACPR was 96% (95% CI 92-98), with a treatment failure rate of 2% (1-5) and a reinfection rate of 2% (1-5). Among the four PCR-confirmed recrudescent isolates, one showed markedly reduced LM susceptibility (LM 50% inhibitory concentration [IC50] 59&#xb7;9 nM, 2&#xb7;5 times higher than the median IC50 of other isolates) and high artemisinin resistance in vitro (ring-stage survival survival rate 35&#xb7;8%), which was associated with the pfkelch13 R539T mutation and day-3 microscopy-positive parasitaemia. Among 190 isolates with successfully determined pfkelch13 sequencing, nine (5%) carried the pfkelch13 mutation R539T and 43 (23%) carried the C580Y mutation, and both were associated with day-3 microscopy-positive parasitaemia (p=0&#xb7;044). No amplification of pfmdr1 or pfpm2, nor any mutations in pfmdr1 and pfcrt, were associated with treatment failure. INTERPRETATION: Our findings indicate the potential emergence of LM resistance in Laos. Although AL remains efficacious, vigilance for decreasing efficacy and close monitoring of LM efficacy should be considered to support the country's goal of eliminating malaria by 2030. Importantly, none of the known pfmdr1 or pfcrt haplotypes were uniquely associated with treatment failure, including the isolate with the highest LM IC50, underscoring the need to identify reliable molecular markers for LM resistance. FUNDING: Bill and Melinda Gates Foundation and The Global Fund.

Humans

The effect of artemisinine, its derivatives and mefloquine against chloroquine-resistant strains of Plasmodium falciparum in vitro.

A 48 h in vitro test of the efficacy of artemisinine, dihydroartemisinine, artemether, mefloquine and chloroquine was carried out against 3 chloroquine-resistant strains of Plasmodium falciparum, strains K1 and T996 from Thailand and LS21 from India. A sigmoid Emax model was fitted to all in vitro inhibition data for each combination of drug and strain. Strains K1 and LS21 were strongly resistant to chloroquine, whereas T996 was partially resistant. Artemisinine, dihydroartemisinine and artemether were active against all strains, with complete growth inhibition at 10(-7) M. Artemether and dihydroartemisinine were both more potent than artemisinine, with 50% effective (EC50) values of 0.57-1.6 nM and 0.36-3.1 nM respectively; the EC50 of artemisinine was 1.5-6.1 nM for the 3 strains. The EC50 values for mefloquine were 46-185 nM. At higher concentrations, strains K1 and LS21 were fully inhibited, while with strain T996 mefloquine did not fully inhibit even at the highest concentration, 1.28 x 10(-6) M. It is concluded that artemisinine and its derivatives were highly effective against the 3 chloroquine-resistant strains, one of which showed borderline resistance to mefloquine.

Animals

[Effect of arteether on Schistosoma japonicum].

NIH mice infected with Schistosoma japonicum cercariae for 3, 7, 14, 21 or 35 d were treated ig either with arteether or artemether at the daily dose of 100-200 mg.kg-1 for 2 d, the efficacy produced by both drugs was similar. The d 7 schistosomules and d 35 adult worms were more susceptible to arteether or artemether with respective worm reduction rates of 77.5%-87.2% and 51.7%-61.3%. Histological and histochemical studies showed that d 7 and d 35 schistosomes, harbored in mice treated with arteether 300 mg.kg-1.d-1 for 2 d appeared in cloudy swelling and vesiculation in the tegument, distension of intestine, apparent decrease or even disappearance of glycogen and inhibition of alkaline phosphatase activity in the tegument and parenchymal tissues, as well as formation of dead worm granuloma.

Animals

High prevalence of Pfcrt 76T and Pfmdr1 N86 genotypes in malaria infected patients attending health facilities in East Shewa zone, Oromia Regional State, Ethiopia.

BACKGROUND: Plasmodium falciparum resistance to series of anti-malarial drugs is a major challenge in efforts to control and/or eliminate malaria globally. In 1998, following the widespread of chloroquine (CQ) resistant P. falciparum, Ethiopia switched from CQ to sulfadoxine-pyrimethamine (SP) and subsequently in 2004 from SP to artemether-lumefantrine (AL) for the treatment of uncomplicated falciparum malaria. Data on the prevalence of CQ resistance markers after more than two decades of its removal is important to map the selection pressure behind the targets codons of interest. The present study was conducted to determine the prevalence of mutations in Pfcrt K76T and Pfmdr1 N86Y codons among malaria-infected patients from Adama, Olenchiti and Metehara sites of East Shewa zone, Oromia Regional State, Ethiopia. METHODS: Finger-prick whole blood samples were collected on 3MM Whatman &#xae; filter papers from a total of 121 microscopically confirmed P. falciparum infected patients. Extraction of parasite DNA was done by Chelex-100 method from dried blood spot (DBS). Genomic DNA template was used to amplify Pfcrt K76T and Pfmdr1 N86Y codons by nested PCR. Nested PCR products were subjected to Artherobacter protophormiae-I (APoI) restriction enzyme digestion to determine mutations at codons 76 and 86 of Pfcrt and Pfmdr1 genes, respectively. RESULTS: Of 83 P. falciparum isolates successfully genotyped for Pfcrt K76T, 91.6% carried the mutant genotypes (76T). The prevalence of Pfcrt 76T was 95.7%, 92.5% and 84.5% in Adama, Metehara and Olenchiti, respectively. The prevalence of Pfcrt 76T mutations in three of the study sites showed no statistical significance difference (&#x3c7;2&#x2009;=&#x2009;1.895; P&#x2009;=&#x2009;0.388). On the other hand, of the 80 P. falciparum samples successfully amplified for Pfmdr1, all carried the wild-type genotypes (Pfmdr1 N86). CONCLUSION: Although CQ officially has been ceased for the treatment of falciparum malaria for more than two decades in Ethiopia, greater proportions of P. falciparum clinical isolates circulating in the study areas carry the mutant 76T genotypes indicating the presence of indirect CQ pressure in the country. However, the return of Pfmdr1 N86 wild-type allele may be favoured by the use of AL for the treatment of uncomplicated falciparum malaria.

Antimalarials

Strategies for mitigating emerging artemisinin-based antimalarial drug resistance in Rwanda: a promising approach for managing therapies in malaria-endemic countries.

Malaria treatment failures associated with reduced efficacy of chloroquine (CQ) and amodiaquine (AQ) antimalarial drugs emerged in Rwanda during the 1980s, prompting the policy shift towards adopting artemisinin-based combination therapies in 2006 as an alternative. However, recent findings from malaria surveillance and therapeutic efficacy studies have revealed a countrywide increase in antimalarial drug resistance. Particularly, artemether-lumefantrine (AL) efficacy has significantly decreased, probably due to the emergence of Plasmodium falciparum (Pf) genomic mutations. To mitigate the current drug resistance, Rwanda has adopted targeted multiple first-line therapies. Through the national malaria control program, antimalarial drugs were deployed in accordance with the reported resistance profile. A significant rise in Pfkelch13 mutations, particularly A675V associated with AL resistance, was mainly reported in the western region; therefore, artesunate-pyronaridine was recommended. Dihydroartemisinin-piperaquine was considered in eastern and central regions, where R561H mutations were predominant. On the contrary, AL was maintained in the southern region, where the prevalence of the R561H mutation was low. Insights from this data-driven model will inform its extension to other malaria-endemic countries facing emerging Pf genetic diversity.

Antimalarials

Comparison of combinations of parenteral artemisinin derivatives plus oral mefloquine with intravenous quinine plus oral tetracycline for treating cerebral malaria.

A total of 141 cases of strictly defined cerebral malaria were studied in a controlled trial of three regimens: (1) intramuscular artemether plus oral mefloquine, (2) intravenous artesunate plus oral mefloquine, and (3) intravenous quinine (with or without an initial loading dose) plus oral tetracycline. The overall mortalities in each group were 14%, 8.3% and 34.3% respectively. The average parasite clearance time was 27.30 +/- 19.62 hours in regimen 1, 41.84 +/- 17.55 hours in regimen 2, and 47.30 +/- 21.95 hours in regimen 3. No recrudescence was observed in regimens 1 and 2, but 12.1% recrudesced in the third.

Adolescent

Primaquine 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 primaquine by human liver microsomes (N = 4) in vitro. The only metabolite generated was identified as carboxyprimaquine by co-chromatography with the authentic standard. Ketoconazole, a known inhibitor of cytochrome P450 isozymes, caused marked inhibition of carboxyprimaquine formation with IC50 and K(i) values of 15 and 6.7 microM, respectively. This finding and the dependency of metabolite formation on NADPH indicates that cytochrome P450 isozyme(s) catalysed metabolite production. Of compounds actually or likely to be coadministered with primaquine to malaria patients, only mefloquine produced any inhibition (K(i) = 52.5 microM). Quinine, artemether, artesunate, halofantrine and chloroquine did not significantly inhibit metabolite formation. It seems unlikely that the concurrent administration of mefloquine, or other antimalarials, with primaquine will lead to appreciably altered disposition.

Antimalarials

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

Acetyl-CoA synthetase mutations affect the susceptibility of Plasmodium falciparum to antimalarial drugs.

Plasmodium falciparum acetyl-CoA synthetase (PfAcAS) is an important source of acetyl-CoA. We detected mutations S868G and V950I in PfAcAS by whole-genome sequencing analysis in certain recrudescent parasites after treatment with artesunate and dihydroartemisinin-piperaquine. Using CRISPR/Cas9 technology, we engineered parasite lines to carry the PfAcAS S868G and V950I mutations in two genetic backgrounds and evaluated their susceptibilities to antimalarial drugs in vitro. The results demonstrated that PfAcAS S868G and V950I mutations alone or in combination affected the susceptibility of P. falciparum to several antimalarial drugs, including the artemisinin derivatives (dihydroartemisinin, artesunate, and artemether) and chloroquine, although absolute changes in susceptibilities were modest.IMPORTANCEMalaria, an infectious disease caused by Plasmodium parasites and transmitted by mosquitoes, continues to be one of the most pressing public health challenges worldwide. P. falciparum has demonstrated reduced sensitivity to artemisinin-based combination therapies (ACTs), thereby intensifying the difficulties associated with malaria management. Currently, only a limited number of molecular markers exist for identifying drug resistance in P. falciparum, and these markers do not fully elucidate the mechanisms behind this resistance. In this study, we performed whole-genome sequencing analysis on P. falciparum strains that reemerged following ACT treatment. We aim to identify molecules potentially associated with drug resistance, which may provide new molecular markers for monitoring drug resistance in P. falciparum.

Plasmodium falciparum

A new look at an old drug: artemesinin and qinghaosu.

It is said that William Withering's discovery of digitalis arose out of curiosity engendered during a stage-coach journey, by witnessing an old woman collecting foxgloves by the side of the road. Whilst we are not aware of an analogous stroke of genius reported from ancient China, the story of qinghaosu has certain parallels. Just as foxgloves had been used traditionally for centuries to treat 'afflictions of the heart', the plant Artemesia annua has been used as a treatment for fever in China for almost two thousand years. Artemesia annua, also known as 'sweet wormwood', is found in many parts of the world, but it was not until the early 1970s that Chinese scientists recognized its potential for treating malaria and isolated the active principle, artemesinin or qinghaosu. This paper describes the evidence for the efficacy of this drug and some of its derivatives in the treatment of malaria and the potential of these drugs for the standard management of malaria in Papua New Guinea and elsewhere.

Antimalarials