期刊论文详细信息
Diabetology & Metabolic Syndrome
Fish consumption and its possible preventive role on the development and prevalence of metabolic syndrome - a systematic review
Milada Cvancarova Småstuen1  Marianne Molin1  Christine Tørris1 
[1] Institute of Basic Medical Sciences, University of Oslo, Blindern, Oslo, Norway
关键词: Systematic review;    Consumption of fish;    Seafood;    Fish intake;    Diet;    Insulin resistance;    Metabolic syndrome;   
Others  :  1114933
DOI  :  10.1186/1758-5996-6-112
 received in 2014-07-04, accepted in 2014-10-09,  发布年份 2014
PDF
【 摘 要 】

Metabolic syndrome (MetS) has a huge impact on public health, and today lifestyle interventions remain the primary mode for MetS therapy. It is therefore important to elucidate the possible preventive effects of diet and foods, and their MetS-related health implications. To examine how fish consumption affects the development and prevalence of MetS, we systematically reviewed cross-sectional, prospective cohort, and intervention studies conducted among adults (humans) and, reporting consumption of fish or seafood as being related to MetS (prevalence or incidence), where MetS was defined via an established definition. The literature search in PubMed identified 502 citations, and after screening, 49 full-text articles were retrieved and assessed for eligibility. After excluding duplicates and those not meeting the inclusion criteria, seven studies from Croatia, Finland, France, Iceland, Iran, Korea, and US were included. Four studies (one follow-up and three cross-sectional) found associations between fish consumption and MetS (three among men, and one among women), suggesting that fish consumption may prevent or improve metabolic health and have a protective role in MetS prevention. This protective role might be related to gender, and men may benefit more from the consumption of fish. However, lack of controlling for potential confounders may also inflict the results. Additional research is required to further explore fish consumption and its potential role in improving or reversing MetS and its components.

【 授权许可】

   
2014 Tørris et al.; licensee BioMed Central Ltd.

【 预 览 】
附件列表
Files Size Format View
20150205030648890.pdf 306KB PDF download
Figure 1. 57KB Image download
【 图 表 】

Figure 1.

【 参考文献 】
  • [1]Alberti KG, Zimmet P, Shaw J: The metabolic syndrome–a new worldwide definition. Lancet 2005, 366:1059-1062.
  • [2]Alberti KG, Eckel RH, Grundy SM, Zimmet PZ, Cleeman JI, Donato KA, Fruchart JC, James WP, Loria CM, Smith SC Jr: Harmonizing the metabolic syndrome: a joint interim statement of the international diabetes federation task force on epidemiology and prevention; national heart, lung, and blood institute; american heart association; world heart federation; international atherosclerosis society; and international association for the study of obesity. Circulation 2009, 120:1640-1645.
  • [3]Cornier MA, Dabelea D, Hernandez TL, Lindstrom RC, Steig AJ, Stob NR, Van Pelt RE, Wang H, Eckel RH: The metabolic syndrome. Endocr Rev 2008, 29:777-822.
  • [4]Potenza MV, Mechanick JI: The metabolic syndrome: definition, global impact, and pathophysiology. Nutr Clin Pract 2009, 24:560-577.
  • [5]Raatz SK, Silverstein JT, Jahns L, Picklo MJ: Issues of fish consumption for cardiovascular disease risk reduction. Nutrients 2013, 5:1081-1097.
  • [6]Panagiotakos DB, Zeimbekis A, Boutziouka V, Economou M, Kourlaba G, Toutouzas P, Polychronopoulos E: Long-term fish intake is associated with better lipid profile, arterial blood pressure, and blood glucose levels in elderly people from Mediterranean islands (MEDIS epidemiological study). Med Sci Monit 2007, 13:CR307-CR312.
  • [7]Robinson LE, Mazurak VC: N-3 polyunsaturated fatty acids: relationship to inflammation in healthy adults and adults exhibiting features of metabolic syndrome. Lipids 2013, 48:319-332.
  • [8]Robinson LE, Buchholz AC, Mazurak VC: Inflammation, obesity, and fatty acid metabolism: influence of n-3 polyunsaturated fatty acids on factors contributing to metabolic syndrome. Appl Physiol Nutr Metab 2007, 32:1008-1024.
  • [9]Moher D, Liberati A, Tetzlaff J, Altman DG: Preferred reporting items for systematic reviews and meta-analyses: the PRISMA statement. BMJ 2009, 339:b2535.
  • [10]Ramel A, Jonsdottir MT, Thorsdottir I: Consumption of cod and weight loss in young overweight and obese adults on an energy reduced diet for 8-weeks. Nutr Metab Cardiovasc Dis 2009, 19:690-696.
  • [11]Baik I, Abbott RD, Curb JD, Shin C: Intake of fish and n-3 fatty acids and future risk of metabolic syndrome. J Am Diet Assoc 2010, 110:1018-1026.
  • [12]Kouki R, Schwab U, Hassinen M, Komulainen P, Heikkila H, Lakka TA, Rauramaa R: Food consumption, nutrient intake and the risk of having metabolic syndrome: the DR’s EXTRA Study. Eur J Clin Nutr 2011, 65:368-377.
  • [13]Lai YH, Petrone AB, Pankow JS, Arnett DK, North KE, Ellison RC, Hunt SC, Djousse L: Association of dietary omega-3 fatty acids with prevalence of metabolic syndrome: the national heart, lung, and blood institute family heart study. Nutr Clin 2013, 32:966-969.
  • [14]Pasalic D, Dodig S, Corovic N, Pizent A, Jurasovic J, Pavlovic M: High prevalence of metabolic syndrome in an elderly Croatian population - a multicentre study. Public Health Nutr 2011, 14:1650-1657.
  • [15]Ruidavets JB, Bongard V, Dallongeville J, Arveiler D, Ducimetiere P, Perret B, Simon C, Amouyel P, Ferrieres J: High consumptions of grain, fish, dairy products and combinations of these are associated with a low prevalence of metabolic syndrome. J Epidemiol Community Health 2007, 61:810-817.
  • [16]Zaribaf F, Falahi E, Barak F, Heidari M, Keshteli AH, Yazdannik A, Esmaillzadeh A: Fish consumption is inversely associated with the metabolic syndrome. Eur J Clin Nutr 2014, 68:474-480.
  • [17]Alberti KG, Zimmet P, Shaw J: Metabolic syndrome–a new world-wide definition. A consensus statement from the international diabetes federation. Diabet Med 2006, 23:469-480.
  • [18]Grundy SM, Cleeman JI, Daniels SR, Donato KA, Eckel RH, Franklin BA, Gordon DJ, Krauss RM, Savage PJ, Smith SC Jr, Spertus JA, Costa F, National Heart, Lung, and Blood Institute: Diagnosis and management of the metabolic syndrome: an american heart association/national heart, lung, and blood institute scientific statement. Circulation 2005, 112:2735-2752.
  • [19]Baik I: Optimal cutoff points of waist circumference for the criteria of abdominal obesity: comparison with the criteria of the international diabetes federation. Circ J 2009, 73:2068-2075.
  • [20]Expert Panel on Detection E, Treatment of High Blood Cholesterol in A: Executive Summary of The Third Report of The National Cholesterol Education Program (NCEP) Expert Panel on Detection, Evaluation, And Treatment of High Blood Cholesterol In Adults (Adult Treatment Panel III). JAMA 2001, 285:2486-2497.
  • [21]Grundy SM, Brewer HB Jr, Cleeman JI, Smith SC Jr, Lenfant C, American Heart A, National Heart L, Blood I: Definition of metabolic syndrome: Report of the National Heart, Lung, and Blood Institute/American Heart Association conference on scientific issues related to definition. Circulation 2004, 109:433-438.
  • [22]Eckel RH, Grundy SM, Zimmet PZ: The metabolic syndrome. Lancet 2005, 365:1415-1428.
  • [23]Akter S, Nanri A, Pham NM, Kurotani K, Mizoue T: Dietary patterns and metabolic syndrome in a Japanese working population. Nutr Metab 2013, 10:30. BioMed Central Full Text
  • [24]Jung HJ, Han SN, Song S, Paik HY, Baik HW, Joung H: Association between adherence to the korean food guidance system and the risk of metabolic abnormalities in koreans. Nutr Res Pract 2011, 5:560-568.
  • [25]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, 107:979-987. quiz 997
  • [26]Fonseca MJ, Gaio R, Lopes C, Santos AC: Association between dietary patterns and metabolic syndrome in a sample of Portuguese adults. Nutr J 2012, 11:64. BioMed Central Full Text
  • [27]He Y, Li Y, Lai J, Wang D, Zhang J, Fu P, Yang X, Qi L: Dietary patterns as compared with physical activity in relation to metabolic syndrome among Chinese adults. Nutr Metab Cardiovasc Dis 2012, 23:920-928.
  • [28]Alvarez Leon E, Henriquez P, Serra-Majem L: Mediterranean diet and metabolic syndrome: a cross-sectional study in the Canary Islands. Public Health Nutr 2006, 9:1089-1098.
  • [29]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, 61:883-890.
  • [30]Babio N, Bullo M, Salas-Salvado J: Mediterranean diet and metabolic syndrome: the evidence. Public Health Nutr 2009, 12:1607-1617.
  • [31]Cho YA, Kim J, Cho ER, Shin A: Dietary patterns and the prevalence of metabolic syndrome in Korean women. Nutr Metab Cardiovasc Dis 2011, 21:893-900.
  • [32]Alemany M: Do the interactions between glucocorticoids and sex hormones regulate the development of the metabolic syndrome? Front Endocrinol 2012, 3:27.
  • [33]Cohen A, Pieper CF, Brown AJ, Bastian LA: Number of children and risk of metabolic syndrome in women. J Womens Health (Larchmt) 2006, 15:763-773.
  • [34]Butte NF, Wong WW, Hopkinson JM: Energy requirements of lactating women derived from doubly labeled water and milk energy output. J Nutr 2001, 131:53-58.
  • [35]Butte NF, King JC: Energy requirements during pregnancy and lactation. Public Health Nutr 2005, 8:1010-1027.
  • [36]Stuebe AM, Rich-Edwards JW: The reset hypothesis: lactation and maternal metabolism. Am J Perinatol 2009, 26:81-88.
  • [37]Gunderson EP, Jacobs DR Jr, Chiang V, Lewis CE, Feng J, Quesenberry CP Jr, Sidney S: Duration of lactation and incidence of the metabolic syndrome in women of reproductive age according to gestational diabetes mellitus status: a 20-Year prospective study in CARDIA (Coronary Artery Risk Development in Young Adults). Diabetes 2010, 59:495-504.
  • [38]Torris C, Thune I, Emaus A, Finstad SE, Bye A, Furberg AS, Barrett E, Jasienska G, Ellison P, Hjartaker A: Duration of lactation, maternal metabolic profile, and body composition in the Norwegian EBBA I-study. Breastfeed Med 2013, 8:8-15.
  • [39]Vazquez C, Botella-Carretero JI, Corella D, Fiol M, Lage M, Lurbe E, Richart C, Fernandez-Real JM, Fuentes F, Ordonez A, de Cos AI, Salas-Salvadó J, Burguera B, Estruch R, Ros E, Pastor O, Casanueva FF, WISH-CARE Study Investigators: White fish reduces cardiovascular risk factors in patients with metabolic syndrome: the WISH-CARE study, a multicenter randomized clinical trial. Nutr Metab Cardiovasc Dis 2014, 24:328-335.
  • [40]Uhe AM, Collier GR, O’Dea K: A comparison of the effects of beef, chicken and fish protein on satiety and amino acid profiles in lean male subjects. J Nutr 1992, 122:467-472.
  • [41]El Khoury D, Anderson GH: Recent advances in dietary proteins and lipid metabolism. Curr Opin Lipidol 2013, 24:207-213.
  • [42]Shukla A, Bettzieche A, Hirche F, Brandsch C, Stangl GI, Eder K: Dietary fish protein alters blood lipid concentrations and hepatic genes involved in cholesterol homeostasis in the rat model. Br J Nutr 2006, 96:674-682.
  • [43]Pilon G, Ruzzin J, Rioux LE, Lavigne C, White PJ, Froyland L, Jacques H, Bryl P, Beaulieu L, Marette A: Differential effects of various fish proteins in altering body weight, adiposity, inflammatory status, and insulin sensitivity in high-fat-fed rats. Metabolism 2011, 60:1122-1130.
  • [44]Madani Z, Louchami K, Sener A, Malaisse WJ, Ait Yahia D: Dietary sardine protein lowers insulin resistance, leptin and TNF-alpha and beneficially affects adipose tissue oxidative stress in rats with fructose-induced metabolic syndrome. Int J Mol Med 2012, 29:311-318.
  • [45]Ouellet V, Marois J, Weisnagel SJ, Jacques H: Dietary cod protein improves insulin sensitivity in insulin-resistant men and women: a randomized controlled trial. Diabetes Care 2007, 30:2816-2821.
  • [46]DiBello JR, McGarvey ST, Kraft P, Goldberg R, Campos H, Quested C, Laumoli TS, Baylin A: Dietary patterns are associated with metabolic syndrome in adult Samoans. J Nutr 2009, 139:1933-1943.
  • [47]Baik I, Lee M, Jun NR, Lee JY, Shin C: A healthy dietary pattern consisting of a variety of food choices is inversely associated with the development of metabolic syndrome. Nutr Res Pract 2013, 7:233-241.
  • [48]Di Daniele N, Petramala L, Di Renzo L, Sarlo F, Della Rocca DG, Rizzo M, Fondacaro V, Iacopino L, Pepine CJ, De Lorenzo A: Body composition changes and cardiometabolic benefits of a balanced Italian Mediterranean Diet in obese patients with metabolic syndrome. Acta Diabetol 2013, 50:409-416.
  • [49]Kesse-Guyot E, Ahluwalia N, Lassale C, Hercberg S, Fezeu L, Lairon D: Adherence to Mediterranean diet reduces the risk of metabolic syndrome: A 6-year prospective study. Nutr Metab Cardiovasc Dis 2013, 23:677-683.
  • [50]Lutsey PL, Steffen LM, Stevens J: Dietary intake and the development of the metabolic syndrome: the Atherosclerosis Risk in Communities study. Circulation 2008, 117:754-761.
  • [51]Kim J, Jo I: Grains, vegetables, and fish dietary pattern is inversely associated with the risk of metabolic syndrome in South korean adults. J Am Diet Assoc 2011, 111:1141-1149.
  • [52]Williams DE, Prevost AT, Whichelow MJ, Cox BD, Day NE, Wareham NJ: A cross-sectional study of dietary patterns with glucose intolerance and other features of the metabolic syndrome. Br J Nutr 2000, 83:257-266.
  • [53]Amini M, Esmaillzadeh A, Shafaeizadeh S, Behrooz J, Zare M: Relationship between major dietary patterns and metabolic syndrome among individuals with impaired glucose tolerance. Nutrition 2010, 26:986-992.
  • [54]Heidemann C, Scheidt-Nave C, Richter A, Mensink GB: Dietary patterns are associated with cardiometabolic risk factors in a representative study population of German adults. Br J Nutr 2011, 106:1253-1262.
  • [55]Min C, Noh H, Kang YS, Sim HJ, Baik HW, Song WO, Yoon J, Park YH, Joung H: Skipping breakfast is associated with diet quality and metabolic syndrome risk factors of adults. Nutr Res Pract 2011, 5:455-463.
  • [56]Song Y, Joung H: A traditional Korean dietary pattern and metabolic syndrome abnormalities. Nutr Metab Cardiovasc Dis 2012, 22:456-462.
  • [57]Mozaffarian D, Lemaitre RN, Kuller LH, Burke GL, Tracy RP, Siscovick DS, Cardiovascular Health S: Cardiac benefits of fish consumption may depend on the type of fish meal consumed: the Cardiovascular Health Study. Circulation 2003, 107:1372-1377.
  • [58]Patel PS, Sharp SJ, Luben RN, Khaw KT, Bingham SA, Wareham NJ, Forouhi NG: Association between type of dietary fish and seafood intake and the risk of incident type 2 diabetes: the European prospective investigation of cancer (EPIC)-Norfolk cohort study. Diabetes Care 2009, 32:1857-1863.
  • [59]Eckel RH, Alberti KG, Grundy SM, Zimmet PZ: The metabolic syndrome. Lancet 2010, 375:181-183.
  • [60]Esmailzadehha N, Ziaee A, Kazemifar AM, Ghorbani A, Oveisi S: Prevalence of metabolic syndrome in Qazvin Metabolic Diseases Study (QMDS), Iran: A comparative analysis of six definitions. Endocr Regul 2013, 47:111-120.
  文献评价指标  
  下载次数:14次 浏览次数:14次