View clinical trials related to Malaria.
Filter by:This is an open-label, single-centre Phase I P. falciparum blood-stage vaccine trial to assess the safety and immunogenicity and efficacy of the candidate malaria vaccines R78C and RH5.1 formulated in adjuvant Matrix-M
This is a Phase Ib multi-stage Plasmodium falciparum malaria vaccine study to assess the safety and immunogenicity of the blood-stage vaccine candidate RH5.2 virus-like particle (VLP) in Matrix-MTM and the pre-erythrocytic stage vaccine candidate R21 in Matrix-MTM, both alone and in combination, in adults and infants in the Gambia
Prospective cross-sectional diagnostic accuracy study with 1,000 patient participants and 30 lay provider/health care worker participants. The patient participant population will be recruited at clinics. At the point of care, study staff will collect capillary blood samples and conduct malaria microscopy (both the standard of care and study specific research-grade microscopy) and two index tests: the NxTek™ Malaria P.f plus Rapid Diagnostic Test (RDT) and the NxTek™ Malaria P.f/P.v RDT. Venous blood will be collected and transferred to the laboratory where the reference PCR assay and three comparator RDTs will be run. The index RDTs will also be repeated in the laboratory. All clinical management of study participants will follow the standard of care for malaria diagnosis in Brazil and will be based on the standard microscopy result. Confirmatory testing may also be conducted, such as typing and sequencing of Plasmodium genes and antigens of interest, including but not limited to HRP2, HRP3, and pLDH as well as the human inflammatory response marker CRP. The lay provider/health worker participants will include intended users of the index tests. They will be surveyed to assess index test usability through a questionnaire to assess label and packaging comprehension as well as results interpretation.
Mozambique is among the ten countries with the highest burden of malaria worldwide, with an estimated 9.3 million cases in 2018, and constitutes a core target for the World Health Organization (WHO) and the Roll Back Malaria Partnership to End Malaria's country-led 'high burden to high impact' initiative. At the same time, the National Malaria Control Program (NMCP) of Mozambique seeks to accelerate elimination in the south, where transmission is lowest. NMCP is currently working with partners (Malaria Consortium, PMI, Global Fund) to set up a high-resolution surveillance system that can drive decision-making across all transmission strata through strengthening of routine data quality, data use and data to action packages. However, decisions become more complex as control reveals heterogeneity and better tools are required for a strategic use of information to drive impact. The overall objective of the study is to operationalize a functional malaria molecular surveillance (MMS) system that generates reliable and reproducible genomic data over time for programmatic decisions. The integration of genomic data into routine surveillance activities has the potential to increase the actionable intelligence for making programmatic decisions on the optimal mix of control and elimination measures in Mozambique by: 1. Informing drug and diagnostic choices through the monitoring of antimalarial drug resistance and diagnostic resistance (hrp2/3 deletions); 2. Targeting the reservoirs sustaining transmission through the use of transmission network models to quantify parasite importation, identify sources and characterize local transmission in near-elimination settings; 3. Improving stratification, monitoring and impact evaluations in different epidemiological and health system contexts through the use of measures of P. falciparum genetic diversity (routinely from positive cases) to supplement traditional surveillance, especially where it is sparse; 4. Using alternative, cost-effective, approaches targeting easy-access populations (e.g. pregnant women at antenatal care clinics) to monitor transmission and antimalarial/diagnostic resistance.
This study is a prospective observational study in which a female patient who received IV Artesunate while pregnant can volunteer to provide information about her pregnancy and the outcome of her pregnancy. Information will be collected from patient's provider, the patient's obstetrician, the child's pediatrician, or other relevant healthcare provider.
This observational research study aims to answer the question: 'Which aspects of human biology play an important role in recovery from symptomatic malaria?' In particular, the researchers aim to identify human genes for which the level of gene activity reflects the patient's overall rate of recovery. The researchers believe this approach may reveal new targets for adjunctive therapies. The researchers aim to recruit 240 people, of all ages, who have been diagnosed with symptomatic malaria at selected hospitals in London. Blood samples, urine samples, and clinical information will be collected over the 14 days following malaria diagnosis.
This is a household randomized trial of a new tool for house modification, Insecticide-Treated Eave nets (ITENs) in combination with insecticide-treated window screens (ITWS), coated with a dual active ingredient (dual AI): Deltamethrin at 3g AI/kg, which corresponds to 144 mg/m² and PBO synergist at 10g/kg which corresponds to 480 mg/m², as used in the so-called dual-AI LLIN or "resistance breaking" nets for resistance malaria vector control. Four hundred and fifty (450) households with intact walls, opened eaves, and those without screens or nets on the windows in Chalinze district, Tanzania will be eligible and only recruited upon written informed consent. The households will be randomly allocated into two arms: one with ITENs and ITWS installed and the other without. The primary outcome will be malaria parasite detection in household residents aged over 6 months old using a quantitative Polymerase Chain Reaction (qPCR) at approximately 12 months post-installation, coinciding with the long rainy season.
Malaria is a parasitic disease causing substantial morbidity and mortality globally. Malaria is a potentially severe and fatal disease in non-immune individuals. In areas of intense transmission infections individuals acquired immunity that protect against clinical disease. Nonetheless, immunity is not regarding sterilizing and repeated infections often result in an asymptomatic carriage of malaria parasites. These chronic apparently asymptomatic infections have been associated with anemia, cognitive dysfunction and adverse events during pregnancy. Global migration has increased over the last decade and has resulted in an increasing number of migrants from malaria endemic regions arriving in non-endemic countries. Migrants from malaria endemic countries may carry asymptomatic infections with malaria parasites, as well as other parasitic infections such as strongyloides and schistosomiasis, with a possible negative impact on health in this group. The prevalence of asymptomatic malaria and other parasites is not fully elucidated in migrants from different regions. Moreover, the longevity of asymptomatic carriage of malaria parasites in absence of re-exposure is not known. The aim of this study is to assess the prevalence of malaria parasites and other parasitic infections in migrants in Sweden, both newly arrived and migrants with longer residency, and intend to evaluate the need for screening for various parasitic infections in migrants arriving in Sweden. Moreover, this study will also assess antibody responses to malaria and other parasitic diseases.
As efforts to control malaria are stalling, and the disease is particularly severe in children under the age of two, it is imperative for countries in sub-Saharan Africa, with areas of moderate-to-high transmissions, to implement Perennial Malaria Chemoprevention (PMC) delivered through the Expanded Program on Immunization (EPI), which is the only feasible, sustainable and cost-effective strategy to reach this high-risk group. PMC is a full therapeutic course of antimalarial medicine (with sulfadoxine-pyrimethamine, SP) delivered to infants in the context of routine immunisation services during the first two year of life. PMC has been shown to be safe, efficacious in reducing clinical malaria, anaemia and hospital admissions, and to be highly cost-effective; for all these reasons, the World Health Organization (WHO) recommended in 2010 Intermittent Preventive Treatment for Infants (IPTi) for malaria prevention. Only one African country - Sierra Leone -put IPTi into policy and practice. Concerned with this slow adoption, WHO in 2019 recommended adaptations be urgently tested through pilots assessing impact, operational feasibility and cost effectiveness. In 2022, WHO expanded that recommendation to cover children through the age of two because of studies documenting the value in children aged 12 to 24 months. The name for this preventive treatment has consequently changed to Perennial Malaria Chemoprevention (PMC) as the updated recommendation is no longer just for infants. MULTIPLY is the pilot implementation of PMC in selected districts in Mozambique, Sierra Leone and Togo to maximise the delivery and uptake of PMC, to achieve the full potential of this intervention. Working with the ministries of health in Mozambique, Sierra Leone and Togo, MULTIPLY will give up to 6 doses of PMC in the first two years of life. PMC will be given at health facilities and EPI mobile outreach clinics using a paediatric dispersible formulation of SP, alongside routine vaccinations and vitamin A supplementation.
The primary objectives of this study are to assess the safety and feasibility of blood-stage controlled human P. vivax malaria infection (CHMI) in healthy adult Thai volunteers through experimental injection of cryopreserved P. vivax infected erythrocytes, and to choose the optimal inoculation dose for future P. vivax CHMI studies. In this study, blood-stage CHMI will be conducted in 8 volunteers per inoculum stock who will each be infected with P. vivax by experimental injection with cryopreserved P. vivax infected erythrocytes, which were collected from the controlled human Plasmodium vivax malaria infection model through experimental sporozoite infection in Thai adults (NCT04083508) . There are currently 2 stocks of inocula from 2 volunteers in the NCT04083508 study, which have differing quantities and stages of parasites. The total number of volunteers of this study will be up to 16 (8 volunteers per inocula stock). The volunteers will be monitored closely as in-patients in the Hospital for Tropical Diseases, and will be treated according to the Research Proposal. This study is funded by the UK Wellcome Trust. The grant reference number are Oxford/MORU: 212336/Z/18/Z and 212336/Z/18/A, and Mahidol University: 212336/A/18/Z and 212336/A/18/A.