Malaria

31

Review clinical trials related to Malaria. Use filters to narrow results by trial status, phase, treatment, biological sex and sponsor.

Condition / disease
Location
Status: Recruiting

Induced Blood-Stage Malaria in Healthy Malaria-Naive Adults to Assess the Safety and Infectivity of Plasmodium Vivax Challenge Agent and Evaluate Transmission in Mosquito Feeding Assays

Background: Malaria is a disease caused by parasites transmitted to people by mosquitoes. Around the world, there were 241 million cases and 627,000 deaths from malaria in 2020. Researchers are working to develop vaccines and treatments for this disease. Objective: To learn how malaria develops in people; how the body's immune system reacts to malaria; and how malaria spreads from people to mosquitoes. Eligibility: Healthy people in the Washington DC area, aged 18 to 54 years. They cannot live alone during parts of the study. Design: Participants will be infected with a parasite that causes malaria. The parasite will be in donated blood; it will be given through an IV. Participants will likely develop symptoms within a week after the injection. Researchers will call daily to check on their health. After about 6 days, participants will come to the NIH clinic each day for blood tests. Participants will check in to the NIH clinic around 10 days after the injection. They will stay in the clinic 3 to 6 days. They will have multiple blood tests every day. Participants will be bitten by mosquitoes up to 4 times. Cups containing mosquitoes will be held against their skin for 15 minutes. Participants will begin taking chloroquine close to the end of their clinic stay. Chloroquine is a pill taken by mouth once or twice a day for 3 days. It is FDA-approved to treat malaria. Participants will have follow-up visits 1 and 3 weeks after discharge.

Participants needed: 300
Trial details
Phase: Phase 1Age: 18-54Biological sex: AllType: InterventionalSponsor: National Institute of Allergy and Infectious Diseases (NIAID)Updated: Jun 30, 2026Locations: 1
Eligibility criteria

Age >=18 and <=54 years. [+7]

Planned travel to a P. vivax-endemic area during the study period (see https://w... [+24]

Status: Recruiting

Host and Parasite Factors That Influence Susceptibility to Malaria Infection and Disease During Pregnancy and Early Childhood in Ouelessebougou and Bamako, Mali

Malaria caused by Plasmodium falciparum continues to be a global problem with devastating consequences. A greater understanding of the immunologic and parasitologic factors associated with infection and disease is badly needed; and will accelerate the development of highly protective vaccines for both mothers and children. Pregnancy malaria is associated with low birth weight, maternal anemia, and gestational hypertension, and both inflammation and the fetal response to infection may contribute to these poor outcomes. Childhood malaria is a major cause of mortality, and we have found that its risk is related to in utero exposure to pregnancy malaria, as well as other host factors like iron status and constitutive cytokine levels. Pregnancy malaria is caused by a distinct parasite binding phenotype, and as our primary hypothesis in this study we speculate that severe childhood malaria parasites may also have distinct features. A longitudinal cohort study will be conducted in Ouelessebougou, Mali, an area of intense seasonal transmission. Up to 2000 pregnant women and their infants and 2000 children aged 0-3 years will be enrolled and followed to age 5 years, with clinical evaluation and periodic venous and peripheral blood samples being obtained. In addition, up to 3000 febrile hospitalized and non-hospitalized children up to 10 years ofd age will be enrolled at the Ouelessebougou district health centers or the Gabriel Toure Pediatric Hospital in Bamako, Mali, with acute and convalescent samples being obtained and 500 pregnant women enrolled at the health centers and hospital in Ouelessebougou district or the Gabriel Toure Hospital in Bamako for a case-control study on pregnancy malaria and preeclampsia. Up to 1000 children originally enrolled at birth and completed the "pregnant women and their newborns study" will be re-enrolled and followed for up to 10 years as they age from later childhood through adolescence to early adulthood. Clinical, parasitologic and host response (including immunologic) endpoints will be analyzed using appropriate statistical methods, including possible confounders, to determine factors associated with infection and disease in pregnant women and young children.

Participants needed: 15,000
Trial details
Age: 1-45Biological sex: AllType: ObservationalSponsor: National Institute of Allergy and Infectious Diseases (NIAID)Updated: Jun 23, 2026Locations: 2
Eligibility criteria

Pregnant women aged 15-45 years and their newborn infants who are residents of t... [+5]

Chronic, debilitating illness, other than malaria, determined by history and phy... [+2]

Status: Recruiting

Collection of Human Biospecimens for Basic and Clinical Research Into Globin Variants

Background: Blood disorders like sickle cell disease and malaria affect many people around the world. Researchers want to learn more about blood disorders. To do this, they need to collect biological samples from people with blood disorders. They also need to collect samples from healthy people. Objective: To collect samples to use for research on blood disorders. Eligibility: People ages 18-70 who have blood disorders. Healthy volunteers without blood disorders are also needed. Design: Participants will be screened with a medical history, physical exam, and blood and urine tests. Participants will give one or more samples. They will give them over 5 years. They can choose not to give any of the samples: Saliva: Participants will spit into a tube. They may also have the inside of their mouth swabbed. Urine: Participants will urinate into a cup. Blood and blood waste products: Blood will be taken through a needle in the participant s arm. Fat samples: An area on the participant s belly or buttock will be numbed. A small cut will be made into the skin and a small piece of fat removed. Mucus and cells from the lungs: The participant will be sedated. A flexible tube will be inserted through the nose or mouth into the lung airways. These participants will also have a physical exam, chest x-ray, and heart tests after the procedure. ...

Participants needed: 300
Trial details
Age: 18-70Biological sex: AllType: ObservationalSponsor: National Institute of Allergy and Infectious Diseases (NIAID)Updated: Jun 18, 2026Locations: 1
Eligibility criteria

PARTICIPANT [+5]

Exclusion Criteria for All Participants [+25]

Status: Recruiting

FocaL Mass Drug Administration for Vivax Malaria Elimination

FLAME is an open-label cluster-randomized controlled trial that aims to determine the effectiveness of focal mass drug administration (fMDA) to reduce the incidence of Plasmodium vivax malaria in the Loreto Department in Peru. Standard interventions, including symptomatic and asymptomatic screening for malaria infections, provision of insecticide-treated bednets, and environmental transmission monitoring, will be compared to clusters of villages randomized to receive anti-malarial drugs.

Participants needed: 7,530
Trial details
Phase: Phase 3Biological sex: AllType: InterventionalSponsor: University of California, San FranciscoUpdated: Jun 9, 2026Locations: 1
Eligibility criteria

Cluster eligibility [+25]

Chloroquine eligibility [+26]

Status: Recruiting

Screening of Healthy Volunteers for Investigational Antimalarial Drugs, Malaria Vaccines, and Controlled Human Malaria Challenge

Background: Malaria is a serious infection caused by a parasite. People get malaria when an infected mosquito bites them. Malaria can cause major health and social problems in places were malaria is common, such as Africa but can also affect travelers who have never been exposed to malaria. Researchers at the NIH want to find a safe and effective malaria vaccine, antimalarial drugs, or prevention regimen. To do this, healthy volunteers are recruited under a general screening study in order to see if are qualified to join a future malaria study. Objective: To screen healthy volunteers to see if they are eligible to join investigational malaria studies. The studies will be trials of investigational antimalarial drugs, malaria vaccines, or prevention regimens. They may also involve controlled human malaria infection trials. Eligibility: Healthy people ages 18 50 Design: Participants will first be prescreened by phone. Participants will be screened with: Medical history Physical exam Blood and urine tests Participants may go more than 1 year without joining a clinical trial. If this happens, they may be re-contacted to see if they still want to be part of this screening protocol. Those who still want to participate and have had relevant medical changes will be rescreened.

Participants needed: 1,500
Trial details
Age: 18-50Biological sex: AllType: ObservationalSponsor: National Institute of Allergy and Infectious Diseases (NIAID)Updated: Jun 8, 2026Locations: 1
Eligibility criteria

Age >= 18 and <= 50 years. [+3]

Pregnant, breastfeeding, or planned pregnancy in the upcoming year. [+24]

Status: Not yet recruiting

This is a Clinical Study to Assess Whether the Combination of SJ733 and Tafenoquine Will be a Safe and Rapidly Acting Anti-malarial for the Radical Cure of P. Vivax Malaria

The goal of this Phase 2b study is to examine the safety and efficacy of the combination of SJ733, an investigational agent, and tafenoquine for the radical cure of uncomplicated P. vivax malaria monoinfection in adult participants and determine the contributions of SJ733 to the effect. SJ733 will be administered in a 1-, 2-, or 3-day treatment schedule in combination with a single dose of tafenoquine.

Participants needed: 104
Trial details
Phase: Phase 2Age: 18-76Biological sex: AllType: InterventionalSponsor: R. Kiplin GuyUpdated: May 28, 2026Locations: 1
Eligibility criteria

Body weight between 45 kg and 90 kg inclusive. [+9]

Signs and symptoms of severe/complicated malaria according to the World Health O... [+26]

Status: Recruiting

Laboratory Evaluation of Pregnancy Malaria Vaccine Candidates/In-vitro Testing of Pregnancy Malaria Vaccine Candidates

Background: \- Malaria is a disease that affects many people in African countries. It is caused by germs that are spread by mosquito bites. It can be fatal if not diagnosed and treated right away. Children younger than 5 and pregnant women are most at risk to get malaria. Researchers want to create a vaccine that will prevent malaria infection during pregnancy. Objectives: \- To create a vaccine that will prevent malaria infection during pregnancy. To assess possible vaccines using in-vitro tests with parasites taken from pregnant women. Eligibility: \- Pregnant women ages 15-25 Design: * The study site is an area in Mali, West Africa. * Participants: * Will have blood drawn. * Will give consent for the blood sample to be used for future research. * May have a physical exam. * Participants who have malaria or anemia will get treatment.

Participants needed: 7,476
Trial details
Age: 15-25Biological sex: FemaleType: ObservationalSponsor: National Institute of Allergy and Infectious Diseases (NIAID)Updated: May 18, 2026Locations: 1
Eligibility criteria

Pregnant women aged 15-25 years [+2]

Severe anemia defined as HGB<7 gr/dL, that may be worsened by 10 mL phlebotomy [+2]

Status: Not yet recruiting

Intermittent Preventive Treatment of Malaria in School-age Children to Decrease Community Transmission

The CRITICal study aims to estimate the effectiveness of intermittent preventive treatment in school children (IPTsc) with dihydroartemisinin-piperaquine (DP) for reducing community level malaria burden. Given that school-aged children are the primary drivers of transmission, the study hypothesis is that IPTsc will reduce this infectious reservoir and thus the burden of malaria in persons of all ages in surrounding communities.

Participants needed: 4,800
Trial details
Phase: Phase 4Age: Up to 17Biological sex: AllType: InterventionalSponsor: University of California, San FranciscoUpdated: May 7, 2026Locations: 1
Eligibility criteria

Child currently attending the participating school. [+2]

Missing school on three consecutive days of the school survey.

Status: Not yet recruiting

Safety and PK of MMV371 LAI in Healthy Adults and Adolescents in Rwanda

This Phase 1b study will assess the safety, tolerability and pharmacokinetics (PK, this measures the levels of study drug in the body) of a single injection of MMV371 in healthy adult and adolescent participants in Rwanda. MMV371 has been designed as a long acting injection (LAI). Protective efficacy (PE) will be assessed as an exploratory endpoint. Protective efficacy measures if participants are protected from becoming ill with malaria whilst the MMV371 is still present in their body. The study will enroll approximately 80 healthy male and female participants, aged 12 to 50 years. Before starting the study participants will be given a standard approved course of artemether lumifantrine (AL) to clear any malaria infection they have. Once the AL course has been completed the study drug will be given by injection in the muscle of the upper arm, the side of the thigh, or the hip. Three out of four participants will receive MMV371 and 1 in four participants will receive placebo. Placebo is a dummy medicine. All participants have an equal chance of being assigned to receive the injection in the upper arm, outer thigh or hip. Neither the participants nor the researchers treating the participants will know who received MMV371 or placebo until after the study is completed. Key study features include: * Study duration for each participant: up to 7 months * MMV371 or placebo given: a single intramuscular (IM) injection * Visit schedule: Participants will remain in-clinic on Days -1-2 (2 overnight stays), followed by 15 follow-up visits: Day 4, then weekly for 1 month, and subsequently every 2 weeks until the End-of-Study (EoS) visit at Week 24. These frequent visits are necessary to monitor safety, the levels of MMV371 in the body, and to perform malaria detection testing until EoS (Week 24).

Participants needed: 80
Trial details
Phase: Phase 1Age: 12-50Biological sex: AllType: InterventionalSponsor: Medicines for Malaria VentureUpdated: Apr 23, 2026Locations: 1
Eligibility criteria

Signed informed consent which includes compliance with the requirements and rest... [+9]

Medical Conditions [+24]

Status: Not yet recruiting

A Clinical Study of Piperaquine, Pyronaridine, and Artesunate Administered in Combination in Healthy Adults

This is an open-label pharmacokinetic study in 24 healthy Thai participants. Participants will be admitted in the inpatient ward and each participant will attend a total of 4 visits, including one screening visit and three hospital admissions. Participants will be randomized into one of six groups. Each group will receive 3 drug regimens consisting of (1) piperaquine, (2) pyronaridine plus artesunate, or (3) piperaquine, pyronaridine, and artesunate, administered once per day for three consecutive days in different sequential orders. After each regimen, participants will be followed up for six weeks for clinical assessments and laboratory evaluations to study the pharmacokinetics. A washout period of at least eight weeks will be implemented between each regimen. This study is funded by the Global Health Innovative Technology Fund (GHIT Fund), Tokyo, Japan, under grant number G2025-117.

Participants needed: 24
Trial details
Phase: Phase 1Age: 18-60Biological sex: AllType: InterventionalSponsor: University of OxfordUpdated: Apr 6, 2026Locations: 1
Eligibility criteria

Healthy as judged by a responsible physician with no abnormality identified on a... [+7]

Females who are pregnant, trying to get pregnant, or are lactating. [+13]

Status: Recruiting

Evaluation, Treatment and Monitoring of Patients With a Known or Suspected Parasitic Infection

The purpose of this study is to evaluate, treat and follow patients with parasitic infections. People with a known or suspected parasitic infection who are at least 1 year old may be enrolled. This study does not involve any experimental treatments. Participants will have a physical examination and laboratory tests on blood, stool, or urine. Blood samples may be collected at regular intervals, but no more than 450 ml (15 ounces) of blood will be drawn from adults, and no more than 7 ml (1-1/2 teaspoons) per kg (2.2 pounds) of body weight from children, in any 6-week period. Other tests may include x-rays, electrocardiogram (EKG), or tissue biopsy (surgical removal of a small tissue sample), depending on the individual s condition. Patients may be offered treatment or may be referred to another study that is more appropriate for the problem. Any treatment provided in this study will be according to standard medical practice for the patient s specific medical problem. Patients responses to treatment will be evaluated at regularly scheduled clinic visits. The length of time between visits and the total duration of the study for a given individual will be determined by the study doctor, based on that person s medical condition.

Participants needed: 800
Trial details
Age: 3+Biological sex: AllType: ObservationalSponsor: National Institute of Allergy and Infectious Diseases (NIAID)Updated: Mar 16, 2026Locations: 1
Eligibility criteria

Not listed

Status: Not yet recruiting

R21/MM Dosing, Presentations, and Preservatives

This is a single blind randomised controlled trial (Phase 3 trial). This study aims to assess whether a half-dose of the R21/Matrix-M malaria vaccine is as effective as the full dose in children and adults. The results will help optimize vaccine usage and improve malaria prevention strategies. All participants will receive the same number of injections and will be randomly assigned to receive one of the followings: * Group 1: Adults and adolescents receiving the standard adult vaccine dose: 10μg R21/50μg Matrix-M (n=125). * Group 2: Adults and adolescents receiving a half of the standard adult vaccine dose: 5μg R21/50μg Matrix-M: 10 dose vials with adaptor Preservative Free (n=125) * Group 3: Adults and adolescents receiving a half of the standard adult vaccine dose: 5μg R21/50μg Matrix-M: 10 dose vials with 2PE Preservative (n=125) Clinical procedure for participants: * Standardized symptom questionnaire * Physical examination: Weight, height, pulse, blood pressure, respiratory rate, tympanic temperature. Spleen and liver size will be recorded if palpable. Pregnancy test (for female of child bearing potential) * Venous blood collection (Pre-vaccination) 3mL * Vaccination

Participants needed: 375
Trial details
Phase: Phase 4Age: 14-60Biological sex: AllType: InterventionalSponsor: University of OxfordUpdated: Mar 16, 2026Locations: 2
Eligibility criteria

Residence in a study village for the study period, i.e. 12 months. [+2]

Pregnancy, plan to get pregnant within one month of vaccination, or breastfeedin... [+6]

Status: Recruiting

Pregnancy Registry in Mali

This registry will assess pregnancy outcomes through demographic surveillance and prospective data collection at a health facility in Kalifabougou, Mali.

Participants needed: 9,500
Trial details
Age: 15-49Biological sex: FemaleType: ObservationalSponsor: National Institute of Allergy and Infectious Diseases (NIAID)Updated: Mar 13, 2026Locations: 1Duration: 5 Years
Eligibility criteria

Females of childbearing potential or pregnant females. [+5]

Temporary residence in the study area. [+3]

Status: Not yet recruiting

An Ultra-short Course of Primaquine for the Radical Cure of Vivax Malaria

Current treatment regimens to prevent relapsing malaria are too long. A shorter higher dose treatment could improve treatment outcomes, but this needs to be balanced against increased risk of side effects. Recent data from a trial in children in Papua New Guinea (PNG) suggests a shortened treatment of 3 days is safe and effective. Our multicentre trial will assess the safety and efficacy of an ultra-short primaquine course. This trial is expected to directly influence global treatment policies.

Participants needed: 1,019
Trial details
Phase: Phase 3Age: 5+Biological sex: AllType: InterventionalSponsor: Menzies School of Health ResearchUpdated: Mar 12, 2026Locations: 5
Eligibility criteria

P. vivax peripheral parasitaemia as determined by microscopy [+5]

Signs or symptoms of severe malaria, [+5]

Status: Recruiting

Effectiveness of Malaria Vaccines in Reducing the Risk of Invasive Non-typhoidal Salmonella Disease

The goal of this observational study is to learn about the impact of malaria vaccination on the risk of invasive non-typhoidal Salmonella disease in children below the age of 5. Eligible participants residing in the Kisantu Health Zone (DRC) and presenting fever are enrolled in healthcare facilities and tested for malaria and iNTS. Using a case-control (test-negative) design, the researchers will look at the malaria vaccination status of participants with and without iNTS infection to determine if the malaria vaccine protects against iNTS.

Participants needed: 10,000
Trial details
Biological sex: AllType: ObservationalSponsor: International Vaccine InstituteUpdated: Feb 18, 2026Locations: 1
Eligibility criteria

Patients of all ages currently living in the catchment area of the health center... [+1]

Status: Recruiting

OPTImizing Malaria And HIV Treatment in a Shifting Landscape in Africa

A longitudinal study with four parallel cohorts with each participant followed for 2 years: two cohorts in Busia (high malaria transmission site) and two cohorts in Kampala (low malaria transmission). Each site will have a cohort of children living with HIV (CLHIV) and HIV- uninfected children and will be age-matched, enrolled in parallel, and followed for two years. All children will be enrolled without malaria infection, as determined by a negative blood smear at baseline.

Participants needed: 380
Trial details
Phase: Phase 4Age: 5-17Biological sex: AllType: InterventionalSponsor: Yale UniversityUpdated: Feb 4, 2026Locations: 2
Eligibility criteria

Agreement to come to the clinic for all follow-up evaluations [+7]

Significant comorbidities such as malignancy, active TB, chronic/active hepatiti... [+6]

Status: Not yet recruiting

Long-acting Spatial Emanators / Repellents (LASER)

Malaria is a major problem in western Kenya, particularly around Lake Victoria. Whilst current prevention methods like bed nets and vaccines help to reduce malaria burden, additional tools are needed to better protect communities from malaria. The investigators will test a new technology called LASER Guardian™, which are devices that release chemicals to keep mosquitoes away from homes. The investigators will conduct a large study involving 69 villages in western Kenya over two years. Each village will be randomly chosen to receive one of three approaches: the new LASER devices, indoor residual spraying with insecticide (a method already known to work), or the standard prevention methods currently used. All villages will continue to receive the usual malaria prevention tools provided by the Kenyan government, including bed nets and vaccines. In villages receiving LASER, the investigators will install 2-3 small device inside structures once a year for two years. In villages receiving IRS, the investigators will spray the inside walls of homes with insecticide once a year for two years. The investigators want to find out if the LASER devices can reduce malaria better than current methods alone, and whether they work as well as indoor spraying. To do this, the investigators will carry out surveys of the community every six months over two years (four rounds in total), testing about 4,485 children between ages 1 and 15 from approximately 3,450 households in each survey to see how many have malaria. The investigators will also work with local health clinics to track malaria cases, study mosquitoes to understand how the interventions affect them, talk with community members about their experiences, and calculate the costs of these different approaches. This study will help us understand whether LASER tool can effectively protecting against malaria in Kenya and other African countries where malaria is common.

Participants needed: 22,815
Trial details
Age: 1-15Biological sex: AllType: InterventionalSponsor: Liverpool School of Tropical MedicineUpdated: Feb 4, 2026Locations: 1
Eligibility criteria

Child aged 1-15 years [+3]

Status: Recruiting

Risk Assessment of Community Spread of Multiple Endemic Infectious Diseases in a One Health Perspective

RACSMEI addresses the high burden of infectious diseases in low- and middle-income countries, including Cambodia, where limited surveillance and laboratory capacity often obscure etiologies and transmission dynamics. This knowledge gap hinders the design of effective prevention and control strategies. RACSMEI will improve understanding across multiple pathogens using a multidisciplinary One Health approach. We will answer key questions on burden, ecology, transmission and population immune status to inform targeted and culturally appropriate interventions. The project combines a nationally representative One Health survey, social-science methods, and multiplex, diverse diagnostics to efficiently test for 57 priority pathogens, including zoonotic and vector-borne agents, vaccine-preventable and elimination-targeted diseases, enteric, respiratory, and environmentally transmitted pathogens and selected neglected tropical diseases and parasites relevant to Cambodia. Mathematical modelling will reconstruct and forecast transmission dynamics and assess the potential impact of future public-health strategies. By integrating intersectoral data and innovative methods, RACSMEI will generate actionable evidence for public-health authorities, support precision One Health interventions, and help reduce disease burden in affected communities. The project also aims to ensure the transferability of methods and insights to other countries facing similar challenges.

Participants needed: 10,000
Trial details
Age: 2-75Biological sex: AllType: ObservationalSponsor: Institut Pasteur du CambodgeUpdated: Jan 22, 2026Locations: 1
Eligibility criteria

Residency in the village for more than 6 months; [+3]

Unable to understand or consent; [+3]

Status: Recruiting

A Study to Assess the Safety and Immunogenicity of a Vaccine Against Malaria in Healthy Children Aged 5-60 Months

The purpose of this study is to evaluate the safety and immunogenicity of reduced antigen doses and alternative vaccination regimes for RTS,S/AS01E in healthy children aged 5-60 months in a malaria-endemic area.

Participants needed: 238
Trial details
Phase: Phase 2Age: 5-60Biological sex: AllType: InterventionalSponsor: GlaxoSmithKlineUpdated: Sep 29, 2025Locations: 2
Eligibility criteria

Healthy male or female participants aged 5 to 60 months at the time of the first... [+6]

Progressive, unstable, or uncontrolled clinical conditions. [+17]

Status: Recruiting

A Study of Oral E1018 in Healthy Adult Participants

The primary purpose of the study is to evaluate the safety and tolerability of single ascending oral doses of E1018 in healthy adult participants and to evaluate the pharmacokinetics (PK) of E1018 in plasma and urine after single oral dose administration.

Participants needed: 32
Trial details
Phase: Phase 1Age: 18-55Biological sex: AllType: InterventionalSponsor: Eisai Inc.Updated: Sep 24, 2025Locations: 1
Eligibility criteria

Nonsmoking/vaping, male or female, age greater than or equal to (>=) 18 years to... [+1]

Females who are breastfeeding or pregnant at Screening or Baseline (as documente... [+21]

Status: Recruiting

Monoclonal Antibodies in Children With Severe Anaemia or Severe Malaria to Prevent Malaria After Hospital Discharge

Background and rationale: Hospitalised children with severe anaemia remain at high risk of dying or requiring hospital readmission for at least 6 months after discharge. In highly malaria-endemic settings, malaria is a major contributor to these post-discharge readmissions and deaths. In 2022, the World Health Organisation (WHO) recommended post-discharge malaria chemoprevention (PDMC) for children hospitalised with severe anaemia living in malarious areas. Kenya, together with several other countries in sub-Saharan Africa, aims to expand WHO's recommendation and introduce PDMC in children hospitalised with severe anaemia or severe malaria, including children with severe malaria who do not have severe anaemia (e.g. cerebral malaria). PDMC consists of full 3-day treatment courses with long-acting antimalarials given monthly three times after discharge. PDMC is very effective in clinical trials. However, adherence to these monthly 3-day drug treatments is limited under real-life conditions. Furthermore, PDMC provides chemoprevention for about 3.5 months only, while the risk of dying or needing to be readmitted remains high for several more months. The US National Institutes of Health (NIH) has developed two monoclonal antibodies targeting Plasmodium falciparum malaria (mMAb). These proteins specifically target a highly conserved epitope found on the circumsporozoite protein-1 (CSP-1) of P. falciparum to neutralize it and prevent malaria infection. A key feature of mMAbs is that they can provide protection for up to 6 months with a single dose and thus serve as a "long-acting" drug. Recent placebo-controlled studies in healthy adults in Mali suggest that the first mMAb, CIS43LS, when administered at a dose of 40 mg/kg intravenously (IV), can block 88% of malaria infections for at least 6 months. More recently, studies with a newer mMAb called L9LS, which is anticipated to be more potent than CIS43LS, showed a 74% reduction in uncomplicated clinical malaria by 6 months when administered subcutaneously to healthy Malian children aged 6-10 years by a single subcutaneous (SC) dose of 10-20 mg/kg (NCT05304611). Similar studies with L9LS are ongoing in healthy children under 5 years of age in Siaya, western Kenya (NCT05400655). Young children admitted to hospitals in highly malaria-endemic areas with severe anaemia or severe malaria are an ideal target group for passive immunoprevention with mMAbs as a single infusion with mMAb while in the hospital could protect this high-risk group during the entire vulnerable post-discharge period. Overview design: investigators will conduct a 2-arm, multi-centre, individually randomised, placebo-controlled non-inferiority trial in 398 children with severe malaria or severe anaemia. Children will be randomly assigned (1:1) using minimum sufficient balance (MSB) randomisation to receive either mMAb before discharge or 3 courses of monthly PDMC after discharge, according to WHO guidelines. The study will be placebo-controlled. Children in the PDMC arm will receive a placebo infusion with normal saline before discharge; children in the mMAb arm will receive placebo-PDMC. All children will receive standard in-hospital care, including a blood transfusion and treatment for severe malaria where indicated. They will also receive a full 3-day treatment course with the antimalarial artemether-lumefantrine (AL) to clear any existing malaria infections as soon as they have recovered and can take oral medication. The primary endpoint is the incidence of clinical malaria detected by passive case detection by 6 months post-discharge (the intervention period). Key secondary endpoints include the rates of readmissions and deaths (all children). Children will be followed for another 6 months (post-intervention period) to determine the duration of protection, any long-term impact (e.g., growth) and if mMAbs result in a delayed acquisition of natural protective immunity against clinical malaria Study Interventions: All children will receive standard in-hospital care, including a blood transfusion, antibiotics, and treatment for severe malaria where indicated. All children in both arms will be empirically treated for malaria infection around discharge with a 3-day regimen with artemether-lumefantrine to ensure parasite clearance of any existing parasites. Participants in the mMAb arm will receive the study agent L9LS IV with a target dose of 30 mg/kg. The IV dose will use 1 kg step increases. During the 6-month intervention period, children in the placebo-mMAbs arm will receive three courses of monthly PDMC as per WHO guidelines with dihydroartemisinin-piperaquine (DP) at 2, 6 and 10 weeks post-discharge. Those in the mMAbs arm will receive an identical placebo PDMC

Participants needed: 398
Trial details
Phase: Phase 3Age: Up to 9Biological sex: AllType: InterventionalSponsor: Liverpool School of Tropical MedicineUpdated: Jul 24, 2025Locations: 2
Eligibility criteria

Aged <10 years of both sexes [+6]

Recognised specific other causes of severe anaemia (i.e., trauma, haematological... [+15]

Status: Recruiting

L-ArGinine to pRevent advErse prEgnancy Outcomes (AGREE)

There are few safe, effective, and affordable interventions to improve pregnancy outcomes in low resource settings where the highest rates of poor birth outcomes occur. L-citrulline is naturally found in many foods and is changed into another important amino acid, L-arginine, in the body. L-arginine is important for the growth of a healthy placenta and healthy baby. Adding L-citrulline to the diets of pregnant women may be an effective and affordable way to improve the health of their babies.The goal of the AGREE trial is to test whether a dietary supplement containing a common food component, an amino acid called L-citrulline, can help pregnant Kenyan women at risk of malaria have healthier pregnancies and healthier babies. 2,960 pregnant Kenyan women will be enrolled and randomly assigned to take either a twice daily dietary supplement containing L-citrulline or a placebo supplement without additional L-citrulline. Maternal participants will be seen every month until delivery and at weeks 1 and 6 after birth. Infants will also be followed up at ages 6, 12, 18, and 24 months. The primary outcome of the study is 'adverse pregnancy outcome', a composite of foetal loss (miscarriage or still birth), preterm birth, low birth weight, small for gestational age or neonatal mortality. The results of the AGREE trial could help to guide obstetric and public health policy and provide a sustainable solution that could be implemented at the community level.

Participants needed: 2,960
Trial details
Age: 16-40Biological sex: FemaleType: InterventionalSponsor: Liverpool School of Tropical MedicineUpdated: Jun 27, 2025Locations: 1
Eligibility criteria

Pregnant women aged 16-40 years, [+5]

multiple pregnancies (i.e. twin/triplets); [+5]

Status: Recruiting

ACT vs CQ With Tafenoquine for P. Vivax Mono-infection

In this area of Greater Mekong Subregion (GMS), vivax malaria is the most common kind of malaria. It can stay very long in the liver, and come out later to make another episode of illness. This can happen many times even without a mosquito bite. Only 8-aminoquinoline drugs can kill the liver forms of the malaria parasite. One of these drugs is called primaquine, and it has been used all over the world for a long time. There is now a new formulation of this 8-aminoquinoline drug called tafenoquine that can also treat the malaria in the liver. The main benefit of this drug is that it is a single dose, which makes much convenient for the patients as well as for the malaria control program than conventional 14 days of primaquine. Recent research suggests that ACT (Artemisinin Combination Therapy) may antagonise the efficacy of tafenoquine (Baird et al. 2020 ASTMH Annual Meeting) . This could prevent the use of tafenoquine in areas with chloroquine resistant P. vivax parasites where national malaria programmes recommend ACTs for vivax malaria. Also, currently recommended tafenoquine dose is sub-optimal: 300 mg dose proved significantly inferior to low dose primaquine in a meta-analysis of the phase 3 studies when restricted to the Southeast Asian region (Llanos-Cuentas et al. 2019 NEJM; Watson et al. 2022a Elife). A tafenoquine dose of 450mg is predicted to provide \>90% of the maximal effect. The objective of this research is to find out whether 450 mg dose of tafenoquine can be combined effectively with ACT providing a short course treatment for P. vivax malaria.

Participants needed: 606
Trial details
Phase: Phase 4Age: 18+Biological sex: AllType: InterventionalSponsor: Shoklo Malaria Research UnitUpdated: May 16, 2025Locations: 1
Eligibility criteria

Patients with P. vivax mono-infection as diagnosed by Rapid Diagnostic Test [+5]

Coincident P. falciparum malaria or other infections [+6]

Status: Recruiting

Strengthening the Evidence for Policy on the RTS,S/AS01 Malaria Vaccine

The ongoing Malaria Vaccine Pilot Evaluation (MVPE) is being conducted in Ghana, Malawi and Kenya through community and sentinel hospital surveillance systems and a series of household surveys (to measure vaccine coverage). The Malaria Vaccine Pilot Evaluation-Case Control (MVPE-CC) registered here as observational study is embedded within MVPE comprising case-control studies of clinical and mortality outcomes. Each case will require four controls, and caregiver informed consent will be required prior to study activities. These observational case control studies will measure as complementary information to what is being collected through MVPE: 1. Safety among children who received the malaria vaccine, with focus on cerebral malaria, meningitis and severe malaria 2. The impact of the malaria vaccine on all-cause mortality for boys and girls, AND 3. Promote use of case-control approaches by Expanded Programmes on Immunization (EPI) and malaria control programmes.

Participants needed: 9,280
Trial details
Age: 6-59Biological sex: AllType: ObservationalSponsor: Kintampo Health Research Centre, GhanaUpdated: Feb 28, 2025Locations: 4
Eligibility criteria

Willingness to participate in study evidenced by written informed consent provid... [+3]

Caregiver not willing to provide consent

Status: Not yet recruiting

Host Immunity, Plasmodium and Pathogens Co-Infections

Few studies have focused on malaria co-infections, mainly caused by Plasmodium falciparum, occurring mainly in children under 5 years of age in sub-Saharan Africa. These studies have focused on malaria-associated bacterial sepsis, with an estimated prevalence of 9.1% and associated mortality of 15.0%. However, no study has documented infectious sites other than the blood compartment, considered viruses and parasites as possible causes of infection in addition to bacteria, and used molecular diagnostic methods based on PCRs, which are more sensitive. Thus, the prevalence of these co-infections and the spectrum of pathogens involved are probably underestimated, as is the impact of these co-infections on mortality. Furthermore, it has been shown that malaria infections can condition the immune cells of naturally exposed individuals, potentially leading to greater susceptibility to all types of infection. But these mechanisms have never been documented in the context of co-infections. The WHO recommends the use of broad-spectrum antibiotics in cases of severe malaria, in addition to antimalarial drugs, as it can be difficult to differentiate clinically between severe malaria and severe bacterial infection (bacteremia, pneumonia and meningitis). Yet this empirical use of antibiotics could be contributing to an increase in antibiotic resistance. Identifying the determinants of co-infection with malaria and severe bacterial infection would enable this treatment to be better targeted. These determinants remain undetermined as no study has considered other causes of severe bacterial infection other than bacteremia, used appropriate statistical methodology (univariate analysis only) and explored important determinants, notably the capacity of children's innate immunity to respond to severe bacterial infection.

Participants needed: 2,000
Trial details
Biological sex: AllType: InterventionalSponsor: Institut PasteurUpdated: Jan 24, 2025
Eligibility criteria

aged between 6 and 60 months [+12]

scheduled caesarean section for current pregnancy [+2]