• 제목/요약/키워드: zinc bioavailability

검색결과 37건 처리시간 0.03초

Dietary effects of sophorolipids on nutrient bioavailability and intestinal microenvironments in broiler chickens

  • Min-Jin, Kwak;Min Young, Park;Ki-Peum, Sung;Hanbae, Lee;Kwang-Youn, Whang;Younghoon, Kim
    • Journal of Animal Science and Technology
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    • 제64권6호
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    • pp.1092-1104
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    • 2022
  • Using antibiotics as growth promoter has been banned in poultry feed industry, thus various researchers try to seek an alternative to replace the growth-promoting antibiotics. In this study, we aimed to evaluate the growth performance via intestinal nutrient utilization and cecal microbial composition of broiler after dietary supplementation with most commonly using antibiotics, zinc bacitracin, and sophorolipid. A total of 180 1-day-old chicks were randomly assigned, and dietary treatment was as follow: CON, basal diet; ZB, 100 ppm of zinc bacitracin supplemented diet; and SPL, 250 ppm of sophorolipid supplemented diet. Their growth performance was evaluated and the samples of blood, small intestine, and ileal and cecal digesta were collected for biochemical, histological, and genomic analyses. The body weight and average daily gain of 7-day-old chicks were higher in ZB and those in overall experimental period were improved by ZB and SPL supplementation (p < 0.05). Their intestinal characteristics were not affected by dietary treatments in duodenum and ileum. Nonetheless, villus height was increased by SPL supplementation in jejunum (p < 0.05). Moreover, dietary SPL supplementation could down-regulate the expression level of pro-inflammatory cytokine, IL-1β (p < 0.05). mRNA levels of lipid and protein transporters did not differ among the treatments, however, relative expression levels of carbohydrate transporters, GLUT2 and SGLT1 were increased in broiler chicken's jejumum fed zinc bacitracin and sophorolipid supplemented diets (p < 0.05). Dietary zinc bacitracin supplementation could increase the population of Firmicutes in phylum level, and the portion of Turiciacter in genus level. On the other hands, the portion of Faecalibacterium was increased by dietary SPL supplementation compared to the other treatments. Our findings suggest that SPL supplementation improves growth performance through enhanced carbohydrate utilization capacity via improvement of gut morphological status and modulation of the cecal microbial population of broilers.

한국 젊은 여성의 단백질 및 칼슘 섭취 수준이 체내 철분 및 아연 평형에 미치는 영향 (Effects of Dietary Protein and Calcium Levels on Iron and Zine Balance in Young Korean Women)

  • 남기선;김경원;구재옥;최혜미
    • 대한지역사회영양학회지
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    • 제3권2호
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    • pp.218-227
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    • 1998
  • 단백질 및 칼슘 수준이 체내 철분 및 아연의 평형에 미치는 영향을 알아보고자 건강한 젊은 여성 8명을 대상으로 20일간의 대사실험을 실시하였다. 실험대상자는 2일간의 적응 기간 후 저단백저칼슘식이 (44g 단백질, 422mg 칼슘), 고단백저칼슘식이 (85g 단백질, 365mg 칼슘), 고단백고칼슘식이 (84g 단백질, 727mg 칼슘)의 6일씩 각 실험식이를 섭취하였다. 각 식이 기간 후반 3일간의 대변 및 뇨를 수집하고 각 식이 기간이 끝난 후 공복시에 채혈하였다. 각 식이의 열량, 단백질, 칼슘, 철분 및 아연을 분석하고 대변과 뇨의 철분 및 아연을 분석하였으며 혈청중의 철분 및 아연 농도를 측정하여 비교하였다. 식이의 단백질 수준이 높아졌을 때 체내 철분과 아연의 흡수 및 평형이 유의적으로 증가되었으며(P<0.01) 식이의 칼슘 수준이 높아졌을 때 철분(p<0.01) 및 아연(p<0.05)의 흡수 및 평형은 감소되었다. 혈청의 철분이나 아연 농도는 저단백질식이보다 고단백질식이일 때 증가되는 경향이 있었다. 혈청의 철분 농도는 철분 평형보다는 섭취된 철분의 함량과 높은 양의 상관관계(r=0.99)를 나타냈다. 혈청과 두발의 아연 농도 간에는 상관관계를 볼 수 없었다. 본 연구 결과 식이중의 단백질 및 칼슘 섭취수준은 체내 철분 및 아연의 평형에 영향을 미친다는 것을 확인하였다. 따라서 우리 나라 영양권장량을 책정함에 있어서 이러한 영양소들의 대사를 재검토해야 하며 또한 최근 칼슘과 함께 철분을 강화시키는 몇몇의 시판 유제품이나 음료의 실제 유용성에 대한 평가도 필요하다고 사료된다.

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Trace Mineral Nutrition in Poultry and Swine

  • Richards, James D.;Zhao, Junmei;Harrell, Robert J.;Atwell, Cindy A.;Dibner, Julia J.
    • Asian-Australasian Journal of Animal Sciences
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    • 제23권11호
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    • pp.1527-1534
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    • 2010
  • Trace minerals such as zinc, copper, and manganese are essential cofactors for hundreds of cellular enzymes and transcription factors in all animal species, and thus participate in a wide variety of biochemical processes. Immune development and response, tissue and bone development and integrity, protection against oxidative stress, and cellular growth and division are just a few examples. Deficiencies in trace minerals can lead to deficits in any of these processes, as well as reductions in growth performance. As such, most animal diets are supplemented with inorganic and/or organic forms of trace minerals. Inorganic trace minerals (ITM) such as sulfates and oxides form the bulk of trace mineral supplementation, but these forms of minerals are well known to be prone to dietary antagonisms. Feeding high-quality chelated trace minerals or other classes of organic trace minerals (OTM) can provide the animal with more bioavailable forms of the minerals. Interestingly, many, if not most, published experiments show little or no difference in the bioavailability of OTMs versus ITMs. In some cases, it appears that there truly is no difference. However, real differences in bioavailability can be masked if source comparisons are not made on the linear portion of the dose-response curve. When highly bioavailable chelated minerals are fed, they will better supply the biochemical systems of the cells of the animal, leading to a wide variety of benefits in both poultry and swine. Indeed, the use of certain chelated trace minerals has been shown to enhance mineral uptake, and improve the immune response, oxidative stress management, and tissue and bone development and strength. Furthermore, the higher bioavailability of these trace minerals allows the producer to achieve similar or improved performance, at reduced levels of trace mineral inclusion.

The decreased molar ratio of phytate:zinc improved zinc nutriture in South Koreans for the past 30 years (1969-1998)

  • Do, Mi-Sook;Lomeda, Ria-Ann R.;Cho, Young-Eun;Kwun, In-Sook
    • Nutrition Research and Practice
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    • 제1권4호
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    • pp.356-362
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    • 2007
  • For the assessment of representative and longitudinal Zn nutriture in South Koreans, Zn, phytate and Ca intakes were determined using four consecutive years of food consumption data taken from Korean National Nutrition Survey Report (KNNSR) every 10 years during 1969-1998. The nutrient intake data are presented for large city and rural areas. Zn intake of South Koreans in both large city and rural areas was low during 1969-1988 having values between 4.5-5.6 mg/d, after then increased to 7.4 (91% Estimated Average Requirements for Koreans, EAR = 8.1 mg/d) and 6.7 mg/d (74% EAR) in 1998 in large city and rural areas, respectively. In 1968, Zn intake was unexpectedly higher in rural areas due to higher grain consumption, but since then until 1988 Zn intake was decreased and increased back in 1998. Food sources for Zn have shifted from plants to a variety of animal products. Phytate intake of South Koreans during 1969-1978 was high mainly due to the consumption of grains and soy products which are major phytate sources, but decreased in 1998. The molar ratios of phytate:Zn and millimmolar ratio of phytate${\times}$Ca:Zn were decreased due to the decreased phytate intake in South Koreans, which implies higher zinc bioavailability. The study results suggest that Zn nutriture has improved by increased dietary Zn intakes and the decreased molar ratio of phytate:Zn in South Koreans in both large city and rural areas.

Strategies to Reduce Phytate Content in the Korean Diet

  • Lee, Jee-Min;Li, Sun-Hee;Joung, Hyo-Jee;Paik, Hee-Young
    • International Journal of Human Ecology
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    • 제4권1호
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    • pp.25-34
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    • 2003
  • High dietary phytate is a known factor in reducing the bioavailability of minerals such as zinc and calcium which are already chronically low in the Korean diet. This study was conducted to develop methods for reducing dietary phytate through the addition of phytate and/or the substitution of high phytate foods with low phytate foods. Ten units of phytase per 100g of uncooked brown rice were added to brown rice gruel resulted in a 16.2% phytate reduction after a 3-hour incubation period; an 18.2% reduction was produced after a 6-hour incubation period. The addition of ten units of phytase per 100g of soybean curd residue at 45$^{\circ}C$, followed by refrigeration for 3 hours, resulted in a 19.1% phytate reduction. The addition of 20 units of phytase under the same conditions reduced phytate content by 24.6%. In this study, two typical Korean meals consisting of legumes and unrefined cereals were prepared as high phytate meals; these were then compared to low phytate meals that had been prepared by treating the foods with phytase and substituting unrefined with refined cereals (i.e., brown rice with white rice, whole wheat bread with white bread). The phytate content of the two high phytate meals was 1878.2mg and 1811.8mg. After the addition of phytase and the food substitution, the phytate content of the low phytate meals was reduced to 788.9mg and 606.0mg. The phytate to zinc molar ratio of high phytate diets was 22.4 and 21.3 and 9.4 and 7.9 for the low phytate meals. These results indicate that the nutritional status of Koreans in terms zinc and other minerals can be improved by phytate reduction. This can be accomplished through the change of milling process for some cereals and/or the enzyme treatment of some high phytate food items.

Hot melt extruded-based nano zinc as an alternative to the pharmacological dose of ZnO in weanling piglets

  • Oh, Seung Min;Kim, Min Ju;Hosseindoust, Abdolreza;Kim, Kwang Yeol;Choi, Yo Han;Ham, Hyung Bin;Hwang, Sung Jun;Lee, Jun Hyung;Cho, Hyun Jong;Kang, Wei Soo;Chae, Byung Jo
    • Asian-Australasian Journal of Animal Sciences
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    • 제33권6호
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    • pp.992-1001
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    • 2020
  • Objective: This study was conducted to investigate the effects of hot-melt extruded ZnO nano-particles (HME-ZnO) as an alternative for P-ZnO on growth performance, nutrient digestibility, Zn bioavailability, intestinal microbiota, and intestinal morphology of weanling pigs. Methods: A total of 450 piglets (Landrace×Yorkshire×Duroc) were randomly allotted to five treatments based on initial body weight and sex. The experimental diets were fed in a meal form as phase 1 from d 0 to 14 and phase 2 from d 15 to 28. Treatments were the control diet without ZnO supplementation, the diet containing 2,500 ppm Zn as ZnO, and three diets containing 500, 1,000, or 2,500 ppm Zn as HME-ZnO. Results: The overall result showed a higher (p<0.01) average daily gain in weanling pigs fed ZnO-supplemented diets in comparison to the control diet. There was a decrease (p<0.01) in fecal score in the ZnO-supplemented diets. Dietary supplementation of ZnO improved (p<0.05) crude protein digestibility. The weanling pigs fed the P-ZnO diet had a lower (p<0.01) Zn digestibility in the feces than HME-ZnO supplemented treatments. Weanling pigs fed diets supplemented with ZnO had greater (p<0.05) Lactobacillus spp. populations and lower Clostridium spp. (p<0.05) and Coliforms (p<0.01) populations in the ileum. Weanling pigs fed diets supplemented with increasing concentrations of HME-ZnO linearly decreased Clostridium spp. (p<0.05) and Coliforms (p<0.01) in the ileum. Lower (p<0.05) Clostridium spp. and Coliforms counts in the colon were observed in pigs fed with ZnO-supplemented diets. Weanling pigs fed diets supplemented with ZnO showed a greater (p<0.01) villus height in the duodenum. Conclusion: Dietary supplementation of HME-ZnO and P-ZnO showed a potential to improve the digestibility of protein, intestinal Coliform and Clostridium, villus height in duodenum and ileum. Moreover, HME-ZnO showed a higher Zn digestibility compared with P-ZnO.

돈분액비 연용 농경지 중 중금속 함량 모니터링 (Monitoring of Heavy Metals in Agricultural Soils from Consecutive Applications of Commercial Liquid Pig Manure)

  • 고우리;김지영;류지혁;이지호;;이정미;김계훈;김두호;김원일
    • 한국환경농학회지
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    • 제31권3호
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    • pp.217-223
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    • 2012
  • 본 연구에서는 돈분 액비를 연용한 논토양 및 밭토양의 유해 중금속을 관리하는 방안을 마련하고자 전국적으로 액비를 장기 시용한 연차별 논토양 41점과 밭토양 54점을 채취하여 유해 중금속인 카드뮴, 구리, 니켈, 납, 아연, 비소의 함량을 조사하였다. 액비연용에 따른 년차별 변화에서 논토양 및 밭토양 중금속 전함량은 원소별로 일부 증가하는 경향은 보이나 연도별 축적 차이를 통계적으로 확인할 수 없었다. 그러나 액비연용에 따른 중금속 특히 구리 및 아연의 축적 여부는 이들이 식물영양에 필수 원소로 작용함을 고려하여 보다 장기적인 관점으로 계속 검토되어야 할 사항이다. 그러나 일부 밭토양에서 토양오염 우려기준을 초과하는 지점이 조사되어 액비 시용 전 토양 내 중금속 함량조사를 통해 시용 여부를 결정하여야 할 것이다.

종 분석을 이용한 시설재배지 토양 구리와 아연의 집적, 이동성 및 유효성 평가 (Accumulation, Mobility, and Availability of Copper and Zinc in Plastic Film House Soils Using Speciation Analysis)

  • 김록영;성좌경;이주영;이예진;정석재;이종식;장병춘
    • 한국토양비료학회지
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    • 제43권6호
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    • pp.937-944
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    • 2010
  • Cu and Zn can be accumulated in plastic film house soils by long-term application of livestock manure or compost. The mobility and bioavailability of Cu and Zn accumulated in soils are strongly influenced by their chemical or geochemical species in soils. In order to assess the accumulation, mobility, and bioavailability of Cu and Zn in plastic film house soils, we determined their geochemical species using a sequential extraction, grouped into three pods: the total pool, the potentially mobil pool, and the mobil pool. Total contents of Cu and Zn, ranged from 14.9 to 53.1 mg $kg^{-1}$ for Cu and from 55.4 to 169 mg $kg^{-1}$ for Zn, lied by far below the soil contamination standards, but exhibited little accumulation compared with their geogenic concentrations. Mobile contents of Cu and Zn and their percentage of total contents were strongly affected by soil pH in addition to total contents and soil organic matter. Mobile contents of Cu, ranged from <0.01 to 1.71 mg $kg^{-1}$, showed their minimum between pH 5.0 and 6.0 and increased above pH 6.0 to 8.0. In contrast, mobile contents of Zn, varied from <0.01 to 12.4 mg $kg^{-1}$, showed their minimum above pH 7.0 and increased strongly with decreasing pH below 5.5~6.0. Potentially mobile and total contents of Cu and Zn rose with ascending soil organic matter. To assess ecological and toxic effects of Cu and Zn in soils, mobile and potentially mobile contents, as bioavailable and potentially bioavailable pools, should be considered more important than total contents.

국산 콩 장려품종의 Minerals, Oxalate 및 Phytate 함량 (Minerals, Oxalate and Phytate Contents of Recommended Soybean Cultivars in Korea)

  • 김기찬;황인국;윤건묵;송항림;김홍식;장금일;정헌상
    • 한국식품영양과학회지
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    • 제38권7호
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    • pp.870-878
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    • 2009
  • 본 연구는 국산 113종 콩 장려품종의 total oxalate(Ox), phytate($InsP_6$)와 calcium(Ca), magnesium(Mg), sodium (Na), zinc(Zn), potassium(K)을 분석하여 옥살산칼슘 결정생성을 최소화할 수 있는 품종의 선발 및 안전한 콩 가공식품 제조를 위한 자료를 제시하고자 하였다. 113종의 콩 장려품종에서 Ca과 Mg 함량 분포는 각각 $0.586{\sim}3.177$$0.559{\sim}3.085\;mg/g$이었으며, Ca는 다올콩은 3.177 mg/g으로 가장 높았고, Mg는 선흑콩은 3.085 mg/g으로 가장 높은 함량을 보였다. Ca과 Mg 사이에서 품종간 유의적인 차이가 나타나지 않았다. Ox와 InsP6 함량 분포는 각각 1.24(선흑콩)$\sim$3.81(다원콩)과 0.43(만리콩)$\sim$4.72(다기콩) mg/g 범위이었고, 옥살산칼슘 결정의 저해물질인 $InsP_6$의 함량이 Ox의 함량보다 상대적으로 높은 함량 분포로 존재하였다. 또한 Ca, Mg, Ox 및 $InsP_6$ 함량 사이의 교차상관관계분석을 통해 Ca과 $InsP_6$ 함량이 Ox 함량보다 높은 선흑콩과 단미2가 옥살산칼슘 생성의 잠재적 위험성을 최소화할 수 있는 품종으로 판단되었다.

Effect of Rice Straw Compost on Cadmium Transfer and Metal-ions Distribution at Different Growth Stages of Soybean

  • Jung, Ha-il;Chae, Mi-Jin;Kong, Myung-Suk;Kang, Seong-Soo;Kim, Yoo-Hak
    • 한국토양비료학회지
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    • 제49권6호
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    • pp.644-650
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    • 2016
  • In soil-to-plant transfer of heavy metals, the amount absorbed and accumulated varies depending on the environment conditions. The absorption rate of cadmium (Cd) in plants differs considerably depending on the bioavailability of Cd in the soil, while usage by various organic matters is also reported to affect absorption patterns. Therefore, this study aimed to identify the difference in the transfer of essential metal ions and Cd to various plant parts when rice straw compost was used to cultivate soybean (Glycine max L. cv. Daepung). In the two-leaf stage of soybean cultivated in a greenhouse, Cd was mixed in the soil, after which the Cd and essential metal ions contents, and physiological changes of soybean seedlings were studied on the 15th and 25th day. The Cd toxicity in the plant was reduced with the use of rice straw compost. Further, the Cd content varied with the plant part, and was higher in young leaves (3rd and 4th leaf) than in the stem. When analyzed by leaf age, the Cd transfer was highest in young leaves (3rd and 4th leaf), followed by mature leaves (1st and 2nd leaf). While there was no significant difference between plant tissues in the absorption rate of copper (Cu) and zinc (Zn) when rice straw compost was used against Cd toxicity, the absorption rate of manganese (Mn) and iron (Fe) showed a significant decline in both the control and rice straw compost treatment conditions, as well as a significant difference between leaf ages. Therefore, these results confirm that the use of rice straw compost against Cd toxicity is effective, and implies that the rate of Cd transfer in the soybean plant varies significantly with leaf age.