Erythrokinetic parameters were estimated in 21 patients suffering from haemolytic disease using a mathematical model of iron kinetics. A proper definition of radioiron reflux from red cells to the plasma proved to be essential for an accurate estimate of effective and ineffective erythropoiesis in severe haemolytic conditions. Erythropoietic activity was increased in all the patients, with the marrow capable of sustaining erythropoiesis at about 6 times normal in hereditary spherocytosis and 3 times normal in autoimmune haemolytic anaemia. This proliferative effort was countered by an increase in ineffective erythropoiesis which was especially marked in hereditary spherocytosis.

Quantitative assessment of erythropoiesis in haemolytic disease.

CAZZOLA, MARIO;
1980-01-01

Abstract

Erythrokinetic parameters were estimated in 21 patients suffering from haemolytic disease using a mathematical model of iron kinetics. A proper definition of radioiron reflux from red cells to the plasma proved to be essential for an accurate estimate of effective and ineffective erythropoiesis in severe haemolytic conditions. Erythropoietic activity was increased in all the patients, with the marrow capable of sustaining erythropoiesis at about 6 times normal in hereditary spherocytosis and 3 times normal in autoimmune haemolytic anaemia. This proliferative effort was countered by an increase in ineffective erythropoiesis which was especially marked in hereditary spherocytosis.
1980
The Hematology category covers resources concerned with blood, blood-forming tissues, bone marrow, plasma, and transfusions. Coverage also includes resources on specialties such as hemophilia, leukemia, and lymphoma.
Sì, ma tipo non specificato
Inglese
Internazionale
STAMPA
45
2
297
308
12
Anemia; Hemolysis; Iron
4
info:eu-repo/semantics/article
262
Stefanelli, M; Barosi, G; Cazzola, Mario; Orlandi, E.
1 Contributo su Rivista::1.1 Articolo in rivista
none
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11571/452123
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