Hydroxyurea for Children with Sickle Cell Anemia in Sub-Saharan Africa

Léon Tshilolo1, George Tomlinson1, Thomas N Williams1

  • 1From Centre Hospitalier Monkole, Kinshasa, Democratic Republic of Congo (L.T.); the Department of Medicine, University Health Network and Mt. Sinai Hospital, and the University of Toronto, Toronto (G.T.); the Kenya Medical Research Institute (KEMRI)-Wellcome Trust Research Program, Kilifi, Kenya (T.N.W.); the Department of Medicine, Imperial College London, London (T.N.W.); Hospital Pediátrico David Bernardino, Luanda, Angola (B.S.); Mbale Clinical Research Institute and Mbale Regional Referral and Teaching Hospital-Busitema University, Mbale, Uganda (P.O.-O.); the Division of Hematology, Department of Pediatrics, Cincinnati Children's Hospital (A.L., S.E.S., T.S.L., P.T.M., R.E.W.), University of Cincinnati College of Medicine (A.L., P.T.M., R.E.W.), and the Global Health Center, Cincinnati Children's Hospital Medical Center (S.E.S., P.T.M., R.E.W.), Cincinnati; and Cohen Children's Medical Center, New Hyde Park, and the Zucker School of Medicine at Hofstra/Northwell, Hempstead - both in New York (B.A.).

Insights

Hydroxyurea treatment is feasible and safe for children with sickle cell anemia in sub-Saharan Africa. This therapy significantly reduced adverse events, including pain, infections, malaria, transfusions, and death.

Area of Science:

  • Hematology
  • Pediatric Medicine
  • Global Health

Background:

  • Sickle cell anemia (SCA) poses a significant health burden in sub-Saharan Africa.
  • Limited studies have evaluated hydroxyurea treatment for SCA in this region.
  • Coexisting conditions like malnutrition and malaria may impact hydroxyurea's effectiveness and safety in low-resource settings.

Purpose of the Study:

  • To assess the feasibility, safety, and benefits of hydroxyurea therapy in children with SCA in sub-Saharan Africa.
  • To evaluate the impact of hydroxyurea on laboratory variables, clinical events, and survival rates.
  • To determine the safety profile of hydroxyurea, including dose-limiting toxic effects and malaria incidence.

Main Methods:

  • A 6-month hydroxyurea treatment regimen (15-20 mg/kg/day) followed by dose escalation was administered to children aged 1-10 years with SCA in four sub-Saharan countries.
  • Feasibility was assessed by enrollment, retention, and adherence rates.
  • Safety and benefits were evaluated through laboratory variables, adverse events (including toxic effects and malaria), transfusions, and survival rates.

Main Results:

  • Hydroxyurea therapy significantly increased hemoglobin and fetal hemoglobin levels in children with SCA.
  • The treatment demonstrated high retention rates (94.2% at 3 years) and a low incidence of dose-limiting laboratory toxic events (5.1%).
  • Hydroxyurea use led to significant reductions in vaso-occlusive pain, infections, malaria, transfusions, and mortality.

Conclusions:

  • Hydroxyurea treatment is a feasible and safe therapeutic option for children with sickle cell anemia in sub-Saharan Africa.
  • The study supports the expansion of hydroxyurea access to reduce disease-related morbidity and mortality in this high-burden region.
  • Hydroxyurea effectively mitigated key complications of SCA, highlighting its potential to improve patient outcomes in resource-limited settings.
Abstract

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