• 제목/요약/키워드: Fe deficient

검색결과 105건 처리시간 0.036초

칼슘과 철의 과다섭가 성장기 흰쥐의 체내 무기질 이용성에 미치는 영향 (Effect of Calcium and Iron Loading on Bioavailability of Minerals in Normal and Ca/Fe-deficient Rats)

  • 이연숙
    • Journal of Nutrition and Health
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    • 제32권3호
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    • pp.248-258
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    • 1999
  • This study examined the effect of excess loading of calcium (Ca)and iron(Fe) on the bioavailability of minerals in both normal and Ca-and Fe-deficient rats. Three-week-old male rats were divided into four groups and fed experimental diets for six weeks, containing either normal (0.5%) or high(1.5%) Ca and normal (35ppm) or high (350ppm)Fe. Likewise, three-week-old male rats were first fed a Ca-and Fe-deficient diet for three weeks, and then fed one of four experimental diets for additional three weeks. In both normal and Ca-and Fe-deficient rats, ca contents of serum, liver, kidney and femur were not significantly affected by dietary Ca and Fe levels. Apparent Ca absorption(%) decreased in rats fed a high Ca diet regardless of dietary Fe levels. Magnesium(Mg) contents of serum, liver and femur significantly decreased in rats fed a high Ca diet. Fe contents of serum and liver significantly increased in rats fed a high-Fe diet, but decreased in rats fed a high Ca diet. Fe content of serum and liver significantly increased in rate fed a high-Fe diet, decreased in rats fed a high-Ca diet. Apparent Fe absorption increased in rats fed a high-Fe diet, and decreased in rats fed a high-Ca diet in Ca-and Fe-deficient rats, but dietary Ca did not seem to affect Fe absorption in normal rats. Phosphorus(P) contents of serum and femur were not significantly affected by dietary Ca and Fe levels in both normal and Ca-and Fe-deficient rats. Serum copper(Cu) decreased in rats fed a high-Fe diet, while serum zinc(Zn) decreased in rats fed a high-Ca diet in normal rats. Cu contents of liver, and Zn contents of serum and liver decreased in rats fed a high-Fe diet in Ca-and Fe-deficient rats. There results suggest that a dietary overload of Ca and Fe in both normal and Ca-and Fe-deficient rats may decrease mineral bioavailability leading to potential health problems.

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산소 결함 Magnetite를 이용한 이산화탄소의 분해 (The Decomposition of Carbon-dioxide Using the Oxygen Deficient Magnetite)

  • 김승호;박영구;이승훈
    • 한국환경보건학회지
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    • 제21권2호
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    • pp.68-74
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    • 1995
  • The optimum conditions was synthesized for the formation of Magnetite ($Fe_3O_4$) by air bubbling with the suspensions obtained by mixing Ferrous sulfate ($FeSO_4\cdot 7H_2O$) and Sodium Hydroxide (NaOH) solution in various values equivalent ratio($R=2NaOH/FeSO_4$) were studied. The changes of the structure were measured with XRD, $EM and BET. Equivalent ratio R: 0.65 was synthesized Goethite ($\alpha$-FeOOH), which becomes Maghemite ($\gamma=Fe_2O_3$) by dehydration, reduction and oxidation process. At the equivalent ratio over 1 (R>1), Magnetite ($Fe_3O_4$) was synthesized directly. The oxygen-deficient Magnetite ($Fe_3O_{4-\delta}$), which is obtained by flowing $H_2$ gas(100 ml/min) through the synthesis Magnetite at 350$\circ$C for 4 hr. By using it, was researched the decomposition reaction of $CO_2$. $CO_2$ was decomposed nearly 100% in 45 minutes by the oxygen-deficient Magnetite.

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토마토 품종별 철 결핍 유도후 Fe-DTPA 처리에 의한 영양장애 회복 소요시간과 철 결핍 유발물질 동정 (Analysis of Fe-Deficient Inducing Enzyme and Required Time for Recovery of Nutritional Disorder by Fe-DTPA Treatment in the Fe-Deficient Induced Tomato Cultivars)

  • 이성태;김민근;이영한;김영식;김영봉
    • 한국토양비료학회지
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    • 제44권5호
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    • pp.767-772
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    • 2011
  • 토마토 수경재배시 양액의 pH가 높은 조건에서도 철이 불용화 되지 않고 pH에 안정적인 킬레이트 철의 선택, 3종의 토마토 묘종 (라피토, 레드요요, 수퍼선로드)에서 엽의 철 결핍 증상시 Fe-DTPA 철 공급에 의한 철 결핍 회복 소요시간과 철 결핍 유발물질 유전자를 구조 분석한 결과는 다음과 같다. 양액의 pH가 6.0, 7.0 및 8.0 수준에서 양액 중 철의 농도가 $2.0mg\;L^{-1}$로 되게 각각 3종류 (Fe-EDTA, Fe-DTPA, Fe-EDDHA)의 킬레이트 철을 처리한 결과 Fe-DTPA와 Fe-EDDHA 형태의 철은 불용화가 거의 없었지만 Fe-EDTA 는 양액의 pH가 7.0 일 때 철 함량은 $1.72mg\;L^{-1}$, 8.0일 때 철 함량은 $1.51mg\;L^{-1}$로 25% 정도 불용화가 일어났다. 철 결핍이 발생된 3종의 토마토 묘종에 Fe-DTPA 킬레이트 철 $2.0mg\;L^{-1}$ 농도의 양액을 공급하였을 때 토마토 엽의 엽록소와 철 함량이 정상으로 회복되는데 소요시간은 라피토 품종은 7일, 레드요요와 수퍼선로드 품종은 5일 소요되었다. 유전적 수준에서 철의 생합성에 관여하는 heme oxigenase의 발현은 Fe-DTPA $2.0mg\;L^{-1}$ 처리 24시간 이내에 라피토와 레드요요는 정상적인 수준으로 회복되었으나 수퍼선로드는 처리시간의 경과에 따라서 현저한 차이가 없었다.

장기간 카드뮴에 중독된 흰쥐에서 카드뮴 축적에 대한 식이 구리와 철분의 효과 (The Effect of Dietary Cu and Fe on the Cd Accumulation in Long-Term Cd Poisoned Rats)

  • 김애정
    • Journal of Nutrition and Health
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    • 제29권1호
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    • pp.70-76
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    • 1996
  • This study was undertaken to investigate the effect on the Cd accumulation in long-term Cd poisoned rats. 40 male weaning Sprague Dawley rats weighting 80-90g were divided into 4 groups (LCuLFeCd : low Cu, Fe and Cd group, ACuLFeCd : adequate Cu, low Fe and Cd group, ACuAFeCd : adequate Cu, adequate Fe and Cd group) according to Cu and Fe levels (Cu 0.5ppm, 8.5ppm : Fe 6ppm, 40ppm) for 12 weeks. There were no significant difference in water intake, feed intake, and body weight gain according to dietary Cu and Fe consumption. But the mean food intake and body weight gain of adequate Fe groups(LCuAFeCd, ACuAFeCd) were higher than those of deficient Fe groups (ACuLFeCd, LCuFeCd)in long-term Cd poisoned rats. The mean Cd levels of serum, liver, kidney, and urine in ACuAFeCd group were lower than those of Cu and /or Fe deficient groups. But the mean fecal Cd excretion of ACuAFeCd group was higher than that of Cu and/or Fe deficient groups. And the mean Cd retention amount of ACuAFeCd group was lower than those of Cu and/or Fe deficinet groups. In conclusion, these results provide an evidence that adequate Cu and Fe intakes can decrease Cd accumulation in rats. Therefore, in the point of increasing environmental Cd contamination, adequate Cu and Fe intakes must be suggested to prevent Cd accumulations.

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고 칼슘 섭취가 철이 부족한 성장기 흰쥐의 철 이용성과 뼈 성장에 미치는 영향 (The Effect of Excess Calcium on the Iron Bioavailability and Bone Growth of Marginally Iron Deficient Rats)

  • 장순옥;김기대;이성현
    • Journal of Nutrition and Health
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    • 제37권8호
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    • pp.645-654
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    • 2004
  • This study examined the effect of excess calcium (Ca) on the iron (Fe) bioavailability and bone growth of marginally Fe deficient animals. Two groups of weanling female SD rats were fed either normal Fe (35 ppm) or Fe deficient diet (8 ppm) for 3 weeks. Then each group of animals were assigned randomly to one of three groups and were fed one of six experimental diets additionally for 4 weeks, containing normal (35 ppm) or low (15 ppm) Fe and one of three levels of Ca as normal (0.5%), high (1.0%), or excess (1.5%). Feces and urine were collected during the last 3 days of treatment. After sacrifice blood, organs, and femur bone were collected for analysis. Final body weight and average food intake were not affected by either the levels of dietary Ca or Fe. Low Fe diet significantly reduced the level of serum ferritin, however, for Hb, Hct, and TIBC no difference was shown than those in the normal Fe group. TIBC increased slightly by high and excess Ca intake in low Fe groups. For both normal and low Fe groups, high and excess Ca intakes reduced the apparent absorption of Fe and Fe contents of liver significantly (p < 0.05). Calcium contents in kidney and Femur of rats that were fed high and excess levels of Ca were significantly greater than those of normal Ca groups. However, weight, length, and breaking force of the bone were not affected by increased Ca intakes. Both in control and low Fe groups, high and excess intakes of Ca decreased the apparent absorption of Ca. These results indicate that the excess intakes of calcium than the normal needs would be undesirable for Fe bioavailability and that the adverse effects be more serious in marginally iron deficient growing animals. In addition bone growth and strength would not be favorably affected by high Ca intakes, though, the long term effect of increased Ca contents in bone requires further examination.

Bioavailability of Iron-fortified Whey Protein Concentrate in Iron-deficient Rats

  • Nakano, Tomoki;Goto, Tomomi;Nakaji, Tarushige;Aoki, Takayoshi
    • Asian-Australasian Journal of Animal Sciences
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    • 제20권7호
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    • pp.1120-1126
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    • 2007
  • An iron-fortified whey protein concentrate (Fe-WPC) was prepared by addition of ferric chloride to concentrated whey. A large part of the iron in the Fe-WPC existed as complexes with proteins such as ${\beta}$-lactoglobulin. The bioavailability of iron from Fe-WPC was evaluated using iron-deficient rats, in comparison with heme iron. Rats were separated into a control group and an iron-deficiency group. Rats in the control group were given the standard diet containing ferrous sulfate as the source of iron throughout the experimental feeding period. Rats in the iron-deficiency group were made anemic by feeding on an Fe-deficient diet without any added iron for 3 wk. After the iron-deficiency period, the iron-deficiency group was separated into an Fe-WPC group and a heme iron group fed Fe-WPC and hemin as the sole source of iron, respectively. The hemoglobin content, iron content in liver, hemoglobin regeneration efficiency (HRE) and apparent iron absorption rate were examined when iron-deficient rats were fed either Fe-WPC or hemin as the sole source of iron for 20 d. Hemoglobin content was significantly higher in the rats fed the Fe-WPC diet than in rats fed the hemin diet. HRE in rats fed the Fe-WPC diet was significantly higher than in rats fed the hemin diet. The apparent iron absorption rate in rats fed the Fe-WPC diet tended to be higher than in rats fed the hemin diet (p = 0.054). The solubility of iron in the small intestine of rats at 2.5 h after ingestion of the Fe-WPC diet was approximately twice that of rats fed the hemin diet. These results indicated that the iron bioavailability of Fe-WPC was higher than that of hemin, which seemed due, in part, to the different iron solubility in the intestine.

페라이트를 이용한 $H_2O$ 분해를 통한 수소제조 (Decomposition of $H_2O$ with Ferrite Powders for Hydrogen Generation)

  • 신현창;정광덕;한성환;최승철
    • 한국세라믹학회지
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    • 제37권1호
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    • pp.90-95
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    • 2000
  • The ferrites, CuFe2O4 and SrFe12O129, were applied to decompose H2O for H2 generation. The ferrites prepared by the coprecipitation were reduced by CH4 gas to make the oxygen deficient ferrite. H2O was decomposed to form H2 by the oxygen deficient iron oxide, and the decomposition reactions were accelerated by the addition of divalent metals such as Cu and Sr in the ferrites. The spinel type CuFe2O4 containing a relatively large amount of divalent metals was more effective to H2 generation than magnetoplumbite type SrFe12O19 in H2O decomposition.

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아스파르트산 킬레이트 철분의 철분 결핍쥐에서의 생물학적 유용성 (Bioavailability of Aspartic Acid Chelated Iron on Iron-deficient Rats)

  • 박명규;하태열;신광순
    • 한국식품영양과학회지
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    • 제40권12호
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    • pp.1720-1725
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    • 2011
  • 본 연구에서는 아스파르트산, 탄산칼슘 및 황산철을 반응시켜 아스파르트산 킬레이트 철분(aspartic acid chelated iron, Asp-Fe)을 제조하고 Asp-Fe의 철분결핍 쥐(iron-deficient rat, ID)에서의 생물학적 유용성을 확인하였다. 시험군은 철분이 함유된 식이를 섭취한 정상군(NC), 철분 결핍식이를 1개월간 투여하여 철분 결핍 상태를 유도한 쥐(ID)에 생리식염수를 공급한 결핍 대조군(ID+C), 철분 결핍 쥐에 햄철(heme-Fe) 투여군(ID+heme-Fe) 및 Asp-Fe 투여군(ID+Asp-Fe)으로 나누어 실시하였다. 그 결과 식이섭취량, 장기무게, 체중증가 정도에서 각 군에 따른 차이가 없는 것으로 나타났다. 7일간 투여 후 혈액 중 철분의 함량을 측정한 결과 결핍쥐에 Asp-Fe 투여군(175.2 ${\mu}g$/dL)과 heme-Fe 투여군(140.8 ${\mu}g$/dL)은 결핍 대조군(96.1 ${\mu}g$/dL)보다 유의적인 수준으로 증가하였다. 총 철분 결합능(total iron binding capacity, TIBC)를 측정한 결과 Asp-Fe 투여군(735.4 ${\mu}g$/dL)은 결핍 대조군(841.9 ${\mu}g$/dL)보다 유의적 수준으로 정상화되었다. 헤마토크리트(HCT) 수치를 측정한 결과에서 Asp-Fe 및 heme-Fe 모두 결핍 대조군보다 증가하는 경향은 보였지만 유의적인 차이는 없었다. 흡수율에서는 heme-Fe의 경우 21.3%인 반면에 Asp-Fe의 경우 50.2%로 약 2.3배 높은 것으로 나타났으며, 혈청에서의 철분농도 및 transferrin saturation(TS)는 heme-Fe 투여군 및 결핍 대조군에 비하여 Asp-Fe 투여군이 유의하게 높은 수준을 유지하였다. 이상의 결과로 미루어 볼 때 아미노산 킬레이트 철분은 heme-Fe과 유사한 수준의 생체 이용율을 가지고 있으며, 철분 결핍을 회복시키는데 매우 효과적인 보충제로서 이용될 수 있을 것으로 사료된다.

Bonding of Electron Deficient Thallium-Metal Cluster Compound

  • Kang, Sung-Kwon
    • Bulletin of the Korean Chemical Society
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    • 제14권2호
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    • pp.191-195
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    • 1993
  • Molecular orbital calculations at the extended Huckel level have been carried out for an electron deficient cluster, $Tl_3(FeL_3)_2{(FeL_4)_3}^{-3}$, where L=CO or $H^-$. The LUMO, $2a_2$", is destabilized by the secondary interaction of the LUMO with $1a_2$" on $(FeL_3)_2$ fragment. This is one of six skeletal bonding orbitals which are associated with $Tl-FeL_3$ bonds. Overlap population analysis has been applied to account for two kinds of Tl-Fe bonds. Replacement of the terminal $C_{3v}$, $FeL_4$, by the $C_{2v}$, $FeL_4$ units in cluster results in slight energy stabilization of the cluster.

Modeling of nonlinear response of R/C shear deficient t-beam subjected to cyclic loading

  • Hawileh, R.A.;Abdalla, J.A.;Tanarslan, M.H.
    • Computers and Concrete
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    • 제10권4호
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    • pp.419-434
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    • 2012
  • This paper presents a finite element (FE) model for predicting the nonlinear response and behavior of a reinforced concrete T-beam deficient in shear under cyclic loading. Cracking loads, failure loads, response hysteresis envelopes and crack patterns were used as bench mark for comparison between experimental and FE results. A parametric study was carried out to predict the optimum combination of the open and close crack shear transfer coefficients (${\beta}_t$ and ${\beta}_c$) of the constitutive material model for concrete. It is concluded that when both shear transfer coefficients are equal to 0.2 the FE results gave the best correlation with the experimental results. The results were also verified on a rectangular shear deficient beam (R-beam) tested under cyclic loading and it is concluded that the variation of section geometry has no effect on the optimum choice of the values of shear transfer coefficients of 0.2. In addition, a parametric study based on the variation of concrete compressive strength, was carried out on the T-beam and it is observed that the variation of concrete compressive strength has little effect on the deflection. Further conclusions and observations were also drawn.