View clinical trials related to Malaria.
Filter by:Malaria remains the world's leading parasitic endemic. Almost half of the world's population lives in endemic areas. Many at-risk people in African countries remain without access to malaria control. Malaria kills approximately 400,000 people each year, most of whom are children under the age of 5 in Africa. Since 2005, an increasing number of Plasmodium vivax infections have been observed in Duffy-negative populations in South America and Africa, calling into question the essential role of the PvDBP-DARC interaction. The objective of the investigators is therefore to study and understand the invasion pathways used by Plasmodium vivax in Duffy-negative subjects.
This three-part, first-in-human, healthy volunteer study aims to assess the safety and tolerability of the test medicine as well as how it is taken up by the body when given as single and multiple doses. The effect of food on the test medicine will also be investigated. In Part 1, up to 40 volunteers will be split into up to 5 groups and will receive single oral doses of the test medicine or dummy medicine (placebo), at different dose levels. In Part 2, up to 8 volunteers will receive one oral dose of the test medicine in the fed state and one oral dose in the fasted state. In Part 3, up to 24 volunteers will be split into up to 3 groups and will receive single oral daily doses of the test medicine or placebo for 3 consecutive days. Volunteers' blood and urine will be taken throughout the study for analysis of the test medicine and for their safety. In Part 1 and Part 3, volunteers will be discharged from the clinical unit 4 days after the final dose of the test medicine and will return to the clinical unit on two occasions for safety assessments to be performed. In Part 2, volunteers will be discharged from the clinical unit 4 days after the final dose of the test medicine and will return to the clinical unit on a single occasion for safety assessments to be performed. Volunteers are expected to be involved in this study for approximately 6 weeks for all study parts, from screening to the final return visit.
The aim of this study is to determine whether Seasonal Malaria Chemoprevention (SMC) remains effective in the health district of Nanoro in the Centre-Ouest region or Boussé in the Plateau Central region. It also aims to assess the protective efficacy of the antimalarial drugs used in SMC in the target population and to investigate levels of parasite resistance in the study districts. According to the results, this trial should provide the evidence needed to change the drugs used in SMC. A Type II hybrid effectiveness-implementation study design will be used to evaluate the effects of a clinical intervention on relevant outcomes whilst collecting information on implementation. It is designed to determine feasibility and effectiveness of an innovative intervention, as well as the protective efficacy of the antimalarial drugs used. The study consists of two components: 1) Conducting a prospective cohort study to determine the protective efficacy of the drug combination Sulfadoxine-Pyrimethamine and Amodiaquine (SPAQ) (if SPAQ provides 28 days of protection from infection) and whether drug concentrations and/or resistance influence the duration of protection; 2) Conducting a resistance markers study in symptomatic patients in the research district.
The goal of this clinical trial is to evaluate the safety of a single intravenous dose of DON in healthy adults, adults with uncomplicated malaria, and children 6 months-14 years old with clinically defined Cerebral Malaria. The main objectives are: - Determine the pharmacokinetic (PK) profile of a single dose of DON in children with CM - Determine if administration of a single intravenous dose of DON as an adjunctive therapy in children with CM is associated with improved intracerebral blood flow dynamics on transcranial doppler (TCD) - Determine if administration of a single intravenous dose of DON as an adjunctive therapy in children with CM is associated with a reduction in brain volume score on magnetic resonance imaging (MRI) - Determine if administration of a single intravenous dose of DON as an adjunctive therapy in children with cerebral malaria is associated with changes in electroencephalogram (EEG) pattern - Exploratory: Explore the metabolic mechanisms of action of adjunctive DON in children with CM Healthy adult participants will receive: - anti-emetic ondansetron - one dose of DON Adults with uncomplicated malaria will receive: - anti-emetic ondansetron - one dose of DON - artemisinin-combination therapies per Malawi Ministry of Health guidelines Pediatric participants will receive: - one dose of DON - anti-emetic ondansetron and per Malawi Ministry of Health guidelines - enteral lumefantrine therapy, and - artesunate therapy
This study aims to explore whether SMC is an effective intervention in the context of Northen Bahr el Gazal state, South Sudan. It also aims to assess the protective efficacy of the antimalarials used in SMC in the target population and investigate levels of parasite resistance in the study counties. If successful, this trial should provide the evidence for SMC to be included in malaria programming and policy in South Sudan. A Type II hybrid effectiveness-implementation study design will be used to evaluate the effects of a clinical intervention on relevant outcomes whilst collecting information on implementation. It is designed to determine feasibility and effectiveness of an innovative intervention, as well as the protective efficacy of the antimalarial drugs used. The study consists of five components: 1) A series of cross-sectional surveys establishing confirmed malaria cases in children; 2) A prospective cohort study to determine the protective efficacy of SPAQ (if SPAQ provides 28 days of protection from infection) and whether drug concentrations and/or resistance influence the duration of protection; 3) A resistance markers study in children 3-59 months in the research county; 4) Modelling the protective effect of SPAQ in South Sudan to determine where SMC could be a suitable malaria prevention strategy in other areas of the country, and 5) A process evaluation to understand feasibility and acceptability of the SMC intervention in South Sudan.
Since their introduction in the late 90's, rapid diagnostic tests (RDTs) have dramatically improved our ability to control malaria but proved insufficient to support elimination efforts because of their limited sensitivity, especially for P. vivax. In addition, the spread of P. falciparum parasites lacking hrp2 gene jeopardizes the long-term use of P. falciparum-specific HRP2-based RDTs. A partnership between Abbott, FIND, PATH, and the Bill and Melinda Gates Foundation (BMGF) is addressing these limitations by developing two novel malaria RDTs with improved pLDH detection: a P. falciparum-specific test targeting both the HRP2 and PfLDH antigens on a single test line (NxTekTM Malaria P.f plus Rapid Diagnostic Test Device), and a P. falciparum/P. vivax combo test additionally targeting the PvLDH antigen on a second test line (NxTekTM Malaria P.f/P.v. plus Rapid Diagnostic Test Device). These new combo tests with improved pLDH detection may provide added value compared to currently available malaria RDTs, especially in settings where current tests prove to be insufficient due to hrp2 deletion or high burden of P. vivax malaria. Abbott, PATH, and FIND will conduct a prospective evaluation of NxTekTM Malaria P.f plus and NxTekTM Malaria P.f/P.v plus RDTs in malaria-endemic countries to assess their clinical performance for detection of malaria and usability in their intended-use settings. This is in support of a submission for WHO Prequalification.The purpose of this synopsis is to describe key points of alignment in study design and conduct across the portfolio of studies.
This is a single centre, randomized, placebo-controlled phase 1/2 study comparing two malaria vaccine candidates. The first vaccine candidate PfSPZ-CVac (Plasmodium falciparum sporozoites (PfSPZ) challenge administered with a chemoprophylactic antimalarial) will be chemoattenuated in vivo with the antimalarial Pyramax. The second vaccine candidate is prime- target vaccination with viral vectored vaccine candidate regime MVA ME-TRAP (Modified Vaccinia Ankara (MVA) multiple epitope thrombosponin-related adhesion protein (ME-TRAP)) and ChAd63 ME-TRAP (Chimpanzee adenovirus 63 (ChAd63). The safety and protective efficacy of both vaccine candidates will be to assessed by controlled human malaria infection with PfSPZ Challenge strain NF54 administered intravenously by syringe.
The study is a Phase 2 randomized controlled, partial-blind, parallel group study in plasmodium infected asymptomatic adults 18 years and older, with 8 study arms. It will use the adapted Zelen design, which has two steps in the consent process. In the first step, there is an informed consent from all participants for a cohort lifestyle study. According to this consent, participants are randomized without knowledge about the detailed protocol. In the second step, only participants from the intervention group will receive the information about the intervention and the second consent will be obtained from them. The participants who will decline to participate to an intervention will continue in the cohort study, as the control group.
This trial tests the hypothesis that intermittent preventive treatment in pregnancy (IPTp) with sulfadoxine-pyrimethamine (SP) plus dihydroartemisinin-piperaquine (DP) significantly reduces the risk of malaria infection (primary outcome) and adverse birth outcomes (key secondary outcome) in an endemic area of Papua New Guinea (PNG), compared to IPTp with SP alone (the current standard of care). To test this hypothesis a double-blinded, placebo-controlled, phase-III, superiority trial will individually randomize 1,172 HIV-uninfected pregnant women enrolled from 12-26 gestational weeks in equal proportions to one of two IPTp arms: 1) SP given every for weeks, or 2) SP+DP given every 4 weeks. DP placebos will be used to ensure adequate blinding is achieved in the study and follow-up will end 28 days after giving birth.
Study Population: Participants of the previous PRIMVAC vaccine trial and women aged 18 to 35 years Sample Size: 90 Study duration: 21 months Subject duration: 12 months if pregnancy doesn't occurred. In case of pregnancy, the participant will be followed up until the delivery. Study Design: Long term observational study comparing the immunology trend of 3 groups of i) women who received the PRIMVAC Vaccine or Placebo during the phase 1b trial in Burkina Faso; ii) women of the same age and nulligravid who did not participate in the phase 1b trial iii) women of the same age and primigravid who did not participate in the phase 1b trial Co Primary objectives - To assess the dynamics of humoral immune response to the vaccine antigen during long term follow up of the study participants - To evaluate the functional durability of the humoral immune responses of women who participated in the phase 1b vaccine trial compared to women of the same age Secondary objectives - To assess the cellular immune response during the follow-up period - To assess the incidence of clinical malaria on study participants - To assess the prevalence of Placental Malaria in study participants and adverse outcomes such as maternal anemia, low birth weight, stillbirth and prematurity.