1. Korean Statistical Information Service. Cause of death statistics [Internet]. Daejeon: Statistics Korea;2016. [cited 2017 Mar 2]. Available from:. http://kosis.kr/statisticsList/statisticsList_01List. jsp?vwcd=MT_ZTITLE&parmTabId=M_01_01.
2. Haffner SM, Valdez RA, Hazuda HP, Mitchell BD, Morales PA, Stern MP. Prospective analysis of the insulin-resistance syndrome (syndrome X). Diabetes. 1992; 41(6):715–722.
Article
3. Schulman RC, Mechanick JI. Metabolic and nutrition support in the chronic critical illness syndrome. Respir Care. 2012; 57(6):958–977.
Article
4. Yang M, Chung SJ, Floegel A, Song WO, Koo SI, Chun OK. Dietary antioxidant capacity is associated with improved serum antioxidant status and decreased serum C-reactive protein and plasma homocysteine concentrations. Eur J Nutr. 2013; 52(8):1901–1911.
Article
5. Lim S, Shin H, Song JH, Kwak SH, Kang SM, Won Yoon J, Choi SH, Cho SI, Park KS, Lee HK, Jang HC, Koh KK. Increasing prevalence of metabolic syndrome in Korea: the Korean National Health and Nutrition Examination Survey for 1998–2007. Diabetes Care. 2011; 34(6):1323–1328.
6. Korea Centers for Disease Control and Prevention. Korean National Health and Nutrition Examination Survey ‘07∼'10 [Internet]. Cheongwon: Korea Centers for Disease Control and Prevention;2012. [cited 2017 Mar 2]. Available from:. https://knhanes.cdc.go.kr/knhanes/index.do.
7. Furukawa S, Fujita T, Shimabukuro M, Iwaki M, Yamada Y, Nakajima Y, Nakayama O, Makishima M, Matsuda M, Shimomura I. Increased oxidative stress in obesity and its impact on metabolic syndrome. J Clin Invest. 2004; 114(12):1752–1761.
Article
8. Apel K, Hirt H. Reactive oxygen species: metabolism, oxidative stress, and signal transduction. Annu Rev Plant Biol. 2004; 55(1):373–399.
Article
9. Rubin E, Reisner HM. Essentials of Rubin's pathology. 5th ed.Philadelphia (PA): Lippincott Williams & Wilkins;2009.
10. Block G. The data support a role for antioxidants in reducing cancer risk. Nutr Rev. 1992; 50(7):207–213.
Article
11. Diaz MN, Frei B, Vita JA, Keaney JF Jr. Antioxidants and atherosclerotic heart disease. N Engl J Med. 1997; 337(6):408–416.
Article
12. Hirashima O, Kawano H, Motoyama T, Hirai N, Ohgushi M, Kugiyama K, Ogawa H, Yasue H. Improvement of endothelial function and insulin sensitivity with vitamin C in patients with coronary spastic angina: possible role of reactive oxygen species. J Am Coll Cardiol. 2000; 35(7):1860–1866.
13. Som S, Basu S, Mukherjee D, Deb S, ChoudhuryPR , Mukherjee S, Chatterjee SN, Chatterjee IB. Ascorbic acid metabolism in diabetes mellitus. Metabolism. 1981; 30(6):572–577.
Article
14. Rao LG, Rao AV. Oxidative stress and antioxidants in the risk of osteoporosis: role of the antioxidants lycopene and polyphenols. Valdes-Flores M, editor. Topics in Osteoporosis. Rijeka: InTech;2013. p. 117–161.
Article
15. Puchau B, Zulet MA, de Echávarri AG, Hermsdorff HH, Martínez JA. Dietary total antioxidant capacity is negatively associated with some metabolic syndrome features in healthy young adults. Nutrition. 2010; 26(5):534–541.
Article
16. Li Y, Guo H, Wu M, Liu M. Serum and dietary antioxidant status is associated with lower prevalence of the metabolic syndrome in a study in Shanghai, China. Asia Pac J Clin Nutr. 2013; 22(1):60–68.
17. Sluijs I, Beulens JW, Grobbee DE, van der Schouw YT. Dietary carotenoid intake is associated with lower prevalence of metabolic syndrome in middle-aged and elderly men. J Nutr. 2009; 139(5):987–992.
Article
18. Kim SA, Jun S, Joung H. Estimated dietary intake of vitamin A in Korean adults: based on the Korea National Health and Nutrition Examination Survey 2007–2012. J Nutr Health. 2016; 49(4):258–268.
Article
19. Ashor AW, Siervo M, Lara J, Oggioni C, Afshar S, Mathers JC. Effect of vitamin C and vitamin E supplementation on endothelial function: a systematic review and metaanalysis of randomised controlled trials. Br J Nutr. 2015; 113(8):1182–1194.
Article
20. Zhao S, Li R, Li Y, Chen W, Zhang Y, Chen G. Roles of vitamin A status and retinoids in glucose and fatty acid metabolism. Biochem Cell Biol. 2012; 90(2):142–152.
Article
21. Ylönen K, Alfthan G, Groop L, Saloranta C, Aro A, Virtanen SM. Dietary intakes and plasma concentrations of carotenoids and tocopherols in relation to glucose metabolism in subjects at high risk of type 2 diabetes: the Botnia Dietary Study. Am J Clin Nutr. 2003; 77(6):1434–1441.
Article
22. Manning PJ, Sutherland WH, Walker RJ, Williams SM, De Jong SA, Ryalls AR, Berry EA. Effect of high-dose vitamin E on insulin resistance and associated parameters in overweight subjects. Diabetes Care. 2004; 27(9):2166–2171.
Article
23. Kang NE, Kim WK. Effects of antioxidant vitamins supplementation on antioxidative status and plasma lipid profiles in Korean NIDDM patients. Korean J Nutr. 1999; 32(7):775–780.
24. Scott KJ, Thurnham DI, Hart DJ, Bingham SA, Day K. The correlation between the intake of lutein, lycopene and â-carotene from vegetables and fruits, and blood plasma concentrations in a group of women aged 50–65 years in the UK. Br J Nutr. 1996; 75(3):409–418.
Article
25. Lee Y, Lee HS, Jang YA, Lee HJ, Kim BH, Kim CI. Dietary intake pattern of the Korean adult population by weight status: 2001 national health and nutrition survey. Korean J Community Nutr. 2006; 11(3):317–26.
26. Zulet MA, Puchau B, Hermsdorff HH, Navarro C, Martínez JA. Vitamin A intake is inversely related with adiposity in healthy young adults. J Nutr Sci Vitaminol (Tokyo). 2008; 54(5):347–352.
Article
27. Ministry of Health and Welfare, Korea Centers for Disease Control and Prevention. Korea Health Statistics 2014: Korea National Health and Nutrition Examination Survey (KNHANES VI-2) [Internet]. Cheongju: Korea Centers for Disease Control and Prevention;2015. [cited 2017 Mar 2]. Available from:. http://knhanes.cdc.go.kr.
28. Institute of Medicine (US). Dietary reference intakes for vitamin A, vitamin K, arsenic, boron, chromium, copper, iodine, iron, manganese, molybdenum, nickel, silicon, vanadium, and zinc. Washington, D.C.: National Academies Press;2001.
29. Ministry of Health and Welfare (KR); The Korean Nutrition Society. Dietary reference intakes for Koreans 2015. Sejong: Ministry of Health and Welfare;2016.
30. Park S, Ham JO, Lee BK. Effects of total vitamin A, vitamin C, and fruit intake on risk for metabolic syndrome in Korean women and men. Nutrition. 2015; 31(1):111–118.
Article
31. Bian S, Gao Y, Zhang M, Wang X, Liu W, Zhang D, Huang G. Dietary nutrient intake and metabolic syndrome risk in Chinese adults: a case-control study. Nutr J. 2013; 12(1):106.
Article
32. Ford ES, Mokdad AH, Giles WH, Brown DW. The metabolic syndrome and antioxidant concentrations: findings from the Third National Health and Nutrition Examination Survey. Diabetes. 2003; 52(9):2346–2352.
33. Esmaillzadeh A, Kimiagar M, Mehrabi Y, Azadbakht L, Hu FB, Willett WC. Fruit and vegetable intakes, C-reactive protein, and the metabolic syndrome. Am J Clin Nutr. 2006; 84(6):1489–1497.
Article
34. Panagiotakos DB, Pitsavos C, Skoumas Y, Stefanadis C. The association between food patterns and the metabolic syndrome using principal components analysis: the ATTICA Study. J Am Diet Assoc. 2007; 107(6):979–987.
Article
35. Hong S, Song Y, Lee KH, Lee HS, Lee M, Jee SH, Joung H. A fruit and dairy dietary pattern is associated with a reduced risk of metabolic syndrome. Metabolism. 2012; 61(6):883–890.
Article
36. Dugan CE, Barona J, Fernandez ML. Increased dairy consumption differentially improves metabolic syndrome markers in male and female adults. Metab Syndr Relat Disord. 2014; 12(1):62–69.
Article
37. Ballard KD, Mah E, Guo Y, Pei R, Volek JS, Bruno RS. Low-fat milk ingestion prevents postprandial hyperglycemia-mediated impairments in vascular endothelial function in obese individuals with metabolic syndrome. J Nutr. 2013; 143(10):1602–1610.
Article
38. Lee YJ, Seo JA, Yoon T, Seo I, Lee JH, Im D, Lee JH, Bahn KN, Ham HS, Jeong SA, Kang TS, Ahn JH, Kim DH, Nam GE, Kim NH. Effects of low-fat milk consumption on metabolic and atherogenic biomarkers in Korean adults with the metabolic syndrome: a randomised controlled trial. J Hum Nutr Diet. 2016; 29(4):477–486.
Article
39. Kim D, Kim J. Dairy consumption is associatedwith a lower incidence of the metabolic syndrome in middle-aged and older Korean adults: the Korean Genome and Epidemiology Study (KoGES). Br J Nutr. 2017; 117(1):148–160.
40. Kim MH, Lee HS, Park HJ, Kim WY. Risk factors associated with metabolic syndrome in Korean elderly. Ann Nutr Metab. 2007; 51(6):533–540.
Article
41. Kim J, Choi YH. Physical activity, dietary vitamin C, and metabolic syndrome in the Korean adults: the Korea NationalHealth and Nutrition Examination Survey 2008 to 2012. Public Health. 2016; 135:30–37.
Article
42. Westenhoefer J. Age and gender dependent profile of food choice. Forum Nutr. 2005; 57:44–51.
Article
43. Regitz-Zagrosek V. Sex and gender differences in health. Science & Society Series on Sex and Science. EMBO Rep. 2012; 13(7):596–603.
44. FerranniniE. Haffner SM, Mitchell BD, Stern MP. Hyperinsulinaemia: the key feature of a cardiovascular and metabolic syndrome. Diabetologia. 1991; 34(6):416–422.
Article
45. Godala MM, Materek-Kuśmierkiewicz I, Moczulski D, Rutkows-kiM , Szatko F, Gaszyńska E, Tokarski S, Kowalski J. Lower plasma levels of antioxidant vitamins in patients with metabolic syndrome: a case control study. Adv Clin Exp Med. 2016; 25(4):689–700.
Article
46. Motamed S, Ebrahimi M, Safarian M, Ghayour-Mobarhan M, Mouhebati M, Azarpazhouh M, Esmailie H, Norouzi A, Ferns GA. Micronutrient intake and the presence of the metabolic syndrome. N Am J Med Sci. 2013; 5(6):377–385.