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1 change in iron status (serum ferritin, total iron binding capacity).
2 ng women with higher concentrations of total-iron-binding capacity.
3 nsferrin level (1.77 +/- 0.08 g/L) and total iron-binding capacity (46.2 +/- 2.0 microM) were signifi
4 ), changes in serum ferritin level and total iron-binding capacity, adverse effects.
5                                          The iron-binding capacities and relaxivities of the differen
6                        The decrease in total-iron-binding capacity and increase in transferrin satura
7 arameters (serum iron, serum ferritin, total iron-binding capacity and transferrin saturation), serum
8 in secondary structure, DNA binding ability, iron binding capacity, and the ability to form higher-or
9 combined analyses of studies involving total iron-binding capacity (combined risk ratio, 1.0; 95% CI,
10                                   Mean total iron-binding capacity decreased from 501 to 389 mug/dL (
11             Interestingly, the difference of iron binding capacity disappeared after denaturation of
12 hange from baseline of serum ferritin, total-iron-binding capacity, erythrocyte protoporphyrin, or he
13           Resistive training decreased total-iron-binding capacity from 38.4 +/- 9.3 to 27.3 +/- 5.6
14 g, serum ferritin level >15 ng/mL, and total iron-binding capacity <425 mug/dL at the 12-week visit),
15                               Increasing the iron binding capacity of the milk by 340 microM by targe
16 pendent transport system, which exploits the iron-binding capacity of citrate and its natural abundan
17 ence time did not affect the carbon specific iron-binding capacity of the humic substances which was
18                 Reflecting the difference of iron binding capacity, oxidation of rRNA by the Fenton r
19 ve group 58.3+/-16.2%, P=0.05; minimum total iron-binding capacity: restrictive group 0.59+/-0.21%, n
20 itin, transferrin saturation (SAT) and total iron binding capacity (TIBC) in 2347 AAs participating i
21 -wide association study of serum iron, total iron binding capacity (TIBC), transferrin saturation, an
22 iron (p<0.01) and no changes in plasma total iron binding capacity (TIBC).
23 decrease (P < 0.05) in serum ferritin, total-iron-binding capacity, transferrin saturation, the ratio
24 n (serum iron concentration divided by total iron binding capacity) was used as a measure of the amou

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