View clinical trials related to Malaria.
Filter by:Malaria is an infectious disease transmitted by the bite of an infected female anopheles mosquito. The most vulnerable group that bears the highest disease burden includes children less than five years and pregnant women. Artemether-lumefantrine (AL) has been used for the treatment of uncomplicated Plasmodium falciparum in Cameroon since 2006. In 2020, the government of Cameroon also adopted the use of dihydroartemisinin-piperaquine (DHA-PPQ) as one of the first line drugs for the treatment of malaria. Globally, several studies among children have reported high efficacy and safety of artemisinin-based combination therapies (ACTs). However, there is paucity of data to support the continuous use of AL and DHA-PPQ in Cameroon. The main objective of this study is to assess the efficacy and safety of artemether-lumefantrine (AL) and dihydroartemisinin-piperaquine (DHA-PPQ) uncomplicated P. falciparum malaria in the North Region of Cameroon. A randomized, open-label, controlled clinical trial comparing artemether-lumefantrine (AL) and dihydroartemisinin-piperaquine (DHA-PPQ) will be carried out from 11th April to 31st December, 2022 at two hospitals in the North Region of Cameroon. The study participants shall include febrile patients aged 6 months to 10 years with confirmed uncomplicated P. falciparum infection. Eligible children for whom parent/guardian assents are obtained will be randomized to receive either artemether-lumefantrine (group A) or dihydroartemisinin-piperaquine (group B) in the ratio 1:1. A minimum sample of 76 patients will be required for the study. With a 20 % increase to allow loss to follow-up and withdrawals during the 28-days (AL) or 42-days (DHA-PPQ) follow-up period, 92 patients will be enrolled into each of the two study arms. The study will recruit a total of 184 patients. However, since 2 study sites will be involved, a minimum of 92 (46 per drug arm) participants shall be enrolled per site. Drug intake will be done under strict supervision on days 0, 1 and 2. Follow-up visits will be performed on days 3, 7, 14, 21, 28, 35 and 42 to evaluate clinical and parasitological resolution of their malaria episode as well as adverse events. Polymerase chain reaction (PCR) of Plasmodium falciparum merozoite surface proteins 1 and 2 (Pfmsp1, Pfmsp2), glutamate-rich protein (Pfglurp) and microsatellites will be used to differentiate between recrudescence and new infection.
This study assessed the effect of multiple doses of a moderate inducer of cytochrome P450 (CYP) 3A4 (efavirenz) on the pharmacokinetics (PK) of ganaplacide and lumefantrine combination. Results from this study will provide guidance on prescribing ganaplacide and lumefantrine combination when co-administered with moderate inducers of CYP3A4.
To-date, seasonal malaria chemoprevention (SMC) has only been scaled up across the Sahel region of west and central Africa, primarily because of concerns over widespread resistance to sulfadoxine-pyrimethamine (SP) and amodiaquine (AQ) in east and southern Africa. There are increasing calls for this successful intervention to be used more widely and aggressively, including in areas of east and southern Africa where malaria transmission is seasonal. To test the feasibility, acceptability and impact of SMC with SPAQ in new geographies outside of the Sahel, Malaria Consortium, together with the malaria programmes in Mozambique and Uganda, is conducting implementation studies in both countries. The studies comprise two phases, with the first phase focusing on acceptability and feasibility, followed by more rigorous assessments of the effectiveness of the intervention and chemoprevention efficacy of the medicines used in SMC. Phase 1 of the studies has been successfully completed. The studies showed that SMC with SPAQ was safe, acceptable and feasible, with very high coverage achieved among the target population.Phase 2 of the SMC implementation study in Uganda will include study components exploring the effectiveness of SMC with SPAQ and dihydroartemisinin-piperaquine (DP), as well as the chemoprevention efficacy of DP when used in SMC. The study will be conducted in five districts of Karamoja region. It will involve SMC delivery to around 142,000 children. The majority of the target population will receive SPAQ, but around 15,000 children will receive DP. Five monthly SMC cycles will be implemented between May and September 2022. As the protective period of SPAQ and DP are comparable, monthly administration cycles will be implemented irrespective of the drug regimen used.
Prospective cross-sectional diagnostic accuracy study with 1,000 patient participants and 30 lay provider/health care worker participants. The patient participant population will be recruited at clinics. At the point of care, study staff will collect capillary blood samples and conduct malaria microscopy (both the standard of care and study specific research-grade microscopy) and two index tests: the NxTek™ Malaria P.f plus Rapid Diagnostic Test (RDT) and the NxTek™ Malaria P.f/P.v RDT. Venous blood will be collected and transferred to the laboratory where the reference PCR assay and three comparator RDTs will be run. The index RDTs will also be repeated in the laboratory. All clinical management of study participants will follow the standard of care for malaria diagnosis in Brazil and will be based on the standard microscopy result. Confirmatory testing may also be conducted, such as typing and sequencing of Plasmodium genes and antigens of interest, including but not limited to HRP2, HRP3, and pLDH as well as the human inflammatory response marker CRP. The lay provider/health worker participants will include intended users of the index tests. They will be surveyed to assess index test usability through a questionnaire to assess label and packaging comprehension as well as results interpretation.
Mozambique is among the ten countries with the highest burden of malaria worldwide, with an estimated 9.3 million cases in 2018, and constitutes a core target for the World Health Organization (WHO) and the Roll Back Malaria Partnership to End Malaria's country-led 'high burden to high impact' initiative. At the same time, the National Malaria Control Program (NMCP) of Mozambique seeks to accelerate elimination in the south, where transmission is lowest. NMCP is currently working with partners (Malaria Consortium, PMI, Global Fund) to set up a high-resolution surveillance system that can drive decision-making across all transmission strata through strengthening of routine data quality, data use and data to action packages. However, decisions become more complex as control reveals heterogeneity and better tools are required for a strategic use of information to drive impact. The overall objective of the study is to operationalize a functional malaria molecular surveillance (MMS) system that generates reliable and reproducible genomic data over time for programmatic decisions. The integration of genomic data into routine surveillance activities has the potential to increase the actionable intelligence for making programmatic decisions on the optimal mix of control and elimination measures in Mozambique by: 1. Informing drug and diagnostic choices through the monitoring of antimalarial drug resistance and diagnostic resistance (hrp2/3 deletions); 2. Targeting the reservoirs sustaining transmission through the use of transmission network models to quantify parasite importation, identify sources and characterize local transmission in near-elimination settings; 3. Improving stratification, monitoring and impact evaluations in different epidemiological and health system contexts through the use of measures of P. falciparum genetic diversity (routinely from positive cases) to supplement traditional surveillance, especially where it is sparse; 4. Using alternative, cost-effective, approaches targeting easy-access populations (e.g. pregnant women at antenatal care clinics) to monitor transmission and antimalarial/diagnostic resistance.
The purpose of this study is to evaluate the safety and tolerability of onetime subcutaneous (SC) or intravenous (IV) administration of monoclonal antibody (MAb) L9LS in healthy Malian adults and one-time SC administration of L9LS in healthy Malian children, as well as its protective efficacy against naturally occurring Plasmodium falciparum (Pf) infection over a 7-month malaria season in healthy Malian children 6-10 years of age.
Malaria in pregnancy is a major cause of maternal and neonatal death in Papua, Indonesia. A recent trial in Papua showed that monthly intermittent preventive treatment (IPTp) with the long-acting artemisinin-based combination dihydroartemisinin-piperaquine (DP) among pregnant women in the second and third trimester was safe, tolerable and more efficacious than the current policy of single screening at antenatal care (ANC) booking and treatment of rapid diagnostic test (RDT)-positive cases. The Ministry of Health (MOH) Indonesia now plans to pilot the strategy in the routine health system in Papua, Indonesia. This study will assess the programme effectiveness of IPTp-DP delivery through antenatal care services and women's adherence to the monthly 3-day DP treatment regimen in a 'real life' setting. The study will be undertaken in ten community health centres in the lowlands and their associated health posts in Timika city. In the first 18 months, MOH will be trained to implement the intervention using quality improvement (QI) approaches to continuously strengthen service delivery, uptake and adherence through plan-do-study-act cycles. The MOH will also be supported to collect safety data for pharmacovigilance. A mixed-methods evaluation will be conducted towards the end of the pilot using exit interviews to assess delivery effectiveness, home visits to assess adherence, and qualitative research to explore provider perceptions of the drivers of successful integration and scalability, and user acceptability. The primary outcome is adherence, defined as the proportion of pregnant women who receive the first dose of IPTp-DP by directly observed therapy (DOT) at ANC, have received the correct number of DP tablets for subsequent doses, and when visited at home have verified they completed the course. The net cost-effectiveness of implementing IPTp-DP and of the current policy of single screening and treatment (SST) in the routine health system will be assessed and compared. Net cost-effectiveness means that cost savings from averted malaria will be deducted from the intervention costs. The incremental financial cost of implementing IPTp-DP from the provider (MOH) perspective at scale in Papua, Indonesia, will also be estimated.
This is an open-label, adaptive study that will utilise the P. falciparum induced blood stage malaria (IBSM) model to characterise the pharmacokinetic/pharmacodynamic (PK/PD) profile of pyronaridine. Up to 18 healthy, malaria naïve adult participants are planned to be enrolled into this study, in cohorts of up to six participants each. Following a screening period of up to 28 days, cohorts of up to 6 healthy participants will be enrolled. Each participant will be inoculated intravenously on Day 0 with P. falciparum infected erythrocytes. Participants will be followed up daily on Days 1 to 3, and will attend the clinical unit once on Days 4, 5, 6 and 7 for clinical evaluation and blood sampling. Participants will be admitted to the clinical trial unit on Day 8 for a single oral dose of pyronaridine. Different doses of pyronaridine will be administered across and within cohorts. Participants will be randomised to a dose group on the day of dosing. The highest dose of pyronaridine administered will be no more than 720 mg; the lowest dose administered will be no less than 180 mg. Each subsequent cohort will be composed of up to 3 dose groups. The Safety Data Review Team (SDRT) will review all available safety and tolerability data from the previous cohort/s prior to inoculation of the next cohort. Participants will be confined in the clinical unit for at least 96 h (Days 8 - 12) to monitor the safety and tolerability of pyronaridine dosing. Upon discharge from the clinical unit participants will be monitored on an outpatient basis up to Day 50±2. Participants will receive compulsory antimalarial rescue treatment with Riamet® (artemether/lumefantrine) on Day 47±2 or earlier.
This trial is part of a portfolio of studies designed to assess the clinical and operational performance of Abbott's NxTekTM Malaria Pf Plus and NxTekTM Malaria Pf/Pv Plus Rapid Test Devices.
This study is a prospective observational study in which a female patient who received IV Artesunate while pregnant can volunteer to provide information about her pregnancy and the outcome of her pregnancy. Information will be collected from patient's provider, the patient's obstetrician, the child's pediatrician, or other relevant healthcare provider.