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    제 2형 당뇨병 환자에서 단기간 아연 보충에 따른 아연과 구리 영양상태

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    https://www.riss.kr/link?id=A100656784

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    다국어 초록 (Multilingual Abstract) kakao i 다국어 번역

    This study was carried out to determine whether a short-term zinc supplementation could improve the zinc status without adverse changes in copper status among type 2 diabetic patients. Seventy-six diabetic subjects and 72 normal adults participated in this study. Subjects were randomly divided into supplemented and control groups. Forty-four diabetic patients and 34 normal subjects were supplemented with 50 mg zinc gluconate daily for 4 weeks. Dietary intakes of participants were measured for two non-consecutive days by 24-hour recall method. Nutritional status of zinc and copper were also evaluated by biochemical measurement of fasting plasma samples and spot urinary collection. At baseline, diabetic patients showed significantly lower levels of dietary zinc intake and higher urinary zinc excretion than the normal adult group (p<0.05, p<0.0001). Plasma level of zinc was not significantly different between diabetic and normal adults at baseline. However, plasma zinc level increased significantly in both diabetic patients and normal adults after zinc supplementation. The changes in plasma copper levels following zinc supplementation were not statistically significant in diabetic subjects as well as in normal adults. These results indicated that four weeks of zinc supplementation did not influence Cu status and that it may contribute to improving the zinc status. Therefore, we suggest that Zn supplementation for a short-term period may improve marginal zinc status of diabetic patients without interfering with their copper status (Korean J Community Nutrition 14(2):229~235, 2009)
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    This study was carried out to determine whether a short-term zinc supplementation could improve the zinc status without adverse changes in copper status among type 2 diabetic patients. Seventy-six diabetic subjects and 72 normal adults participated in...

    This study was carried out to determine whether a short-term zinc supplementation could improve the zinc status without adverse changes in copper status among type 2 diabetic patients. Seventy-six diabetic subjects and 72 normal adults participated in this study. Subjects were randomly divided into supplemented and control groups. Forty-four diabetic patients and 34 normal subjects were supplemented with 50 mg zinc gluconate daily for 4 weeks. Dietary intakes of participants were measured for two non-consecutive days by 24-hour recall method. Nutritional status of zinc and copper were also evaluated by biochemical measurement of fasting plasma samples and spot urinary collection. At baseline, diabetic patients showed significantly lower levels of dietary zinc intake and higher urinary zinc excretion than the normal adult group (p<0.05, p<0.0001). Plasma level of zinc was not significantly different between diabetic and normal adults at baseline. However, plasma zinc level increased significantly in both diabetic patients and normal adults after zinc supplementation. The changes in plasma copper levels following zinc supplementation were not statistically significant in diabetic subjects as well as in normal adults. These results indicated that four weeks of zinc supplementation did not influence Cu status and that it may contribute to improving the zinc status. Therefore, we suggest that Zn supplementation for a short-term period may improve marginal zinc status of diabetic patients without interfering with their copper status (Korean J Community Nutrition 14(2):229~235, 2009)

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    참고문헌 (Reference)

    1 이정희, "중·노년기 제2형 당뇨병 여성에 아연 및 구리 영양상태*" 한국영양학회 38 (38): 56-66, 2005

    2 Gatto LM, "the effect of zinc supplementation on plasma lipids and low-density lipoprotein oxidation in males" 19 (19): 517-521, 1995

    3 Chausmer AB, "Zinc, Insulin and Diabetes" 17 (17): 109-115, 1998

    4 Marchesini G, "Zinc supplementation improves glucose disposal in patients with cirrhosis" 47 (47): 792-798, 1998

    5 Bonham M, "Zinc supplementation has no effect on circulating levels of peripheral blood leucocytes and lymphocyte subsets in healthy adult men" 89 (89): 695-703, 2003

    6 Disilvestro RA, "Zinc in relation to diabetes and oxidative disease" 130 (130): 1509-1511, 2000

    7 Faure P, "Zinc and insulin sensitivity" 32 : 305-310, 1992

    8 Salgueiro MJ, "Zinc and Diabetes Mellitus. Is there a need of zinc supplementation in diabetes mellitus patients?" 81 (81): 215-228, 2001

    9 Golik A, "Type II diabetes mellitus, congestive heart failure, and zinc metabolism" 39 (39): 171-175, 1993

    10 Levine AS, "Tissue zinc status of genetically diabetic and streptozotocin-induced diabetic mice" 37 (37): 382-386, 1983

    1 이정희, "중·노년기 제2형 당뇨병 여성에 아연 및 구리 영양상태*" 한국영양학회 38 (38): 56-66, 2005

    2 Gatto LM, "the effect of zinc supplementation on plasma lipids and low-density lipoprotein oxidation in males" 19 (19): 517-521, 1995

    3 Chausmer AB, "Zinc, Insulin and Diabetes" 17 (17): 109-115, 1998

    4 Marchesini G, "Zinc supplementation improves glucose disposal in patients with cirrhosis" 47 (47): 792-798, 1998

    5 Bonham M, "Zinc supplementation has no effect on circulating levels of peripheral blood leucocytes and lymphocyte subsets in healthy adult men" 89 (89): 695-703, 2003

    6 Disilvestro RA, "Zinc in relation to diabetes and oxidative disease" 130 (130): 1509-1511, 2000

    7 Faure P, "Zinc and insulin sensitivity" 32 : 305-310, 1992

    8 Salgueiro MJ, "Zinc and Diabetes Mellitus. Is there a need of zinc supplementation in diabetes mellitus patients?" 81 (81): 215-228, 2001

    9 Golik A, "Type II diabetes mellitus, congestive heart failure, and zinc metabolism" 39 (39): 171-175, 1993

    10 Levine AS, "Tissue zinc status of genetically diabetic and streptozotocin-induced diabetic mice" 37 (37): 382-386, 1983

    11 Bray TM, "The physiological role of zinc as an antioxidant" 8 (8): 281-291, 1990

    12 Niewoehner CB, "Role of zinc supplementation in type II diabetes mellitus" 81 (81): 63-68, 1986

    13 Baynes JW, "Role of oxidative stress in development of complications in Diabetes" 40 (40): 405-412, 1991

    14 Hawk PB, "Practical physiology chemistry. 13th ed." Blakiston Co Inc 899-, 1954

    15 Anderson RA, "Potential antioxidant effects of zinc and chromium supplementation in people with type 2 diabetes mellitus" 20 (20): 212-218, 2001

    16 Percival SS, "Neutropenia caused by copper deficiency : possible mechanisms of action" 53 (53): 59-66, 1995

    17 King JC, "Modern nutrition in health and disease" Lea & Febiger 214-230, 1994

    18 Thomson KH, "Micronutrients and antioxidants in the progression of diabetes" 15 (15): 1377-1410, 1995

    19 Milne DB, "Low dietary zinc alters indices of copper function and status in postmenopausal women" 17 (17): 701-708, 2001

    20 Cunningham JJ, "Hyperzincuria in individuals with Insulin-Dependent diabetes mellitus : concurrent zinc status and the effect of high-dose zinc supplementation" 43 (43): 1568-1562, 1994

    21 Korean Food Research Institute, "Handbook of Portion Size for Food Intake Research"

    22 오현미, "Glycemic control of type 2 diabetic patients after short-term zinc supplementation" 한국영양학회 2 (2): 283-288, 2008

    23 Chandra RK, "Excessive intake of zinc impairs immune responses" 252 (252): 1443-1446, 1984

    24 Chyun JH, "Dietary copper intakes and effect of zinc supplementation on plasma copper level in Korean adults" 29 (29): 528-532, 1996

    25 The Korean Nutrition Society, "Dietary Reference intakes for Koreans"

    26 Turnlund J, "Copper nutriture, bioavailability, and the influence of dietary factors" 88 (88): 303-308, 1988

    27 Castillo-Duran C, "Controlled trial of zinc supplementation during recovery from malnutrition : effects on growth and immune function" 45 (45): 602-608, 1987

    28 Davis CD, "Changes in dietary zinc and copper affect zinc-status indicators of postmenopausal women, notably, extracellular superoxide dismutase and amyloid precursor proteins" 71 (71): 781-788, 2000

    29 Maxwell SR, "Antioxidant status in patients with uncomplicated insulin-dependent and noninsulin- dependent diabetes mellitus" 27 (27): 484-490, 1997

    30 Roussel AM, "Antioxidant effects of zinc supplementation in Tunisians with type 2 diabetes mellitus" 22 (22): 316-321, 2003

    31 Cusins RJ, "Absortion, transport, and hepatic metabolism of copper and zin : Special reference to metallothionein and ceruloplasma" 65 (65): 238-309, 1985

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    1999-01-01 등재 등재후보학술지 선정 (신규평가) KCI등재후보
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    학술지 인용정보
    기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
    2016 1.15 1.15 1.13
    KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
    1.28 1.21 1.764 0.42
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