View clinical trials related to Malaria.
Filter by:Background: - People bitten by mosquitoes carrying weakened malaria parasites could fight off the disease if later exposed to normal malaria parasites. Scientists have discovered how to make the weakened parasites, which can be injected by the PfSPZ vaccine. Researchers want to see if people who receive the vaccine get malaria after being bitten in a controlled setting (a controlled human malaria infection, CHMI). Objective: - To see if the PfSPZ malaria vaccine is safe and prevents malaria in a controlled setting. Eligibility: - Healthy adults 18 45 years old. Design: - Participants will be screened with medical history, physical exam, blood and lab tests, and EKG. - Participants will be split into 8 groups, to be in the study for 3 12 months. - Participants will receive 3 5 vaccinations, injected by a needle in an arm vein or muscle. - Participants will keep a health diary and be contacted by phone. - For CHMI, a cup with mosquitoes carrying malaria is applied to participants arm for 5 minutes. Five mosquitoes at a time are used, until 5 have bitten. Some groups will be exposed to malaria more than once. - After CHMI, participants will visit the clinic very frequently (including daily visits for 12 days) for 28 days. - Blood will be drawn at most visits, from 1 to 20 tubes. Physical exam and medical history may also be repeated - Participants who develop malaria will be treated immediately at the clinic. Standard treatment takes 72 hours. Malaria symptoms may last up to 3 days.
The primary objective is to evaluate the safety of 3 doses given at D0, W4, and W26 of 50 µg dosage of AMA1-DiCo adjuvanted either with GLA-SE or Alhydrogel® in healthy European adults not previously exposed to the parasite P.falciparum and in healthy African adults exposed to the parasite. The safety and the tolerability of the vaccine will be assessed on the rate of solicited and unsolicited events/reactions. The safety profile will include local and systemic reactions/events as well as the biological safety, based on a clinically significant change of the baseline value of the main biological criteria.
This study is a Phase 1, dose escalation, first-in-human study designed primarily to evaluate the safety of the purified plant-derived Pfs25 VLP combined with Alhydrogel adjuvant
We propose to evaluate the community-level impact of intermittent preventive treatment (IPT) for malaria in schoolchildren on clinical outcomes and malaria transmission, using a cluster-randomised design in Jinja, Uganda. Dihydroartemisinin-piperaquine (DP) will be administered to schoolchildren monthly for up to six rounds of treatment during one school year. Outcomes will be measured using surveys of communities, schoolchildren, and mosquito vectors. Our proposal also includes health service research to evaluate the potential feasibility of taking the programme to scale, which will guide future research and implementation of the intervention, and help shape policies in Uganda and elsewhere in Africa.
The purpose of this study is to assess the effectiveness of different malaria control strategies in the first year of life. The effectiveness of delivering an intermittent screening and treatment programme with dihydroartemisinin-piperaquine (DHP), linked to local immunization programmes, will be compared to the current practice of passive case detection of malaria. This study has two objectives: 1. To assess the effectiveness of intermittent screening and treatment with dihydroartemisinin-piperaquine (DHP) administered at 2, 3, 4 and 9 months of age compared with the current practice of passive detection and treatment for malaria in an area with high drug resistance levels to both P. falciparum and P. vivax. 2. To evaluate the safety, efficacy and population pharmacokinetics of DHP in children under 1 year of age.
Preliminary studies have supported the background efficacy of local standard anti-malarial medications in the treatment of uncomplicated knowlesi malaria, however there are no current WHO treatment guidelines for this infection. There are both health cost benefits to a more rapidly acting agent, and due to difficulties with microscopic identification there may be more effective treatment for all malaria species if an aligned treatment guideline could be supported. We are currently conducting a separate RCT using a similar protocol evaluating artesunate-mefloquine versus chloroquine for uncomplicated P. knowlesi malaria. However artemether-lumefantrine should also be compared against chloroquine due to the fact it is also a first line anti-malarial recommended in Malaysia, and there are potential differences in efficacy due to the different administration, absorption and half-life of artemether-lumefantrine. The investigators aim to test whether the fixed combination of artesunate-mefloquine is superior to chloroquine in order to define the optimal treatment for both uncomplicated P. knowlesi infection in both adults and children in this region.
This study is to assess the safety, tolerability, and biomarkers of protection in healthy malaria-naïve adults, who will receive bites from Anopheles stephensi mosquitoes either infected with Plasmodium falciparum Sporozoites (PfRAS) (true-immunization) or noninfected (mock-immunization).
There is a need for paediatric formulations that permit accurate dosing and enhance patient compliance. However, for the treatment of malaria, scarce paediatric-friendly formulations are available on the market. Thus, a new water dispersible formulation of eurartesim has been developed for oral administration. Aim of this study is to provide data on pharmacokinetic profile, safety and efficacy of this new paediatric formulation and compare it with the crushed film coated tablet in infant patients (6 to ≤12 months of age) suffering from uncomplicated Plasmodium falciparum malaria. Furthermore, a Pharmacokinetic/Pharmacodynamic(PK/PD) modelling will be built up to establish PK/PD relationship in adult and paediatric populations.
Background: - Malaria is caused by small germs carried by mosquitoes. People can get malaria if an infected mosquito bites them. Malaria destroys red blood cells and reduces oxygen in the blood. Most malaria is mild, but severe malaria kills at least 660,000 people each year. About 75% of these are children in Sub-Saharan Africa, most under age 5. Researchers want to find a safe vaccine that helps prevent malaria. Objectives: - To see if a new malaria vaccine is well tolerated and effective. Eligibility: - Healthy adults 18 35 years old who are not pregnant and live in Mali. Design: - Participants will be screened with medical history, physical exam, and blood test. They will also have an ECG. Soft electrodes will be stuck to the skin. A machine will record the heart s electrical signals. - Study participation will last about 1 year. - Participants will be randomly placed in 5 groups. Some will get 2 doses of the PfSPZ vaccine weeks apart; some will get 3 or 5 doses of vaccine; some will get 3 or 5 doses of placebo. - Doses will be given through a needle in the arm directly into the bloodstream. Then participants must stay at the clinic for 2 hours. - After each dose, participants will return to the clinic several times for blood tests and physical exam. - A week before the first dose and 2 weeks after the last, participants will take a full course of anti-malaria drugs. - If a participant gets malaria during the study, they will take another course of anti-malaria drugs.
Pediatric cerebral malaria (CM) affects more than 3 million children each year killing ~20% and leaving one third of survivors with long term neurologic and psychiatric sequelae. Seizures occur commonly with CM and are associated with an increased risk of death and neuropsychiatric disabilities. In this Malawi-based, dose- escalation, safety and feasibility study of enteral levetiracetam in pediatric CM, the investigators will lay the groundwork for future efficacy studies aimed at improving seizure control and ultimately decreasing the neurologic morbidity of pediatric CM.