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      오미자 추출물의 추출특성 및 항산화 효과 = Extraction Characteristics and Antioxidative Activity of Schiznadra chinensis Extracts

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      https://www.riss.kr/link?id=A45048222

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      다국어 초록 (Multilingual Abstract) kakao i 다국어 번역

      The present study was conducted to investigate extraction characteristics and antioxidative activity of Schiznadra chinensis extracts. Schiznadra chinensis was extracted by reflux extraction(RE) under different extraction conditions including solvent. The solid yield, turbidity, color value, titratable acidity, free sugar contents, electron donating ability(EDA) and superoxide dismutase(SOD)-like ability of Schiznadra chinensis extracts were determined. The highest solid yield value was obtained with water of 10 fold. No significant difference in turbidity and color value were found among the extracts prepared with various extraction solvents, 75% ethanol, 50% ethanol and water. The highest titratable acidity was obtained with water extracts of Schiznadra chinensis. The free sugar contents of Schiznadra chinensis extracted with water showed the highest value. Schiznadra chinensis extracts with water included higher contents of free sugar compared with those of the other solvent extracts, 50% ethanol and 75% ethanol extracts. The total polyphenol compound content of Schiznadra chinensis extracted with 50% ethanol showed the highest value. Schiznadra chinensis extracts with 50% ethanol included higher contents of total polyphenol compound compared with those of the other solvent extracts, water and 75% ethanol extracts. The electron donating ability of extracts were 60.87% in water, 57.24% in 50% ethanol, and 55.61% in 75% ethanol.
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      The present study was conducted to investigate extraction characteristics and antioxidative activity of Schiznadra chinensis extracts. Schiznadra chinensis was extracted by reflux extraction(RE) under different extraction conditions including solvent....

      The present study was conducted to investigate extraction characteristics and antioxidative activity of Schiznadra chinensis extracts. Schiznadra chinensis was extracted by reflux extraction(RE) under different extraction conditions including solvent. The solid yield, turbidity, color value, titratable acidity, free sugar contents, electron donating ability(EDA) and superoxide dismutase(SOD)-like ability of Schiznadra chinensis extracts were determined. The highest solid yield value was obtained with water of 10 fold. No significant difference in turbidity and color value were found among the extracts prepared with various extraction solvents, 75% ethanol, 50% ethanol and water. The highest titratable acidity was obtained with water extracts of Schiznadra chinensis. The free sugar contents of Schiznadra chinensis extracted with water showed the highest value. Schiznadra chinensis extracts with water included higher contents of free sugar compared with those of the other solvent extracts, 50% ethanol and 75% ethanol extracts. The total polyphenol compound content of Schiznadra chinensis extracted with 50% ethanol showed the highest value. Schiznadra chinensis extracts with 50% ethanol included higher contents of total polyphenol compound compared with those of the other solvent extracts, water and 75% ethanol extracts. The electron donating ability of extracts were 60.87% in water, 57.24% in 50% ethanol, and 55.61% in 75% ethanol.

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      참고문헌 (Reference)

      1 Ames BN, "and the degenerative diseases of aging. Proc. Natl. Acad. Sci. USA 90" 7915-7922, 1993

      2 Devy C, "and Gautier R. New perspectives on the biochemistry of superoxide anion and the efficiency of superoxide dismutase. Biochem. Parmacol. 39 399-405" 1990

      3 Bao TT, "Xu GF and Sun RH. Acomparison of the pharmacologic actions of 7 constituents isolated from Fructus schizandrae. J. Chin. Med. 93" 41-47,

      4 Kang YH, "The nitrite scavenging and electron donating ability of phenolic compounds" 28 : 232-239, 1996

      5 Taguchi H, "The constituents of Schizandra chinensis B isolation and structure determination of five new lignans and the absolute structure of schizandrin" 1979

      6 Taguchi H, "The constituents of Schizandra chinensis B isolation and structure determination of five new lignans and the absolute structure of schizandrin" 1978

      7 Taguchi H, "The constituents of Schizandra chinensis B isolation and structure determination of five new lignans and the absolute structure of schizandrin" 1979

      8 Taguchi H, "The constituents of Schizandra chinensis B isolation and structure determination of five new lignans and the absolute structure of schizandrin" 1979

      9 Taguchi H, "The constituents of Schizandra chinensis B isolation and structure determination of five new lignans and the absolute structure of schizandrin" 1979

      10 Kim SM, "The antioxidant ability and nitrite scavenging ability of plant extracts" 33 : 626-632, 1996

      1 Ames BN, "and the degenerative diseases of aging. Proc. Natl. Acad. Sci. USA 90" 7915-7922, 1993

      2 Devy C, "and Gautier R. New perspectives on the biochemistry of superoxide anion and the efficiency of superoxide dismutase. Biochem. Parmacol. 39 399-405" 1990

      3 Bao TT, "Xu GF and Sun RH. Acomparison of the pharmacologic actions of 7 constituents isolated from Fructus schizandrae. J. Chin. Med. 93" 41-47,

      4 Kang YH, "The nitrite scavenging and electron donating ability of phenolic compounds" 28 : 232-239, 1996

      5 Taguchi H, "The constituents of Schizandra chinensis B isolation and structure determination of five new lignans and the absolute structure of schizandrin" 1979

      6 Taguchi H, "The constituents of Schizandra chinensis B isolation and structure determination of five new lignans and the absolute structure of schizandrin" 1978

      7 Taguchi H, "The constituents of Schizandra chinensis B isolation and structure determination of five new lignans and the absolute structure of schizandrin" 1979

      8 Taguchi H, "The constituents of Schizandra chinensis B isolation and structure determination of five new lignans and the absolute structure of schizandrin" 1979

      9 Taguchi H, "The constituents of Schizandra chinensis B isolation and structure determination of five new lignans and the absolute structure of schizandrin" 1979

      10 Kim SM, "The antioxidant ability and nitrite scavenging ability of plant extracts" 33 : 626-632, 1996

      11 Hong, "Superoxid dismutase-like activity of apple juice mixed with some fruits and vegetables" 30 : 1484-1487, 1998

      12 Song JH, "Physiological activities of Phellinus ribis extracts" 35 : 690-695, 2003

      13 Song JH, "Physiological activities of Phellinus ribis extracts" 35 : 690-695, 2003

      14 Song HN, "Optimization of extraction and clarification condition for preparation of liquid extract tea from artificially cultivated phellinus linteus" 31 : 636-641, 2002

      15 Folin O, "On phosphotungastic-phosphomolybdic compounds as color reagents" 239-249, 1912

      16 Bolis MS, "Nature" 26 : 1199-1200, 1958

      17 "Members of Pharmacognosy. In hyundDai pharmacognoay" 434-438,

      18 Marklund S, "Involvement of superoxide anion radical in the oxidation of pyrogallol and a cinvenient assay for superoxide dismutase" 468-474, 1974

      19 Jung MS, "Invitro biological activity assay of ethanol extract of Radish" 47 : 67-71, 2004

      20 Lee SE, "Inhibitory activity on angiotensin converting enzyme and antioxidant activity of Hovenia dulcis Thunb" 12 : 79-84, 2004

      21 Takahashi N, "Dual action of isoprenols from herbal medicines on both PPARgamma and PPARaloha in 3T3-L1 adipocytes and HepG2 Hepatocytes." 514 : 315-322, 2002

      22 Lee KE, "Changes in extraction pattern and yield of bamboo leaf powder at different extraction conditions" 9 : 46-52, 2004

      23 Lee MJ, "Antioxidative effects of korean Bamboo tree, Wang-dae, Som-dae, Maengjong-juk and O-juk." 35 : 1226-1232, 2003

      24 An BJ, "Antioxidant effects and application as natural ingredients of korean sanguisorbae officinalis L" 47 : 244-250, 2004

      25 Choi JS, "A naphthalene glycoside from Cassia tora. ." 40 : 997-999, 1995

      26 Kitagawa Y, "2?-benzyloxychalcone derivatives stimulate glucose uptake in 3T3-L1 adipocytes." 73 : 2091-2099, 2003

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      학술지 이력

      학술지 이력
      연월일 이력구분 이력상세 등재구분
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      2013-01-01 평가 등재 1차 FAIL (등재유지) KCI등재
      2010-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2008-01-01 평가 등재학술지 유지 (등재유지) KCI등재
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      2004-01-01 평가 등재후보 1차 PASS (등재후보1차) KCI등재후보
      2003-01-01 평가 등재후보 1차 FAIL (등재후보1차) KCI등재후보
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      학술지 인용정보
      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 0.8 0.8 0.87
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.87 0.89 1.461 0.11
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