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Transgenic mice expressing human fetal globin are protected from malaria by a novel mechanism

H L Shear1, L Grinberg, J Gilman

  • 1Division of Hematology, Department of Medicine, Montefiore Medical Center/Albert Einstein College of Medicine, Bronx, NY 10467, USA.

Blood
|September 25, 1998
PubMed

Insights

Fetal hemoglobin (HbF) offers protection against malaria by slowing parasite growth within red blood cells. This effect is mediated by HbF’s resistance to digestion by malarial enzymes, providing a defense mechanism.

Area of Science:

  • Malariology
  • Hematology
  • Genetics

Background:

  • Fetal hemoglobin (HbF) inhibits Plasmodium falciparum growth in vitro.
  • Beta-thalassemia trait carriers show delayed HbF switch-off, correlating with malaria protection.
  • Neonates have high HbF levels, potentially offering natural malaria resistance.

Purpose of the Study:

  • To investigate the in vivo protective effect of HbF against malaria using transgenic mice.
  • To elucidate the mechanisms underlying HbF-mediated malaria protection.

Main Methods:

  • Generation of transgenic (gamma) mice expressing human HbF.
  • Infection of mice with Plasmodium chabaudi adami and Plasmodium yoelii (lethal and non-lethal variants).
  • Assessment of parasitemia, survival rates, and parasite development within erythrocytes.

Main Results:

  • Transgenic mice showed altered parasitemia dynamics and increased survival against lethal P. yoelii infections.
  • Splenectomy did not abrogate the protective effect of HbF.
  • Intraerythrocytic parasite development was slower in HbF-containing erythrocytes, with defective hemozoin formation.
  • HbF demonstrated resistance to digestion by malarial hemoglobinases.

Conclusions:

  • HbF confers significant in vivo protection against malaria, independent of spleen function.
  • The protective mechanism involves impaired parasite growth due to HbF's resistance to enzymatic digestion.
  • This finding explains malaria resistance in neonates and suggests potential therapeutic strategies targeting HbF.

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