View clinical trials related to Malaria.
Filter by:The purpose of these studies is to evaluate the experimental approaches and device designs, in order to improve diagnostic performance of the RDT only. The results from the enhanced RDT methodology will be not be shared with patients or care providers, since they are as of yet, unproven.
Antimalarial drug resistance has reached critical levels on the Thai-Cambodian border. Many have begun advocating for concerted malaria elimination efforts in Cambodia. However, there is currently no consensus on how malaria elimination is to be achieved with the tools available. In this study, the investigators will conduct operational research with the Royal Cambodian Armed Forces (RCAF) and National Malaria Center (CNM) to quantify the relative effectiveness of the two major interventional approaches - monthly malaria prophylaxis (MMP) or focused screening and treatment (FSAT) - in a head to-head comparison. In addition, the investigators will quantify the relative contribution of a recently advocated vector intervention for military personnel - the insecticide treated uniform (ITU) - in addition to other vector control measures currently employed by the RCAF. The investigators will employ the same permethrin insecticide self-application kits currently used by the US military. The investigators will estimate the cost effectiveness of each approach and attempt to define the best way forward for malaria elimination efforts in a critically important malaria reservoir in military population (and their dependents) who reside on the Thai-Cambodian border. The aim of the study is not only to conduct research to better define the best way forward in malaria elimination efforts in the high risk military populations, but to also build capacity within the RCAF to support and lead future elimination efforts in the most difficult-to-reach mobile populations.
This research investigates the diagnostic accuracy of various diagnostic approaches for malaria and pneumonia in under-five children presenting to primary healthcare centres in Benin City, Nigeria.
Children hospitalized with severe illness in sub-Saharan Africa are at high risk of morbidity and mortality following discharge from hospital. These children represent an accessible high-risk population in which targeted interventions to prevent morbidity and mortality could have dramatic impact. A large cluster randomized trial of azithromycin delivered in a mass drug administration program within trachoma endemic areas in sub-Saharan Africa demonstrated an almost 50% mortality benefit in children 1-9 years of age in treated communities. However, mass drug administration of azithromycin leads to the rapid emergence of macrolide resistance within treated communities and is expensive. The targeted delivery of azithromycin to children at hospital discharge may be a novel and practical intervention to maximize benefit while minimizing risk of antibiotic resistance. This is a randomized, double-blind, placebo-controlled trial to determine the efficacy of azithromycin provided at discharge, compared to placebo, in reducing mortality and re-hospitalization rates in children age 1-59 months in Kenya. The study will also investigate potential mechanisms by which azithromycin may reduce morbidity and mortality in this population and will assess the emergence of antibiotic resistance among treated individuals and their primary caregivers. A cost-effectiveness analysis of the intervention will also be conducted.
This is a two-arm, randomized, open label Treatment Study evaluating the therapeutic efficacy, safety, tolerability and pharmacokinetics of a three-day course of Atovaquone-Proguanil (AP) or a three-day course of Atovaquone-Proguanil combined with 3 days of Artesunate (ASAP) in patients with uncomplicated Plasmodium falciparum malaria at selected sites in Cambodia. Atovaquone-proguanil, soon to adopted as a first line antimalarial agent by the National Malaria Control Program (CNM) in Cambodia in provinces with confirmed multidrug resistance, will be given with or without artesunate (AS) as a directly observed, standard three-day fixed dose combination treatment to all volunteers enrolled. The efficacy and safety of both drug combination as well as evidence for in vivo and in vitro resistance to their components will be monitored during the treatment period. All volunteers will receive a single dose of 15mg of primaquine as recommended by WHO with the first dose of AP or ASAP to block the transmission of malaria to mosquitoes. Resistance to AP and ASAP will be assessed by a combination of clinical, pharmacologic, and parasitological parameters including genomic signatures of selection during careful weekly follow-up visits for 6 weeks. Investigators will also be able to evaluate the effects of primaquine on the sexual stages of malaria (gametocytes).
The objective of this study is to explore the role of fosmidomycin and piperaquine as non-artemisinin-based combination therapy for acute uncomplicated Plasmodium falciparum when administered over three days. Together, fosmidomycin and piperaquine fulfil the WHO criteria for combination therapy by meeting the three key parameters of having different modes of action and different biochemical targets while exhibiting independent blood schizonticidal activity. Like the artemisinins, fosmidomycin is fast-acting, has an excellent safety record and is active against existing drug-resistant parasites. Piperaquine has a long half life protecting fosmidomycin as a much shorter lived molecule against selection of resistant parasites and will provide post-treatment prophylaxis.
This study is a Phase 1, dose escalation, first-in-human study designed primarily to evaluate the safety of the purified plant-derived Pfs25 VLP combined with Alhydrogel adjuvant
Artemisinin-based combination therapies (ACTs) are recommended for use against uncomplicated malaria in areas of multi-drug resistant malaria. The Ministry of Health, Division of Malaria Control (DOMC) rolled out the use of artemether-lumefantrine as the first line treatment for uncomplicated malaria in 2006.The development of the ACTs and its derivatives are the most rapidly acting of all the current antimalarial drugs and recognition of their potential role as a component of combination therapy have led to several large trials aimed at assessing different combinations of existing drugs, and to the specific development of new combination drugs. This proposal aims to (1) evaluate the efficacy of artemisinin-based anti-malaria combination drugs in different sites across Kenya (2) elucidate the markers of resistance to ACTs through molecular genetics and in this process further strengthen capacity in the proposed study sites as well as improve links between research and control ultimately to influence malaria treatment policy and practice. Five groups in East Africa will conduct a multi-centre, randomised, two arm trial to assess the efficacy of dihydroartemisin-piperaquine with artemether-lumefantrine as the comparative drug. The network will determine antimalarial drug efficacy using standardised protocols and collate clinical responses and adverse events. Molecular markers to artemisinin resistance will be investigated by molecular sequencing and comparison of parasite profiles in drug failure cases. Recrudescence or re-infections will be differentiated by analysis of the MSP1, MSP2 and GLURP genes and assess transmission dynamics post treatment. Data from these studies will be captured into a database developed by the network. The latter offers several advantages including - Working towards the standardization of methodologies and common protocols as a way of comparing data across sites - Pulling together datasets and conduct a multi-centre analysis - Sharing and coordinating quality assurance mechanisms
The main objective is to study the pharmacokinetics, pharmacodynamics and tolerability of the decoction of the aerial parts of Argemone mexicana (AM), administered in healthy volunteers.
This study seeks to determine whether screening pregnant women for malaria with malaria rapid diagnostic tests (RDTs) may detect placental infection and predict risk of poor birth outcomes due to malaria in areas of varied malaria transmission in Africa.