• Title/Summary/Keyword: Serum iron

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The Nutritional Status of Iron, Magnesium and the Effects of Iron Supplementation on Serum Iron and Magnesium Concentrations of Pregnant Korean Women (임신부의 일상 식이 중 철, 마그네슘 영양상태와 철 보충제의 복용이 혈청 철, 마그네슘의 함량에 미치는 영향)

    • Journal of the East Asian Society of Dietary Life
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    • v.10 no.6
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    • pp.495-506
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    • 2000
  • The purpose of this study was to assess the nutritional status of iron and magnesium and the effect of von supplementation during 8 weeks(from 20 to 28 weeks of gestation) on serum iron and magnesium status of 31 pregnant women in Kyunsin area. The age, weight, and height of the subjects before pregnancy were investigated by questionnaires. At 20 and 28 weeks of gestation, data for food and nutrient intake were obtained by questionnaires and serum sample was obtained. According to the frequency of iron supplementation, subjects were divided into two groups(4$\geq$/wk) The mean iron supplementation of 5 $\geq$/wk group(63.mg/day) was significantly higher than 4$_2$ intakes were much less than the Korean RDA. Especially, calcium, iron and magnesium intakes showed half the levels compared with Korean RDA. At 28 weeks of gestation the serum total protein(p<0.001), albumin(p<0.01) and globulin(p<0.001) were significantly decreased. Total iron binding capacity(TIBC) was significantly increased(P<0.001), but serum ferritin(p<0.01) and magnesium(p<0.01) concentrations were significantly decreased. However, even 28 weeks of gestation 5$\geq$/wk group showed higher serum iron and ferritin concentration and lower TIBC than 4$\geq$/wk group. Therefore, iron supplementation should be conducted with concerning the mineral balance like magnesium.

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Effects of Dietary Zinc and Iron Levels on Serum Trace Minerals and Obesity Index in High Fat Diet-Induced Obese Rats (고지방 식이를 섭취한 흰쥐의 비만지수 및 식이 아연과 철분 수준에 따른 혈청 미량무기질 함량 변화)

  • 김현숙;승정자
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.30 no.2
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    • pp.325-330
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    • 2001
  • The purpose of this study was to evaluate the obesity index and effect of dietary zinc and iron levels on serum trace minerals status in the high fat diet-induced obese rats. Male Sprague-Dawley rats were randomly assigned to control and high fat diet groups. Ten weeks later, the control and high fat diet group were rearranged into six groups by zinc and iron levels. After 16 wk serum zinc, iron, copper and manganese was analyzed. Obesity index was significantly higher in the group fed high fat diet (20% lard) than that of control group (5% corn oil). Body fat content was 12.10$\pm$4.51g/100g BW in high fat diet group and 7.64$\pm$4.18g/100g BW in control group. So, the obese rats were successfully induced by high fat diet. The trace mineral concentration of obese rats in serum were affected by zinc levels. Serum zinc concentration was increased by dietary zinc overload, whereas the iron, copper and manganese were decreased. Specially the manganese concentration was significantly affected by zinc levels. In both groups, serum trace mineral concentration was not changed significantly by the dietary iron levels. There were positive correlations between zinc, iron and manganese concentration according to dietary zinc and iron levels.

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Study on Renal Anemia - A Double Tracer Study on Iron Metabolism and Red Cell Life Span in Chronic Renal Diseases using Radioactive Iron ($^{59}Fe$) and Chromium($^{51}Cr$) - (신성빈혈(腎性貧血)에 관(關)한 연구(硏究) - 만성신질환(慢性腎疾患)의 철대사(鐵代謝) 및 적혈구수명(赤血球壽命)에 관(關)하여 -)

  • Jung, Kyung-Tae;Lee, Mun-Ho
    • The Korean Journal of Nuclear Medicine
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    • v.2 no.1
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    • pp.27-41
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    • 1968
  • The ferrokinetics and red cell life spans of the patients with chronic glomerulonephritis were investigated by the double tracing method using radioactive iron ($^{59}Fe$) and chromium ($^{51}Cr$). According to the serum NPN levels, the patients were subdivided into 3 groups: Group 1. 6 patients, had the levels below 40 mg/dl Group 2. 6 patients, had the levels between 41 mg/dl to 80 mg/dl Group 3. 10 patients, had the levels above 80 mg/dl The results were as follows: 1) Red blood cell-, hematocrit- and hemoglobin values were moderately reduced in patients with normal serum NPN levels, while markedly reduced in patients with elevated serum NPN levels. 2) The plasma volume was increased, while the red cell volume was decreased in patients with elevated serum NPN levels, hence, total blood volume was unchanged. 3) The serum iron level was slightly reduced h patients of groups 1 and 2, while was within the normal ranges in patients of group 3. 4) i) In patients with normal serum NPN levels, the plasma iron disappearance rate, red cell iron utilization rate, red cell iron turnover rate, daily red cell iron renewal rate, circulating red cell iron and red cell iron concentration were within the normal ranges, while the plasma iron turnover rate was slightly reduced. ii) In patients with elevated serum NPN levels, the plasma iron disappearance rate was delayed, while the plasma iron turnover rate was within the normal ranges. The red cell iron utilization rate, red cell iron turnover rate and circulating red cell iron were decreased and the period in which the red cell iron utilization rate reachd its peak was delayed in Group 3 patients. The daily red cell iron renewal rate and the red cell iron concentration were unchanged. iii) The mean red cell life span was within the normal ranges in patients with normal serum NPN levels, while was shortened in patients with elevated serum NPN levels.

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Physical Performance in Young Women with Depleted Iron Stoles (젊은 여성의 철분저장 고갈상태와 운동수행능력)

  • 정영진;정명일;정종귀
    • Journal of Nutrition and Health
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    • v.35 no.2
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    • pp.223-228
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    • 2002
  • The purpose of this study was to investigate the relationship between iron deficiency without anemia and physical performance in healthy women aged 20-21 yrs. Ten subjects with normal iron stores (serum ferritin $\geq$ 12$\mu\textrm{g}$/L: iron-sufficient group) and 11 subjects with iron depletion without anemia (serum ferritin < 12 $\mu\textrm{g}$/L and serum hemoglobin > 120 g/L: iron-depleted group) were chosen from a group of 50 women and were given physical-performance tests, including determinations of maximum oxygen consumption (VO$_2$ max) and ventilatory threshold. Iron status assessment included determination of hemoglobin, hematocrit, seam ferritin, total iron-binding rapacity, serum iron and transferrin saturation values. Dietary iron intake was assessed based on seven-day food intake records written by the subjects. Physical activity level was estimated by frequency questionnaires and two-week physical activity records were compiled daily by the subjects. Blood ferritin concentration was significantly lower in the iron-depleted group than in the iron-sufficient group (p < 0.05). However, other variables showing iron status was not different between the groups. There were no significant differences in body size, body composition and physical activity levels between the groups. Daily dietary iron, total protein and animal protein intakes of the iron-sufficient group were significantly higher than those of the iron depleted group. However, no differences were found in the amount of dietary vitamin C and fiber between the groups. The values for VO$_2$max and VO$_2$max corrected with weight or fat-free mass were not different between the groups. However, the ventilatory threshold was significantly higher in the iron sufficient group than in the iron-depleted group. The lower ventilatory threshold in the iron-depleted group suggests that iron depletion without anemia could diminish aerobic physical performance in young women. In addition, a significant correlation of physical performance to serum fferritin level was shown only in the iron depleted group.

Interaction between Iron and Vitamin A in Broilers

  • Zhang, Chunshan;Jiang, Junfang;Suo, Landi;Wei, Jianmin
    • Asian-Australasian Journal of Animal Sciences
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    • v.16 no.4
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    • pp.558-564
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    • 2003
  • A $3{\times}3$ (Fe$\times$VA) experiment with repeats was designed to study the interaction between iron and vitamin A in broilers. 504 broilers were divided into 9 groups (50% males, 50% femals), each group with 4 repeats. Iron supplemental amount was 0, 30 and 60 mg/kg; Vitamin A supplemental amount was 750, 1,500 and 2,700 IU/kg. Iron concentration in liver, serum, tibia and duodenum and vitamin A concentration in liver and serum were measured, and erythrocyte count was also observed. Results showed with the increase of dietary supplemental iron levels, vitamin A concentration in liver significantly decreased lineally (p<0.05) (0.861, 0.671, 0.639 mg/100 g at the end of 4th week; 0.900, 0.765, 0.739 mg/100 g at the end of 7th week), and vitamin A concentration in serum significantly increased lineally (p<0.05) (82.725, 97.842, $109.475{\mu}g/100mL$ at the end of 4th week; 62.288, 91.900, $95.117{\mu}g/100mL$ at the end of 7th week), meaning iron could promote the mobilization of vitamin A from liver to serum. With the increase of dietary supplemental vitamin A levels, liver iron concentration decreased and serum iron concentration increased, vitamin A could promote the mobilization of iron from liver to blood. Iron concentration in Duodenum and tibia and erythrocyte count increased significantly with higher dietary vitamin A supplementation (p<0.01), vitamin A could promote iron absorption, iron mobilization from liver to target tissues and erythropoiesis. Effects of the interaction between iron and vitamin A on vitamin A concentrations in liver and serum, iron concentration in tibia and erythrocyte count were significant (p<0.05).

The Effect of Iron Supplementation on the Hematological Iron Status and Pb and CD Levels in Erythrocyte, Hair and Urine of Subjects With Suboptimal Iron Status (철분의 구강투여가 철분부족 아동의 혈중철분지표 및 적혈구, 소변, 머리카락의 납 과 카드뮴 수준변화에 미치는 영향)

  • 손숙미;정혜영
    • Journal of Nutrition and Health
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    • v.31 no.7
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    • pp.1165-1173
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    • 1998
  • The effect of oral iron supplementation was assessed on blood iron levels and Pb and Cd levels in erythrocytes, hair and urine of 101 Puchon 5th grade school children with suboptimal iron status. Treatment with 25mg of elemental iron per day for 8weeks resulted in a significant increase in the intake of most nutrients in addition to iron. Iron supplementation resulted in significant improvements in hemoglobin, MU, MCH, MCHC, serum ferritin, serum iron, TIBC, and transferrin saturation of subjects(p<0.05 - p<0.01) and cocomitantly lowered Pb and Cd levels in erythrocytes, hair, and urine(p<0.01). Regression analysis showed that only iron intake contributed to significant increases in hemoglobin and serum ferritin. It seems that 25mg of iron supplementation is safe and adequate to improve iron status in school children with suboptimal iron status and it also has the benefit of alleviating Pb and Cd status. (Korean J Nutrition 31(7) : 1165-1173, 1998)

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Relationship between Serum pro-hepcidin Concentration and Body Iron Status in Female College Students (여대생에서 혈청 pro-hepcidin 농도와 철분 영양 상태와의 관계)

  • Chung, Ja-Yong
    • Journal of Nutrition and Health
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    • v.38 no.9
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    • pp.750-755
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    • 2005
  • Hepcidin, a peptide hormone synthesized mainly by the liver, has been implicated as a key regulator of iron homeostasis. Results from studies with experimental animal models suggested that hepcidin levels are related with body iron status, but little data is available in human subjects. This study was conducted to determine the relationship between serum pro-hepcidin levels, blood indexes of anemia, and dietary iron intake in female college students. Serum pro-hepcidin concentrations were measured by enzyme-linked immunosorbent assay in eighty-two women with $22.1\pm0.2$ years old. Dietary intake data were collected by using the 24-hour recall method for 3 days. Mean concentrations of serum pro-hepcidin were 85.1 ng/ml$\pm$6.1(s.d.) with the range of 13.6-295.7 ng/ml. The median value of serum pro-hepcidin in the study subjects was 70.3 ng/ml. Serum pro-hepcidin concentrations were positively correlated with hemoglobin concentrations (r=0.273, p=0.013), and also with hematocrit (r=0.291, p=0.008). To examine whether the level of dietary iron intake affects serum pro-hepcidin levels, study subjects were divided into two groups according to the amounts of daily iron intake. Serum pro-hepcidin concentrations were $22\%$ lower in groups with low iron intake (${\leq}10.1$ mg/day), compared to high-iron intake group (>10.1 mg/day) . In conclusion, these data, as in agreement with findings in mice, suggest that hepcidin plays an important role in regulating iron metabolism in the human body.

Serum Folate and Iron Levels of Pregnant, Lactating, and Non-Pregnant, Non-Lactating Women (임신부, 수유부의 혈청 엽산과 철 수준에 관한 연구)

  • 장남수
    • Journal of Nutrition and Health
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    • v.26 no.1
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    • pp.67-75
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    • 1993
  • Folate and iron nutrition was studied in a total of 122 pregnant, lactaging, and non-pregant, non-lactating Korean women, Serum folate levels were determined microbiologically using Lactobacillus casei(ATCC 7469), and serum iron levels was analyzed colormetrically. The average folate values of pregnant and lactating women were 5.42ng/ml and 4.14ng/ml, which were significantly lower than that of the non-pregnant, non-lactating women(7.06ng/ml). More than 1/3 of the total subjects were found to have serum folate levels lower than 3ng/ml, at which folate nutrition status can be considered inadequate. Serum iron values of pregnant(96.9ug/dl)and lactating women(93.9ug/dl) were not significantly different from that of the non-pregnant, non-lactating women (97.1ug/dl). There were however, more iron-deficient subjects in the pregnant gorup(17%) and the lactating group(19%) than in the non-pregnant, non-lactating group (8%). A statistically significant positive correlation was shown between the levels of serum folate and iron in lactating women(r=.9694, p<0.05). The results of our study document that folate deficiency is a nutritional problem as prevalent as iron deficiency in Korean women, especially during pregnancy and lactation. For these women a routine folate and iron supplementation might be necessary.

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The Effects of Iron Supplements and Cereal Intake on the Iron Nutritional Status in Children in Social Welfare Institutions (액상철분제제 및 시리얼보충이 사회복지시설 아동의 철분영양상태에 미친 영향 비교)

  • Chang, Young-Eun;Chung, Hae-Kyung
    • Journal of Nutrition and Health
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    • v.40 no.4
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    • pp.362-370
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    • 2007
  • The study was designed to assess the effect of iron and cereal supplementation on children's iron nutritional status in social welfare institutions. Dietary survey was carried out methods of food weighing and record by interview (n=74). A nutritional intervention study was carried out through supplementing iron supplements and cereal for 4 weeks in 4-12 years old children. Children received daily 40 mg elemental Fe as iron protein succinylate (n=23) and 3.6 mg elemental Fe as 100 g cereal (n=24), respectively. Blood samples were drawn before and after supplementation. Nutrients which children's intake was less than two-thirds of the RDA were vitamin A, vitamin B-1, vitamin B-2, calcium and iron. The mean daily intake of iron was 5.1 mg for male and 4.9 mg for female, and 52.3% for male and 45.4% for female of Korean RDA. The proportion of children with iron depletion assessed by TIBC (> 360 ${\mu}g$/dl) and serum ferritin (< 20 ng/ml) were 56.6% and 58.7%, respectively. The proportion of children with the iron deficient erythropoiesis assessed by serum iron (< 70 ${\mu}g$/dl), Hb (< 12 g/dl), Hct (< 36%) were 76.0%, 58.7%, 64.0%, respectively. After iron supplements treatment, Hb (p<0.001), Hct(p<0.001), serum iron (p<0.001), transferrin saturation (p<0.001) and serum ferritin (p<0.Ol) increase significantly and only TIBC decreased slightly. After cereal supplementation, in anemic children, Hct (p<0.001), serum iron (p<0.001) and transferrin saturation (p<0.001) were significantly increased. The effect of iron supplements and cereal supplementation in children with iron deficient erythropoiesis were more effective to improve the iron nutritional status than children with iron depletion. It was concluded that cereal supplementation program in anemic children was also effective to improve iron nutritional status.

A Cross-sectional Study of Biochemical Analysis and Assessment of Iron Deficiency by Gestational Age(II) (임신 시기별 생화학적 철분 분석 및 철분 결핍상태에 대한 횡적 조사 연구(II))

  • 유경희
    • Journal of Nutrition and Health
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    • v.32 no.8
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    • pp.887-896
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    • 1999
  • The purpose of this research is to assess hematological and biochemical status and the prevalence of iron deficiency of pregnant women by gestational age to provide the primary data about iron nutritional status of pregnant women. Pregnant women visiting public health centers in Ulsan participated in study and were divided into 3 trimester by last menstrual period(LMP). Hemoglobin (Hgb), hematocrit(Hct)and mean corpuscular volume(MCV) among iron status indices were not statistically different from normal distribution, however total iron binding capacity(TIBC) and serum ferritin were skewed to left and serum iron and transferrin saturation(TS) were skewed to right. Hgb was positively correlated with Hct(r=0.93, p<0.001) but TIBC was negatively correlated with all indices. Serum ferritin was also correlated with all indices, especially in 3rd trimester but not reached to 1st trimester level. Mean corpuscular hemoglobin(MCH), mean corpuscular hemoglobin concentration(MCHC), Red cell distribution width(RDW), serum iron and TS were not significantly different by trimester, however when serum serum iron was adjusted with hematocrit to correct the hemodilution, it significantly decreased in 2nd trimester. MCV increased in 2nd trimester and was maintained until late pregnancy, TIBC continued to increase throughout the trimester. The prevalence of anemic by CDC(Centers for Disease Control) Hgb criteria(Hgb <11.0g/dl in 1st and 3nd trimester, Hgb<10.5g/dl in 2nd trimester) was 2.8% in 1st trimester, 22.5% in 2nd trimester, 27.1% in 3rd trimester and was similar with prevalence by CDC Hct criteria(Hct < 33% in 1st and 3rd, Hct < 32% in 2nd). The prevalence of anemic of total subjects was 32.7% by WHO criteria(Hgb < 11.0g/dl). Although almost iron status indices increased in 3rd trimester, the prevalence of anemia by different criteria of all indices increased throughout the trimester, so iron nutritional status was considered as serious during late pregnancy. However, since factors other than iron deficiency, such as infection, infection, inflammation, other nutrient deficiency may also play a significant role, to differentiate the anemia due to mainly iron deficiency from the anemia due to other factors, serum ferritin is among the more useful indices in distinguishing the two conditions because it is depressed only in iron deficiency. Hgb<11.0g/dl and serum ferritin<12.0ug/L as the criteria of iron deficiency was suggested by CDC. 17.8% of all subjects were classified as iron deficient anemia, 14.9% as anemic from other reasons, 21.2% as iron deficiency any only 46.2% were in normal iron status.

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