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Published in: European Journal of Nutrition 4/2007

01-06-2007 | REVIEW

Development of insulin resistance and its relation to diet in the obese child

Authors: Ramón Cañete, Mercedes Gil-Campos, Concepción M. Aguilera, Prof. Angel Gil

Published in: European Journal of Nutrition | Issue 4/2007

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Abstract

The incidence rate of obesity in youth has continued to increase worldwide and about 30% of obese children display insulin resistance (IR) and other metabolic abnormalities. The present study reviews the mechanisms for development of IR in the obese child and possible links between IR and dietary factors in childhood and adolescence. Although increased concentrations of plasma free fatty acids (FFA) and their counter part at intracellular level, long-chain acyl-coenzyme A (LC acyl-CoA), have been related to the early onset of IR in childhood obesity, a new endocrine paradigm states that adipose tissue secretes a wide variety of hormones and cytokines that regulate lipid energy metabolism. These hormonal changes precede any changes in metabolites such as FFA and glucose and appear to be associated with early IR in childhood. Excessive caloric intake increases IR in children; opposite, substantial reduction of overweight achieved by a hypocaloric diet decreases it. Elevated consumption of animal protein, particularly in early life, as well as diets rich in saturated, trans, and n-6 polyunsaturated fatty acids, and diets with a high carbohydrate to fat ratio, besides a high glycaemic and low-fiber diet also appear to exacerbate adiposity and IR.
Literature
1.
go back to reference Allard P, Delvin EE, Paradis G, Hanley JA, O’Loughlin J, Lavallee O, Levy E, Lambert M (2003) Distribution of fasting plasma insulin, free fatty acids, and glucose concentrations and of homeostasis model assessment insulin resistance in a representative sample of Quebec children and adolescents. Clin Chem 49:540–541CrossRef Allard P, Delvin EE, Paradis G, Hanley JA, O’Loughlin J, Lavallee O, Levy E, Lambert M (2003) Distribution of fasting plasma insulin, free fatty acids, and glucose concentrations and of homeostasis model assessment insulin resistance in a representative sample of Quebec children and adolescents. Clin Chem 49:540–541CrossRef
2.
go back to reference Arslanian SA, Saad R, Lewy V, Danadian K, Janosky J (2002) Hyperinsulinaemia in african-american children: decreased insulin clearance and increased insulin secretion and its relationship to insulin sensitivity. Diabetes 51:3014–3019CrossRefPubMed Arslanian SA, Saad R, Lewy V, Danadian K, Janosky J (2002) Hyperinsulinaemia in african-american children: decreased insulin clearance and increased insulin secretion and its relationship to insulin sensitivity. Diabetes 51:3014–3019CrossRefPubMed
3.
go back to reference Ashley MA, Buckley AJ, Criss AL, Ward JA, Kemp A, et al. (2002) Familial, anthropometric and metabolic associations of intromyocellular lipid levels in prepubertal males. Pediatr Res 51:81–86CrossRefPubMed Ashley MA, Buckley AJ, Criss AL, Ward JA, Kemp A, et al. (2002) Familial, anthropometric and metabolic associations of intromyocellular lipid levels in prepubertal males. Pediatr Res 51:81–86CrossRefPubMed
4.
go back to reference Barker DJ (2004) The developmental origins of chronic adult disease. Acta Paediatr Suppl 93:26–33PubMedCrossRef Barker DJ (2004) The developmental origins of chronic adult disease. Acta Paediatr Suppl 93:26–33PubMedCrossRef
5.
go back to reference Baur L, O’Connor J, Pan DA, Kriketos AD, Storlien LH (1998) The fatty acid composition of skeletal muscle membrane phospholipids: its relationship with the type of feeding and plasma glucose levels in young children. Metabolism 47:106–112CrossRefPubMed Baur L, O’Connor J, Pan DA, Kriketos AD, Storlien LH (1998) The fatty acid composition of skeletal muscle membrane phospholipids: its relationship with the type of feeding and plasma glucose levels in young children. Metabolism 47:106–112CrossRefPubMed
6.
go back to reference Baur LA, O’Connor J, Pan DA, Storlien LH (1999) Relationships between maternal risk of insulin resistance and the child’s muscle membrane fatty acid composition. Diabetes 48:112–116CrossRefPubMed Baur LA, O’Connor J, Pan DA, Storlien LH (1999) Relationships between maternal risk of insulin resistance and the child’s muscle membrane fatty acid composition. Diabetes 48:112–116CrossRefPubMed
7.
go back to reference Bergman RN, Ader M (2000) Free fatty acids and pathogenesis of type 2 diabetes mellitus. Trends Endocrinol Metab 11:351–356CrossRefPubMed Bergman RN, Ader M (2000) Free fatty acids and pathogenesis of type 2 diabetes mellitus. Trends Endocrinol Metab 11:351–356CrossRefPubMed
8.
go back to reference Chen AK, Roberts CK, Barnard RJ (2006) Effect of a short-term diet and exercise intervention on metabolic syndrome in overweight children. Metabolism 55:871–878CrossRefPubMed Chen AK, Roberts CK, Barnard RJ (2006) Effect of a short-term diet and exercise intervention on metabolic syndrome in overweight children. Metabolism 55:871–878CrossRefPubMed
9.
go back to reference Cruz ML, Shaibi GQ, Weigensberg MJ, Spruijt-Metz, Ball GDC, Goran MI (2005) Pediatric obesity and insulin resistance: chronic disease risk and implications for treatment and prevention beyond body weight modification. Annu Rev Nutr 25:435–468CrossRefPubMed Cruz ML, Shaibi GQ, Weigensberg MJ, Spruijt-Metz, Ball GDC, Goran MI (2005) Pediatric obesity and insulin resistance: chronic disease risk and implications for treatment and prevention beyond body weight modification. Annu Rev Nutr 25:435–468CrossRefPubMed
10.
go back to reference Frayn KN (2000) Visceral fat and insulin resistance – causative or correlative? Br J Nutr 83:71–77 Frayn KN (2000) Visceral fat and insulin resistance – causative or correlative? Br J Nutr 83:71–77
11.
go back to reference Gibson RA, Kneebone GM (1981) Fatty acid composition of infant formulae. Aust Paediatr J 17:46–53PubMed Gibson RA, Kneebone GM (1981) Fatty acid composition of infant formulae. Aust Paediatr J 17:46–53PubMed
12.
go back to reference Gil-Campos MM (2004) Relaciones entre parámetros antropométricos, ingesta de nutrientes, hormonas y lípidos plasmáticos en niños obesos. Tesis doctoral. Universidad de Córdoba Gil-Campos MM (2004) Relaciones entre parámetros antropométricos, ingesta de nutrientes, hormonas y lípidos plasmáticos en niños obesos. Tesis doctoral. Universidad de Córdoba
13.
go back to reference Gil-Campos M, Cañete R, Gil A (2004) Hormones regulating lipid metabolism and plasma lipids in childhood obesity. Int J Obes Relat Metab Disord 28:75–80CrossRef Gil-Campos M, Cañete R, Gil A (2004) Hormones regulating lipid metabolism and plasma lipids in childhood obesity. Int J Obes Relat Metab Disord 28:75–80CrossRef
14.
go back to reference Gil-Campos M, Cañete R, Gil A (2004) Adiponectin, the missing link in insulin resistance and obesity. Clin Nutr 24:963–974CrossRef Gil-Campos M, Cañete R, Gil A (2004) Adiponectin, the missing link in insulin resistance and obesity. Clin Nutr 24:963–974CrossRef
16.
go back to reference Isganaitis E, Lustig RH (2005) Fast food, central nervous system insulin resistance, and obesity. Arterioscler Thromb Vasc Biol 25:2451–2462CrossRefPubMed Isganaitis E, Lustig RH (2005) Fast food, central nervous system insulin resistance, and obesity. Arterioscler Thromb Vasc Biol 25:2451–2462CrossRefPubMed
17.
go back to reference Kitagawa T, Owada M, Urakami T, Yamauchi K (1998) Increased incidence of non-insulin dependent diabetes mellitus among Japanese schoolchildren correlates with an increased intake of animal protein and fat. Clin Pediatr 37:111–115 Kitagawa T, Owada M, Urakami T, Yamauchi K (1998) Increased incidence of non-insulin dependent diabetes mellitus among Japanese schoolchildren correlates with an increased intake of animal protein and fat. Clin Pediatr 37:111–115
18.
go back to reference Klein-Platat C, Drai J, Oujaa M, Schlienger JL, Simon C (2005) Plasma fatty acid composition is associated with the metabolic syndrome and low-grade inflammation in overweight adolescents. Am J Clin Nutr 82:1178–1184PubMed Klein-Platat C, Drai J, Oujaa M, Schlienger JL, Simon C (2005) Plasma fatty acid composition is associated with the metabolic syndrome and low-grade inflammation in overweight adolescents. Am J Clin Nutr 82:1178–1184PubMed
19.
go back to reference Koletzko B, Broekaert I, Demmelmair H, Franke J, Hannibal I, Oberle D, Schiess S, Baumann BT, Verwied-Jorky S, EU Childhood Obesity Project (2005) Protein intake in the first year of life: a risk factor for later obesity? The E.U. childhood obesity project. Adv Exp Med Biol 569:69–79PubMedCrossRef Koletzko B, Broekaert I, Demmelmair H, Franke J, Hannibal I, Oberle D, Schiess S, Baumann BT, Verwied-Jorky S, EU Childhood Obesity Project (2005) Protein intake in the first year of life: a risk factor for later obesity? The E.U. childhood obesity project. Adv Exp Med Biol 569:69–79PubMedCrossRef
20.
go back to reference Kretschmer BD, Schelling P, Beier N, Liebscher C, Treutel S, Kruger N, Scholz HP, Haus A (2005). Modulatory role of food, feeding regime and physical exercise on body weight and insulin resistance. Life Sci 76:1553–1573CrossRefPubMed Kretschmer BD, Schelling P, Beier N, Liebscher C, Treutel S, Kruger N, Scholz HP, Haus A (2005). Modulatory role of food, feeding regime and physical exercise on body weight and insulin resistance. Life Sci 76:1553–1573CrossRefPubMed
21.
go back to reference Larqué E, Gil-Campos M, Ramírez-Tortosa MC, Linde J, Cañete R, Gil A (2006) Postprandial response of trans fatty acids in prepubertal obese children. Int J Obes 30:1488–1493CrossRef Larqué E, Gil-Campos M, Ramírez-Tortosa MC, Linde J, Cañete R, Gil A (2006) Postprandial response of trans fatty acids in prepubertal obese children. Int J Obes 30:1488–1493CrossRef
22.
go back to reference Larqué E, Pérez-Llamas F, Zamora S, Gil A (2005) Biochemical and physiological effects of dietary trans fatty acids. In: Landow MV (ed) Trends in dietary fats research. Nova Science Publishers, Hauppauge, NY, USA, pp 51–66 Larqué E, Pérez-Llamas F, Zamora S, Gil A (2005) Biochemical and physiological effects of dietary trans fatty acids. In: Landow MV (ed) Trends in dietary fats research. Nova Science Publishers, Hauppauge, NY, USA, pp 51–66
23.
24.
go back to reference Mann JI (2000) Can dietary intervention produce long-term reduction in insulin resistance? Br J Nutr 83(Suppl 1):169–172 Mann JI (2000) Can dietary intervention produce long-term reduction in insulin resistance? Br J Nutr 83(Suppl 1):169–172
25.
go back to reference McAuley KA, Mann JI (2006) Nutritional determinants of insulin resistance. J Lipid Res 24 [Epub ahead of print] McAuley KA, Mann JI (2006) Nutritional determinants of insulin resistance. J Lipid Res 24 [Epub ahead of print]
26.
go back to reference McGarry JD (2002) Dysregulation of fatty acid metabolism in the etiology of type 2 diabetes. Diabetes 51:7–18CrossRefPubMed McGarry JD (2002) Dysregulation of fatty acid metabolism in the etiology of type 2 diabetes. Diabetes 51:7–18CrossRefPubMed
27.
go back to reference Miyashita M, Okada T, Kuromori Y, Harada K (2006) LDL particle size, fat distribution and insulin resistance in obese children. Eur J Clin Nutr 60:416–420CrossRefPubMed Miyashita M, Okada T, Kuromori Y, Harada K (2006) LDL particle size, fat distribution and insulin resistance in obese children. Eur J Clin Nutr 60:416–420CrossRefPubMed
28.
go back to reference Moreno LA, Tresaco B, Bueno G, Fleta J, Rodriguez G, Garagorri JM, Bueno M (2003) Psyllium fibre and the metabolic control of obese children and adolescents. J Physiol Biochem 59:235–242PubMedCrossRef Moreno LA, Tresaco B, Bueno G, Fleta J, Rodriguez G, Garagorri JM, Bueno M (2003) Psyllium fibre and the metabolic control of obese children and adolescents. J Physiol Biochem 59:235–242PubMedCrossRef
29.
go back to reference Owen CG, Martin RM, Whincup PH, Smith GD, Cook DG (2005) Effect of infant feeding on the risk of obesity across the life course: a quantitative review of published evidence. Pediatrics 115:1367–1377CrossRefPubMed Owen CG, Martin RM, Whincup PH, Smith GD, Cook DG (2005) Effect of infant feeding on the risk of obesity across the life course: a quantitative review of published evidence. Pediatrics 115:1367–1377CrossRefPubMed
30.
go back to reference Pereira MA, Kartashov AI, Ebbeling CB, Van Horn L, Slattery ML, Jacobs DR Jr, Ludwig DS (2005) Fast-food habits, weight gain, and insulin resistance (the CARDIA study): 15-year prospective analysis. Lancet 365:36–42CrossRefPubMed Pereira MA, Kartashov AI, Ebbeling CB, Van Horn L, Slattery ML, Jacobs DR Jr, Ludwig DS (2005) Fast-food habits, weight gain, and insulin resistance (the CARDIA study): 15-year prospective analysis. Lancet 365:36–42CrossRefPubMed
31.
go back to reference Ravussin E, Smith SR (2002) Increased fat intake, impaired fat oxidation, and failure of fat cell proliferation result in ectopic fat storage, insulin resistance, and type 2 diabetes mellitus. Ann NY Acad Sci 967:363–368PubMedCrossRef Ravussin E, Smith SR (2002) Increased fat intake, impaired fat oxidation, and failure of fat cell proliferation result in ectopic fat storage, insulin resistance, and type 2 diabetes mellitus. Ann NY Acad Sci 967:363–368PubMedCrossRef
32.
33.
go back to reference Reinehr T, Kiess W, Andler W (2005) Insulin sensitivity indices of glucose and free acid metabolism in obese children and adolescents in relation to serum lipids. Metabolism 54:397–402CrossRefPubMed Reinehr T, Kiess W, Andler W (2005) Insulin sensitivity indices of glucose and free acid metabolism in obese children and adolescents in relation to serum lipids. Metabolism 54:397–402CrossRefPubMed
34.
go back to reference Reinehr T, Roth CL, Alexy U, Kersting M, Kiess W, Andler W (2005) Ghrelin levels before and after reduction of overweight due to a low-fat high-carbohydrate diet in obese children and adolescents. Int J Obes 29:362–368CrossRef Reinehr T, Roth CL, Alexy U, Kersting M, Kiess W, Andler W (2005) Ghrelin levels before and after reduction of overweight due to a low-fat high-carbohydrate diet in obese children and adolescents. Int J Obes 29:362–368CrossRef
35.
go back to reference Rodríguez-Cruz M, Tovar AR, del Prado M, Torres N (2005) Molecular mechanisms of action and health benefits of polyunsaturated fatty acids. Rev Invest Clin 57:457–472PubMed Rodríguez-Cruz M, Tovar AR, del Prado M, Torres N (2005) Molecular mechanisms of action and health benefits of polyunsaturated fatty acids. Rev Invest Clin 57:457–472PubMed
36.
go back to reference Rodríguez G, Moreno LA (2006) Is dietary intake able to explain differences in body fatness in children and adolescents? Nutr Metab Cardiovasc Dis 16:294–301CrossRefPubMed Rodríguez G, Moreno LA (2006) Is dietary intake able to explain differences in body fatness in children and adolescents? Nutr Metab Cardiovasc Dis 16:294–301CrossRefPubMed
37.
go back to reference Ruderman NB, Saha AK, Kraegen EW (2003) Minireview: malonyl CoA, AMP-activated protein kinase, and adiposity. Endocrinology 144:5166–5171CrossRefPubMed Ruderman NB, Saha AK, Kraegen EW (2003) Minireview: malonyl CoA, AMP-activated protein kinase, and adiposity. Endocrinology 144:5166–5171CrossRefPubMed
38.
go back to reference Schwimmer JB, Deuthsch R, Rauch JB, Behling C, Newbury R, Lavine JE (2003) Obesity, insulin resistance, and other clinicopathological correlates of pediatric non-alcoholic fatty liver disease. J Pediatr 143:500–505CrossRefPubMed Schwimmer JB, Deuthsch R, Rauch JB, Behling C, Newbury R, Lavine JE (2003) Obesity, insulin resistance, and other clinicopathological correlates of pediatric non-alcoholic fatty liver disease. J Pediatr 143:500–505CrossRefPubMed
39.
go back to reference Sell H, Dietze-Schroeder D, Eckel J (2006) The adipocyte-myocyte axis in insulin resistance. Trends Endocrinol Metab 17:416–422CrossRefPubMed Sell H, Dietze-Schroeder D, Eckel J (2006) The adipocyte-myocyte axis in insulin resistance. Trends Endocrinol Metab 17:416–422CrossRefPubMed
40.
go back to reference Simopoulos AP (1994) Is insulin resistance influenced by dietary linoleic acid and trans fatty acids? Free Radic Biol Med 17:367–372CrossRefPubMed Simopoulos AP (1994) Is insulin resistance influenced by dietary linoleic acid and trans fatty acids? Free Radic Biol Med 17:367–372CrossRefPubMed
41.
go back to reference Sinha R, Dufour S, Petersen KF, Lebon V, Enoksson S, et al. (2002) Assessment of skeletal muscle triglyceride content by (1) H nuclear magnetic resonance spectroscopy in lean and obese adolescents: relationships to insulin sensitivity, total body fat, and central adiposity. Diabetes 51:1022–1027CrossRefPubMed Sinha R, Dufour S, Petersen KF, Lebon V, Enoksson S, et al. (2002) Assessment of skeletal muscle triglyceride content by (1) H nuclear magnetic resonance spectroscopy in lean and obese adolescents: relationships to insulin sensitivity, total body fat, and central adiposity. Diabetes 51:1022–1027CrossRefPubMed
42.
go back to reference Steffen LM, Jacobs DR Jr, Murtaugh MA, Moran A, Steinberger J, Hong CP, Sinaiko AR (2003) Whole grain intake is associated with lower body mass and greater insulin sensitivity among adolescents. Am J Epidemiol 158:243–250CrossRefPubMed Steffen LM, Jacobs DR Jr, Murtaugh MA, Moran A, Steinberger J, Hong CP, Sinaiko AR (2003) Whole grain intake is associated with lower body mass and greater insulin sensitivity among adolescents. Am J Epidemiol 158:243–250CrossRefPubMed
43.
go back to reference Steinbeck KS, Bermingham MA, Mahajan D, Baur LA (2001) Low-density lipoprotein subclasses in children under 10 years age. J Paediatr Child Health 37:550–553CrossRefPubMed Steinbeck KS, Bermingham MA, Mahajan D, Baur LA (2001) Low-density lipoprotein subclasses in children under 10 years age. J Paediatr Child Health 37:550–553CrossRefPubMed
44.
go back to reference Strok GA, Cottrell ER, Abang AE, Buschbacher RM, Hannon TS (2005) Childhood obesity: a simple equation with complex variables. J Long Term Eff Med Implants 15:15–32CrossRef Strok GA, Cottrell ER, Abang AE, Buschbacher RM, Hannon TS (2005) Childhood obesity: a simple equation with complex variables. J Long Term Eff Med Implants 15:15–32CrossRef
45.
go back to reference Sunehag AL, Toffolo G, Campioni M, Bier DM, Haymond MW (2005) Effects of dietary macronutrient intake on insulin sensitivity and secretion and glucose and lipid metabolism in healthy, obese adolescents. J Clin Endocrinol Metab 90:4496–4502CrossRefPubMed Sunehag AL, Toffolo G, Campioni M, Bier DM, Haymond MW (2005) Effects of dietary macronutrient intake on insulin sensitivity and secretion and glucose and lipid metabolism in healthy, obese adolescents. J Clin Endocrinol Metab 90:4496–4502CrossRefPubMed
46.
go back to reference Viner RM, Segal TY, Lichtarowicz-Krynska R, Hindmarsh P (2005) Prevalence of the insulin resistance syndrome in obesity. Arch Dis Child 90:10–14CrossRefPubMed Viner RM, Segal TY, Lichtarowicz-Krynska R, Hindmarsh P (2005) Prevalence of the insulin resistance syndrome in obesity. Arch Dis Child 90:10–14CrossRefPubMed
47.
go back to reference Weiss R, Dufour S, Taksali S, Tamborlane W, Petersen K, Bonadonna R, Boselli L, Barbetta G, Allen K, Rife F, Savoye M, Dziura J, Sherwin R, Shulman G, Caprio S (2003) Prediabetes in obese youth: a syndrome of impaired glucose tolerance, severe insulin resistance, and altered myocellular and abdominal fat partitioning. Lancet 362:951–957CrossRefPubMed Weiss R, Dufour S, Taksali S, Tamborlane W, Petersen K, Bonadonna R, Boselli L, Barbetta G, Allen K, Rife F, Savoye M, Dziura J, Sherwin R, Shulman G, Caprio S (2003) Prediabetes in obese youth: a syndrome of impaired glucose tolerance, severe insulin resistance, and altered myocellular and abdominal fat partitioning. Lancet 362:951–957CrossRefPubMed
48.
go back to reference Weiss R, Dziura J, Burgert TS, Tamborlane W, Taksali S, Yeckel CW, Allen K, Lopes M, Savoye M, Morrison J, Sherwin R, Caprio S (2004) Obesity and the metabolic syndrome in children and adolescents. N Engl J Med 350:2362–2374CrossRefPubMed Weiss R, Dziura J, Burgert TS, Tamborlane W, Taksali S, Yeckel CW, Allen K, Lopes M, Savoye M, Morrison J, Sherwin R, Caprio S (2004) Obesity and the metabolic syndrome in children and adolescents. N Engl J Med 350:2362–2374CrossRefPubMed
49.
go back to reference Wolever TMS (2000) Dietary carbohydrates and insulin action in humans. Br J Nutr 83(suppl 1):97–102 Wolever TMS (2000) Dietary carbohydrates and insulin action in humans. Br J Nutr 83(suppl 1):97–102
50.
go back to reference Yamauchi T, Kamon J, Minokoshi Y, et al. (2002) Adiponectin stimulates glucose utilization and fatty-acid oxidation by activating AMP-activated protein kinase. Nat Med 8:1288–1295CrossRefPubMed Yamauchi T, Kamon J, Minokoshi Y, et al. (2002) Adiponectin stimulates glucose utilization and fatty-acid oxidation by activating AMP-activated protein kinase. Nat Med 8:1288–1295CrossRefPubMed
Metadata
Title
Development of insulin resistance and its relation to diet in the obese child
Authors
Ramón Cañete
Mercedes Gil-Campos
Concepción M. Aguilera
Prof. Angel Gil
Publication date
01-06-2007
Publisher
Steinkopff-Verlag
Published in
European Journal of Nutrition / Issue 4/2007
Print ISSN: 1436-6207
Electronic ISSN: 1436-6215
DOI
https://doi.org/10.1007/s00394-007-0648-9

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