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PubMed · 5981446

Haemoglobin D.

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S Swarup. 1966. Haemoglobin D.. https://pubmed.ncbi.nlm.nih.gov/5981446/

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Serum erythropoietin during normal pregnancy: relationship to hemoglobin and iron status markers and impact of iron supplementation in a longitudinal, placebo-controlled study on 118 women.

Serum erythropoietin (EPO) and its relationship to hemoglobin (Hb), iron status markers and iron supplementation during normal pregnancy was assessed in a longitudinal, placebo-controlled study on 118 women, 61 took daily tablets containing 66 mg ferrous iron from the second trimester until delivery and 57 took placebo. Blood samples were obtained at 4-week intervals until delivery as well as post-partum. In the placebo-treated women, median serum EPO rose from 22.5 U/l at inclusion to 35.0 U/l at delivery (P = 0.0001). In the iron-treated women, median serum EPO rose from 23.9 to 29.9 U/l (P = 0.0001). Serum EPO showed a steeper increase in the placebo-treated women than in the iron-treated women (P < 0.05). After delivery, serum EPO became normal in both groups (P = 0.0001). Median Hb was lower in placebo-treated (iron depleted) than in iron-treated (iron repleted) women (P < 0.05). In the placebo-treated women there was a negative correlation and in the iron-treated women a positive correlation between serum EPO and Hb. In the placebo-treated women, inverse correlations existed between serum EPO and serum transferrin saturation and serum ferritin, reflecting the consequences of iron deficiency, whereas the iron-treated women displayed no correlation. A physiological, nonhypoxia-induced increase in EPO production accounts for the basic expansion of the red cell mass during pregnancy. In placebo-treated women, iron deficient erythropoiesis constitutes an additional hypoxic stimulus, which induces a further increase in serum EPO.

Anemia, Hypochromic

Iron supplementation moderates but does not cure the Belgrade anemia.

Belgrade rats inherit microcytic, hypochromic anemia as an autosomal recessive trait (gene symbol b). Erythrocytes and tissue are iron deficient in the face of elevated TIBC (total iron binding capacity) and percent iron saturation; iron injections increased the number of erythrocytes but their appearance remained abnormal. We have investigated iron supplements to improve husbandry of b/b rats and to learn more about the underlying defect and its tissue distribution. Weekly i.m. (intramuscular) injections of iron-dextran (Imferon at 30 mg kg-1) improved the anemia but did not alter the red cell morphology. Certain diets also improved the health of b/b rats when compared to standard rat chows by the criteria of weight, survival to adulthood, hematology and reproduction. The critical nutritional factor turned out to be iron bioavailability, with ferrous iron added to the diet improving the health of Belgrade rats without affecting the underlying erythroid defect. Tissue iron measurements after dietary or parenteral supplementation confirmed the iron deficient status of untreated b/b rats and established that dietary ferrous iron partially relieved this deficiency, with injections leading to greater amounts of tissue iron. Serum iron and TIBC were also found to be elevated in untreated b/b rats, with dietary supplementation decreasing but not eliminating the elevation in TIBC. These studies indicate that iron supplements can improve the health of b/b rats without altering the underlying defect and also suggest that the mutation could alter iron uptake in the GI (gastrointestinal) tract.

Anemia, Hypochromic