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Malaria clinical trials

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NCT ID: NCT03375983 Recruiting - Advanced Cancers Clinical Trials

Plasmodium Immunotherapy for Advanced Cancers

Start date: November 23, 2017
Phase: Phase 1/Phase 2
Study type: Interventional

The purpose of this study is to evaluate the safety of Plasmodium immunotherapy and preliminarily evaluate the effectiveness of Plasmodium immunotherapy for advanced cancers.The treatment will last 3-6 months from the day of successful infection and will be terminated by antimalarial drugs.

NCT ID: NCT03355664 Completed - Malaria, Falciparum Clinical Trials

Study to Compare the Triple ACT AL+AQ With the ACT AL in Cambodia and Vietnam

TACT-CV
Start date: March 19, 2018
Phase: Phase 3
Study type: Interventional

This study is a multi-centre, open-label randomised trial to assess the efficacy, safety and tolerability of the Triple ACT artemether-lumefantrine+amodiaquine (AL+AQ) compared to the ACT artemether-lumefantrine (AL) in uncomplicated falciparum malaria in Cambodia and Vietnam. The estimated total sample size is 600 patients from 2 sites in Cambodia and 2 sites in Vietnam. There are 2 treatment arms Arm 1: Artemether-lumefantrine for 3 days Arm 2: Artemether-lumefantrine for 3 days plus Amodiaquine for 3 days. According to the World Health Organization guideline, all patients except children under 10 kilograms will also be treated with a single dose of primaquine as a gametocytocidal treatment. Funder :Bill & Melinda Gates Foundation (BMGF) Grant reference number: OPP1132628

NCT ID: NCT03352843 Completed - Malaria Clinical Trials

Single Low-dose Primaquine Efficacy and Safety.

ESSLDPQP4502D6
Start date: June 11, 2019
Phase: Phase 4
Study type: Interventional

Background: The World Health Organization has recommended addition of a 0.25 mg/kg single-dose primaquine (PQ) to standard artemisinin-based combination therapy (ACT) for elimination of malaria in low transmission-settings and for containment in areas threatened by artemisinin resistance. However, PQ metabolism is dependent on a highly polymorphic cytochrome P450 (CYP) 2D6 isoenzyme which probably compromises the drugs' safety and efficacy, particularly in individuals with reduced isoenzyme activity. This trial therefore, aims to assess the safety and efficacy of 0.25 mg/kg single-dose PQ when added to standard artemether-lumefantrine regimen for clearance and sterilization of Plasmodium falciparum gametocytes in patients with CYP450 2D6 reduced/null activity as compared to those with normal/increased enzyme activity. Methods: On hundred and fifty-five children aged between 1 and 10 years and with uncomplicated P. falciparum malaria will be enrolled, treated with standard artemether-lumefantrine regimen plus a 0.25 mg/kg single-dose of PQ and then followed up on days 0, 1, 2, 3, 7, 14, 21 and 28 for clinical and laboratory assessment. Primaquine will be administered together with the first dose of artemether-lumefantrine. Safety assessment will be performed using the Primaquine Roll Out Monitoring Pharmacovigilance Tool (PROMPT). Gametocytes will be detected and quantified by microscopy and Pfs25 mRNA quantitative nucleic acid sequence based amplification (QT-NASBA) on days 0 and 7. For a subset of 100 participants, post-treatment infectiousness will be assessed by mosquito feeding assays on day 7. The CYP2D6 status will be determined using a polymerase chain reaction (PCR) followed by a restriction fragment length polymorphism (RFLP). The primary outcome will be the safety of single low-dose primaquine in patients with CYP2D6 reduced/null compared to those with normal/increased activity. Expected outcomes: The findings will provide the much-needed information on the safety and efficacy of single low-dose primaquine for clearance and sterilization of P. falciparum gametocytes in individuals with reduced/null compared to those with normal/increased CYP450 2D6 isoenzyme activity prior to the implementation of the treatment policy particularly in Africa.

NCT ID: NCT03341754 Completed - Malaria Clinical Trials

Trial to Evaluate the Safety, Immunogenicity, and Efficacy of Malaria Infection in Malaria Naïve Adults

Start date: September 15, 2018
Phase: Phase 1
Study type: Interventional

This is a study designed to assess the safety, tolerability, immunogenicity, and protective efficacy of 2 heterologous prime-boost vaccine regimens in healthy, malaria naïve adults. The study will include 2 vaccine groups and an infectivity control (IC) group consisting of non-immunized subjects. Subjects to be immunized will be randomly assigned to one of two vaccine groups.

NCT ID: NCT03334747 Completed - Malaria Clinical Trials

Safety of KAE609 in Adults With Uncomplicated Plasmodium Falciparum Malaria.

Start date: November 16, 2017
Phase: Phase 2
Study type: Interventional

KAE609 will be evaluated primarily for hepatic safety of single and multiple doses in sequential cohorts with increasing doses.This study aims to determine the maximum safe dose of the investigational drug KAE609 in malaria patients.

NCT ID: NCT03307369 Completed - Malaria, Vivax Clinical Trials

A Retrospective Study of Severe Plasmodium Vivax

SeverePV
Start date: October 27, 2017
Phase:
Study type: Observational

Historically, Plasmodium vivax has been termed "benign" due to its non-life threatening clinical course and since the 1800's this view has been cultivated as demonstrated by the use of the term "benign tertian malaria" to describe the infection.However over the last 15 years, more severe P. vivax malaria is being reported, causing concern that severe P. vivax malaria is under diagnosed. The definition of severe P. vivax malaria borrows from P. falciparum and is primarily one of exclusion. Species PCR (polymerase chain reaction) is the only way to prove P. vivax mono-infection but is expensive and requires skilled staff and technology. In resource constrained settings, diagnostic testing is not available for detection of most non-malarial infections further affecting the ability to determine whether severe symptoms are due to P. vivax malarial infection or a concomitant one. Retrospective studies from India, Pakistan, Indonesia, Papua New Guinea and Sudan support the existence of severe P. vivax malaria. However, inconsistent methodologies, definitions of severity, and use of diagnostic tests to exclude concomitant infection do not allow for standardised assessments for severe P. vivax infection across studies. A review by Baird, highlighted that the risk of being classed as suffering from severe illness was only minimally higher in P. falciparum than in P. vivax, but was unable to combine the data as a meta-analysis. The primary reported symptoms for severe P. vivax included severe anaemia particularly in children, severe thrombocytopaenia, respiratory distress, neurological syndromes (coma or seizures), renal and hepatic failure. Prospective studies have shown similar results. Tjitra et al showed that 23% (675 of 2,937) patients admitted with microscopically diagnosed P. vivax infections in Papua, Indonesia had severe disease and that the risk of severe malaria was significantly higher when admitted with P. vivax than with P. falciparum. In studies from Papua New Guinea, few differences between the clinical presentation of P. falciparum and P. vivax were found in children with severe malaria. This appears to be similar in populations from Sudan, Pakistan and India. In contrast, in Thailand, anecdotal observations note a low prevalence of severe P. vivax infections. The WHO criteria to assess severe P. falciparum have been extrapolated to P. vivax. In the 2015 WHO malaria guidelines some criteria now account for P. vivax, such as removing a minimum parasitaemia when assessing for severe anaemia. Whilst these criteria may not be the most sensitive tool to define severe P. vivax infections, it is used for this purpose. It has been suggested that additional clinical information may be necessary to define truly severe P. vivax cases. In order to describe the characteristics of the severity of P. vivax infections in north-western Thailand, we will perform a retrospective review of annual reports of the outpatient database, the inpatient database and eligible inpatient medical records from 2001 to 2016. The WHO malaria guidelines and additional clinical information will be used to assess the severity of infection and thus, a rate of severe P. vivax can be determined.

NCT ID: NCT03304704 Completed - Malaria Clinical Trials

Community Dynamics of Malaria Transmission and Mosquito Feeding in Bancoumana, Mali

Start date: January 28, 2018
Phase:
Study type: Observational

Background: Half of the world's population is at risk of malaria. Malaria is a disease that affects many people in Mali and other parts of Africa. It is caused by germs spread by mosquito bites. Malaria may be mild. But it can also be serious or can lead to death if it is not diagnosed and treated promptly. Researchers want to learn more about the disease so they can develop new approaches to malaria control. Objective: To collect data on how mosquitoes spread malaria and how many people get malaria in the community by comparing different areas, seasons, and years. Eligibility: Residents of a certain area of Mali who are of any age Design: Participants will be screened with a physical exam and medical history. All participants will have at least 1 visit. They will answer questions about their health and malaria. They may have a physical exam. They will have blood collected. Some participants will have 1 visit every month for 3 years. They will repeat the procedures above. These participants will have mosquitoes collected in their home monthly. They may be able to catch some of the mosquitoes alive or may need to use a spray to kill the mosquitoes. Participants in this part of the study can be up to 65 years old. Some participants will also have about 60 mosquitoes directly feed on their arm or leg for 15-20 minutes each month. These participants must be 5-65 years old.

NCT ID: NCT03304691 Completed - Malaria Clinical Trials

Molecular Basis of Erythrocyte Invasion by Plasmodium Vivax Into Duffy-Negative Erythrocytes in Mali

Start date: June 30, 2021
Phase:
Study type: Observational

Background: Malaria is caused by parasites carried by some mosquitos. When the mosquitos bite people, the parasites can infect them. One of these parasites is Plasmodium vivax (P. vivax). Some children have P. vivax in their blood. They did not have malaria symptoms, but some also had a blood problem called anemia. This can make people feel tired or weak. This could have been caused by P. vivax. Researchers want to know how P. vivax infects these children, and if it affects their health. Objective: To collect blood, stool, and urine monthly from children to look for infections with P. vivax, worms, and other parasites. Eligibility: Children between 6 months and 10 years old Design: For screening, the study will be explained to the participant s parents or guardians, who will provide consent. Participants will have a visit once a month for about 3 months, from November to January, and then for about 6 months from June to November 2018. Visits include: Questions about their health Medical history Physical exam Blood draw by pricking the finger tip Urine and stool collection. They may collect these at home and bring them back. If participants have P. vivax in their blood, them may need to come back to the clinic within 3 days. They will have blood taken from their arm using a needle. If participants feel ill during the study, they can go to the clinic for an exam and blood tests. If participants develop malaria while on the study, they will be treated. Participants samples will be stored for future research studies. ...

NCT ID: NCT03300648 Completed - Malaria, Cerebral Clinical Trials

Treating Brain Swelling in Pediatric Cerebral Malaria

TBS
Start date: January 8, 2018
Phase: Phase 3
Study type: Interventional

This study evaluates the effectiveness of two interventions in Malawian children with cerebral malaria at high risk of death. One-third of the participants will receive treatment as usual, one-third will receive treatment as usual and be placed on a mechanical ventilator, and one-third will receive treatment as usual plus intravenous hypertonic saline.

NCT ID: NCT03281291 Completed - Malaria Clinical Trials

An Ancillary Study Protocol to GSK's Phase IIb Malaria Vaccine Trial Entitled "Efficacy, Safety and Immunogenicity Study of GSK Biologicals' Candidate Malaria Vaccine (SB257049) Evaluating Schedules With or Without Fractional Doses, Early Dose 4 and Yearly Doses, in Children 5-17 Months of Age"

Start date: November 19, 2018
Phase:
Study type: Observational

The goal of the proposed amplicon sequencing and genotyping study is to assess vaccine efficacy against clinical and asymptomatic malaria infection using ultra-sensitive molecular amplification and sequencing methodology to detect Plasmodium falciparum (P. falciparum) parasites from serial blood samples to be collected from children immunized with the primary and yearly booster immunizations of the RTS,S/AS01E vaccine as part of their participation in Protocol MALARIA-094 (parent clinical study protocol). Genomic analysis will be performed on parasites from blood spot samples collected from children aged 5 17 months immunized with RTS,S/AS01E on different dosage and schedule regimens under the parent clinical study protocol.