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    메밀추출물 첨가가 In Vitro 전분가수분해율 및 정상 성인의 혈당반응에 미치는 영향 = Effects of Added Buckwheat(Fagopyrum esculentum) Extract on Starch Hydrolysis In Vitro and Glucose Responses in Healthy Subjects

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    https://www.riss.kr/link?id=A104129527

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    다국어 초록 (Multilingual Abstract) kakao i 다국어 번역

    This study determined the effects of added buckwheat extract on the rate of corn starch hydrolysis in vitro as well as blood glucose responses through its supplementation in healthy subjects. The rate of corn starch hydrolysis in the presence or absence of various buckwheat extracts was determined in an in vitro enzyme/dialysis system for 2 hr. The buckwheat was extracted by water, ethanol(40%, 70%, 100%) and methanol(40%, 70%, 100%), respectively. Twenty percent(w/w) additions of the ethanol, methanol and water buckwheat extract to corn starch solution significantly reduced the starch hydrolysis at every minute for 2 hr(p<0.05). The calculated hydrolysis indices of the buckwheat extracts were in the order of 100% ethanol extract(50), 100% methanol(54), 40% ethanol(58), 40% methanol(62), 70% methanol(64), 70% ethanol(68), water (82). For the blood glucose response study, groups of 12 volunteers were given 50 g of boiled rice with or without buckwheat extract(10% and 20% of starch weight) using the 100%, 70%, and 40% ethanol extracts, respectively. The addition of each buckwheat ethanol extract significantly reduced blood glucose concentrations at three or more points during 2 hr and also reduced the mean peak rise and area under the blood glucose curve(p<0.05). The calculated glycemic index(GI) values for all ethanol buckwheat extract groups were significantly decreased compared to the control(rice). At the concentrations of 20%, the buckwheat 100% ethanol extracts lowered the GI by 68%. The 100% ethanol extract was more effective than the 70% and 40% extracts for reducing GI. Therefore, the 100% ethanol buckwheat extract would be the most therapeutically useful in modifying postprandial hyperglycemia.
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    This study determined the effects of added buckwheat extract on the rate of corn starch hydrolysis in vitro as well as blood glucose responses through its supplementation in healthy subjects. The rate of corn starch hydrolysis in the presence or absen...

    This study determined the effects of added buckwheat extract on the rate of corn starch hydrolysis in vitro as well as blood glucose responses through its supplementation in healthy subjects. The rate of corn starch hydrolysis in the presence or absence of various buckwheat extracts was determined in an in vitro enzyme/dialysis system for 2 hr. The buckwheat was extracted by water, ethanol(40%, 70%, 100%) and methanol(40%, 70%, 100%), respectively. Twenty percent(w/w) additions of the ethanol, methanol and water buckwheat extract to corn starch solution significantly reduced the starch hydrolysis at every minute for 2 hr(p<0.05). The calculated hydrolysis indices of the buckwheat extracts were in the order of 100% ethanol extract(50), 100% methanol(54), 40% ethanol(58), 40% methanol(62), 70% methanol(64), 70% ethanol(68), water (82). For the blood glucose response study, groups of 12 volunteers were given 50 g of boiled rice with or without buckwheat extract(10% and 20% of starch weight) using the 100%, 70%, and 40% ethanol extracts, respectively. The addition of each buckwheat ethanol extract significantly reduced blood glucose concentrations at three or more points during 2 hr and also reduced the mean peak rise and area under the blood glucose curve(p<0.05). The calculated glycemic index(GI) values for all ethanol buckwheat extract groups were significantly decreased compared to the control(rice). At the concentrations of 20%, the buckwheat 100% ethanol extracts lowered the GI by 68%. The 100% ethanol extract was more effective than the 70% and 40% extracts for reducing GI. Therefore, the 100% ethanol buckwheat extract would be the most therapeutically useful in modifying postprandial hyperglycemia.

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    참고문헌 (Reference)

    1 Anderson JW, 32 : 346-363, 1979

    2 Duncan DB, 13 : 164-176, 1957

    3 김현숙, "솔잎, 돌나물, 톳, 메밀, 깻잎 등 5가지 혼합 열수 추출물의 면역 활성 효과" 한국식품영양학회 21 (21): 269-274, 2008

    4 김동희, "단메밀과 콩 추출물들의 생리 기능성" 한국식품영양학회 16 (16): 347-352, 2003

    5 이영택, "가열처리가 잡곡류의 in vitro 전분가수분해율에 미치는 영향" 한국식품영양과학회 35 (35): 1102-1105, 2006

    6 Chao PL, "in herbs: biological fates and potential interactions with xenobiotics" 10 : 219-228, 2002

    7 Moon JS, "The physicochemical properties of α-amylase inhibitors from black bean and naked barley in Korea" 27 : 367-375, 1998

    8 Wolever TMS, "The glycemic index: methodolgy and implications" 54 : 846-854, 1991

    9 Kang MJ, "The effects of buckwheat on postprandial blood glucose and insulin levels in normal subjects" 577-580, 2001

    10 Yoon J, "The effect of phytic acid on the vitro rate of starch digestion and blood glucose response" 38 : 835-842, 1983

    1 Anderson JW, 32 : 346-363, 1979

    2 Duncan DB, 13 : 164-176, 1957

    3 김현숙, "솔잎, 돌나물, 톳, 메밀, 깻잎 등 5가지 혼합 열수 추출물의 면역 활성 효과" 한국식품영양학회 21 (21): 269-274, 2008

    4 김동희, "단메밀과 콩 추출물들의 생리 기능성" 한국식품영양학회 16 (16): 347-352, 2003

    5 이영택, "가열처리가 잡곡류의 in vitro 전분가수분해율에 미치는 영향" 한국식품영양과학회 35 (35): 1102-1105, 2006

    6 Chao PL, "in herbs: biological fates and potential interactions with xenobiotics" 10 : 219-228, 2002

    7 Moon JS, "The physicochemical properties of α-amylase inhibitors from black bean and naked barley in Korea" 27 : 367-375, 1998

    8 Wolever TMS, "The glycemic index: methodolgy and implications" 54 : 846-854, 1991

    9 Kang MJ, "The effects of buckwheat on postprandial blood glucose and insulin levels in normal subjects" 577-580, 2001

    10 Yoon J, "The effect of phytic acid on the vitro rate of starch digestion and blood glucose response" 38 : 835-842, 1983

    11 Dunaif G, "The effect of dietary fiber on human pancreatic enzyme activity in vitro" 34 : 1034-1035, 1981

    12 Jenkins DJA, "Relationship between rate of digestion of foods and post-prandial glycemia" 22 : 450-455, 1982

    13 Thompson LU, "Relationship between polyphenol intake and blood glucose response of normal and diabetic individuals" 39 : 745-751, 1984

    14 Chun SH, "Purification of α- amylase inhibitor from white kidney bean(Phaseolus vulgaris)" 33 : 117-121, 2001

    15 Bernadetta Krkošková, "Prophylactic components of buckwheat" 38 : 561-568, 2005

    16 Crapo PA, "Postprandial plasma-glucose and -insulin responses to different complex carbohydrate" 26 : 1178-1183, 1977

    17 Rea R, "Lectins in foods and their relation to starch digestibility" 5 : 919-929, 1985

    18 Ikeda K, "In vitro inhibition of digestive enzymes by indigestible polysaccharides" 60 : 260-263, 1983

    19 Jenkins DJA, "Glycemic index of foods: A physioloogical Basis for carbohydrate exchange" 34 : 362-366, 1981

    20 Granfeldt Y, "Glucose and insulin response to barley products: influence of food structure and amylose-amylopectin ratio" 59 : 1075-1082, 1994

    21 Thompson LU, "Food Technology" 123-132, 1988

    22 Oomah BD, "Flavonoids and antioxidative activities in buckwheat" 44 : 1746-1750, 1996

    23 Hertog MG, "Flavonid intake and long-term risk of coronary heart disease and cancer in seven countries study" 15 : 381-386, 1995

    24 Snow P, "Factors affecting the rate of hydrolysis of starch in food" 34 : 2721-2727, 1981

    25 Lee JS, "Effects of germinated buckwheat on blood pressure, plasma glucose and lipid levels on spontaneously hypertensive rats" 32 : 206-211, 2000

    26 Karlström B, "Effects of four meals with different kinds of dietary fibre on glucose metabolism in healthy subjects and non-insulin-dependent diabetic patients" 42 : 519-526, 1988

    27 Lee JS, "Effects of buckwheat diet on serum glucose and lipid metabolism in NIDDM" 28 : 809-816, 1995

    28 Thompson LU, "Effect of phytic acid and tannins on the rate of protein starch digestion" 31 : 596-, 1986

    29 Beesley CM, "Effect of legume whey fraction on in vitro starch digestibility, glycemic response and carbohydrate malabsorption" 28 : 90-, 1985

    30 Mooradian AD, "Drug therapy of postprandial hyperglycaemia" 57 : 19-29, 1999

    31 McDougall GJ, "Different polyphenolic components of soft fruits inhibit α-amylase and α-glucosidase" 53 : 2760-2766, 2005

    32 Jenkins DJA, "Dietary fibers, fibre analogues, and glucose tolerance: Importance of viscosity" 1392-1394, 1978

    33 Tover J, "Analytical and nutritional implications of limited enzymic availability of starch in cooked red kidney beans" 38 : 488-493, 1990

    34 Li S, "Advances in the development of funtional foods from buckwheat" 41 : 451-464, 2001

    35 Lankisch M, "Acute postprandial gastrointestinal and metabolic effects of wheat amylase inhibitor(WAI) in normal, obese, and diabetic humans" 17617-181, 1998

    36 Lee MH, "A study on anti-obesity metabolic effects of the dehulled germinated- buckwheat grain" Korea University of Seoul 1999

    37 Tomotake H, "A buckwheat protein product suppresses gallstone formation and plasma cholesterol more strongly than soy protein isolate in hamsters" 130 : 1670-1674, 2000

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    학술지 이력

    학술지 이력
    연월일 이력구분 이력상세 등재구분
    2026 평가 재인증평가 신청대상 (재인증)
    2020-01-01 등재 등재학술지 유지 (재인증) KCI등재
    2017-01-01 등재 등재학술지 유지 (계속평가) KCI등재
    2013-01-01 등재 등재 1차 FAIL (등재유지) KCI등재
    2010-01-01 등재 등재학술지 유지 (등재유지) KCI등재
    2007-01-01 등재 등재학술지 선정 (등재후보2차) KCI등재
    2006-01-01 등재 등재후보 1차 PASS (등재후보1차) KCI등재후보
    2005-01-01 등재 등재후보학술지 유지 (등재후보1차) KCI등재후보
    2003-01-01 등재 등재후보학술지 선정 (신규평가) KCI등재후보
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    학술지 인용정보

    학술지 인용정보
    기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
    2016 0.55 0.55 0.67
    KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
    0.74 0.76 1.104 0.11
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