View clinical trials related to Malaria.
Filter by:The use of insecticide-treated bed nets (ITN) has contributed to the substantial reduction in malaria cases and deaths. This progress is threatened by increasing resistance commonly used insecticides in mosquito populations. Newly developed, next-generation ITNs using two insecticides or an insecticide synergist and an insecticide are effective against resistant mosquitoes, but large-scale uptake of these nets has been slow due to higher costs and lack of enough evidence to support broad policy recommendations. This observational study will occur alongside a pilot distribution of next-generation ITNs and collect data over three years on their entomological and epidemiological impact as well as anthropological factors that influence their uptake and use. Data collection will occur in three districts: one receiving dual-active ingredient ITNs, Interceptor® G2 (BASF), one receiving a standard pyrethroid long-lasting insecticidal net (LLIN), Interceptor® (BASF), and one receiving PermaNet®3.0 (Vestergaard) an LLIN containing an insecticide and an insecticide synergist. Data will be collected on malaria vector bionomics, disease epidemiology, and human behaviors in order to help better demonstrate the public health value of next-generation ITNs and to support donors, policymakers, and National Malaria Control Programs in their ITN decision-making and planning processes.
Seasonal Malaria Chemoprevention (SMC) for children less than five years old is one the high impact interventions against malaria in sub-Saharan Africa (SSA). Since 2016, the Government of Mali and partners through the National Malaria Control Program has deployed SMC countrywide during high malaria transmission season with a total of four (4) rounds per year. Sulfadoxine-Pyrimethamine (SP) with Amodiaquine (AQ) are the drugs used for SMC. However, SP is also used for Intermittent preventative treatment (IPTp) for pregnant women while AQ has been used for decades for treatment of uncomplicated malaria. The proposed study will examine the effect of SMC with Sulfadoxine+Amodiaquine (SP+AQ) extension to older age, the efficacy of Dihydroartemisin-Piperaquine (DHA-PQ) when used for SMC, social, cultural, economic and health systems factors associated with effective implementation of SMC. The specific aims of this study are to: 1] Assess the effect of SMC (SP+AQ) on malaria incidence and infection prevalence in different age groups across sites; 2] Study the effect of SMC (DHA-PQ) compared to SMC (SP-AQ) among children less than 10 years; 3] Determine the cost-effectiveness for each treatment regimen; ) 4] Explore factors determining effective SMC implementation including coverage of children targeted to receive treatment by community distributors, receipt of a full course of treatment, perception of medications by parents and health care providers, and sustainability; and 5) Establish a district based system to identify severe cases. The expected outcomes of this work, upon completion of our specific aims, include 1) Recommendations to Malian health officials and other partners for improving implementation of SMC and alternative drug to SP+AQ for SMC, and 2) Guidelines for routine monitoring of SMC implementation.
Group antenatal care (GANC) is a service delivery model where women with pregnancies of similar gestational age are brought together for antenatal care (ANC), incorporating information sharing and peer support. This model provides selected aspects of clinical care to women in the group at the same time during group visits, as well as creating a support group of women at a similar stage in pregnancy, to improve the quality of care and engagement of women in the ANC process, ultimately leading to better retention in care. Initial studies have suggested that this improves uptake of intermittent preventive treatment in pregnancy (IPTp) among women who participate, but have not evaluated the effect at community level. The investigators propose to assess whether use of the GANC model in Tanzania can improve the quality of ANC as compared to standard individual ANC, by measuring uptake of recommended interventions, primarily IPTp. Recent data from Tanzania and Kenya suggest that malaria parasitemia prevalence among pregnant women correlates with the prevalence among children under five, and could be used to track trends over time.3-5 The very high coverage of ANC (>80% attending at least one ANC contact), suggests that pregnant women could be a good sentinel population that could be readily tracked over time. However, pregnant women represent only about 5% of the overall population, thus, it is important to demonstrate that the trends in malaria prevalence and household level coverage of interventions reported by pregnant women attending ANC is representative of coverage among the general population. If validated, these data could be used to augment or even replace the data on coverage of interventions collected through the use of malaria indicator surveys, which are expensive and infrequently conducted, and generally only powered to the regional level.
National malaria control strategies in pregnant women relies primarily on effective case management along with the use of long lasting insecticide-treated nets (LLINs)throughout pregnancy and intermittent preventive treatment with sulfadoxine-pyrimethamine (IPTp-SP) in the second and third trimesters in malaria-endemic regions in sub-Saharan Africa (SSA). For the latter, 3 or more doses are recommended by the national malaria control program (NMCP) but available data suggests that only 19% of eligible women received this in 2016 despite observed high attendance to antenatal clinic (ANC). Adherence to IPTp may be affected by perceptions, acceptability and contextual factors that need to be understood and therefore improve the effectiveness of this health interventions. In addition, all malaria cases should be confirmed either by microscopy or using a rapid diagnostic test (RDTs) before any treatment. Despite the crucial role of RDTs in improving malaria case management SSA, many malaria cases are missed in pregnant women due to the power performance of recommended RDTs which are unable to detect very low parasitaemia. Identifying lower density infections in pregnant women by the use of highly-sensitive RDTs and clearing them with an effective ACT could improve the outcome of the pregnancy in addition to IPTp-SP.
This is an open label, single-site, first-in-human, Phase Ia study to assess safety and immunogenicity of the Plasmodium falciparum malaria vaccine candidate Pfs25-IMX313 in Matrix-M1 adjuvant in healthy adults living in the UK Volunteers will receive 3 doses of vaccine over 2 months and will be followed up for approximately 8 months.
Background: Many women in Sub-Saharan Africa get malaria while they are pregnant. Plasmodium falciparum is a parasite that can cause malaria. Placental malaria (PM) caused by P. falciparum can cause anemia or death in first-time mothers. In infants, it can cause low birth weight, premature birth, or other problems. Some women don t show any signs of having PM. This makes it harder to know if they might have it. Researchers want to learn how much the seasons affect the number of women and infants who get PM as well as the severity of the disease. To do this, they are going to test women and babies who visit a health center in Guinea. Objective: To learn the seasonal burden of P. falciparum infection in pregnant women and otherwise healthy infants. Eligibility: Pregnant women ages 18 years and older (or emancipated minors) and infants ages 6-12 months. Design: Participants will include women and infants who visit the health center in Maf(SqrRoot)(Registered Trademark)rinyah, Guinea, for routine care. They can take part only once per pregnancy. For screening, mothers will talk about their medical history. They will talk about their past pregnancies and their current pregnancy. They will answer questions about where they live and what they do to keep from getting malaria. Babies will be screened with their medical history and demographic information. Participants will also give a blood sample. Adults will have a finger stick. Children will have a heel stick. Or they will have blood taken from a vein. Participation will last for 1 visit to the health center.
This is a two-phase, mixed-methods pilot study of insecticide-treated lesus to reduce the incidence of P. falciparum malaria among infants in a rural area of western Uganda. Participants will be recruited from four villages immediately adjacent to the Bugoye Level III Health Centre (Bugoye, Kanyanamigho, Izinga, Rwakingi 1a) in the Kasese District of western Uganda. The purpose of the study is to assess the feasibility and tolerability of using insecticide-treated lesus to reduce the incidence of P. falciparum malaria infection among infants.
This study aims to determine the effectiveness, cost-effectiveness, acceptability, and feasibility of targeted delivery of a package of malaria interventions for improving effective coverage and reducing Plasmodium falciparum malaria transmission among malaria high-risk populations in Northern Namibia. Previous research identified cattle herders and agricultural workers as populations at higher risk of infection. The investigators hypothesize that targeted delivery of interventions will lead improve coverage in these groups and lead to a reduction in P. falciparum transmission.
In this project, the investigators aim at an operational research deployment of Ultrasensitive Rapid Diagnostic Test (URDT) -based Mass Screening and Treatment (MSAT) in the Malaria Elimination Task Force (METF) elimination program. This intervention will be tested in two types of setting. In group 1, MSAT will be used in a programmatic setting in order to decrease the reservoir of asymptomatic carriers in high incidence villages (following the same principles and objective as previously deployed MDA interventions). In group 2, the investigators take advantage of the lighter framework of MSAT to use it as a reactive intervention in order to respond to malaria outbreaks in low to intermediate incidence villages. The MSAT intervention will be preceded with community-level consent and community engagement (CE) activities. MSAT will be conducted over a period of approximately 1 week in each hamlet, village or group of villages, and will consist in administering a P. falciparum URDT to all individuals agreeing to participate. A limited subgroup (expected 5-25%) will be found positive and receive supervised treatment over 3 days for the standard regimen (DP to cure asexual stage infection + single low-dose primaquine to destroy gametocytes). After this intervention, the incidence of clinical falciparum episodes will be monitored by the village MP. In group 1, a comparison of the prevalence at baseline and 12 months after MSAT intervention will be performed through a second URDT survey, in addition to which both baseline and 12-month surveys will include the collection of a 200µL capillary blood sample for reference detection in the laboratory. The intervention will be evaluated primarily on its ability to reduce yearly cumulative incidence of clinical falciparum malaria compared to year before intervention. Additional evaluations of the impact of MSAT will include: in group 1, comparison of asymptomatic infection prevalence; and in group 2, modifications of the shape of the incidence curve following intervention. Funder: Wellcome Trust grant reference 106698/B/14/Z
This study is a human challenge study to assess the feasibility and safety of controlled human malaria infection (via P. vivax sporozites) in healthy volunteers, and to develop a bank of P. vivax-infected blood for use in future controlled human P. vivax malaria infection studies. Additional objectives are to obtain data on host immune response to P. vivax infection and pre-treatment gametocytaemia. 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.