View clinical trials related to Malaria.
Filter by:Lactating women requiring treatment for uncomplicated malaria will be identified and invited for sampling. The decision to treat them with first-line treatment will have been made by the clinician, not by a member of the study team. The study team will not make any adjustments to the prescribed treatment. Artemether-lumefantrine comprises six doses of medication, with the initial two doses given 8 hours apart on Day 1, and dosing 12-hourly on Day 2 and Day 3. Intensive pharmacokinetic sampling will be undertaken after Dose 5, as indicated in the schema under Section 5: plasma and breastmilk samples will be obtained pre-dose and at 2, 4, 6, 8 hours after dose. In addition, sparse sampling will be undertaken on either of these occasions; at pre-dose and between 1 to 6 hours after the first dose; a trough (pre-dose) sample after the Dose 3 or Dose 4 and lastly at 5, 7, and up to 14-days after the first dose. A heelprick sample will also be obtained from the breastfed infants at maternal trough (prior to maternal dose) and at a random timepoint (once per infant) over the 8-hour pharmacokinetic sampling visit to characterize concentrations of these drugs over an 8-hour dosing interval. In addition, a single heelprick sample will be obtained from the infant whenever the mother returns after treatment for the late sampling time points (5, 7, and 14 days post the first dose). Due to the long half-life of lumefantrine of approximately 6 days plasma sampling will be performed up to day 14 to characterise the terminal elimination of the drug. Concentrations of total plasma and breastmilk lumefantrine and desbutyl-lumefantrine will be determined.
Background: Malaria is a disease that affects many people in Africa. It is caused by germs carried by some mosquitoes. A person bitten by an infected mosquito will get malaria. Most malaria infections cause only mild symptoms or none at all, but sometimes the disease can be deadly. Malaria can also harm pregnant women. They may lose their pregnancies or deliver too early, and the mother and newborn may die. An experimental malaria vaccine (PfSPZ) has shown some protection against malaria infection. It is not yet known if PfSPZ is safe for pregnant women. Objective: To test the PfSPZ vaccine in pregnant women. Eligibility: Healthy women aged 18 to 34 years at 14 to 32 weeks gestation with 1 fetus. Design: The study will be in Mali. Participants will have about 40 clinic visits over 20 months. They will be screened. They will have an ultrasound exam and a test of their heart function. They will have blood and urine tests. Participants will receive an injection through a needle into a vein on 3 visits over 1 month. Some will receive the PfSPZ vaccine; others will be injected with salt water. They will not know which injection they are getting. After the last injection, participants will visit the clinic every 2 weeks. They will have blood tests at each visit. After giving birth, participants and their infants will visit the clinic every 2 weeks for 4 months; then they will have visits each month until the infant is 1 year old. The infant will be examined and will have blood tests at each visit.
This study aims to evaluate the effects of SMC (Seasonal malaria chemoprevention) with Sulfadoxine-Pyrimethamine (SP) and Amodiaquine (AQ) on the evolution of anti-malarial immunity of children and their susceptibility to malarial infection. This is a cross-sectional study on children aged 6 to 59 months with/without SMC in two villages in northern Benin. Sociodemographic and clinical data as well as repeated blood samples will be collected from 440 children (before, during and after treatment). Samples will be analyzed using a Luminex assay to investigate antibody responses to MSP (merozoite surface protein) , Glurp (Glutamate-Rich Protein) and a panel of PfEMP1. qPCR (quantitative polymerase chain reaction) will be used to detect the prevalence of malaria at this period and parasites infecting children will be characterize during the follow up.
Malaria remains a major infectious disease causing a heavy burden of mortality and morbidity in populations living in tropical and subtropical regions. Large, international research efforts have been invested into the development of anti-malaria vaccination strategies, however, currently there is only one malaria vaccine approved for use in the pediatric population, which provides a moderate and short-lived protection. Therefore, there is a need to develop a malaria vaccine that will be essential to further strengthen malaria control measures in future. A Phase Ia trial with the same IMP (SumayaVac-1 vaccine developed using a full-length recombinant MSP-1 administered along with the adjuvant GLA-SE) in Caucasians in Heidelberg, Germany, proved to be well tolerated and safe. However, a Phase Ib clinical trial on healthy participants residing in a malaria endemic country would be essential to evaluate the safety and reactogenicity in the target population. The project aims to investigate the safety, reactogenicity, immunogenicity of the candidate malaria vaccine, SumayaVac-1 (SUM-101) in 40 healthy participants (men and women) of African origin in Bagamoyo, Tanzania.
Malaria remains a leading cause of morbidity and mortality globally. Uganda has the 3rd highest global burden of malaria cases (5%) and the 7th highest level of deaths (3%), accounting for over 10,500 deaths annually. Uganda also has the highest proportion of malaria cases in East and Southern Africa (23.7%). Even with the current prevention strategies including use of impregnated mosquito nets, in 2017, malaria still accounted for 27-34 % of outpatient visits, 19-30 % of hospital admissions, up to 20% of all hospital deaths nationally. A significant percentage of deaths occur at home and are not reported by the facility-based Health Management Information System (HMIS). 27.2% of inpatient deaths among children under five years of age are due to malaria. The transmission of Plasmodium from humans to mosquitoes depends on the presence of mature gametocytes transmission stages. The current first-line treatment for uncomplicated falciparum malaria is artemether lumefantrine, an artemisinin combination therapy (ACT) which rapidly clears asexual parasites and developing gametocytes but leaves mature P. falciparum gametocytes largely unaffected, thus a proportion of patients may transmit malaria after successful ACT treatment and there is an urgent need to prevent this malaria transmission.
USSPZV7 is a randomized, phase 1, double-blind, placebo-controlled trial of Sanaria® PfSPZ Vaccine administered on Days 1, 8 and 29 by direct venous inoculation (DVI) to assess safety, tolerability, immunogenicity, and vaccine efficacy (VE) against heterologous controlled human malaria infection (CHMI) with the 7G8 clone of Plasmodium falciparum (Pf) conducted at 3 or 12 weeks after the third immunization. The trial is designed to determine if individuals living in a non-malaria endemic area such as the United States (US) are protected against heterologous CHMI conducted at these time points.
This first-in-human clinical trial, is a dose escalation multi-center trial designed to assess the safety, tolerability, and immunogenicity of the vaccine component, BNT165b1, an ribonucleic acid (RNA)-lipid nanoparticle (LNP) encoding for part of the Plasmodium falciparum circumsporozoite protein (PfCSP). BNT165b1 will be evaluated at three dose levels (DLs) to select a safe and tolerable dose in a 3-dose schedule.
This trial will assess the long-term health and socioeconomic impact of interventions targeting low-density malaria infection (LMI) among children in Tanzania
The investigators are proposing a new malaria control strategy to reach the group of garimpeiros not reached by the usual actions of the health services. As it is a complex strategy, several evaluation mechanisms have been designed. The main characteristics of the research are: - Access to the target population: our target population is represented by miners active and mobile in the south of the Guiana Shield, between Amapá (Brazil), French Guiana (France) and Suriname. To overcome the obstacles posed by the remoteness and clandestinity of the communities of interest, our intervention will take place in the logistical and support hubs (staging areas) of the miners, located in the border regions between the above territories. Thus, it will take advantage of their periodic mobility between these bases and the gold mining sites, and reach the target population where it can be easily accessed. - The intervention will be combined and will include a common core (malaria health education activity) and two modules that will be offered to participants. Each participant (meeting the inclusion criteria) will be able to choose between participating to one or both modules. - The common core of health education will focus on malaria: its causes, means of prevention, the main differences between P. falciparum and P. vivax disease, the importance of a complete treatment against any form of Plasmodium spp. - Module A of the intervention will be treatment targeting asymptomatic individuals at risk of carrying P. vivax. The aim of this module is to prevent relapses and reduce the number of human hosts able to transmitthe parasite. - Module B of the intervention will correspond to the provision, after appropriate training, of a Malakit self-test and self-treatment kit. The aim of this module is to provide access to quality diagnosis and treatment for episodes of symptoms consistent with malaria that occur in situations of extreme remoteness from health services. - The purpose of this study is to evaluate a strategy that, if appropriate, can be implemented by health authorities in countries with residual malaria transmission in populations with characteristics similar to our study population. The investigators will therefore use a pragmatic approach so that the conclusions drawn can be transposed as easily as possible to real life, while at the same time putting great effort into the safety of the intervention. Thus, the study field workers who will administer the intervention will have a similar profile to health workers recruited by a large number of malaria control programmes, particularly in remote areas. In addition, monitoring will be simplified and monitoring data can be collected both through face-to-face visits and remotely administered questionnaires. - The investigators chose to design many of the components of the intervention and study with a participatory approach. - In order to generate the data necessary for health authorities to potentially take ownership of the intervention in the future, the study will evaluate two aspects of the intervention: effectiveness and implementation. - First, the investigators want to evaluate the population-scale effectiveness of the intervention to reduce malaria transmission with a quasi-experimental approach. - Secondly, the investigators will analyse the implementation of the intervention, and generate valuable knowledge for further implementation within local health services. This evaluation will be carried out through the components of the CUREMA study: the intervention itself, pre/post-intervention cross-sectional surveys, the qualitative component and the modelling of epidemiological surveillance data. • The implementation of these components will have an expected duration of approximately 27 months, the start of inclusions is scheduled for September 2022.
In the REACT 2 project, a consortium proposes to study in Burkina Faso and Côte d'Ivoire, the impact of a public health intervention in rural communities in order to improve access to malaria therapeutic and preventive arsenal for vulnerable populations (i.e. children, adolescents and pregnant women). The intervention relies on the implementation of mobile health workers to support community health workers.