• Title/Summary/Keyword: iron level

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The role of Lactobacillus reuteri DSM 17938 for the absorption of iron preparations in children with iron deficiency anemia

  • Manoppo, Jeanette;Tasiringan, Hilda;Wahani, Audrey;Umboh, Adrian;Mantik, Max
    • Clinical and Experimental Pediatrics
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    • v.62 no.5
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    • pp.173-178
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    • 2019
  • Purpose: To determine whether Lactobacillus reuteri DSM 17938 plays a role in absorption of iron preparations given to children with iron deficiency anemia (IDA). Methods: We performed a quasi-experimental study involving pre- and postintervention tests using a control group in North Sulawesi province, Indonesia, between July and September 2017. We conducted a single-blind controlled trial that included primary school children who were diagnosed with IDA based on reticulocyte hemoglobin equivalent (Ret-He) levels <27.8 pg/L. Results: A total of 66 children were randomized into 2 groups. Thirty-four children received iron preparations with the addition of L. reuteri DSM 17938 (group 1), whereas the other 32 received iron preparations alone (group 2). The baseline Ret-He levels before intervention were similar in both groups. After 14 days of intervention, mean Ret-He level in group 1 changed from $24.43{\pm}1.64$ to $28.21{\pm}1.72pg/L$ (P=0.000). Mean Ret-He level in group 2 changed from $24.31{\pm}1.42$ to $27.03{\pm}2.14pg/L$ (P=0.000). Statistical analysis showed a significant increase in Ret-He levels in both groups; Ret-He levels were significantly higher in the experimental group than in the control group (P<0.05). Conclusion: Children with IDA receiving iron preparations with L. reuteri DSM 17938 for 14 days show higher Ret-He levels than those receiving iron preparations alone.

The Effect of Level and Period of Fe-methionine Chelate Supplementation on the Iron Content of Boiler Meat

  • Seo, S.H.;Lee, H.K.;Lee, W.S.;Shin, K.S.;Paik, I.K.
    • Asian-Australasian Journal of Animal Sciences
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    • v.21 no.10
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    • pp.1501-1505
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    • 2008
  • A broiler experiment was conducted to compare the effects of duration and level of iron-methionine chelate (Fe-Met) supplementation on the iron, copper (Cu) and zinc (Zn) content of broiler meat. Two hundred and fifty hatched Ross broiler chickens were randomly assigned to 5 dietary treatments. Each treatment had 5 replicates of 10 birds (5 males and 5 females) each. Birds were housed in raised floor batteries and fed traditional broiler diets ad libitum for 5 weeks. Dietary treatments were as follows: Control and two levels of Fe-Met (100 or 200 ppm in Fe) supplemented for either the whole period (0-5 wk) or grower period (4-5 wk). Production performance was not significantly affected by treatments. Iron content in the muscles (breast, leg and wing) and organs (liver and spleen) were significantly (p<0.05) increased as the level and duration of Fe-Met supplementation increased. The highest concentration of iron was shown in Fe-Met 200 fed for the whole period. Liver contained the highest amount of iron followed by spleen, leg muscle, wing muscle and breast muscle. Supplementation of Fe-Met 200 for the grower period resulted in higher iron concentration in liver and spleen than supplementation of Fe-Met 100 for the whole period. However, the same treatment resulted in lower iron concentration in muscles (breast, leg and wing) than the treatment of Fe-Met 100 for the whole period. In order to achieve the highest iron enrichment in the muscles, Fe-Met should be supplemented at 200 ppm in Fe for the whole period (5 wks). Fe-Met supplementation increased copper concentration in all muscles and organs except wing muscle. Zinc concentration decreased in breast and wing muscle but tended to increase in leg muscle, liver and spleen by Fe-Met 200 supplementation. Color of muscle was not significantly affected by Fe-Met treatments. However, redness of leg and breast muscle, and yellowness of leg and breast muscle tended to increase by supplementation of Fe-Met for the whole period. It was concluded that iron content of broiler meat can be effectively enriched by supplementation of 200 ppm of Fe as Fe-Met for 5 wks.

Candida albicans Can Utilize Siderophore during Candidastasis Caused by Apotransferrin

  • Lee Jue-Hee;Han Yong-Moon
    • Archives of Pharmacal Research
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    • v.29 no.3
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    • pp.249-255
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    • 2006
  • Ability of iron acquisition of pathogenic microorganisms functions as a virulence factor. Candida albicans, a fungal pathogen that requires iron for growth, is susceptible to growth retardation by high-affinity iron binding proteins such as transferrin. Recently, we reported that C. albicans could utilize the heme as a part of heme-containing proteins dissociated by heme oxygenase, CaHMX1. In search of another pathway that C. albicans can use to bypass the growth regulation produced by iron limitation, this present study examined utilization of non-candidal siderophores such as Desferal and rhodotorulic acid (RA) for acquisition of inorganic iron by the fungus. C. albicans secreting no siderophores was cultured in iron-free (pretreated with apotransferrin for 24 h) (culture medium). Once growth of the yeast reached stasis from iron starvation, a siderophore was added to the culture media. Results showed that cultures containing apotransferrin within a dialysis membrane recovered growth to the level of untreated controls, whereas C. albicans yeast cells in direct contact with soluble iron-free (apo) transferrin recovered growth only partially. When static growth from iron limitation was reached, the addition of siderophore-apotransferrin complex to culture medium also permitted the yeast to recover growth from apotransferrin growth regulation. All the data show that C. albicans can utilize the non-candidal siderophores for iron acquisition under transferrin regulation as can pathogenic bacteria.

Incidence of Iron Deficiency Anemia in Day Scholar University Girls as Affected by Socioeconomic Status

  • Batool, Nayab;Nagra, Saeed Ahmad;Shafiq, Muhammad Imtiaz
    • Nutritional Sciences
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    • v.7 no.4
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    • pp.218-222
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    • 2004
  • Iron deficiency anemia (IDA) is the world's most common nutritional problem. It is characterized by a low hemoglobin (Hb) level and low iron status. A study was conducted to investigate the incidence of iron deficiency anemia in day scholar girls belonging to different socioeconomic strata at Punjab University, Lahore. Iron status of the subjects was estimated by measuring Hb, hematocrit (Hct), red blood cell (RBC) count, mean corpuscular volume (MCV), mean corpuscular hemoglobin (MCR), serum iron, serum ferritin, total protein and albumin. Results indicated that females belonging to low socioeconomic strata had lower values for Hb, Hct, RBC count, total protein and albumin. Serum iron, serum ferritin, MCV and MCH values fell within the normal range for all of the socioeconomic groups. However, serum iron and ferritin varied with socioeconomic status and higher-income groups had significantly higher serum iron and ferritin. It was concluded that anemia may develop due to poor intake and absorption of iron and that those in the low-income bracket are the most affected group.

The Effect of Dietary Supplementation of Fe-methionine Chelate and FeSO4 on the Iron Content of Broiler Meat

  • Seo, S.H.;Lee, H.K.;Ahn, H.J.;Paik, I.K.
    • Asian-Australasian Journal of Animal Sciences
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    • v.21 no.1
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    • pp.103-106
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    • 2008
  • A broiler experiment was conducted to compare the effects of supplementary iron sources and levels on the iron content of broiler meat. Two hundred and fifty hatched Ross broiler chickens were randomly assigned to 5 dietary treatments. Each treatment had 5 replicates of 10 birds (5 males and 5 females). Birds were housed in raised floor batteries and fed traditional broiler diets ad libitum for 5 weeks. Dietary treatments were as follows: Control, Fe-Met 100 (100 ppm iron as Fe-methionine), Fe-Met 200, $FeSO_4$ 100 (100 ppm iron as $FeSO_4{\cdot}7H_2O$) and $FeSO_4\;200$. There were no significant differences among treatments in parameters related to production performance. Liver contained approximately 10 times more iron than the leg muscle which contained approximately 3 times more iron than either breast muscle or wing muscle. Significant differences in iron content in the broiler meat were observed. In the breast meat, Fe-Met treatments were significantly (p<0.05) higher than other treatments in iron content. In the leg meat, Fe-Met treatments and $FeSO_4\;200$ treatment were significantly higher than the control in iron content. In the wing muscle, Fe-Met 200 treatment was significantly higher than other treatments in iron content. Iron content in the liver was significantly influenced by source and supplementation level of iron. Fe-Met treatments were higher than $FeSO_4$ treatments and 200 ppm treatments were higher than 100 ppm treatments in iron content in the liver. It is concluded that iron-methionine chelate is more efficient than iron sulfate and 200 ppm iron supplementation as Fe-Met is recommended for maximum iron enrichment in broiler meat.

Iron Nutritional Status of Infants and Young Children in the Seoul Area

  • Um, Sung-Sin;Ahn, Hong-Seok;Kim, Soon-Ki;Ha, Jung-Hun
    • Journal of Community Nutrition
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    • v.4 no.1
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    • pp.3-11
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    • 2002
  • The purpose of this study is to evaluate the iron nutritional status by investigating dietary intake and analyzing the hematological iron status indices including serum transferrin receptor (sTfR) in 8 to 28 month old infants md young children taking supplementary foods. The nutrient intake of 60 healthy infants and young children from 8 to 24 months of age was investigated by means of a 24-hour recall method, and the subjects were divided into 2 groups (8- 12 months and 13-28 months) according to age. Venous blood samples from these groups were collected and measured for the following : hemoglobin(Hb), hematocrit(Hct) , mean corpuscular volume (MCV), mean corpuscular hemoglobin, mean corpuscular hemoglobin concentration (MCHC), serum ferritin, serum iron, total iron binding capacity (TIBC), and sTfR. Anemia is defined as hemoglobin < 11g /dl , serum ferritin level < 10ng1m1 for iron deficiency , serum transferring receptor(sTfR) > 4.5mg / 1 for iron deficient erythropoiesis. Total daily calorie intake was 934.6 ${\pm}$ 284.5kcal (98.32% of RDA) on average. Average daily iron intake in infants aged 8 to 12 months was 8.92 ${\pm}$ 3.32mg. The mean daily iron intake in infants aged 13 to 28 months was 7.15 ${\pm}$ 3.35mg (90% of Recommended Dietary Allowance, RDA). Mean values for Hb, Hct sew ferritin and sTfR were 12.10 ${\pm}$ 0.77g141,36.02 ${\pm}$ 2.31%,20.91 ${\pm}$ 11.58ng/m1 and 3.78 ${\pm}$ 1.47mg /1, respectively. In the young children from 13 to 28 months of age, the prevalence of anemia was 5.6%. The prevalence of iron deficiency was 9.5% in those from 8 to 12 months of age, and 27.8% in those from 13 to 28 months of age. The prevalence of iron deficient erythropoiesis was 16.7% in infants aged 8 to 12 months and 44.4% in those aged 13 to 28 months. The prevalence of both serum ferritin level < 10ng/m1 sTfR > 4.5mg/1 was 22% in the young children aged 13 to 28 months. The measureand ment of sTfR may be a promising new tool in diagnosis of iron deficiency in early childhood when the iron deficiency is prevalent. It seems appropriate to emphasize nutritional education and evaluation to promote the iron nutritional status of infants and young children.

Gene Expression and Regulation of Wax Moth Transferrin by PAMPs and Heavy Metals

  • Han, Jik-Hyon;Lee, Ji-Sook;Lee, Chang-Seok;Koh, Sang-Kyun;Seo, Sook-Jae;Yun, Chi-Young
    • Animal cells and systems
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    • v.13 no.3
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    • pp.297-304
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    • 2009
  • A complete mRNA sequence of transferrin from the wax moth, Galleria mellonella, was obtained, and compared with those of other species. We previously reported that the sequence was most similar to those of Manduca sexta and Bombyx mori. As in other moths, G. mellonella transferrin had only one iron-binding site at its N-terminal region. Semi-qRT PCR was conducted to investigate tissue-specific distribution and transcriptional regulation of the wax moth transferrin mRNA. Larval muscle and fat body contained larger quantity of mRNA than other tested tissues. In this study, it was observed that iron and cadmium regulated transferrin transcription, and this regulation pattern was tissue specific. Iron up-regulated transferrin mRNA level in fat body, while suppressed it in the Malpighian tubules and silk glands. Cadmium decreased the mRNA level in fat body, muscle, and Malpighian tubules, but significantly increased the mRNA level in silk glands. In addition, the mRNA expression was induced by all tested pathogen-associated molecular patterns (PAMPs) including LPS, lipoteichoic acid (LTA), glucan, and even chitin.

A Study on Nutritional Characteristics of Common Korean Dietary Fiber Rich Foods (한국인 상용 식이섬유 급원 식품의 영양 생리적 특성)

  • 이선영;오현인
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.27 no.2
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    • pp.296-304
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    • 1998
  • The effects of common Korean dietary fiber-rich foods(dried sea mustard, Lentinus edodes and Korean radish leaves) on total gut transit time of diet, serum cholesterol level and mineral apparent absorption ration and tissue level were investigated. Twenty eight male were divided into 4 groups and were fed a control diet(containing 2% cellulose) and three fiber supplementary diet mixed with 10% of the above dietary fiber rich foods for 4 weeks, respectively. Body weight gain and food efficiency ration were not affected by the supplementary diet of fiber but the total gut transit time of diet was shortened in all dietary fiber groups. The Lentinus edodes reduced significantly serum total cholesterol and increased the HDL-cholesterol/total cholesterol ratio at 4th week without and effect on calcium and iron apparent absorptions and tissue levels of the minerals. Radish leaves decreased significantly iron apparent absorption ration with a tendency to increase iron retention in spleen and did not alter serum cholesterol level. Serum cholesterol concentration and calcium and iron apparent absorptions were not significantly altered by the ingestion of sea mustard, while it had more soluble dietary fiber than mushroom and radish leaves.

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Influence of Collagen and TGF-$\beta$I Gene Expression and Hepatic Fibrogenesis by Iron Overload in Rat (철 과잉투여가 흰쥐의 Hepatic Fibrogenesis와 Collagen 및 TGF-$\beta$I 유전자 발현에 미치는 영향)

  • 양영목;박종환;이현영;정연희;김해영
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.30 no.2
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    • pp.307-313
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    • 2001
  • Iron excess is known to affect long-term iron accumulation and tissue change such as fibrosis in liver. To determine the changes of expression level of genes associated with fibrosis by short-term iron exposure, we measured liver mRNA levels by reverse transcription polymerase chain reaction (RT-PCR) in rats fed dietary carbonyl iron (3%, wt/wt) for 9 weeks. The results showed that the expression of the collagen (I, III) and transforming growth factor (TGF)-$\beta$I mRNAs was enhanced in high-dose iron treated rat, compared to normal-dose iron treated rat. An electron microscopy study revealed that excess iron caused increase of collagen fibrils in liver. The cell shapes and compositions of hepatocytes and extracellular matrix(ECM) in liver were changed by the iron-treatment. Also, necrosised hepatocytes were broadly seen in ECM. Taken together, we suggest that iron overload affects changes of collagen and TGF-$\beta$I gene expression and these changes are associated with liver fibrogenesis.

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Iron status in small for gestational age and appropriate for gestational age infants at birth

  • Kim, Hyeon A;Park, Sook-Hyun;Lee, Eun Joo
    • Clinical and Experimental Pediatrics
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    • v.62 no.3
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    • pp.102-107
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    • 2019
  • Purpose: This study compared the iron statuses of small for gestational age (SGA) and appropriate for gestational age (AGA) infants at birth. Methods: The clinical data of 904 newborn infants admitted to the neonatal intensive care unit were reviewed. Blood samples were drawn from the infants within 24 hours after birth. Serum ferritin level was used as a marker of total iron status. Results: In this study, 115 SGA (GA, $36.5{\pm}2.9weeks$; birth weight [BW], $1,975{\pm}594.5g$) and 717 AGA (GA, $35.1{\pm}3.5weeks$; BW, $2,420.3{\pm}768.7g$) infants were included. The SGA infants had higher hematocrit levels ($50.6%{\pm}5.8%$ vs. $47.7%{\pm}5.7%$, P<0.05) than the AGA infants. No difference in serum ferritin level (ng/mL) was found between the groups (mean [95% confidence interval]: SGA vs. AGA infants, 139.0 [70.0-237.0] vs. 141.0 [82.5-228.5]). After adjusting for gestational age, the SGA infants had lower ferritin levels (147.1 ng/mL [116.3-178.0 ng/mL] vs. 189.4 ng/mL [178.0-200.8 ng/mL], P<0.05). Total body iron stores were also lower in the SGA infants than in the AGA infants (185.6 [153.4-211.7] vs 202.2 [168.7-241.9], P<0.05). Conclusion: The SGA infants had lower ferritin and total body iron stores than the AGA infants. The SGA infants affected by maternal hypertension who were born at late preterm had an additional risk of inadequate iron store. Iron deficiency should be monitored in these infants during follow-up.