Severe Plasmodium falciparum malaria is associated with hypoargininemia, which contributes to impaired systemic and pulmonary nitric oxide (NO) production and endothelial dysfunction. Since intravascular hemolysis is an intrinsic feature of severe malaria, we investigated whether and by which mechanisms free heme [Fe(III)-protoporphyrin IX (FP)] might contribute to the dysregulation of L-arginine (L-Arg) metabolism and bioavailability. Carrier systems "y+" [or cationic amino acid transporter (CAT)] and "y+L" transport L-Arg into red blood cells (RBC), where it is hydrolyzed to ornithine and urea by arginase (isoform I) or converted to NO* and citrulline by endothelial nitric oxide synthase (eNOS). Our results show a significant and dose-dep...
Decreased nitric oxide (NO) and hypoargininemia are associated with severe falciparum malaria and ma...
Impaired organ perfusion in severe falciparum malaria arises from microvascular sequestration of par...
Impaired organ perfusion in severe falciparum malaria arises from microvascular sequestration of par...
Severe Plasmodium falciparum malaria is associated with hypoargininemia, which contributes to impair...
Severe Plasmodium falciparum malaria is associated with hypoargininemia, which contributes to impair...
Severe falciparum malaria is associated with high levels of free heme [Fe(III)-protoporphyrin IX, FP...
International audienceThe mechanisms underlying reduced red blood cell (RBC) deformability during Pl...
Human erythrocytes have an active nitric oxide synthase, which converts arginine into citrulline and...
?Pathogenesis of severe Plasmodium vivax malaria is poorly understood. Endothelial dysfunction and r...
BACKGROUND: Hemolysis causes anemia in falciparum malaria, but its contribution to microvascular pat...
Inhibition of nitric oxide (NO) signalling may contribute to the pathogenesis of severe malaria. Thi...
Inhibition of nitric oxide (NO) signalling may contribute to the pathogenesis of severe malaria. Thi...
Hemoglobin (Hb) is the protein responsible for the oxygen carrying capacity of red blood cells (RBCs...
Decreased nitric oxide (NO) and hypoargininemia are associated with severe falciparum malaria and ma...
The pathogenesis of severe anaemia in children with P.falciparum (P.f.) malaria, has not been clarif...
Decreased nitric oxide (NO) and hypoargininemia are associated with severe falciparum malaria and ma...
Impaired organ perfusion in severe falciparum malaria arises from microvascular sequestration of par...
Impaired organ perfusion in severe falciparum malaria arises from microvascular sequestration of par...
Severe Plasmodium falciparum malaria is associated with hypoargininemia, which contributes to impair...
Severe Plasmodium falciparum malaria is associated with hypoargininemia, which contributes to impair...
Severe falciparum malaria is associated with high levels of free heme [Fe(III)-protoporphyrin IX, FP...
International audienceThe mechanisms underlying reduced red blood cell (RBC) deformability during Pl...
Human erythrocytes have an active nitric oxide synthase, which converts arginine into citrulline and...
?Pathogenesis of severe Plasmodium vivax malaria is poorly understood. Endothelial dysfunction and r...
BACKGROUND: Hemolysis causes anemia in falciparum malaria, but its contribution to microvascular pat...
Inhibition of nitric oxide (NO) signalling may contribute to the pathogenesis of severe malaria. Thi...
Inhibition of nitric oxide (NO) signalling may contribute to the pathogenesis of severe malaria. Thi...
Hemoglobin (Hb) is the protein responsible for the oxygen carrying capacity of red blood cells (RBCs...
Decreased nitric oxide (NO) and hypoargininemia are associated with severe falciparum malaria and ma...
The pathogenesis of severe anaemia in children with P.falciparum (P.f.) malaria, has not been clarif...
Decreased nitric oxide (NO) and hypoargininemia are associated with severe falciparum malaria and ma...
Impaired organ perfusion in severe falciparum malaria arises from microvascular sequestration of par...
Impaired organ perfusion in severe falciparum malaria arises from microvascular sequestration of par...