Erythrocyte and plasma ferritin in normal subjects, blood donors and iron deficiency anemia patients

1984 ◽  
Vol 48 (3) ◽  
pp. 131-137 ◽  
Author(s):  
H. H. Bodemann ◽  
A. Rieger ◽  
K. J. Bross ◽  
H. Schr�ter-Urban ◽  
G. W. L�hr
Blood ◽  
1959 ◽  
Vol 14 (12) ◽  
pp. 1269-1279 ◽  
Author(s):  
MIGUEL LAYRISSE ◽  
NORMA BLUMENFELD ◽  
IRIS DUGARTE ◽  
MARCEL ROCHE

Abstract Studies on the metabolism of B12 and folic acid were performed in patients with heavy hookworm infection and severe iron deficiency anemia, and in patients with light infection, noninfected patients and normal subjects. Patients with heavy hookworm infection showed a marked decrease of the serum B12 as compared with normal subjects. Eight of 21 cases studied showed values of serum B12 below 100 µµg./ml. Twelve of 13 patients with severe hookworm infection showed impairment of the pteroylglutamic acid intestinal absorption; however, none of them exhibited megaloblastic proliferation in the bone marrow. They all recovered with iron therapy alone. The patients with light infection and the noninfected patients with iron deficiency anemia did not demonstrate significant differences from the normal subjects studied.


2007 ◽  
Vol 232 (8) ◽  
pp. 1014-1020 ◽  
Author(s):  
Jerome l. Sullivan

Hepcidin has emerged as the key hormone in the regulation of iron balance and recycling. Elevated levels increase iron in macrophages and inhibit gastrointestinal iron uptake. The physiology of hepcidin suggests an additional mechanism by which iron depletion could protect against atherosclerotic lesion progression. Without hepcidin, macrophages retain less iron. Very low hepcidin levels occur in iron deficiency anemia and also in homozygous hemochromatosis. There is defective retention of iron in macrophages in hemochromatosis and also evidently no increase in atherosclerosis in this disorder. In normal subjects with intact hepcidin responses, atherosclerotic plaque has been reported to have roughly an order of magnitude higher iron concentration than that in healthy arterial wall. Hepcidin may promote plaque destabilization by preventing iron mobilization from macrophages within atherosclerotic lesions; the absence of this mobilization may result in increased cellular iron loads, lipid peroxidation, and progression to foam cells. Marked downregulation of hepcidin (e.g., by induction of iron deficiency anemia) could accelerate iron loss from intralesional macrophages. It is proposed that the minimally proatherogenic level of hepcidin is near the low levels associated with iron deficiency anemia or homozygous hemochromatosis. Induced iron deficiency anemia intensely mobilizes macrophage iron throughout the body to support erythropoiesis. Macrophage iron in the interior of atherosclerotic plaques is not exempt from this process. Decreases in both intralesional iron and lesion size by systemic iron reduction have been shown in animal studies. It remains to be confirmed in humans that a period of systemic iron depletion can decrease lesion size and increase lesion stability as demonstrated in animal studies. The proposed effects of hepcidin and iron in plaque progression offer an explanation of the paradox of no increase in atherosclerosis in patients with hemochromatosis despite a key role of iron in atherogenesis in normal subjects.


1998 ◽  
Vol 44 (4) ◽  
pp. 800-804 ◽  
Author(s):  
Else J Harthoorn-Lasthuizen ◽  
Jan Lindemans ◽  
Mart M A C Langenhuijsen

Abstract Erythrocyte zinc protoporphyrin (ZPP) was measured in 102 women blood donors to evaluate its usefulness in screening for evolving iron deficiency anemia, a reason for the deferral of donors. The results were compared with serum ferritin determinations. Five women were deferred before their first donation and eight women were deferred after one or two donations. Women with increased ZPP values all had low serum ferritin concentrations, indicating iron-deficient erythropoiesis that was caused by iron depletion. The positive predictive value of an increased ZPP in predicting deferral of the donor after one or two donations was 75%, whereas a serum ferritin concentration ≤12 μg/L predicted deferral in 26% of the donors. The results indicate that the ZPP test can be recommended as a feasible and inexpensive predonation test to determine a subset of donors with iron-deficient erythropoiesis at risk of developing iron deficiency anemia.


Anemia ◽  
2018 ◽  
Vol 2018 ◽  
pp. 1-5 ◽  
Author(s):  
Penpe Gul Firat ◽  
Ersan Ersin Demirel ◽  
Seyhan Dikci ◽  
Irfan Kuku ◽  
Oguzhan Genc

Purpose. Iron deficiency anemia is an important public health problem. Also it is considered to be a risk factor for many diseases. The study demonstrates the iron deficiency anemia frequency in glaucoma patients and compares with the normal subjects. We aimed to determine the iron deficiency anemia frequency in glaucoma patients.Methods. Prospective, controlled study in a single university hospital setting. A total of 130 normal subjects (Group 1) and 131 glaucoma patients (Group 2) were included. The erythrocytes parameters, hemoglobin, red blood cell, hematocrit, mean corpuscular volume, mean corpuscular hemoglobin concentration, mean corpuscular hemoglobin, and red blood cell distribution width, and iron status indicators, Fe (iron), total iron binding capacity, and ferritin of the cases, in normal subjects and glaucoma patients were compared.Results. There was no statistically significant difference for the erythrocyte parameters between the groups (p≥0.05). The number of the patients with iron deficiency anemia in both groups was similar. No statistically significant difference was found in the comparison of erythrocyte parameters and iron status indicators values according to the number of antiglaucomatous agents and visual field changes according to the presence of anemia in Group 2 (p≥0.05). A statistically significant difference was found only in MCH when the erythrocyte parameters and iron status indicators values of the cases in glaucoma patients were compared with the glaucoma duration (p<0.05).Conclusion. The iron deficiency anemia frequency was like the normal population in glaucoma patients.


Blood ◽  
2010 ◽  
Vol 116 (21) ◽  
pp. 3353-3353
Author(s):  
Alix O'Meara ◽  
Laura Infanti ◽  
Jörg Sigle ◽  
Martin Stern ◽  
Andreas S. Buser

Abstract Abstract 3353 Iron store depletion is a common side effect of whole-blood donation. Iron loss may lead to iron deficiency symptoms such as fatigue, decreased physical and job performance then gradually result in iron deficiency anemia. As of 2004, routine serum ferritin testing was implemented at our Center. We analyzed the impact of this measure on our donor population with regard to hemoglobin level, anemia occurrence and donor deferral due to low hemoglobin. A total of 160'612 intended donations of 23'557 healthy blood donors at a single institution (Blutspendezentrum beider Basel, Basel, Switzerland) between 1996 and 2009 were analyzed. At each visit, complete blood counts were taken from fingerprick samples and donors were deferred if the capillary hemoglobin concentration proved <133 g/L (m) or <123 g/L (f). From 2004 on, serum ferritin was measured systematically. Upon detection of ferritin levels indicative of iron depletion or iron deficiency anemia, donors were contacted by a blood bank physician and received medical counseling. The further procedure of iron supplementation, donation interval extension or GP referral in the case of abnormal history remained at the physician and donor's discretion.Our donor population consisted of 10'893 males and 12'664 females, 8165 being women of childbearing age (age 18–45). Mean hemoglobin concentration of male donors rose from 151.7 g/L (before 2004) to 153.6 g/L after 2004 (difference 1.9 g/L, 95% CI 1.7 – 1.9 g/L). In women of all ages, the mean hemoglobin concentration increased from 135.7 to 138.3 g/L (difference 2.6 g/L, 95% CI 2.4 – 2.7 g/L) (Figure 1). The hemoglobin concentration of women of childbearing age was 134.2 g/L before 2004 and 137.0 g/L thereafter (difference 2.8 g/L, 95% CI 2.6 – 3.0 g/L). To rule out an alternative cause for the increase in hemoglobin, we assessed the evolution of hemoglobin levels in the periods of 1996–2003 and 2004–2009. In the former period, hemoglobin levels decreased at a mean rate of 0.22 g/L (95% CI -0.19 - -0.26 g/L) per year in male donors, whereas no significant change was seen in female donors (mean change 0.04 g/L, 95% CI -0.01 – 0.09 g/L). In the second period (2004 – 2009), mean hemoglobin levels increased in both male (mean increase per year 0.20 g/L, 95% CI 0.14 – 0.25 g/L) and female donors (mean increase per year 0.16 g/L, 95% CI 0.09 – 0.23 g/L). Before the introduction of routine ferritin measuring, 1.6% (95% CI 1.5 – 1.7%) of donors showed anemia according to WHO definitions (m: Hb<130; f: Hb<120). Anemia occurred in 1.1% of our donors after 2004 (95% CI 1.0 – 1.2%, difference before/after 2004 0.5%, 95% CI -0.6 – -0.3%). Frequency of anemia declined in both male donors (before 2004 0.7%, after 2004 0.5%) and in female donors (before 2004 3.6%, after 2004 2.2%). In the group of women of childbearing age, 4.9% (95% CI 4.6 – 5.3%) were anemic before and 3.1% (95% CI 2.7– 3.4%) after 2004 (difference before/after 2004 -1.8%, 95% CI -1.4 – -2.4%). In all visits to our center before 2004, 2.8% of donors (95% CI 2.7 – 2.9%) were not accepted for phlebotomy due to a hemoglobin count below the mandatory threshold. After 2004, the percentage of rejected donors due to a low hemoglobin count decreased to 1.9% (95% CI 1.8 – 2.0%, difference before/after 2004 -0.9%, 95% CI -0.7 – -1.0%). In particular in the group of women in childbearing age a clear reduction of the rejection rates was noted (before 2004: 7.6% CI 7.2 – 8.1%, thereafter: 4.8% CI 4.4 – 5.2%, difference before/after 2004 -2.8%, 95% CI -2.2 – -3.4%). In conclusion, the introduction of systematic serum ferritin measurements allowed an optimized management of donors with iron deficiency, with efficacious prevention of iron deficiency anemia. This resulted in an increase of mean hemoglobin levels in blood donors particularly in women of childbearing age, the population at highest risk for iron deficiency anemia. Both the incidence of pre-donation anemia and the frequency of donors rejected due to low hemoglobin decreased significantly. Disclosures: No relevant conflicts of interest to declare.


2018 ◽  
Vol 3 (1) ◽  
pp. 17 ◽  
Author(s):  
Usman Waheed ◽  
Muhammad Arshad ◽  
Sadia Sultan ◽  
Muhammad Saeed ◽  
Abida Arshad ◽  
...  

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