View clinical trials related to Malaria.
Filter by:The aim of this study is to evaluate the role of clindamycin and artesunate as possible combination partners for fosmidomycin to protect it from its susceptibility to recrudescent infections when used as monotherapy for acute Plasmodium falciparum malaria while retaining its excellent safety profile
The purpose of this study is to study the effectiveness of wide scale RDT use at the primary health care level in previously high malaria endemic area during malaria pre-elimination phase for improved targeting of anti-malarial drugs, malaria surveillance and epidemic alertness.
Iron deficiency and iron deficiency anemia (IDA) are the most prevalent micronutrient deficiencies on a worldwide basis, especially in developing countries. The impact of severe IDA can have mortal consequences, since without adequate hemoglobin, the brain and body become deprived of oxygen and, if allowed to continue, death may ensue. It has been shown that iron supplementation in infants and young children can enhance child development, however, it may also result in increased rates of malaria in high burden areas. The primary objective of this study is to determine the impact of providing encapsulated iron (as a powder added to complementary foods) on the susceptibility to clinical malaria among anemic and non-anemic infants and young children (6-24 months of age) living in a high malaria burden area. The value of performing this research in Ghana is primarily that malaria and anemia remain the most important causes of death and morbidity.
This study is an open-label, single site, randomized controlled trial comparing protease inhibitor (PI)-based antiretroviral therapy (ART) to non-PI based ART for HIV-infected pregnant and breastfeeding women of all CD4 cell counts at high risk of malaria. The study is designed to test the hypothesis that pregnant women receiving a PI-based ART regimen will have lower risk of placental malaria compared to pregnant women receiving a non-PI based ART regimen. The primary study endpoint of the study is placental malaria. This study also enrolls the infants of these women at the time of delivery.
Primary objective: To assess the Day 28 efficacy defined as the percentage of patients with no parasitic recrudescence, of 3 treatment groups - 3 dose levels of ferroquine associated with artesunate - for a 3-day treatment. Secondary objectives: - To assess the efficacy of ferroquine at one dose level alone for a 3-day treatment. - To assess the clinical safety of 4 treatment groups - 3 dose levels of ferroquine associated with artesunate and one dose level of ferroquine alone. - To assess pharmacokinetics parameters of ferroquine and its metabolites along sparse sampling schedules.
Malaria is a parasite, infection with which kills over 2 million people each year. It is a major problem for those who live in endemic areas and for travellers. There is a great need for a safe effective malaria vaccine. The purpose of this study is to examine a new vaccine designed to provide immunity during the blood stage of the malaria parasite's lifecycle. The vaccine consists of AMA1-C1 which is a mixture of two recombinant synthetic AMA1 proteins from two Plasmodium falciparum strains, Alhydrogel® which is an aluminium-based adjuvant and CPG 7909 - an oligodeoxynucleotide, which enhances immune response. This study will enable the investigators to assess: 1. The ability of of a growth inhibition assay to predict the effectiveness of a malaria vaccine. 2. The safety of the vaccine in healthy volunteers 3. The response of the human immune system to the vaccine
The purpose of this study is to determine whether Malarone ®, which is a drug approved to prevent malaria when taken daily, will still effectively prevent malaria if taken weekly.
The present study aims to investigate and to assess possible neurological and neuropsychiatric events in young children in west Africa with uncomplicated P. falciparum malaria after a 3-day treatment of Artequin Paediatric under "real life conditions."
HIV and malaria are major causes of morbidity and mortality in Sub-Saharan Africa and children bear the greatest brunt of both diseases. No single existing intervention is likely to control malaria in Africa. Rather, improvements in malaria prevention are likely to come from strategies that employ multiple proven interventions targeting different populations. HIV-infected children represent one of the most vulnerable subpopulations in these countries. It is possible that the use of protease inhibitor (PI) - based antiretroviral therapy (ART) in HIV-infected children living in areas of high malaria transmission could prevent malaria in this vulnerable population. An effective remedy that offers the possibility to further reduce malaria risk, such as PIs, is highly desirable. This study will determine whether a PI based ART regimen will reduce malaria among children living in a malaria endemic area of Uganda and receiving insecticide-treated bed nets (ITN) and TS. This study will compare two different ART regimens. Children enrolled in the study will start or continue to receive either standard Ugandan first line treatment ART regimen (NNRTI+2 NRTIs) or an ART regimen containing the HIV protease inhibitor (lopinavir/ritonavir +2 NRTIs) and followed for a period of 24 months.
Background: - Malaria, a disease transmitted by mosquitoes, affects millions of people with the highest frequency, morbidity, and mortality in infants and young children. Plasmodium falciparum and Plasmodium vivax, the most common and severe forms of malaria, have host- and stage-specific proteins that can induce immunity to the disease. - Vaccines against stages that infect mosquitoes will prevent the spread of malaria. Researchers have developed a vaccine composed of a single protein, Pfs25, to induce antibodies in the human host that will be ingested by the mosquito and prevent the malaria parasite from reproducing and stop transmission of the disease. Because Pfs25 is present only in the mosquito, humans do not develop antibodies to this antigen even in endemic areas. Repeated injections of this vaccine may be necessary. Objectives: - To establish the safety and optimal dosage of a malaria vaccine developed with the Pfs25 protein. Eligibility: - Healthy adults between 18 and 49 years of age who have never had malaria or received a malaria vaccine. Design: - Two doses of Pfs25 conjugate (10 micrograms and 25 micrograms) will be evaluated in this study. Participants will receive only one of these doses in order to provide the best scientific data for evaluation. - To determine eligibility, participants will provide a medical history and have a physical examination, and will provide blood and urine samples to test for HIV/AIDS, hepatitis, and other conditions that would prevent them from participating. - Eligible participants will receive one injection of the vaccine. The injection will be followed 30 minutes later with a temperature reading and an inspection of the vaccine site. - Upon leaving the clinic, participants will receive diary forms, a digital thermometer, a ruler, and instructions about how to take their temperature and to measure redness and swelling (if any) at the injection site. About 6 hours later, and daily for 3 days, participants will take their temperature at home and examine the injection site. Participants will be examined at the clinic at 48 to 72 hours and on day 7 after an injection. A blood sample will be taken 1 week after immunization. - Participants will receive a second and third injection of the same vaccine at 6-week intervals, and will follow the same recording procedure given above. Further blood samples will be taken at regular intervals for up to 12 months after the vaccination, as directed by the study researchers.