View clinical trials related to Malaria.
Filter by:This is an open label, Phase 2 study with controlled human malaria infection (CHMI). Twenty three subjects will be enrolled into 2 groups (15 subjects in the Chloroquine-Azithromycin [CQ/AZ] Intervention Group, and 8 subjects in the Chloroquine [CQ] Group). The CQ/AZ Group will receive experimental intervention of 300 mg of CQ and 2 g of azithromycin (AZ). The CQ Group will receive 300 mg of CQ only. All subjects will participate in the CHMI and will be required to stay at a hotel for evaluation for a maximum of 14 nights starting 7 days after the challenge. A standard dose of atovaquone-proguanil (Malarone®) will be administered to all symptomatic parasitemic subjects under directly observed treatment.
The study intends to establish proof of concept for a fractional dose schedule under conditions of natural exposure in children 5-17 months old at first vaccination. The study also aims to establish the role of third dose spacing in a fractional dose schedule, describe the effect of an earlier full fourth dose at Month 14 and describe the effect of multiple fractional or full yearly doses.
While World Health Organization (WHO) guidelines recommend empirical antibacterial therapy as the standard of care in all African children with severe falciparum malaria, there are fewer data to guide the management of adults with the disease in low transmission settings. Presently WHO guidelines do not recommend empirical antibacterial therapy in adults with malaria in low transmission settings, instead antibacterial therapy is only clearly recommended in those patients in whom a serious bacterial co-infection is clinically suspected. However, in a pilot study in Myanmar (High Frequency of Clinically Significant Bacteremia in Adults Hospitalized With Falciparum Malaria PMID: 26989752) we found that 13% of adults hospitalized with falciparum malaria were bacteremic, with bacterial co-infection suspected by clinicians in the minority. Patients with serious bacterial infection are commonly not bacteraemic and so this probably underestimates the frequency of significant bacterial co-infection. In that pilot study, over 75% of patients received empirical antibacterial therapy on admission to hospital, which would not accord with published WHO guidelines as clinicians suspected bacterial co-infection in only 17%. However, the study's 100% survival rate - when over half of the patients were at high risk of death - suggests that the administration of antibacterial therapy may be appropriate until bacterial co-infection is excluded. There is also academic debate about the role of co-morbidities in the presentation of patients severely ill with vivax malaria. Bacterial co-infection has been reported in some - but by no means all - studies of severe vivax infection. It would be useful to determine the relative contribution of bacterial co-infection to the clinical presentation of patients with vivax malaria. By systematically seeking evidence of bacterial co-infection in all patients hospitalized at the study sites, this study aims to determine if the bacterial infection is really as prevalent as was the case in the pilot study. Accordingly it aims to determine the utility of a strategy that includes empirical antibacterial therapy in adults hospitalized with malaria in low transmission settings, until significant bactrila infection has been excluded.
This is a cross-sectional, observational study using dried blood samples collected from P. falciparum-infected individuals at the time of malaria diagnosis to measure the prevalence of known and candidate molecular markers of resistance to artemisinin and non-artemisinin ACT partner drugs. A maximum of 200 participants will be enrolled at each participating sites per year. Study duration is 1 years. Therefore total participant is up to 400. Prospective participants will have blood collected for dried blood spot (DBS) study sample after providing informed consent. Individuals with confirmed P. falciparum infection will have DBS samples included for molecular analyses for known and candidate molecular markers of antimalarial drug resistance.
Study is cross-sectional and observational with one-time dried-blood spot sample collection from persons with laboratory-confirmed uncomplicated Plasmodium falciparum malaria (mixed or monoinfection). Samples will be analysed for the presence of molecular markers of resistance to ACT partner drugs (gene amplifications and/or other mutations in pfmdr1, gene amplifications of pfpm2, and additional mutations which may be identified during the course of the trial) in the first instance. Testing to detect additional markers of antimalarial drug resistance will also be performed where feasible. Prevalence of mutations will be summarized and mapped to provide intelligence on antimalarial drug resistance in the region of interest.
Plasmodium vivax can be cause of severe malaria and mortality. There are serious public health implications associated with cases of P. vivax resistant to Chloroquine in the Americas as well there are efforts of many countries to eliminate this disease. In this way, it is critically important to evaluate an alternative radical cure treatment efficient to amazon scenario. The objectives of this trial are to demonstrate the superiority of adequate parasitological response at D42 of Dihydroartemisinin plus Piperaquine (DHA-PQP or Eurartesim®) versus Chloroquine and to evaluate the proportion of failure until D180 considering different starting days of Primaquine (0.50 mg/kg/day) for 14 days. It is an open, 4 arms, randomised, comparative trial. Total of 460 patients are initially planned to be included. To demonstrate the superiority of DHA-PQP compared to Chloroquine, the 95% confidence interval of the difference observed between both treatment success rates will be determined. Each recurrence will be passively and actively detected for 180 days.
This study evaluates the efficacy and safety of monthly intermittent preventive treatment using dihydroartemisinin piperaquine (DP) alone or in combination with azithromycin (AZ) compared to sulphadoxine-pyrimethamine (SP) for the prevention of malaria in pregnant women in the second and third trimester.
The purpose of this study is to assess the safety, immunogenicity and efficacy of the candidate malaria vaccines ChAdOx1 LS2 and MVA LS2. Healthy adult volunteers will be recruited and vaccinated in Oxford.
The study is to be performed in public health facilities in Central and West Africa where Pyramax will be used as treatment of uncomplicated malaria episodes, including repeat episodes. The study is to assess the safety of Pyramax, particularly in patients with underlying liver function abnormalities, in patients who have co-morbid conditions, such as HIV, and also in very small children (<1 year of age).
The overall goal is to validate efficacy and potential superiority of dried leaf Artemisia annua (DLA) vs. artemisinin combination therapy (ACT) to cure malaria and to demonstrate elimination of the transmission stage (gametocytes) of the disease. This is a 3 arm trial in Democratic Republic of Congo covering 600 total adult and pediatric patients. Final validation of infection from dried blood samples will be done at WPI.