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Seasonal Malaria Chemoprevention Therapy in Children Up To 9 Years of Age: Protocol for a Cluster-Randomized Trial
Mahamoudou Toure1, Jeffrey G Shaffer2, Daouda Sanogo1
1University Clinical Research Center, Universite des Sciences, des Techniques et des Technologies, Bamako, Mali.
Insights
This study compared seasonal malaria chemoprevention (SMC) regimens for children up to 9 years old. Findings will inform malaria prevention strategies and potential alternative therapies.
Area of Science:
- Global Health
- Infectious Diseases
- Pharmacology
Background:
- Seasonal malaria chemoprevention (SMC) is WHO-recommended for children under 5 in sub-Saharan Africa.
- Standard SMC uses sulfadoxine-pyrimethamine (SP) plus amodiaquine (AQ).
- Rising SP resistance necessitates evaluating alternative antimalarial drugs and SMC effectiveness in older children.
Purpose of the Study:
- Compare SP-AQ and dihydroartemisinin-piperaquine (DHA-PQ) SMC regimens for uncomplicated Plasmodium falciparum malaria.
- Assess DHA-PQ as a potential second-line SMC drug due to increasing SP resistance.
- Evaluate SMC effectiveness in children aged 5-9 years.
Main Methods:
- Cluster-randomized trial in Mali comparing SP-AQ and DHA-PQ SMC regimens.
- Three arms: SP-AQ for children <5 years (control), SP-AQ for children 3 months-9 years, DHA-PQ for children 3 months-9 years.
- Primary outcome: Plasmodium falciparum incidence in children up to 9 years.
Main Results:
- Study enrolled 4556 children aged 3 months to <5 years.
- Data collection concluded in spring 2023.
- Full findings are anticipated in early 2024.
Conclusions:
- Routine evaluation of antimalarial drugs is crucial for setting appropriate SMC age targets.
- Study outcomes may influence public health policy on malaria prevention.
- Alternative therapies will be available in case of drug shortages or resistance.
Background:
Seasonal malaria chemoprevention (SMC) is recommended by the World Health Organization for the sub-Sahel region in sub-Saharan Africa for preventing malaria in children 3 months old to younger than 5 years. Since 2016, the Malian National Malaria Control Program has deployed SMC countrywide during its high malaria transmission season at a rate of 4 monthly cycles annually. The standard SMC regimen includes sulfadoxine-pyrimethamine (SP) plus amodiaquine (AQ). Resistance against SP is suspected to be rising across West Africa; therefore, assessing the effectiveness of an alternative antimalarial drug for SMC is needed to provide a second-line regimen when it is ultimately needed. It is not well understood whether SMC effectively prevents malaria in children aged 5 years or older.
Objective:
The primary goal of the study is to compare 2 SMC regimens (SP-AQ and dihydroartemisinin-piperaquine [DHA-PQ]) in preventing uncomplicated Plasmodium falciparum malaria in children 3 months to 9 years old. Secondly, we will assess the possible use of DHA-PQ as an alternative SMC drug in areas where resistance to SP or AQ may increase following intensive use.
Methods:
The study design is a 3-arm cluster-randomized design comparing the SP-AQ and DHA-PQ arms in 2 age groups (younger than 5 years and 5-9 years) and a control group for children aged 5-9 years. Standard SMC (SP-AQ) for children younger than 5 years was provided to the control arm, while SMC with SP-AQ was delivered to children aged 3 months to 9 years (arm 2), and SMC with DHA-PQ will be implemented in study arm 3 for children up to 9 years of age. The study was performed in Mali's Koulikoro District, a rural area in southwest Mali with historically high malaria transmission rates. The study's primary outcome is P falciparum incidence for 2 SMC regimens in children up to 9 years of age. Should DHA-PQ provide an acceptable alternative to SP-AQ, a plausible second-line prevention option would be available in the event of SP resistance or drug supply shortages. A significant byproduct of this effort included bolstering district health information systems for rapid identification of severe malaria cases.
Results:
The study began on July 1, 2019. Through November 2022, a total of 4556 children 3 months old to younger than 5 years were enrolled. Data collection ended in spring 2023, and the findings are expected to be published later in early 2024.
Conclusions:
Routine evaluation of antimalarial drugs is needed to establish appropriate SMC age targets. The study goals here may impact public health policy and provide alternative therapies in the event of drug shortages or resistance.
Trial Registration:
ClinicalTrials.gov NCT04149106, https://clinicaltrials.gov/ct2/show/NCT04149106.
International Registered Report Identifier (Irrid):
DERR1-10.2196/51660.
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