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국내산 원유 중 비타민 A, E, $B_l$$B_2$ 함량에 관한 연구 (Composition of Vitamin A, E, $B_l$ and $B_2$ Contents in Korean Cow's Raw Milk in Korea)

  • 곽병만;김성한;김강섭;이기웅;안장혁;장치훈
    • 한국축산식품학회지
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    • 제26권2호
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    • pp.245-251
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    • 2006
  • 본 연구에서는 2003년 7월에서 2004년 6월까지 충청도와 전라도 지역에서 집유한 원유의 비타민 A, E, $B_l$$B_l$ 함량을 1년간 분석함으로써 우유에 함유된 비타민의 최근 동향 및 계절적 변화를 조사하고자 연구를 진행하였다. 이 중 지용성 비타민 A와 E의 함량에는 계절적 변화가 있었으며, 비타민 A의 경우 봄($3월{\sim}5월$)은 $35.1{\sim}59.0{\mu}g/100mL$로 평균 $44.4{\mu}g/100mL$, 여름($6{\sim}8월$)은 $36.7{\sim}65.6{\mu}g/100 mL$로 평균 $50.0{\mu}g/100 mL$, 가을($9월{\sim}11월$)은 $28.7{\sim}61.2{\mu}g/100 mL$로 평균 $46.8{\mu}g/100 mL$이었으며, 겨울($12월{\sim}2월$)은 $29.9{\sim}57.8{\mu}g/100mL$로 평균 $43.1{\mu}g/100 mL$를 나타내어 우유 중 비타민 A함량은 여름철이 가장 높고, 겨울철이 가장 낮은 것으로 나타났다. 비타민 E의 경우 봄($3월{\sim}5월$)은 $28.3{\sim}59.2 {\mu}g/100 mL$ 로 평균 $45.8 {\mu}g/100 mL$, 여름($6월{\sim}8월$)은 $39.6{\sim}69.9 {\mu}g/100mL$로 평균 $58.8{\mu}g/100 mL$, 가을($9월{\sim}11월$)은 $35.0{\sim}62.8{\mu}g/100 mL$로 평균 $46.2{\mu}g/100 mL$이었으며, 겨울($12월{\sim}2월$)은 $26.0{\sim}55.4{\mu}g/100 mL$로 평균 $41.5 {\mu}g/100 mL$이었다. 분석결과에서 알 수 있듯이 원유 중 비타민 E함량은 여름철이 가장 높고, 겨울철이 가장 낮은 것으로 나타났다. 그러나 수용성 비타민 $B_l$$B_2$의 경우는 계절에 따른 변화가 없었으며(p<0.05), 비타민 $B_l$의 경우 봄($3월{\sim}5월$)은 $27.7{\sim}57.9{\mu}g/100 mL$로 평균 $42.84{\mu}g/100 mL$, 여름($6월{\sim}8월$)은 $32.4{\sim}66.1{\mu}g/100 mL$로 평균 $49.39{\mu}g/100 mL$, 가을($9월{\sim}11월$)은 $34.1{\sim}63.7{\mu}g/100 mL$로 평균 $46.69{\mu}g/100 mL$이었으며, 겨울($12월{\sim}2월$)은 $20.6{\sim}61.4{\mu}g/100 mL$로 평균$43.26{\mu}g/100 mL$로 측정되었다. 비타민 $B_2$의 경우는 봄($3월{\sim}5월$)은 $150{\sim}182{\mu}g/100 mL$ 로 평균 $166{\mu}g/100 mL$, 여름($6월{\sim}8월$)에는 $145{\sim}185 {\mu}g/100 mL$로 평균 $163 {\mu}g/100 mL$, 가을($9월{\sim}11월$)은 $149{\sim}180{\mu}g/100 mL$로 평균 $166{\mu}g/100 mL$이었으며 겨울($12월{\sim}2월$)은 $148{\sim}190{\mu}g/100 mL$로 평균 $167{\mu}g/100 mL$로 측정되었다.

호박잎 분말을 첨가한 스폰지 케이크의 품질 특성, 항산화 활성 및 저장 기간에 따른 노화 억제 효과 (Effects of Pumpkin (Cucurbita moschata Duch.) Leaf Powder on Quality Characteristics, Antioxidant Activities, and Retarding Retrogradation by Shelf-life of Sponge Cake)

  • 송가영;오현빈;장양양;정기영;김영순
    • 한국식품영양학회지
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    • 제29권6호
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    • pp.930-937
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    • 2016
  • This study investigated the quality characteristics, antioxidant activities, and retarding retrogradation of sponge cakes made with 0%, 1%, 3%, 5% and 7% pumpkin (Cucurbita moschata Duch.) leaf powder. Specific capacity significantly increased with the addition (0.33~0.38), but baking loss and dough yield were not significantly different (p<0.05). In color, there was a decrease in the L-value, a-value and b-value, but ${\Delta}E$ increased in proportion to the amount of pumpkin leaf powder. Moisture content increased in the 0~3% additions, from 27.90~31.68%, but decreased in 5% and 7% (22.37% and 28.15%, respectively). pH tended to decrease significantly according to the amount of pumpkin leaf powder (p<0.05). Hardness increased with the addition of pumpkin leaf powder, and pumpkin leaf groups presented higher springiness and cohesiveness than the control. Chewiness was not significantly differ (p<0.05). In retarding retrogradation, Avrami exponent (n) showed that addition of 5% (0.1329) had more retarding retrogradation effect than the control (0.4319), whereas time constant (1/k) showed both 3% (100.00) and 5% (70.42) addition had more effect than control (18.45). Total phenols and flavonoids content increased proportionate to the addition levels. ABTS radical scavenging activity tended to increase according to the level of pumpkin leaf powder. In sensory properties, 5% addition showed maximum color, and 3% addition had the highest scores in flavor, moistness, sweetness, chewiness and overall acceptability. These results suggested that pumpkin leaf was a good addition to improve the quality characteristics, health and sensory preferences. The most appropriate proportion to have the effect of retarding retrogradation in sponge cake is 3%.

Expression and Characterization of β-1,4-Galactosyltransferase from Neisseria meningitidis and Neisseria gonorrhoeae

  • Park, Jae-Eun;Lee, Ki-Young;Do, Su-Il;Lee, Sang-Soo
    • BMB Reports
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    • 제35권3호
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    • pp.330-336
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    • 2002
  • The lgtB genes that encode $\beta$-1,4-galactosyltransferases from Neisseria meningitidis ATCC 13102 and gonorrhoeae ATCC 31151 were isolated by a polymerase chain reaction using the pfu DNA polymerase. They were expressed under the control of lac and T7 promoters in Escherichia coli M15 and BL21 (DE3). Although the genes were efficiently expressed in E. coli M15 at $37^{\circ}C$ (33 kDa), most of the $\beta$-1,4-galactosyltransferases that were produced were insoluble and proteolysed into enzymatically inactive polypeptides that lacked C-terminal residues (29.5 kDa and 28 kDa) during the purification steps. When the temperature of the cell growth was lowered to $25^{\circ}C$, however, the solubility of the $\beta$-1,4-galactosyltransferases increased substantially. A stable N-terminal his-tagged recombinant enzyme preparation could be achieved with E. coli BL21 (DE3) that expressed lgtB. Therefore, the cloned $\beta$-1,4-galactosyltransferases were expressed under the control of the T7 promoter in E. coli BL21 (DE3), mostly to the soluble form at $25^{\circ}C$. The proteins were easily purified to homogeneity by column chromatography using Ni-NTA resin, and were found to be active. The galactosyltransferases exhibited pH optimum at 6.5-7.0, and had an essential requirement for the $Mn^{+2}$ ions for its action. The $Mg^{+2}$ and $Ca{+2}$ ions showed about half of the galactosyltransferase activities with the $Mn^{+2}$ ion. In the presence of the $Fe^{+2}$ ion, partial activation was observed with the $\beta$-1,4-galactosyltransferase from N. meningitidis(64% of the enzyme activity with the $Mn^{+2}$$Ni^{+2}$, $Zn^{+2}$, and $Cu^{+2}$ ions could not activate the $\beta$-1,4-galactosyltransferase activity. The inhibited enzyme activity with the $Ni^{+2}$ ion was partially recovered with the $Mn^{+2}$$Fe^{+2}$, $Zn^{+2}$, and $Cu^{+2}$ ions, the $Mn^{+2}$$\beta$-1,4-galactosyltransferase activity was 1.5-fold stimulated with the non-ionic detergent Triton X-100 (0.1-5%).