View clinical trials related to Malaria.
Filter by:Seasonal malaria chemoprevention (SMC) is a new strategy recommended by World Health Organization in 2012 for areas of highly seasonal transmission such as the Sahel. Although randomized controlled trials have shown SMC to be highly effective, evidence and experience from routine implementation of SMC has been lacking. For these reasons, we conducted a comprehensive evaluation of the coverage, adherence, and impact of SMC on malaria infection and disease and anemia when delivered through routine programs using existing community health workers in the Kayes region in Mali. Our evaluation used a pre-post design with cross-sectional surveys and abstraction of routine health information system data in an intervention district (Kita) where SMC was implemented through the health system, and a comparison district (Bafoulabe) where SMC was not implemented.
The First in Human (FIH) study is separated into two parts: - The first part is a Single Ascending Dose (SAD), double-blinded, randomized and placebo-controlled, including 8 cohorts of 8 subjects (2 placebo and 6 on active drug). - The second part is a food effect cohort with an open-labelled, randomized fed/fasted cross-over design. The main objectives of the study are to confirm safety, tolerability and Pharmacokinetics (PK) of P218 in healthy volunteers.
The present proof-of-concept Phase IIa study aims to confirm, in patients, the observed activity of MMV390048 against P. falciparum in pre-clinical models and the human Induced Blood-Stage Malaria (IBSM) challenge model, and to determine the activity against P. vivax malaria in patients, both over 14 and 28 days. Additional aims are to characterise the safety of MMV390048 in patients. Patient safety will be monitored for up to 35 days post-dose including pharmacokinetic assessments. The study will investigate descending single doses of MMV390048 in response to results obtained in the first cohort/dose in each malaria sub-type. The results of this trial will identify active, well-tolerated doses for investigation in combination with a partner drug within a Phase IIb clinical trial.
The aim of this study was to determine the effect of combining vitamin A (VA), zinc (Z) and multivitamins (MV- A, B1, B2, B6, B12, C, D and E) on malaria morbidity
Reactive treatment of household contacts of a confirmed malaria case has been shown to reduce infection prevalence since the former as they are at an increased risk of infection. However, implementing this on a programmatic scale poses significant pressure on the health system and may not be sustainable without the active involvement of the recipient community. This study investigates a novel approach to reducing residual malaria transmission that combines the elements of active community involvement in reactive treatment of household contacts of a clinical case reporting at a health facility. The investigators hypothesize that in areas of low transmission (prevalence of infection ≤10%), most asymptomatic carriers are clustered around clinical malaria cases in the same households. Also, targeting individuals sharing a sleeping area with diagnosed malaria case will reduce parasite carriage in the community. This is a cluster-randomized trial where villages in Central and Upper Baddibu, North Bank East Region of The Gambia, are randomized to receive either reactive treatment of household contacts following a confirmed case of malaria or standard care, i.e. treatment of index case only. Formative research into community perception and reaction to self-administered treatment will be used to generate, adapt and evaluate messages that encourage adherence and compliance to treatment. This will be tested in the first year of the implementation, and findings used to develop a final model of messages to be implemented in the second year of the study. The primary outcome is the prevalence of malaria infection, determined by molecular methods, in all age groups at the end of the second intervention year and the incidence of clinical malaria during the transmission season.
This will be a single-arm observational cohort study. Malaria patients with Plasmodium vivax and meeting study inclusion criteria, who give consent to be enrolled in the study, will have their G6PD status measured by the CareStart™ G6DP rapid diagnostic test (G6PD RDT), and primaquine prescribed according to the result. According to the G6PD RDT result, primaquine will be prescribed at 0.25mg/kg/day for 14 days (normal patients) or 0.75mg/kg weekly for eight weeks (deficient patients). All will receive treatment with chloroquine to clear asexual stages of infection. Patients will be reviewed at day 2, day 7 and day 14. At these visits patients will undergo a brief clinical assessment and a small blood sample will be taken for repeat haemoglobin measurement and dried blood spot for carboxyprimaquine measurement (day 7 and day 14 only). In general, antimalarial treatment will be unsupervised to reflect field conditions. However a subset of 25 G6PD normal patients at a single site will have each day of their primaquine treatment administered and observed at the treatment centre. This is to determine a calibration curve for primaquine pharmacokinetic studies. Dried blood spots will be stored appropriately. Day zero samples will be genotyped in Bangkok (MORU, Dr. Mallika Imwong) after DNA extraction. PCR-RFLP will be used to detect the allele associated with the Mediterranean variant of G6PD deficiency. In addition DNA extracts will be sent for more systematic genetic testing for known G6PD variants through existing collaborations with the Wellcome Trust Sanger Institute. The day 7 and 14 dried blood spot samples will be analysed in the MORU pharmacology laboratory for primaquine and carboxyprimaquine concentrations, from which adherence to primaquine can be determined retrospectively, using the subset of 25 patients receiving directly observed therapy to calibrate the results. Funder: WellcomeTrust, Grant reference: 107548/Z/15/Z
This is a single-centre, open-label, study using induced blood stage malaria (IBSM) infection to characterize the activity of (+)-SJ000557733 or SJ733 for short, against early Plasmodium falciparum blood stage infection. The study will be conducted in two cohorts (n=8 per cohort). The anticipated efficacious dose range is expected to be within a range of 125 to 600 mg. The dose used in the first cohort was determined on the basis of the safety and PK data generated in the FIM study (NCT02661373) currently ongoing in United States (US) and will be 150 mg. Depending on the pharmacodynamics data (effect of SJ733 on parasitaemia) obtained from this first cohort, the dose in Cohort 2 may be adjusted but will not exceed 600 mg. Based on the PK from all three cohort from the FIM study, the median estimated dose to obtain the target SJ733 AUC of 13,000 (ug hr/L) is 370 mg. The dose of cohort 2 (≤600mg) is intended to provide further concentration-response information in the human challenge model. For Cohort 2 only, a second dose of SJ733 may be administered at peak gametocytaemia to assess if SJ733 can reduce gametocytes and subsequent infectivity to mosquitoes (a washout of ~15 days post initial SJ733 treatment will be observed). Depending on the data obtained from the first two cohorts, there may be a subsequent cohort, with the investigated dose of SJ733 to be determined by the Sponsor and Principal Investigator (PI) and endorsed by the Safety Review Team. Should this third dose be investigated, a substantial amendment including preliminary data from the first two cohorts will be submitted to the HREC for approval.
This study will provide important evidence to the Ministry of Community Development, Mother and Child Health (MCDMCH) and the Ministry of Health (MOH) on how to effectively implement iCCM with a focus on improving both the flow of supplies to CHWs as well as the quality of their supervision and mentorship. The overall aim will be to determine whether improvements in supplies for community health workers (CHWs) and strengthened supervision result in improved early and appropriate treatment for children with malaria, pneumonia, and diarrhea in rural Zambia when compared to CHWs offering iCCM without this logistics and supervision support.
This trial will evaluate the safety, tolerability, and immunogenicity of PfSPZ Vaccine in healthy Equatoguinean adults, adolescents, children and infants who receive doses of 0.9x10^6, 1.8x10^6 or 2.7x10^6 PfSPZ Vaccine via direct venous inoculation (DVI) compared with control groups receiving normal saline (NS) placebo by DVI. In addition, the study will also assess a second PfSPZ-based vaccination approach known as PfSPZ-CVac- the administration of non-irradiated, infectious PfSPZ (PfSPZ Challenge) (1x10^5 PfSPZ) under anti-malarial chemoprophylaxis (chloroquine) in younger adults ages 18 to 35 years for safety, tolerability, immunogenicity and efficacy against controlled human malaria infection (CHMI).
Single center, randomized, placebo-controlled, double-blinded trial using PfSPZ Challenge (NF54) under A/P chemoprophylaxis for immunization and PfSPZ Challenge (NF54) and PfSPZ Challenge (7G8) for repeat CHMI. A total of 30 adult, healthy, malaria naïve volunteers will receive three injections by Direct Venous Inoculation (DVI) of either placebo (n = 10), 51,200 PfSPZ Challenge (NF54) (n = 10), or 150,000 PfSPZ Challenge (NF54) (n = 10) under chemoprophylaxis with A/P at 4 week intervals. The placebo will be normal saline (0.9% NaCl). Ten weeks after the last dose of PfSPZ Challenge (NF54) for immunization, volunteers will undergo first CHMI and followed until asexual blood stage parasitemia, detected by quantitative real time PCR (qPCR) or thick blood smear microscopy. If parasitemic, they will be treated with A/P (used in this case as a standard treatment regimen). In the event of no parasitemia, volunteers will be followed until Day 28 post-CHMI and will not receive A/P. Sixteen to forty-four weeks after the last immunization, a second CHMI will be administered to assess longevity and cross-strain protection. All volunteers will be followed up to 28 days post-inoculation. Those developing parasitemia will be treated with A/P. Volunteers of Group A will have CHMI with PfSPZ Challenge (NF54) followed by PfSPZ Challenge (7G8). Volunteers of Group B will have CHMI with PfSPZ Challenge (NF54) or PfSPZ Challenge (7G8) followed by PfSPZ Challenge (7G8). In the case that protective efficacy in Group A is ≥75% CHMI sequence will be 7G8-7G8. In the case that protective efficacy against homologous Challenge in Group A is <75%, volunteers will receive the same sequence as in Group A (NF54-7G8).