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      KCI등재 SCOPUS

      소아에서의 UCP-1 다형성과 비만도 및 혈액 지질수치와의 관련성에 관한 연구 = The Relationships between UCP-1 Polymorphism and the Degree of Obesity or Plasma Lipid Profile in Prepubertal Children

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      https://www.riss.kr/link?id=A82576696

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      국문 초록 (Abstract)

      1) 연구대상자 중 비만아동 빈도수 분석 결과, BIA법에서는 70.0%, BMI에 의한 비만도에서는 32.7%, 신장별체중에 의한 비만도에서는 23.6%로 BAI법에 의해 비만아동의 빈도수가 가장 많았다. 혈청 ...

      1) 연구대상자 중 비만아동 빈도수 분석 결과, BIA법에서는 70.0%, BMI에 의한 비만도에서는 32.7%, 신장별체중에 의한 비만도에서는 23.6%로 BAI법에 의해 비만아동의 빈도수가 가장 많았다. 혈청 생화화적 분석 결과는 NCEP의 이상지혈증 기준 이하로 나타났다.
      2) UCP-1 유전자 다형성에 의한 신체계측의 결과의 분포는 정상형과 변이형에서 차이를 나타내지 않았고 혈중 생화학 결과에서는 LDL (p = 0.039)과 TC (p = 0.063)이 정상형에 비해 변이형에서 유의적으로 증가하였다.
      3) LDL을 130 ㎎/dL 기준으로 고LDL 콜레스테롤혈증과 정상으로 나누었을 때 각각에서 UCP-1 유전자 다형성의 분포는 고LDL 콜레스테롤혈증에서 A allele는 5.4%, G allele는 13.0%로 G allele의 빈도가 높게 분포하였고, 정상에서는 각각 94.6%, 87%의 분포를 나타내었다 (p = 0.062, ORs 2.640). LDL의 농도를 백분위수에 따라 4집단으로 나누고 UCP-1 유전자의 A allele와 G allele에서 LDL 농도의 빈도수를 나타내었을 때 G allele에서는 빈도수가 25th, 50th, 75th, 100th에 따라 유의적으로 증가하였다 (r² = 0.7995, p-trend = 0.032). 따라서 UCP-1 유전자 변이형은 정상형에 비해 고LDL-콜레스테롤혈증의 발병을 증가시키는 것으로 나타났다.
      UCP-1 유전자의 다형성은 이상지혈증의 위험인자인 LDL 농도를 증가시키는 위험요인으로써 나타났고, 체중을 감안할 때는 이상지혈증의 위험도가 더욱 증가할 것으로 생각되어진다. 따라서 UCP-1 유전자 변이형을 가지는 비만아동은 고LDL-콜레스테롤혈증의 발병과 관련된 식이 및 환경적 인자를 적절히 통제하는 예방 대책을 마련하여야겠다.

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      다국어 초록 (Multilingual Abstract)

      Uncoupling protein-1 (UCP-1) plays a major role in thermogenesis at brown adipose tissues and has been implicated in the pathogenesis of obesity and metabolic disorders. The purpose of this study was to estimate the effects of A-3826G polymorphism in ...

      Uncoupling protein-1 (UCP-1) plays a major role in thermogenesis at brown adipose tissues and has been implicated in the pathogenesis of obesity and metabolic disorders. The purpose of this study was to estimate the effects of A-3826G polymorphism in 117 Korean prepubertal children aged 8-11 years olds. Anthropometry by bioelectrical impedance analysis method, plasma lipid profiles by auto-biochemical analyzer and UCP-1 genotyping by PCR-RFLP were done. The frequencies of UCP-1 genotypes were AA; 17.7%, AG; 57.8%, GG; 26.6%. The frequencies of each G allele (55.5%) was similar to Japanese’s (49%) and higher than Caucacian’s (25%). No correlation UCP-1 polymorphism and BMI (㎏/㎡) or the degree of obesity described by the relative percentiles of the standard weight according to height in prepubertal children. However, plasma total- and LDL-cholesterol were significantly increased in G allele when sex, age and weight were adjusted. Our results suggested that G allele of UCP-1 gene was stronger risk factors in hyperLDLcholesterolemia than A allele. This impact might be progressed as the precaution against the revalence of obesity based-metabolic disease.

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      목차 (Table of Contents)

      • ABSTRACT
      • 서론
      • 연구방법
      • 결과
      • 고찰
      • ABSTRACT
      • 서론
      • 연구방법
      • 결과
      • 고찰
      • 요약
      • Literature cited
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      참고문헌 (Reference)

      1 박미정, "에너지 항상성 조절 및 비만의 병태생리에 관한 최신지견" 대한소아과학회 48 (48): 126-137, 2005

      2 송윤주, "서울 지역 일부 아동 및 청소년의 성장발달 및 식생활 비교 연구:체조성 변화와 비만실태 (Ⅰ)" 한국영양학회 39 (39): 44-49, 2006

      3 Ministry of Education & Human Resources Development, "evaluation of adolescent health" 2003

      4 The Asia-Pacific perspective: Redefining Obesity and its Treatment, "WHO Western Pacific Region, International Association for the Study of Obesity" International Obesity Task Force 2000

      5 Nedergaard J, "Unexpected evidence for active brown adipose tissue in adult humans" 293 (293): 444-452, 2007

      6 Herrmann SM, "Uncoupling protein 1 and 3 polymorphisms are associated with waist-to-hip ratio" 81 (81): 327-332, 2003

      7 Oh HH, "The effects of uncoupling protein-1 genotype on lipoprotein cholesterol level in Korean obese subjects" 53 (53): 1054-1059, 2004

      8 Nagai N, "The -3826 A→G variant of the uncoupling protein-1 gene diminishes postprandial thermogenesis after a high fat meal in healthy boys" 88 (88): 5661-5667, 2003

      9 Ricquier D, "Respiration uncoupling and metabolism in the control of energy expenditure" 64 (64): 47-52, 2005

      10 Kotani K, "Relationship between A-3826G polymorphism in the promoter of the uncoupling protein-1 gene and high-density lipoprotein cholesterol in Japanese individuals: a cross-sectional study" (1) : 142-146, 2008

      1 박미정, "에너지 항상성 조절 및 비만의 병태생리에 관한 최신지견" 대한소아과학회 48 (48): 126-137, 2005

      2 송윤주, "서울 지역 일부 아동 및 청소년의 성장발달 및 식생활 비교 연구:체조성 변화와 비만실태 (Ⅰ)" 한국영양학회 39 (39): 44-49, 2006

      3 Ministry of Education & Human Resources Development, "evaluation of adolescent health" 2003

      4 The Asia-Pacific perspective: Redefining Obesity and its Treatment, "WHO Western Pacific Region, International Association for the Study of Obesity" International Obesity Task Force 2000

      5 Nedergaard J, "Unexpected evidence for active brown adipose tissue in adult humans" 293 (293): 444-452, 2007

      6 Herrmann SM, "Uncoupling protein 1 and 3 polymorphisms are associated with waist-to-hip ratio" 81 (81): 327-332, 2003

      7 Oh HH, "The effects of uncoupling protein-1 genotype on lipoprotein cholesterol level in Korean obese subjects" 53 (53): 1054-1059, 2004

      8 Nagai N, "The -3826 A→G variant of the uncoupling protein-1 gene diminishes postprandial thermogenesis after a high fat meal in healthy boys" 88 (88): 5661-5667, 2003

      9 Ricquier D, "Respiration uncoupling and metabolism in the control of energy expenditure" 64 (64): 47-52, 2005

      10 Kotani K, "Relationship between A-3826G polymorphism in the promoter of the uncoupling protein-1 gene and high-density lipoprotein cholesterol in Japanese individuals: a cross-sectional study" (1) : 142-146, 2008

      11 Kahara T, "Prediction of execise-mediated changes in metabolic markers by gene polymorphism" 57 (57): 105-110, 2002

      12 Kim KA, "Potential Relationship between Children Obesity and Risk for Coronary Heart Disease in Kyungbuk Area" 34 (34): 664-670, 2001

      13 Fumeron F, "Polymorphisms of uncoupling protein (UCP) and beta 3-adrenoreceptor genes in obese people submitted to a low calorie diet" 20 (20): 1051-1054, 1996

      14 Kim SG, "Polymorphism of the uncoupling protein 1 gene and fatty acid binding protein 2 gene in Korean type 2 diabetic patients" 25 (25): 262-272, 2001

      15 Lee SE, "Obesity evaluation by body mass index in elementary school children" 15 (15): 1627-1640, 2004

      16 Echtay KS, "Mitochondrial uncoupling proteins--what is their physiological role" 43 (43): 1351-1371, 2007

      17 Saito M, "Mitochondrial uncoupling protein as a target of pharmacotherapy for obesity" 118 (118): 327-333, 2001

      18 Arner P, "Hunting for human obesity genes? Look in the adipose tissue!" 4 : 57-62, 2000

      19 Bouillaud F, "Homologues of the uncoupling protein from brown adipose tissue (UCP-1): UCP2, UCP3, BMCP1 and UCP4" 1504 (1504): 107-119, 2001

      20 Won HS, "Guidelines of body mass index in Korean childhood and adolescent obesity and relationship with physical strength" 33 (33): 279-288, 2000

      21 Romao I, "Genetic and environmental interactions in obesity and type 2 diabetes" 108 : 24-28, 2008

      22 Zietz B, "GG-genotype in the promotor region of uncoupling-protein-1 gene is associated with lower level of dehydroepiandrosterone in type 2 diabetes" 109 (109): 102-106, 2001

      23 Yamazaki K, "Frequency of atherogenic risk factors in Japanese obese children" 10 (10): 211-219, 1990

      24 Schaffler A, "Frequency and significance of the A →G (-3826) polymorphism in the promoter of the gene for uncoupling protein-1 with regard to metabolic parameters and adipocyte transcription factor binding in a large population-based Caucasian cohort" 29 (29): 770-779, 1999

      25 Nieman DC, "Fitness and Sport Medicine: A Health-Related Approach" Bull Publishing Co, Palo Alto. 1995

      26 Hioki C, "Effects of growth hormone (GH) on mRNA levels of uncoupling proteins 1, 2, and 3 in brown and white adipose tissues and skeletal muscle in obese mice" 36 (36): 607-613, 2004

      27 Gagnon J, "DNA polymorphism in the uncoupling protein 1 (UCP-1) gene has no effect on obesity related phenotypes in the Swedish Obese Subjects cohorts" 22 (22): 500-505, 1998

      28 Tiraby C, "Conversion from white to brown adipocytes: a strategy for the control of fat mass" 14 (14): 439-441, 2003

      29 Lee JS, "Comparisons of Anthropometric Measurements, Body Fat, Blood Parameters and Nutrients Intakes in Over- and Desirable-body Weight School Children" 9 (9): 316-325, 2000

      30 Friedewald VE Jr, "Case 1: a patient with elevated low-density lipoprotein cholesterol" 85 (85): 131-, 2000

      31 Lean ME, "Brown adipose tissue uncoupling protein content in human infants, children and adults" 71 (71): 291-297, 1986

      32 Proenza AM, "Association of sets of alleles of genes encoding beta3-adrenoreceptor, uncoupling protein 1 and lipoprotein lipase with increased risk of metabolic complications in obesity" 24 (24): 93-100, 2000

      33 Heilbronn LK, "Association of -3826 G variant in uncoupling protein-1 with increased BMI in overweight Australian women" 43 (43): 242-244, 2000

      34 Kim JH, "Association between uncoupling protein-1 and 3-adrenergic receptor gene polymorphisms and energy metabolism in normal Korean adults" 23 (23): 803-813, 1999

      35 Garruti G, "Analysis of uncoupling protein and its mRNA in adipose tissue deposits of adult humans" 16 (16): 383-390, 1992

      36 Clement K, "Additive effect of A→ G (-3826) variant of the uncoupling protein gene and the Trp- 64Arg mutation of the beta 3-adrenergic receptor gene on weight gain in morbid obesity" 20 (20): 1062-1066, 1996

      37 Nakano T, "A/G heterozygote of the A-3826G polymorphism in the UCP-1 gene has higher BMI than A/A and G/G homozygote in young Japanese males" 53 (53): 218-222, 2006

      38 Koeppen-Schomerus G, "A genetic analysis of weight and overweight in 4-year-old twin pairs" 25 (25): 838-844, 2001

      39 Lee KY, "A Study of the Relation between Food Habits, Anthropometric and Clinical Data in a Health Promoting Elementry School in Changwon" 7 (7): 331-348, 2001

      40 Korea Institute for Health and Social Affairs, "2005 The Korean National Health and Nutrition Survey" 2006

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      외국어명 : The Korean Journal of Nutrition -> Journal of Nutrition and Health
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      2010-01-01 평가 등재학술지 유지 (등재유지) KCI등재
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      2016 0.86 0.86 1.03
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