View clinical trials related to Malaria.
Filter by:The TESTsmART Trial consists of two main aims. The overall goal of the two aims is to investigate the impact of malaria rapid diagnostic test (mRDT) subsidies and conditional artemisinin combination therapy (ACT) subsidies on the testing and treatment behavior of participants seeking care for their febrile illness in the private retail sector. Conditional ACT subsidies are discounts on quality-assured ACTs which are linked to the results of a malaria rapid diagnostic test administered at the retail outlet; only participants with a positive test will have access to an additional discount on a quality-assured ACT. The main objective of Aim 1 of this study is to identify a combination of conditional ACT and RDT subsidies that maximizes the proportion of participants that choose to have a malaria diagnostic test before taking a drug. The investigators will test two levels of conditional ACT subsidy (100% subsidy versus ~67% subsidy) and two levels of RDT subsidy (0% subsidy and 50% subsidy) in a factorial designed experiment. Because dose size and therefore the price of an ACT course are dependent upon patient age, the ACT subsidy amount will also be scaled with patient age. These subsidy levels were chosen to keep the estimated program cost of the combined subsidy within $0.30-0.60 USD per person (assuming 100% testing uptake and between 20-40% of participants having a positive RDT). These estimates represent an upper bound since testing is unlikely to reach 100%. Current subsidy levels for ACT costs the program between 1.30-2.50 USD per treatment, with more than a third of that investment spent on individuals without malaria. Individuals presenting to a retail outlet for a treatment of a fever or suspected malaria illness will be randomized to one of the four groups in equal proportions. A total of 840 participants will be enrolled (210 per arm). Their choices concerning uptake of testing and drug purchase will be recorded. The main outcome will be the proportion of participants that choose to take a test. Secondary outcomes include the proportion of participants who adhered to the results of the RDT among those who were tested (used ACT when positive and did not use an ACT when negative or without a test). The results of this study will be used to inform the subsidy levels in the intervention for Aim 2 of this trial.
The RTS,S/AS01 malaria vaccine is being introduced sub-nationally in phased pilot introductions through the EPI programmes in Malawi Ghana and Kenya. Vaccine introduction is by the respective MoH in selected areas randomly assigned to receive the vaccine at the beginning of the pilots. In the context of this programmatic activity, the Malaria Vaccine Pilot Evaluation (MVPE) registered here as observational evaluations during early vaccine introduction, include a series of 3 household surveys, and sentinel hospital and community mortality surveillance, building on routine systems. These observational evaluations will measure: 1. The programmatic feasibility of delivering a 4 dose schedule; 2. Safety in routine use, with focus on cerebral malaria and meningitis; 3. The impact of the malaria vaccine in routine use on severe malaria and all-cause mortality
This is a clinical study to assess the safety and feasibility of Plasmodium vivax (P. vivax) controlled blood-stage human malaria infection (CHMI), by inoculation using a newly created source of P. vivax malaria-infected blood. 25 healthy malaria-naïve UK volunteers, aged 18 - 50, will be recruited through the five phases of the study at the CCVTM, Oxford. Volunteers will undergo primary, secondary and tertiary P. vivax blood-stage challenges, which will be induced by injection of P. vivax infected blood. After the first challenge, the optimal dose for blood-stage CHMI will be selected and used for the second and third challenges. Through each challenge period, volunteers will have blood taken at regular intervals to measure the parasite growth, quantify the sexual parasite forms and assess the immune response to P. vivax infection. Transmission of P. vivax from volunteers to the Anopheline mosquito vectors will also be assessed. In each challenge, following diagnosis, volunteers will be treated with a standard antimalarial course of oral artemether-lumefantrine (Riamet), given over 60 hours. Volunteers who take part in this study will be involved in the trial for approximately 2 years, receiving each of the three challenges at intervals of approximately 5 (and up to 9) months. Volunteers will be followed for 3 months after their last challenge.
The aim of the project is to study neonatal immune dysfunction associated to the risk of newborn sepsis in a malaria endemic area in Benin.
The general objective of this study is to assess the therapeutic efficacy and safety of artesunate + amodiaquine combined with a single low dose of primaquine (0.25 mg/kg) for the treatment of uncomplicated P. falciparum malaria patients in Zanzibar. The specific objectives are: - To determine the clinical and parasitological efficacy of artesunate + amodiaquine and primaquine in the treatment of uncomplicated Plasmodium falciparum infection. - To differentiate recurrent infections during follow-up, i.e. recrudescence from new infections, by polymerase chain reaction (PCR). - To evaluate the incidence of adverse events, particularly with regards to potential hematological adverse events of primaquine. - To determine the polymorphism of molecular markers associated with artesunate + amodiaquine tolerance/resistance. - To formulate recommendations, which will enable the Zanzibar Ministry of Health to make informed decisions about whether the current national antimalarial treatment guidelines should be updated or not. - To determine efficacy rate of the first line treatment compared to the first efficacy trial thirteen years ago.
The primary objective of the study was to determine the PCR-APCR up to day 42 in children <60 months of age, weighing ≥5kg with uncomplicated malaria, treated with either artesunate+ amodiaquine (ASAQ) or artemether-lumefantrine (AL; Coartem®). Secondary objectives included: clinical and laboratory assessment of drug tolerability and safety, evaluation of possible correlation between drug bioavailability and clinical outcome, comparison of efficacy data with the pre-implementation "ACO I" study, parasite and fever clearance, gametocyte carriage, and possible selection of mutations related to quinoline resistance.
The primary objective of the study was to determine PCR corrected cure-rates up to day 42 in children with uncomplicated malaria, treated with either Artesunate + Amodiaquine or Coartem®. Secondary objectives were to determine safety and possible selection of mutations related to the resistance of the tested drugs.
Objective: The aim of this study is to evaluate the impact of enhanced malaria cases detection using molecular testing (LAMP) on maternal and infant morbidity and mortality in a prospective study design. A pragmatic randomized control diagnostic trial will be conducted from October 2020 until March 1 2022 in pregnant mothers at sites in Ethiopia. Both symptomatic and asymptomatic first and early second trimester pregnant women will be included in the study and individually randomized to either standard of care or enhanced cased detection arms using LAMP for malaria. Women (n=2583) will be enrolled during a seven-month period encompassing the peak transmission seasons and then followed until delivery. In the standard of care arm, venous blood sample will be collected from each study participant and the presence of Plasmodium infection will be diagnosed by microscopy in symptomatic patients. Pregnant women who test positive for malaria will be referred and treated for malaria with quinine or artemisinin combination therapies (ACTs) as per national guidelines. In the intervention arm, mothers who are symptomatic or asymptomatic will be tested by a commercially available CE-approved LAMP malaria test and microscopy/RDT for malaria at each clinic visit and treated if positive by any test. Pregnant mothers who require treatment will be referred and treated with either quinine or artemisinin combination therapy (ACTs) as per national guidelines. The primary outcome is the proportion of deliveries with low birth weight based on WHO definition, with secondary outcomes of:(i)absolute birth weight; (ii) maternal hemoglobin;(ii) neonatal hemoglobin at birth;(iv) neonatal mortality; (v) stillbirth; and (vi) prematurity in each arm of the study.
Investigators are conducting this study due to recent reports of many of existing malaria drugs becoming less effective for treatment of malaria. The drugs may not always kill all the parasites, therefore not all patients with malaria are being cured. The main objective of the study is to find out which malaria drugs and what drug combinations are still effective in Cambodia, an area of multi-drug resistance where 4-5 artemisinin-based combination therapies have shown inadequate response, below that established by the World Health Organization (WHO). New drug combinations (taking more than one drug for malaria at the same time), as long as well tolerated, can provide cure in patients that harbor parasites not responsive to standard first-line medications. Human genetic testing will be done to identify patients who may have suboptimal response to treatments and to study the differences in human gene expression to explain why some persons are at higher risk of complications during treatment. Markers of drug resistance to commonly used antimalarial drugs will also be evaluated and shared with national malaria program (CNM) to better guide future malaria treatment decisions in Cambodia.
Background: The disease malaria affects many people in Liberia and other parts of Africa. It is caused by germs that are spread by mosquito bites. It may be mild but can be serious or can lead to death if not diagnosed and treated. Children younger than 5 years old and pregnant women are most at risk of malaria. Worms also infect many people in Liberia. They can be caused by mosquito bites or by touching soil or still water. Worm infections can be mild or serious. Doctors in Liberia and their NIH partners want to learn more about these diseases in women and children. Objective: To measure how much malaria and worm infections there are in pregnant women and children in two counties of Liberia. Eligibility: Pregnant women ages 18 and older and children ages 6 12 months seeking routine care at C.H. Rennie Hospital or the Duport Road Health Center Design: Participants will be screened with questions about their health or their child s health. Participants will be asked further questions about their health and about their home life. Participants will give a small amount of blood by finger prick. This will be tested to see if they have malaria or some types of worms, and for research studies. Participants who are sick from malaria will be treated at a study clinic. Treatment will follow standards of the Liberia and/or the World Health Organization.