• Title/Summary/Keyword: 대두 추출물

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Effect of Supplement of Various Antibiotics Alternatives on Performance, Organ Weight, Cecal Microflora, and Blood Characteristics in Broilers (다양한 항생제 대체제의 첨가 급여가 육계의 생산성, 조직 중량, 장내 미생물 균총 및 혈액 특성에 미치는 영향)

  • Hong, Eui-Chul;Kim, Dong-Wook;Kang, Hwan-Ku;Park, Ki-Tae;Jeon, Jin-Joo;Kim, Hyun-Soo;Park, Sung-Bok;Kim, Chan-Ho;Kim, Sang-Ho
    • Korean Journal of Poultry Science
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    • v.44 no.2
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    • pp.113-122
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    • 2017
  • This study was conducted to investigate the effect of dietary supplementation with Lactobacillus, medicinal plant extracts, and plant extracts on growth performance, cecal microflora, relative organ weight, and lymphocyte profile in broiler chickens. One hundred broilers (5 wk old) were used and divided into five (treatment) ${\times}$ two (challenged Salmonella) groups containing 10 broilers. The treatments were as follows: no antibiotics group (NC), antibiotics group (PC), 0.1% lactic acid bacteria group (LB), 100 ppm medicinal plant extract group (MPE), and 100 ppm herb extract group (HE). A basal diet was formulated as 3,100 kcal/kg ME and 20% CP based on corn and soybean meal. Broilers were fed with the experimental diets with no challenge for 1 wk and with challenge of SG for 2 wk. SG were added in water as $1.0{\times}10^6cfu/L$. Final body weight and weight gain were significantly decreased following challenge with SG (P<0.05). However, with the addition of antibiotic alternatives, growth performance was improved and reduction of performance following challenge with SG was lowed compared with that of the NC treatment (P<0.05). Coliform bacteria and Salmonella but not lactic acid bacteria increased with the addition of antibiotic alternatives (P<0.05). Lactobacillus increased significantly with the addition of lactic acid bacteria compared with the NC and PC treatments (P<0.05). The weight of liver, spleen, and bursa of Fabricius increased with addition of antibiotic alternatives (P<0.05). WBC was highly reduced at 4 days after challenge with SG, but was normally maintained thereafter. There was no significant difference in coliform bacteria, Salmonella, organ weights, or WBC with the addition of antibiotic alternatives. Finally, Lactobacillus, medicinal plant extract, and herb extract can be used as antibiotic alternatives; but one alternative completely can't alternate as antibiotics. Therefore, further studies are needed to investigate the synergistic effects of two or more antibiotic alternatives.

Physicochemical and Antioxidant Properties of Red Ginseng Marc Fermented by Bacillus subtilis HA with Mugwort Powder Addition (고초균 발효에 의한 홍삼박 발효물에 쑥 분말 첨가에 따른 물리화학적 및 항산화적 특성)

  • Jung, Hye-Won;Kim, Ji-Eun;Seo, Ji-Hyun;Lee, Sam-Pin
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.39 no.9
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    • pp.1391-1398
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    • 2010
  • Red ginseng marc (RGM) was fermented by the solid-state fermentation using Bacillus subtilis HA to produce biologically active compounds. The red ginseng marc fermented without mugwort possessed higher mucilage content (11.5%) and proteolytic activity (277.5 unit/g). The RGM fermented with 3% mugwort showed lower production of mucilage and protease activity whereas higher tyrosine content (581.3 mg%) and consistency index ($8.8\;Pa{\cdot}s^n$). The mucilage produced from fermented RGM contained $\gamma$-PGA with 1,100 kDa of molecular weight, and its yield was 15.9 g/kg. 70% ethanol extract from the RGM fermented with 3% mugwort had the highest DPPH radical scavenging effect ($IC_{50}$ value of 0.57 mg/mL), and the water extract showed the highest ABTS radical scavenging effect, indicating $IC_{50}$ value of 1.24 mg/mL. Overall, the RGM fermented by B. subtilis HA with mugwort contained various biologically active compounds having antioxidant effects.

Isolation and Purification of Tocopherols and Sterols from Distillates of Soy Oil Deodorization (대두유 탈취 증류분에 함유된 토코폐롤 및 스테롤의 분리정제)

  • Kim, Sun-K.;Rhee, Joon-S.
    • Korean Journal of Food Science and Technology
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    • v.14 no.2
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    • pp.174-178
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    • 1982
  • Various separation methods such as solvent extraction, chemical treatment and molecular distillation were tested for the separation of tocopherols and sterols from soy oil scum. The end products of these methods were tocopherol concentrates and sterol crystals. In the solvent extraction, purity and yield of tocopherols were 21.2% and 28.3%, and those of sterols were 69.2% and 2.6%. In the chemical treatment, purity and yield of tocopherols were 11.8% and 76.4% and those of sterols were 85.1% and 34.3% respectively. In the molecular distillation, purity and yield of tocopherols were 45.0% and 68.0%, and those of sterols were 49.3% and 57.0% respectively. The end products from the methods were characterized by HPLC. Based on the results of this study, the molecular distillation method was found to be more efficient than any other method tested.

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Antioxidant Activity of Ethanol Extract from $D\breve{o}d\breve{o}k$(Codonopsis lanceolata) (더덕 에탄올추출물의 항산화효과)

  • Maeng, Young-Sun;Park, Hye-Kyung
    • Korean Journal of Food Science and Technology
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    • v.23 no.3
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    • pp.311-316
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    • 1991
  • This study was carried out to investigate the antioxidant activity of the ethanol extract from $d\bar{o}d\bar{o}k$ compared with that from ginseng. The peroxide values and thiobarbituric acid values were examined in order to estimate the antioxidant activity of the extract in soybean oil and lard. The antioxidant activity of the extract in soybean oil increased in the order of BHA$d\bar{o}d\bar{o}k$ cold extract(WDCE)$d\bar{o}d\bar{o}k$ reflux extract(WDRE)$d\bar{o}d\bar{o}k$ cold extract(CDCE)$d\bar{o}d\bar{o}k$ reflux extract(CDRE) $d\bar{o}d\bar{o}k$ showed significantly stronger antioxidant activity than that from ginseng.

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Effect of chiro-inositol from Soybean on Reducing Hyperglycemia and Its Role for Nutraceutic Supplement for Insulin Resistance (대두 chiro-inositol의 혈당강하효과)

  • Hong Yonggeun;Pak Yunbae
    • Journal of Life Science
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    • v.15 no.2 s.69
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    • pp.197-201
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    • 2005
  • Studies with diabetic mammalian systems showed that chiro-inositol administration decreased blood glucose levels. We investigated which foodstuffs contain large amounts of chiro-inositol by surveying vegetables, edible plants and other staples in an effort to explore the nutritional or therapeutic supplements of chiro-inositol for diabetic patients. In the course of our investigation, we found that soybean and soybean derivatives have high chiro-inositol levels (upto 20 mg/g). The purified chiro-inositol from the soybean was then tested for reducing hyperglycemia by administrating the chiro-inositol in streptozotocin-treated diabetic rats. The results showed that the intragastric administration of 50 mg chiro-inositol/kg BW lowered hyperglycemia by $40\%$ and that the effect was sustained for approximately 12 hr.

Preparation of Instant Powdered Soup Using Oyster Wash Water and Its Characteristics (굴 세척액을 이용한 인스턴트 분말 수프의 제조 및 특성)

  • Kim, Jin-Soo;Heu, Min-Soo
    • Korean Journal of Food Science and Technology
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    • v.33 no.5
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    • pp.534-539
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    • 2001
  • To utilize oyster cannery processing waste water effectively, this study was carried out to prepare instant powdered soup using oyster wash water. Instant powdered soup from oyster hot-water extracts (HWE) was prepared by mixing oyster spray-dried hot-water extracts (15 g) with table salt (5 g), cream powder (19 g), milk replacer (12 g), wheat flour (20 g), corn flour (15 g), starch (5 g), glucose (7.5 g) and onion powder (1.5 g). In preparing instant powdered soup from oyster wash water (OWW), powder from oyster spray-dried wash water instead of the spray-dried hot water extracts, was added and other additives were added in proportion to those in the HWE. The OWW consists mainly of carbohydrates (71.1%). It was not different from the instant powdered soup from hot-water extracts. The volatile basic nitrogen, vaible cell counts, coliform group of instant powdered soup from oyster wash water contains 29.4 mg/100g, $4.6{\times}10^4\;CFU/g$, <18 MPN/100g, respectively and its water activity has 0.246. So it was a hygienically safe and conservable instant food. The main fatty acid of OWW was 16 : 0 and 18 : 1n-9. Its chemical score of protein was 59.4% and its main inorganic matter was iron. According to a sensory evaluation, in contrast to the HWE, the OWW had a slightly lower aroma but better taste. It was concluded from the above chemical and sensual evaluation that the oyster wash water can be used as a flavor enhancer for instant powdered soup.

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Effect of Wa-song(Orostachys japonicus A. Berger) Extract on the Oxidative Stability of Edible Oil During its Heating (식용유지의 가열시 와송 추출물이 산화안정성에 미치는 영향)

  • Lee, Soo-Jung;Shin, Jung-Hye;Seo, Jong-Kwon;Sung, Nak-Ju
    • Journal of Food Hygiene and Safety
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    • v.24 no.1
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    • pp.12-18
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    • 2009
  • This experiment was conducted to investigate the effect of wa-song (Orostachys japonicus A. Berger) extracts on the oxidative stability of edible oil. Wa-song was dried from hot air (HWE) and freeze (FWE), and then they were extracted by hot water. The different levels (0.1, 0.5 and 1.0 g/100 mL) of HWE and FWE were added to soybean oil and lard. The chromaticity of edible oils was generally increased with prolonged heating time and HWE was higher than FWE. The anisidine value showed significant increase during heating for 48hrs. After heating for 48 hrs, it was lower than control, except for HWE added sample of 0.5 and 1.0 g/100 mL, FWE added sample of 1.0 g/100 mL. In lard, it was lower in sample added wa-song extract than control. The acid value was not significant by added amount of wa-song. Its value in HWE added sample was lower than FWE, after heating for 48 hrs. POV was lower HWE than FWE, also. After heating for 24 hrs, TBA values in soybean oil containing HWE and FWE added sample was lower than control. In lard, its value in HWE and FWE added sample was lower than control during heating for $12{sim}48\;hrs$. Therefore, those results suggested that HWE has higher antioxidant activity than FWE added sample, and then oxidative stability of HWE in edible oil was more potential for lard during its heating.

Understanding of Functional Foods for Nutritional Skin Care (피부 미용을 위한 기능성 식이 소재의 이해)

  • Kim Juyoung;Kim Hyunae;Park Kyungho;Cho Yunhi
    • Journal of the Society of Cosmetic Scientists of Korea
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    • v.30 no.3 s.47
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    • pp.313-320
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    • 2004
  • Human skin is continuously exposed to internal and external influences that may affect its condition and functioning. To maintain and improve skin condition, a wide variety of skin-care products is in the market. However, many of skin problems originate from internal causes, and the new insight into the relation between nutritional factors and skin is now receiving a great attention. Specific positive effects of nutrients or nutraceutical compounds on skin conditions may prove to be biologically relevant and may consequently allow for claims on products containing these compounds, resulting in the development of new functional food for optimal skin condition. In this review, these functions of nutrients and nutraceutical compounds in skin are summarized as providing a basis for the feasibility of the concept of functional foods for maintaining and improving skin condition.

Binding between Lipopolysaccharide of Rhizobia and Lectins from Soybean (대두 근류균의 리포 다당과 Lectin의 결합성)

  • Kang, Sang-Jae;Kim, Jin-Ho;Park, Woo-Churl
    • Current Research on Agriculture and Life Sciences
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    • v.15
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    • pp.25-32
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    • 1997
  • This study was carried out to research the biological characteristics among rhizobia and soybean seed and root lectins, and to obtain a basic imformation of host specificity in biological nitrogen symbiosis system. The results obtained were as follows: Purified seed lectin from soybean varieties of paldal, backwoon and hwangkeum formed immunoprecipitin lines with standard soybean seed lectin and the root lectins from soybean seedlings immunoelectrophoretically. Soybean seed and root lectins interacted with Rhizobium japonicum and Bradyrhizobium japonicum, but didn't interacted with Rhizobium. viceae, whereas pea lectin conjugated with R. viceae, but didn't bind with R. japonicum and B. japonicum. Lipopolysaccharides of B. japonicum and R. viceae were fractionated into LPS I and LPS II on the sephadox G-50. Lipopolysaccharides from B. japonicum showed rhe binding acitivity both with soybean seed lectin and root lectin, but those from R. viceae didn't show it with soybean seed and root lectins.

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Effects of Isoflavone-Rich Bean Sprout on the Lipid Metabolism of the Ethanol-Treated Rats (고 Isoflavone 콩나물이 만성 에탄올 투여 흰쥐의 지질대사에 미치는 영향)

  • Kim, Kwang-Ok;Lee, Hye-Sung
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.36 no.12
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    • pp.1544-1552
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    • 2007
  • The present study evaluated the effects of isoflavone-rich bean sprout on the lipid metabolism in ethanol-treated rats. Fifty male Sprague-Dawley rats were randomly divided into five groups: normal control, alcohol control, low soybean sprout+ethanol (low SS), high soybean sprout+ethanol (high SS) and isoflavone extract+ethanol (IE). They were fed experimental diets based on Lieber-DeCarli liquid diet for 40 days. Body weight, food intake and feed efficiency ratio (FER) of ethanol-treated groups were significantly suppressed compared with that of the normal control group. Among the ethanol-treated groups, high SS group showed in significant increase in the body weight, food intake and FER. Supplementation of isoflavone-rich soybean sprout powder or isoflavone extract significantly decreased plasma triglyceride (TG), total cholesterol (TC), atherogenic index (AI) and increased the ratio of HDL-cholesterol to TC. Supplements also significantly decreased total lipid, TG and TC in liver tissue compared with that of alcohol control. There was a significant decrease in hepatic lipid peroxidation products in IE group compared with other ethanol-treated groups. This results suggest that supplementation of isoflavone-rich bean sprout powder may exert beneficial effects on lipid metabolism in chronically alcohol-treated animals by improving lipid profiles in plasma and liver tissues.