• 제목/요약/키워드: Micronutrients

검색결과 152건 처리시간 0.024초

Importance of micronutrients in bone health of monogastric animals and techniques to improve the bioavailability of micronutrient supplements - A review

  • Upadhaya, Santi Devi;Kim, In Ho
    • Asian-Australasian Journal of Animal Sciences
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    • 제33권12호
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    • pp.1885-1895
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    • 2020
  • Vitamins and minerals categorized as micronutrients are the essential components of animal feed for maintaining health and improving immunity. Micronutrients are important bioactive molecules and cofactors of enzymes as well. Besides being cofactors for enzymes, some vitamins such as the fat-soluble vitamins, vitamin A and D have been shown to exhibit hormone-like functions. Although they are required in small amount, they play an influential role in the proper functioning of a number of enzymes which are involved in many metabolic, biochemical and physiological processes that contribute to growth, production and health. Micronutrients can potentially have a positive impact on bone health, preventing bone loss and fractures, decreasing bone resorption and increasing bone formation. Thus, micronutrients must be provided to livestock in optimal concentrations and according to requirements that change during the rapid growth and development of the animal and the production cycle. The supply of nutrients to the animal body not only depends on the amount of the nutrient in a food, but also on its bioavailability. The bioavailability of these micronutrients is affected by several factors. Therefore, several technologies such as nanoparticle, encapsulation, and chelation have been developed to improve the bioavailability of micronutrients associated with bone health. The intention of this review is to provide an updated overview of the importance of micronutrients on bone health and methods applied to improve their bioavailability.

Suppression of Nitrate Accumulation in Lettuce by Application of Mg and Micronutrients

  • Chung, Jong-Bae;Park, Sang-Gyu;Park, Shin
    • 한국환경농학회지
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    • 제20권5호
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    • pp.340-345
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    • 2001
  • High rates of nitrogen fertilization dangerously increase the nitrate content of vegetable crops, and the accumulation of nitrate in edible crops is undesirable because of potential risks to human health. Micronutrient solution containing Cu, Mn, Mo, Zn was tested for the suppression of nitrate accumulation in lettuce grown in pots treated with Mg fertilizer under a greenhouse condition. The micronutrient solution was sprayed on leaves at 3 and 4 weeks after transplanting of 20-day old seedlings. Plants were harvested after 5-week growth, and yield, contents of chlorophyll, sugar, micronutrient and nitrate, and also nitrate reductase activity were measured. Fresh weight of lettuce was significantly increased by the application of Mg and micronutrients, and the effect was the most significant in the Mg+micronutrient treatment. Also contents of chlorophyll and micronutrients were higher in the plants of micronutrient treatments. Contents of nitrate were reduced by about 14-18% in lettuce with Mg and/or micronutrient applications. Compared to the plants of control treatment, nitrate reductase activity was also higher in those plants treated with micronutrients, and in the treatment of Mg+micronutrients the enzyme activity was six times as high as that of control treatment. Although the effect of mineral nutrients on the suppression of nitrate accumulation in lettuce was relatively small in this study, an appropriate supply of mineral nutrients could be one of the solutions for the nitrate accumulation in vegetables.

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Role of Micronutrients in Skin Health and Function

  • Park, Kyungho
    • Biomolecules & Therapeutics
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    • 제23권3호
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    • pp.207-217
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    • 2015
  • Skin is the first line of defense for protecting our bodies against external perturbations, including ultraviolet (UV) irradiation, mechanical/chemical stress, and bacterial infection. Nutrition is one of many factors required for the maintenance of overall skin health. An impaired nutritional status alters the structural integrity and biological function of skin, resulting in an abnormal skin barrier. In particular, the importance of micronutrients (such as certain vitamins and minerals) for skin health has been highlighted in cell culture, animal, and clinical studies. These micronutrients are employed not only as active compounds in therapeutic agents for treating certain skin diseases, but also as ingredients in cosmetic products. Here, the author describes the barrier function of the skin and the general nutritional requirements for skin health. The goal of this review is to discuss the potential roles and current knowledge of selected micronutrients in skin health and function.

미량원소 엽면 처리에 의한 엽채류의 질산태 질소 축적 억제 (Suppression of Nitrate Accumulation in Vegetables by Foliar Application of Micronutrients)

  • 엄진섭;박누리;박상규;박신;정종배
    • Applied Biological Chemistry
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    • 제44권4호
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    • pp.240-245
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    • 2001
  • 본 연구에서는 키토산 화합물을 함유한 미량원소 엽면 살포제를 엽채류에 처리하여 질산태 질소 축적 저감 효과를 조사하였다. Ca, Cu, Mn, Mo, Zn 등의 무기영양원소에 키토산과 키토산올리고당을 각각 첨가한 2종류의 미량원소 액제를 온실조건에서 포트에 재배한 상추와 시금치에 정식 후 3주와 4주째에 엽면 살포하였다. 정식 후 5주째에 수확하여 생육량, 엽록소와 미량원소 함량 및 Brix 당도,그리고 질산태 질소와 질산환원효소 활성을 조사하였다. 엽면 살포 액제의 시용을 통하여 작물의 생육 촉진과 함께 질산태 질소의 축적을 10-23% 정도 저감시킬 수 있는 것으로 나타났다. 이러한 결과는 미량원소와 키토산 화합물의 흡수를 통하여 엽록소와 미량원소 함량이 증가되었고 결국 광합성을 비롯한 관련 대사과정들과 질산 환원효소의 활성을 증대시킬 수 있으며 따라서 동시에 질산의 축적을 저감시킬 수 있는 것으로 판단되었다. 이러한 엽면 처리를 통한 질산태 질소의 축적 저감 효과를 극대화하기 위해서는 엽면처리 미량원소의 종류와 함유 비율, 처리 농도, 처리 시기 및 회수의 최적화 등에 대한 검토와 연구가 더 이루어져야 할 것이며, 질소 시비량과 재배환경의 조절 측면의 연구와 대책 또한 동시에 마련되어야 할 것으로 보인다.

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Extractable Micronutrients in Soils of Some Forested and Deforested Sites of South Eastern Hilly Areas of Bangladesh

  • Akhtaruzzaman, Md.;Osman, K.T.;Haque, S.M. Sirajul
    • Journal of Forest and Environmental Science
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    • 제34권6호
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    • pp.429-434
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    • 2018
  • Extractable iron (Fe), manganese (Mn), zinc (Zn) and copper (Cu) contents and their distribution with depths in soils of forested and adjacent deforested areas at Jahazpura, Teknaf, Cox's Bazar of Bangladesh were studied. The soils under forest showed higher levels of DTPA-extractable micronutrients in all three layers of soil in comparison to those of the deforested areas. The differences between forested and deforested sites were, in most cases, significant.. The top soils of forested sites had the higher contents of micronutrient and generally decreased with depth in forested soils, while there was no regular trend of distribution in deforested soils. The study also revealed that contents of extractable Fe, Mn and Cu were sufficient in all depths and sites but Zn was deficient in bottom layer of forested and all three layers of deforested sites. The results suggested that organic matter, clay and soil pH could play important roles in concentrations and distributions of micronutrients in soils of the study areas.

Hair Zinc Level Analysis and Correlative Micronutrients in Children Presenting with Malnutrition and Poor Growth

  • Han, Tae Hwan;Lee, Jin;Kim, Yong Joo
    • Pediatric Gastroenterology, Hepatology & Nutrition
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    • 제19권4호
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    • pp.259-268
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    • 2016
  • Purpose: Zinc deficiency can induce serious clinical problems in the gastrointestinal (GI) system and immune system and can affect growth and development. It is more severe in younger patients. Chronic zinc deficiency is reflected more precisely in hair than in serum. We studied hair zinc levels and other hair and serum micronutrients in chronic malnourished children to identify which micronutrients are affected or correlated with the other ones. Methods: Hair mineral analyses were performed in 56 children (age, 1-15 years) presenting with malnutrition, poor growth, poor appetite, anorexia, with/without other GI symptoms (diarrhea, abdominal pain, constipation) from August 2012 to March 2015. Biochemical studies for macronutrients and major micronutrients were also conducted. Results: Hair zinc deficiency was diagnosed in 88%, and serum zinc deficiency was diagnosed in 55% of the children. There was no statistical correlation between serum and tissue zinc level. Hair zinc levels were highly correlated with serum vitamin D (r=-0.479, p=0.001), which also showed correlation with hair levels of magnesium and calcium. (r=0.564, 0.339, p=0.001, 0.011). Hair calcium level was correlated with serum pre-albumin (r=0.423, p=0.001). These correlations may explain the phenomenon that the major clinical manifestation of zinc deficiency is poor body growth. Clinical symptoms were resolved in most children after zinc supplementation. Conclusion: Hair zinc and mineral analyses are useful as a therapeutic guide in the clinical investigation of children with malnutrition and poor growth.

미량영양소들의 추가급여가 뉴캣슬 또는 전염성 기관지염 백신 접종시 산란계의 면역성에 미치는 효과 (Effects of Excess Dietary Supplementation of Several Micronutrients on Immune Response in Layers Inoculated with Newcastle Disease and Infectious Bronchitis Vaccines)

  • 김정우;고승연;조석현;김춘수
    • 한국가금학회지
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    • 제22권2호
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    • pp.85-95
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    • 1995
  • This study was conducted to investigate the immune response of layers fed diets supplemented with excess micronutrients, i.e., vitamin A, methionine, Zn, Cu, and Fe to the inoculation of Newcastle disease vaccine(NDV) or infectious bronchitis vaccine(IBV). The antibody titer against the NDV increased immediately after the inoculation and stayed high during the next 6 wk. On the other hand, The antibody titer against the IBV increased after 4 wk of inoculation The IgM level increased rapidly after 1 wk of NDV inoculation, however, it decreased after 5 wk of inoculation. The IgA displayed similar pattern to that of IgM in response to NDV inoculation. The pattern of IgM change after IBV inoculation was similar to that when layers were treated with NDV. However, IgA level changed earlier than did IgM. The IgG response to the NDV and IBV was very weak compared to the other immune responses. The excess supplementation of micronutrients to the diets of layers inoculated with NDV elicited favorable antibody titer and immune response compared to the layers fed the control diet. The excess Zn, however, allowed the layers to have higher antibody titer for the 4-wk period after NDV injection: after that they showed no effect of extra-Zn. The immune responses of layers fed excess vitamin A, Cu, methionine, and Fe were markedly higher in IgA and IgG than the control layers. The excess Zn, however, did not bring about any favorable result. No difference was detected in IgG level between control and micronutrients-treated groups.

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어린이를 위한 일반식품에의 일부 미량영양소 임의영양 강화 안전 수준 평가 (A Strategy for Safe Addition of Selected Micronutrients to Foods for Children)

  • 오세영
    • Journal of Nutrition and Health
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    • 제42권2호
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    • pp.128-134
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    • 2009
  • For children, voluntary addition of micronutrients to foods must be done without health risk to any of them. This study examined safe maximum levels of vitamin A and C, and calcium for children based on nutrient intake data from the 2001-2002 and 2005 National Health and Nutrition Examination Survey (NHANES) in Korea, while using the safe strategy for addition of micronutrients to foods suggested by EU. For the respective 2001-2002 and 2005 NHANES data proportions of potentially fortifiable energy intake ranged 0.36-0.40 and 0.31-0.34 and the $95^{th}$ percentile intake of energy were 2,325-3,296 kcal and 2,286-3,814 kcal depending upon age groups. Ninety-fifth percentile intake levels of vitamin A were over or close to UL, even without considering supplement intake for some age groups, which suggest that vitamin A fortification to foods required further consideration. For calcium, 12-14 year old children were the most sensitive group for excessive intake and nutrient fortification to foods. In these children, maximum levels for fortification were 242-290 mg and 484-580 mg with 0.135 and 0.068 proportions of fortified food (PFF) assumed, respectively, without considering calcium intake from supplements. With consideration of calcium intake from both diet and supplement, the maximum levels for fortification were 20-36% of those without supplement intake. The maximum fortification levels of vitamin C were the lowest in 3-5 year old children, showing 77-187 mg and 68-164 mg with and without supplement intake, respectively. These results suggest that the model used for risk assessment in this study can be used to help risk managers to set maximum levels for safe addition of micronutrients to foods.

양액과 SCB액비 처리에 미량요소 첨가가 방울토마토의 미네랄 함량과 생육에 미치는 영향 (Effect of the Mixed Treatment of Electrolyzed Micronutrients with Nutrient Solution and SCB Slurry on Mineral Content and Growth of Cherry Tomatoes (Lycopersicon esculentum))

  • 류종원
    • 한국유기농업학회지
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    • 제20권3호
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    • pp.385-397
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    • 2012
  • 식물미네랄(phyto-minerals) 함량을 높인 미네랄강화 농작물(biofortification foods)을 개발하기 위하여 전기분해를 이용하여 10종(Co, Fe, Mg, Mn, Sr, Zn, Li, Sn, V, Ti, Se, S)의 미량요소를 함유하는 복합미네랄액을 조제하였다. 양액과 SCB 액비에 복합미량요소액을 방울토마토 처리한 결과 양액+복합미량요소액 처리구는 Li, Zn, Sr, Se, Ti이 증가되었고, SCB+복합미량요소액 처리구는 Li, Zn, Se, Co, Sr, Ti 함량이 유의성있게 증가하였다. 양액+SCB+복합미량요소액 처리구는 SCB액비, NS액비 처리구보다 Li, Zn, Se, Co, Ti 함량이 유의성 있게 증가하였다. 토마토의 생육과 수량은 양액처리구에서 가장 높았고, 복합 미량요소액 처리로 감소하였다. 토마토의 수량은 표준양액처리구와 비교할때 NS+복합미량요소액 처리구와 SCB+양액+복합 미량요소액 혼합시용구는 각각 97%와 94%의 토마토 과실 수량를 나타내었으나 미량요소 강화효과가 있었으므로 혼합용액을 조제하면 토마토 재배용 양액으로 활용이 가능할 것으로 보인다.

Association of Homocysteine Levels With Blood Lead Levels and Micronutrients in the US General Population

  • Lee, Yu-Mi;Lee, Mi-Kyung;Bae, Sang-Geun;Lee, Seon-Hwa;Kim, Sun-Young;Lee, Duk-Hee
    • Journal of Preventive Medicine and Public Health
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    • 제45권6호
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    • pp.387-393
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    • 2012
  • Objectives: Even though several epidemiological studies have observed positive associations between blood lead levels and homocysteine, no study has examined whether this association differs by the levels of micronutrients, such as folate, vitamin B6, and vitamin B12, which are involved in the metabolism of homocysteine. In this study, we examined the interactions between micronutrients and blood lead on homocysteine levels. Methods: This study was performed with 4089 adults aged ${\geq}20$ years old in the US general population using the National Health and Nutrition Examination Survey 2003-2004. Results: There were significant or marginally significant interactions between micronutrients and blood lead levels on mean homocysteine levels. Positive associations between blood lead and homocysteine were clearly observed among subjects with low levels of folate or low vitamin B6 (p-trend <0.01, respectively). However, in the case of vitamin B12, there was a stronger positive association between blood lead and homocysteine among subjects with high levels of vitamin B12, compared to those with low levels of vitamin B12. In fact, the levels of homocysteine were already high among subjects low in vitamin B12, irrespective of blood lead levels. When we used hyperhomocysteinemia (homocysteine>15 ${\mu}mol/L$) as the outcome, there were similar patterns of interaction, though p-values for each interaction failed to reach statistical significance. Conclusions: In the current study, the association between blood lead and homocysteine differed based on the levels of folate, vitamin B6, or vitamin B12 present in the blood. It may be important to keep sufficient levels of these micronutrients to prevent the possible harmful effects of lead exposure on homocysteine levels.