• 제목/요약/키워드: Methionine chelates

검색결과 10건 처리시간 0.025초

Effects of Dietary Supplementation of Copper Chelates in the Form of Methionine, Chitosan and Yeast in Laying Hens

  • Lim, H.S.;Paik, I.K.
    • Asian-Australasian Journal of Animal Sciences
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    • 제19권8호
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    • pp.1174-1178
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    • 2006
  • An experiment was conducted to investigate the effects of dietary supplementation of copper chelates in the form of methionine, chitosan and yeast on the performance of laying hens. Four hundred ISA Brown layers, 84 wks old, were assigned to 4 treatments: control, 100 ppm Cu in methionine chelate (Met-Cu), 100 ppm Cu as chitosan chelate (Chitosan-Cu) and 100 ppm Cu as yeast chelate (Yeast-Cu). Each treatment had five replicates of 20 hens. Hen-day and hen-housed egg production and egg weight were significantly (p<0.05) increased by Met-Cu supplementation. The increase by Chitosan-Cu and Yeast-Cu supplementation was not significant. Contrast of the control vs. Cu chelates showed egg weight was significantly (p<0.05) increased by Cu chelate supplementation. Soft-shell egg production was significantly (p<0.05) reduced by supplementation of Cu chelates. Met-Cu treatment showed the lowest incidence of soft egg production. Gizzard erosion index was increased by Cu chelate supplementation. Crude fat in liver, total cholesterol in yolk and Cu content in liver and yolk were not significantly influenced by Cu chelate supplementation. It was concluded that dietary supplementation of 100 ppm Cu as Met-Cu significantly increased egg production and egg weight. Cu-Met chelate was also effective in reducing soft-shell egg production but increased gizzard erosion index.

Effects of Supplementary Copper Chelates in the Form of Methionine, Chitosan and Yeast on the Performance of Broilers

  • Lim, H.S.;Paik, I.K.;Sohn, T.I.;Kim, W.Y.
    • Asian-Australasian Journal of Animal Sciences
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    • 제19권9호
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    • pp.1322-1327
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    • 2006
  • An experiment was conducted to investigate the effects of supplemental copper (Cu) chelates (methionine, chitosan and yeast) on the performance, nutrient digestibility, serum IgG level, gizzard erosion, Cu content in the liver and excreta and the level of total cholesterol in breast muscle and serum of broiler chickens. Two hundred and forty hatched broiler chickens (Ross$^{(R)}$ 208) were assigned to 4 treatments: control, 100 ppm Cu in methionine chelate (Met-Cu), 100 ppm Cu in chitosan chelate (Chitosan-Cu) and 100 ppm Cu in yeast chelate (Yeast-Cu). Each treatment had six replicates of 10 (5 males+5 females) birds each. Weight gain and feed intake tended to be higher in Cu chelate treatments than the control; weight gain was significantly higher in the Met-Cu chelate treatment and feed intake was significantly higher in the Yeast-Cu chelate treatment than the control (p<0.05). Feed/gain was significantly different between treatments in which Met-Cu was lowest followed by the control, Chitosan-Cu and Yeast-Cu. DM availability was increased by Cu chelates among which chitosan-Cu showed the highest DM availability. Cu chelates supplementation tended to increase gizzard erosion index, and Cu content in the liver was highest in the Met-Cu treatment. Supplementation of Cu chelates tended to decrease total cholesterol level in breast muscle and serum but tended to increase the level of HDL in serum. It was concluded that dietary supplementation of 100 ppm Cu in chelates increased weight gain, feed intake and DM availability. Met-Cu was more effective than Chitosan-Cu or Yeast-Cu in improving productivity of broiler chickens.

Effects of Supplementary Mineral Methionine Chelates (Zn, Cu, Mn) on the Performance and Eggshell Quality of Laying Hens

  • Lim, H.S.;Paik, I.K.
    • Asian-Australasian Journal of Animal Sciences
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    • 제16권12호
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    • pp.1804-1808
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    • 2003
  • A layer experiment was conducted to determine the effects of supplementary methionine chelates (Cu, Zn and Mn), individual or in combination, on laying performance, eggshell quality, gizzard erosion, and IgG level of serum for 8 weeks. Five hundred 96-wk-old force molted ISA Brown layers were assigned to five dietary treatments. Basal diet was formulated to meet or exceed the nutrients requirements listed in NRC (1994). Five experimental diets were control, Zn-methionine chelate (Zn-Met) supplemented, Cumethionine chelate (Cu-Met) supplemented, Zn-Mn-methionine chelate (Zn-Mn-Met) supplemented and Zn-Mn-Cu-Met supplemented diet. Each treated diet was supplemented with respective mineral(s) at the level of 100 ppm in the form of methionine chelate. Egg production was increased by Cu-Met supplementation but decreased by Zn-Met supplementation. Egg weight was significantly (p<0.05) lower in Cu-Met treatment than those of the control and Zn-Met treatment. Specific gravity of eggs and eggshell strength were highest and soft egg production was lowest in Cu-Met treatment. Gizzard erosion index was significantly increased by supplementation of Cu-Met, Zn-Mn-Met or Zn-Mn-Cu-Met. Zinc content in liver significantly increased by Zn-Met, but not by Zn-Mn-Cu-Met treatment. In conclusion, 100 ppm Cu in Cu-Met chelate improved laying performance and eggshell quality but also increased gizzard erosion index. Supplementation of Zn-Met or its combination with other mineral chelates had no beneficial effects on laying performance and eggshell quality.

사료 內 Cu 및 Zn-methionine chelates 첨가가 육계의 생산성에 미치는 영향

  • 홍성진;남궁환;백인기
    • 한국가금학회:학술대회논문집
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    • 한국가금학회 2001년도 제18차 정기총회 및 학술발표 PROCEEDINGS
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    • pp.66-68
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    • 2001
  • An experiment was conducted investigate the of supplemental Cu and Zn methionine chelates on the performance, nutrient digestibility, serum IgG level, gizzard erosion, and Cu and Zn contents in the liver and excretion of broiler chickens. One thousand hatched broiler chickens (Ross) of one day old were assigned to 4 treatments:control(T1), 100ppm of copper in the from of Cu-methionine chelate(Cu-Met, T2), 100ppm of zinc in the from of Zn-methionine chelate(Zn-Met, T3) and 100ppm of copper plus 100ppm of zinc in the from of methionine chelate(Cu-Zn-Met, T4). Each treatment had four replications of 50 bird each. Weight gain of chicks fed chelated products were significantly higher than that of chicks fed control(P<0.05).Combination of Cu and Zn chelates(Cu-Zn-Met) tended to show the best growth rate and feed conversion ratio. Nutrient digestibilities were not affected by dietary treatments. Serum IgG level of chicks fed Cu-Zn-Met was significantly higher than that of chicks fed control(P<0.05). Gizzard erosion index was not significantly different among treatments. Contents of Cu and Zn in liver were not significantly affected by dietary treatments, whereas excretions of these minerals were significantly affected by dietary treatments.

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FT-IR and XRD Analyses of Commercial Methionine-Mineral Chelates

  • Han, Jae-Hong;Chi, Yong-Seok;Shin, Bok-Kyu;Kim, Sang-Kyu;Paik, In-Kee
    • Journal of Applied Biological Chemistry
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    • 제49권1호
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    • pp.8-10
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    • 2006
  • Compositions of methionine-metal chelates have been investigated by FT-IR and XRD studies to elucidate their molecular structures. It was concluded that Copamin and Zincamin contain a high percentage of crystalline products, presumably 2:1 Methionine-Cu or Zn complexes. On the contrary, FT-IR and XRD spectra of Ferramin didn't show any characteristics of the chelate and it was concluded to contain major components of starting $FeSO_4$ and methionine without chelation.

이유자돈의 사료 첨가제로서 Copper Chelates(메치오닌, 키토산, 효모)의 효과 (Effect of Copper Chelates(Methionine-Cu, Chitosan-Cu and Yeast-Cu) as the Supplements to Weaning Pig Diet)

  • 김병한;임희석;남궁환;백인기
    • Journal of Animal Science and Technology
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    • 제45권1호
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    • pp.49-56
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    • 2003
  • 본 시험은 이유자돈사료에 Cu-chelates를 첨사시 자돈의 생산성과 혈액지질 및 IgG 수준에 미치는 영향을 측정하기 위하여 실시하였다. 4주령 된 이유자돈 48마리(암 수 각 24마리)를 4처리 4반복으로 반복 당 3마리씩 암수 구별하여 실시하였다. 본 시험에서 사용된 대조구 사료에는 137ppm의 구리가 함유되어 있으며 각 처리구는 대조구사료에 methionine-Cu chelate, chitosan-Cu chelate와 yeast-Cu chelate를 Cu 100ppm 수준에서 각각 첨가하였다. 5주간의 사양기간 동안 증체량은 개체 단위로, 사료섭취량은 pen 단위로 매주 측정을 하였다. 일당 증체량, 사료 섭취량, 사료효율 그리고, 영양소 이용률은 모두 처리간에 유의차를 보이지 않았다. 혈청 내 triglyceride 함량은 chito- san-Cu 처리가 methionine-Cu나 yeast-Cu 처리보다 유의하게 낮았으나 대조구와는 유의한 차이를 보이지 않았다. 혈청 내 cholesterol 함량은 yeast-Cu 처리가 대조구와 methionine-Cu 처리보다 유의하게 낮았지만 chitosan-Cu 처리와는 유의한 차이가 없었다. 혈청 IgG의 함량은 대조구 보다 모든 Cu-chelate 처리구에서 낮게 나타났다. 결론적으로 Cu 137ppm의 대조구 사료에 Cu 100ppm 수준에서 첨가한 Cu-chelates는 이유자돈의 증체량, 사료섭취량과 사료효율에 유의한 영향을 미치지 않았으나, 혈청 내 지질의 조성과 IgG 함량에는 유의한 영향을 미쳤다.

사료 內 Cu 및 Zn-Methionine Chelates 첨가가 육계의 생산성에 미치는 영향 (Effects of Cu and Zn-Methionine Chelates Supplementation on the Performance of Broiler Chickens)

  • 홍성진;임희석;백인기
    • Journal of Animal Science and Technology
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    • 제44권4호
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    • pp.399-406
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    • 2002
  • Methionine chelate 형태로 Cu 및 Zn의 첨가가 육계의 생산성과 영양소 이용률, 혈청 IgG 수준, 근위의 손상정도(gizzard erosion index) 그리고 간과 배설물의 Cu와 Zn 함량에 미치는 영향을 알아보기 위해 갓 부화한 1,000수의 Ross$^{(R)}$ 병아리를 4처리 5반복, 반복당 50수(암수 각각 25수씩)를 배치하여 5주간 사양시험을 실시하였다. 시험사료는 대조구 사료에 Cu와 Zn를 methionine chelate 형태로 100 ppm씩 단독 또는 혼합첨가하여 만들었다. 증체량은 chelate 첨가구들 모두 대조구 보다 높았고(P<0.05), 사료요구량은 chelate 첨가구들이 대조구 보다 낮았다(P<0.05). Cu와 Zn를 혼합하여 첨가한 처리구의 증체량과 사료효율은 Cu와 Zn를 단독 첨가한 처리구들보다 높은 경향을 나타냈다. 영양소 이용률은 Cu 및 Zn chelate 첨가에 의해 유의한 영향을 받지 않았다. 혈청 IgG 농도는 Cu와 Zn chelate 혼합처리구가 대조구에 비해 유의하게 높았으나(P< 0.05), 근위 궤양 정도는 처리에 따른 차이가 없었다. 간과 배설물 내 Cu 및 Zn 함량은 사료에서 이들 광물질의 함량에 의해 영향을 받았다(P<0.05). 결론적으로 Cu와 Zn chelate 단독 또는 혼합하여 첨가시 육계의 증체량과 사료효율을 개선시키고 혈청 IgG 농도를 증가시키며 간 내 Cu와 Zn 수준은 유의한 영향을 받지 않으나 분 내 Cu와 Zn의 함량은 증가시키는 것으로 나타났다.

Evaluation of Metal-Amino Acid Chelates and Complexes at Various Levels of Copper and Zinc in Weanling Pigs and Broiler Chicks

  • Lee, S.H.;Choi, S.C.;Chae, B.J.;Lee, J.K.;Acda, S.P.
    • Asian-Australasian Journal of Animal Sciences
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    • 제14권12호
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    • pp.1734-1740
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    • 2001
  • Feeding trials using weanling pigs and broiler chicks were conducted to evaluate the efficacy of different metal-amino acid chelates and complexes at various levels of copper and zinc on the performance and fecal excretions. A total of 200 weanling pigs (Large White ${\times}$ Yorkshire ${\times}$ Duroc, $11.20{\pm}0.81kg$) were randomly assigned to 5 dietary treatments following a randomized complete block design. Each treatment was replicated 4 times with 10 pigs per pen. The dietary treatments were designated as : A-diet containing 170 ppm Cu from $CuSO_4$ and 120 ppm Zn from $ZnSO_4$, B-diet containing 85 ppm Cu from Cu-amino acid chelate (CAC) and 60 ppm Zn from Zn-amino acid chelate (ZAC), C-diet containing 170 ppm Cu from CAC and 120 ppm Zn from ZAC, D-diet containing 85 ppm Cu from Cu-lysine complex (CL) and 60 ppm Zn from Zn-methionine complex (ZM), and E-diet containing 170 ppm Cu from CL and 120 ppm Zn from ZM. On the other trial, 144 of one day old broiler chicks were randomly distributed to 6 dietary treatments following a completely randomized design. Each treatment was replicated 3 times with 8 chicks per replicate. The dietary treatments were as follows: 1-diet with 60 ppm Cu from $CuSO_4$ and 40 ppm Zn from $ZnSO_4$, 2-diet with 120 ppm Cu from $CuSO_4$ and 80 ppm Zn from $ZnSO_4$, 3-diet with 60 ppm Cu from CAC and 40 ppm Zn from ZAC, 4-diet with 120 ppm Cu from CAC and 80 ppm Zn from ZAC, 5-diet with 60 ppm Cu from CL and 40 ppm Zn from ZM, and 6-diet with 120 ppm Cu from CL and 80 ppm Zn from ZM. In Exp. 1 with pigs, there was no difference on average daily gain and average daily feed intake observed among treatments. There was improvement (p<0.05) on the overall feed conversion ratio (FCR) of pigs fed diet containing 120 ppm Zn and 170 ppm Cu from metal-amino acid chelates relative to those fed diet containing inorganic sources of Cu and Zn but equally efficient as those fed diet containing metal-amino acid complexes. Pigs fed diet containing either metal-amino acid chelates or complexes as sources of Cu and Zn had higher (p<0.05) Cu and Zn concentration in serum and lower (p<0.05) in feces than those receiving diet with inorganic sources. In Exp. 2 with broiler chicks, the overall FCR was not different among treatments. Higher (p<0.05) Cu and Zn concentration in serum was obtained from birds fed diet with 60 ppm Cu and 40 ppm Zn from metal-amino acid chelates compared to those fed diet with inorganic sources of Cu and Zn. Also, the feces collected from birds fed diet with either metal-amino acid chelates or complexes contained generally lower Cu and Zn than those birds fed diet with inorganic sources. The higher the dietary level of Cu and Zn the higher the Cu and Zn concentration in the feces. Based on the results, both metal-amino acid chelates and complexes of Cu and Zn at low levels (Zn 60 ppm, Cu 85 ppm for weanling pigs and Zn 40 ppm, Cu 60 ppm for broiler chicks) are not different from that of high levels of inorganic sources in maintaining growth performance and serum concentration. The fecal excretions for Cu and Zn were greatly reduced when organic sources were used.

반추미생물 분석에 의한 Chromium-methionine Chelate의 반추위 By-pass율 추정 (Estimation of Rumen By-pass Rate of Chromium-methionine Chelates by Ruminal Bacteria Analysis)

  • 김창혁;박병기;박정금;김현숙;성경일;신종서;오상집
    • Journal of Animal Science and Technology
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    • 제47권5호
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    • pp.759-768
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    • 2005
  • 본 연구는 무기태 크롬($ClCl_3$)와 유기태화 크롬인 Cr-methionine chelate(크라민®)을 첨가하였을 때 in vitro 조건에서 반추위내 발효성상과 반추미생물체 내 Cr과 Methionine을 분석하여 크라민®의 by-pass 여부를 간접적으로 증명하고자 실시하였다. In vitro 소화시험에 이용한 기초영양소는 Jar 당 반추미생물 기초 영양소로 시중에 유통되고 있는 배합사료 7g(DM), 볏짚 2g(DM) 및 Corn silage 2g(DM)을 동일하게 배합하였으며, 시험구로는 대조구(control), $ClCl_3$를 1000ppb 첨가한 T1구 및 Cr 농도가 1000ppb이 되도록 크라민®을 첨가한 T2구를 두었으며, 처리 당 5반복으로 시험을 수행하였다. T2의 pH는 모든 배양시간에서 대조구 및 T1구에 비하여 낮은 경향을 보였으며, 암모니아 농도는 배양 6시간 전까지는 대조구와 T1구에 비하여 T2구가 높은 경향을 보였으나, 배양 6시간 이후에는 모든 처리구가 일정하게 낮게 유지되었다. 총 휘발성지방산 농도는 모든 처리구가 배양시간이 경과함에 다라 지속적으로 증가하였으며, 대조구에 비하여 T1구와 T2구의 농도가 유의적으로 낮았다. In vitro 배양 12시간 동안 미생물체 건물 회수율은 T1구가 가장 낮은 반면에 T2구가 가장 효율적으로 미생물을 증가시켰다. 반추미생물체 내 Cr 농도는 대조구와 T2구간에는 차이가 없었으나(P>0.05), T1구는 유의적(P>0.05)으로 높게 나타났다. 반추미생물체 내 methionine 및 cyctine 농도는 대조구와 T2구간에는 차이(P>0.05)가 없었으나, T1구는 비교적 낮은 경향을 보였다. 본 시험의 결과를 종합해 보면, 크라민®의 첨가에 따른 in vitro 배양액내 pH 및 암모니아 농도를 포함한 발효특성에 대한 부의 영향은 없는 것으로 판단되며, 오히려 미생물체 단백질의 합성에 이용되어 암모니아의 생성량과 총미생물 건물 회수량을 증가시킬 수 있는 것으로 판단된다. 또한 크라민®은 반추 미생물에 의해 상당히 제한적으로 분해되기 때문에 반추위를 회피해서 소장으로 by-pass 되어 이용된 것으로 판단되었다.

크롬과 구리의 형태별 병용급여가 육성돈의 육성성적, 소화율 및 분의 Cr, Cu, Zn 배출량에 미치는 영향 미치는 영향 (Effects of Different Sources of Dietary Chromium and Copper on Growth Performances, Nutrients Digestibility, Fecal Cr, Cu and Zn Excretion in Growing Pigs)

  • 박정금;김진웅;유영범;이준엽;오상집
    • Journal of Animal Science and Technology
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    • 제50권3호
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    • pp.355-362
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    • 2008
  • Cr 및 Cu의 형태별 병용급여가 육성돈의 육성성적, 영양소 소화율, 분내 광물질 배출량에 미치는 영향을 비교 분석한 결과는 다음과 같다.1.유기태 또는 무기태 형태의 Cr과 Cu를 병용급여한 결과 육성돈의 일당증체량은 CrMet과 CuMet을 첨가한 구에서 높게(p<0.05) 나타나고 사료요구율도 낮았다(p<0.05). 반면에 CrMet과 CuSO4를 병용 첨가한 구에서는 사료섭취량은 낮고(p<0.05) 일당증체량도 낮게(p<0.05) 나타났다.2.영양소 소화율은 CrMet과 CuMet을 병용 첨가한 구에서 영양소 소화율이 높게(p<0.05) 나타났으나, CrMet과 CuSO4를 병용 첨가한 구에서는 낮게(p<0.05) 나타났다. CrCl3 첨가구에서는 CuMet 또는 CuSO4를 병용 첨가하더라도 영양소 소화율에는 유의적인(p>0.05) 차이를 보이지 않았다. 3.광물질 Cu, Zn, Cr의 각각의 분으로의 배출율은 CrMet과 CuMet을 병용 첨가한 구에서 낮았으며(p<0.05), CrCl3와 CuSO4를 병용 첨가한 구에서 높게(p<0.05) 나타났다.이상의 결과를 집약하여 보면 유기태 형태의 병용 첨가구가 무기태 형태 병용 첨가구보다 일당증체량이 높고 사료요구율이 개선되었고, 영양소 소화율도 높게 나타났다. 또한 유기태 형태로 급여한 병용 첨가구가 무기태 형태로 병용 첨가한 구보다 Cu, Zn, Cr의 분으로의 배출율이 낮게 나타났다. 따라서 본 시험에서는 유기태 또는 무기태 Cr과 Cu의 병용첨가는 성장률이나 영양소 소화율에서 교호 및 길항작용 효과가 있는 것으로 판단된다. 또한 유기태 형태의 광물질로 무기태 형태를 대체 급여시 토양에 과다 축적될 경우 환경오염을 일으킬 수 있는 광물질의 배설량을 감소시킬 수 있음을 보여주었다.