Related Factors of Insulin Resistance in Korean Children: Adiposity and Maternal Insulin Resistance
Abstract
:1. Introduction
2. Methods
2.1. Subjects
2.2. Measurements
2.3. Statistical Analyses
3. Results
Boys (n = 67) | Girls (n = 44) | Total (n = 111) | P-value b | |
---|---|---|---|---|
Age (years) | 7.3 (0.3) | 7.2 (0.3) | 7.3 (0.3) | 0.265 |
Body mass index (kg/m2) | 18.0 (3.0) | 16.5 (2.1) | 17.4 (2.8) | 0.002 |
Body fat percentage (%) | 21.9 (8.4) | 20.9 (5.9) | 21.5 (7.5) | 0.462 |
Waist circumference (cm) | 59.6 (7.5) | 55.5 (6.4) | 58.0 (7.4) | 0.004 |
Fasting glucose (mg/dL) | 89.8 (7.7) | 88.1 (6.0) | 89.1 (7.1) | 0.209 |
Fasting insulin (μU/mL) c | 5.06 (1.68) | 5.02 (2.05) | 5.04 (1.83) | 0.948 |
HOMA-IR c | 1.12 (1.71) | 1.09 (2.08) | 1.11 (1.86) | 0.829 |
Birth weight | ||||
<3.5 kg | 37 (55.2) | 28 (65.1) | 70 (59.1) | 0.303 |
≥3.5 kg | 30 (44.8) | 15 (34.9) | 46 (40.9) |
Mothers | Fathers | |
---|---|---|
Age (years) | 37.7 (3.9) | 40.5 (4.2) |
Body mass index (kg/m2) | 22.9 (3.3) | 24.7 (3.0) |
Body fat percentage (%) | 33.5 (5.6) | 25.3 (5.5) |
Waist circumference (cm) | 77.1 (8.4) | 86.5 (7.7) |
Fasting glucose (mg/dL) | 87.6 (7.3) | 94.1 (15.7) |
Fasting insulin (μU/mL) b | 3.40 (2.22) | 10.17 (2.19) |
HOMA-IR b | 0.73 (2.27) | 2.34 (2.32) |
Fasting glucose | Log fasting insulin | Log HOMA-IR | ||||
---|---|---|---|---|---|---|
r | P-value a | r | P-value a | r | P-value a | |
Children | ||||||
Waist circumference | -0.105 | 0.276 | 0.338 | <0.001 | 0.318 | 0.001 |
Body mass index | -0.082 | 0.394 | 0.332 | <0.001 | 0.315 | 0.001 |
Body fat percentage | -0.074 | 0.440 | 0.325 | 0.001 | 0.309 | 0.001 |
Mothers | ||||||
Fasting glucose | 0.270 | 0.004 | 0.085 | 0.377 | 0.120 | 0.216 |
Log fasting insulin | 0.000 | 1.000 | 0.291 | 0.002 | 0.285 | 0.003 |
Log HOMA-IR | 0.029 | 0.767 | 0.292 | 0.002 | 0.290 | 0.002 |
Fathers | ||||||
Fasting glucose | 0.264 | 0.006 | 0.071 | 0.466 | 0.103 | 0.290 |
Log fasting insulin | 0.077 | 0.428 | 0.084 | 0.388 | 0.093 | 0.338 |
Log HOMA-IR | 0.124 | 0.200 | 0.089 | 0.357 | 0.104 | 0.282 |
Fasting glucose (mg/dL) | Fasting insulin (μU/mL) b | HOMA-IR b | |
---|---|---|---|
Intake of fruits | |||
≥7 times/week (n = 49) | 89.1 (1.0) | 5.01 (1.09) | 1.10 (1.09) |
4–6 times/week (n = 34) | 88.4 (1.2) | 5.09 (1.11) | 1.11 (1.11) |
≤3 times/week (n = 28) | 89.4 (1.4) | 5.03 (1.13) | 1.11 (1.13) |
P-value c | 0.832 | 0.994 | 0.998 |
Intake of fresh vegetables | |||
≥7 times/week (n = 55) | 88.4 (1.0) | 5.20 (1.09) | 1.13 (1.09) |
4–6 times/week (n = 21) | 89.1 (1.6) | 4.72 (1.15) | 1.04 (1.15) |
≤3 times/week (n = 35) | 89.8 (1.2) | 4.97 (1.11) | 1.10 (1.11) |
P-value c | 0.660 | 0.883 | 0.868 |
Intake of fast-foods | |||
<1 times/week (n = 61) | 89.2 (0.9) | 5.33 (1.08) | 1.17 (1.08) |
≥1 times/week (n = 50) | 88.6 (1.0) | 4.70 (1.09) | 1.02 (1.09) |
P-value c | 0.663 | 0.284 | 0.277 |
Moderate physical activity | |||
≥5 days/week (n = 31) | 88.4 (1.3) | 5.28 (1.12) | 1.15 (1.12) |
2–4 days/week (n = 52) | 88.2 (1.0) | 4.66 (1.09) | 1.01 (1.09) |
≤1 days/week (n = 28) | 90.7 (1.3) | 5.49 (1.12) | 1.23 (1.13) |
P-value c | 0.327 | 0.462 | 0.395 |
Vigorous physical activity | |||
≥5 days/week (n = 32) | 87.6 (1.3) | 4.48 (1.12) | 0.96 (1.12) |
2–4 days/week (n = 44) | 88.8 (1.1) | 5.14 (1.10) | 1.12 (1.10) |
≤1 days/week (n = 35) | 90.1 (1.2) | 5.40 (1.11) | 1.20 (1.11) |
P-value c | 0.386 | 0.457 | 0.376 |
Screen time | |||
<60 minutes/day (n = 40) | 87.6 (1.1) | 5.08 (1.10) | 1.10 (1.11) |
60–119 minutes/day (n = 38) | 91.0 (1.2) | 4.60 (1.11) | 1.03 (1.11) |
≥120 minutes/day (n = 29) | 88.0 (1.3) | 5.61 (1.12) | 1.22 (1.13) |
P-valuec | 0.082 | 0.430 | 0.576 |
β | SE | P-value | |
---|---|---|---|
Constant | -1.345 | 0.414 | 0.002 |
Sex | |||
Girls | |||
Boys | -0.043 | 0.110 | 0.693 |
Waist circumference | 0.027 | 0.007 | <0.001 |
Mother log HOMA-IR | 0.202 | 0.063 | 0.002 |
4. Discussion
5. Conclusions
Acknowledgments
Conflict of Interest
References
- Lobstein, T.; Baur, L.; Uauy, R.; IASO International Obesity Task Force. Obesity in children and young people: A crisis in public health. Obes. Rev. 2004, 5, 4–104. [Google Scholar]
- Popkin, B.M.; Conde, W.; Hou, N.; Monteiro, C. Is there a lag globally in overweight trends for children compared with adults? Obesity 2006, 14, 1846–1853. [Google Scholar] [PubMed]
- Urakami, T.; Kubota, S.; Nitadori, Y.; Harada, K.; Owada, M.; Kitagawa, T. Annual incidence and clinical characteristics of type 2 diabetes in children as detected by urine glucose screening in the Tokyo metropolitan area. Diabetes Care 2005, 28, 1876–1881. [Google Scholar]
- Chan, J.C.; Malik, V.; Jia, W.; Kadowaki, T.; Ynjnik, C.S.; Yoon, K.H.; Hu, F.B. Diabetes in Asia: Epidemiology, risk factors, and pathophysiology. JAMA 2009, 301, 2129–2140. [Google Scholar] [PubMed]
- Eriksson, J.; Franssila-Kallunki, A.; Ekstrand, A.; Saloranta, C.; Widen, E.; Schalin, C.; Groop, L. Early metabolic defects in persons at increased risk for non-insulin-dependent diabetes mellitus. N. Engl. J. Med. 1989, 321, 337–343. [Google Scholar]
- Morrison, J.A.; Glueck, C.J.; Horn, P.S.; Schreiber, G.B.; Wang, P. Pre-teen insulin resistance predicts weight gain, impaired fasting glucose, and type 2 diabetes at age 18–19 y: A 10-y prospective study of black and white girls. Am. J. Clin. Nutr. 2008, 88, 778–788. [Google Scholar] [PubMed]
- Gungor, N.; Saad, R.; Janosky, J.; Arslanian, S. Validation of surrogate estimates of insulin sensitivity and insulin secretion in children and adolescents. J. Pediatr. 2004, 144, 47–55. [Google Scholar]
- Guzzaloni, G.; Grugni, G.; Mazzilli, G.; Moro, D.; Morabito, F. Comparison between beta-cell function and insulin resistance indexes in prepubertal and pubertal obese children. Metabolism 2002, 51, 1011–1016. [Google Scholar]
- Keskin, M.; Kurtoglu, S.; Kendirci, M.; Atabek, M.E.; Yazici, C. Homeostasis model assessment is more reliable than the fasting glucose/insulin ratio and quantitative insulin sensitivity check index for assessing insulin resistance among obese children and adolescents. Pediatrics 2005, 115, e500–e503. [Google Scholar]
- Goran, M.I.; Ball, G.D.; Cruz, M.L. Obesity and risk of type 2 diabetes and cardiovascular disease in children and adolescents. J. Clin. Endocrinol. Metab. 2003, 88, 1417–1427. [Google Scholar]
- Pankow, J.S.; Jacobs, D.R., Jr.; Steinberger, J.; Moran, A.; Sinaiko, A.R. Insulin resistance and cardiovascular disease risk factors in children of parents with the insulin resistance (metabolic) syndrome. Diabetes Care 2004, 27, 775–780. [Google Scholar]
- Lee, J.M.; Okumura, M.J.; Davis, M.M.; Herman, W.H.; Gurney, J.G. Prevalence and determinants of insulin resistance among U.S. adolescents. Diabetes Care 2006, 29, 2427–2432. [Google Scholar] [PubMed]
- Arslanian, S.; Suprasongsin, C. Differences in the in vivo insulin secretion and sensitivity of healthy black versus white adolescents. J. Pediatr. 1996, 129, 440–443. [Google Scholar] [PubMed]
- Moran, A.; Jacobs, D.R., Jr.; Steinberger, J.; Hong, C.P.; Prineas, R.; Luepker, R.; Sinaiko, A.R. Insulin resistance during puberty: Results from clamp studies in 357 children. Diabetes 1999, 48, 2039–2044. [Google Scholar]
- Cruz, M.L.; Shaibi, G.Q.; Weigenberg, M.J.; Spruijt-Metz, D.; Ball, G.D; Goran, M.I. Pediatric obesity and insulin resistance: Chronic disease risk and implications for treatment and prevention beyond body weight modification. Ann. Rev. Nutr. 2005, 25, 435–468. [Google Scholar] [CrossRef]
- Schmitz, K.H.; Jacobs, D.R., Jr.; Hong, C.P.; Steinberger, J.; Moran, A.; Sinaiko, A.R. Association of physical activity with insulin sensitivity in children. Int. J. Obes. Relat. Metab. Disord. 2002, 26, 1310–1316. [Google Scholar]
- Lindquist, C.H.; Gower, B.A.; Goran, M.I. Role of dietary factors in ethnic differences in early risk of cardiovascular disease and type 2 diabetes. Am. J. Clin. Nutr. 2008, 71, 725–732. [Google Scholar]
- Goodman, E.; Daniels, S.R.; Dolan, L.M. Socioeconomic disparities in insulin resistance: Results from the Princeton School District Study. Psychosom. Med. 2007, 69, 61–67. [Google Scholar]
- Kim, I.K.; Kim, J.; Kang, J.H.; Song, J. Serum leptin as a predictor of fatty liver in 7-year-old Korean children. Ann. Nutr. Metab. 2008, 53, 109–116. [Google Scholar]
- Matthews, D.R.; Hosker, J.P.; Rudenski, A.S.; Naylor, B.A.; Treacher, D.F.; Turner, R.C. Homeostasis model assessment: Insulin resistance and beta-cell function from fasting plasma glucose and insulin concentrations in man. Diabetologia 1985, 28, 412–419. [Google Scholar]
- American Diabetes Association. Type 2 diabetes in children and adolescents. Pediatrics 2000, 105, 671–680.
- Hale, D.E. Type 2 diabetes and diabetes risk factors in children and adolescents. Clin. Cornerstone 2004, 6, 17–30. [Google Scholar]
- Brambilla, P.; Lissau, I.; Flodmark, C.E.; Moreno, L.A.; Widhalm, K.; Wabitsch, M.; Pietrobelli, A. Metabolic risk-factor clustering estimation in children: To draw a line across pediatric metabolic syndrome. Int. J. Obes. (Lond.) 2007, 31, 591–600. [Google Scholar]
- Allard, P.; Delvin, E.E.; Paradis, G.; Hanley, J.A.; O’Loughlin, J.; Lavallee, C.; Levy, E.; Lambert, M. Distribution of fasting plasma insulin, free fatty acids, and glucose concentrations and of homeostasis model assessment of insulin resistance in a representative sample of Quebec children and adolescents. Clin. Chem. 2003, 49, 644–649. [Google Scholar] [PubMed]
- DeFronzo, R.A.; Tobin, J.D.; Andres, R. Glucose clamp technique: A method for quantifying insulin secretion and resistance. Am. J. Physiol. 1979, 237, E214–E223. [Google Scholar]
- Pacini, G.; Bergman, R.N. MINMOD: A computer program to calculate insulin sensitivity and pancreatic responsivity from the frequently sampled intravenous glucose tolerance test. Comput. Methods Programs Biomed. 1986, 23, 113–122. [Google Scholar]
- Martin, B.C.; Warram, J.C.; Rosner, B.; Rich, S.S.; Soeldner, J.S.; Kolewski, A.S. Familial clustering of insulin sensitivity. Diabetes 1992, 41, 850–854. [Google Scholar]
- Freeman, M.S.; Mansfield, M.W.; Barrett, J.H.; Grant, P.J. Heritability of features of the insulin resistance syndrome in a community-based study of healthy families. Diabet. Med. 2002, 19, 994–999. [Google Scholar]
- Hong, Y.; Pedersen, N.L.; Brismar, K.; de Faire, U. Genetic and environmental architecture of the features of the insulin-resistance syndrome. Am. J. Hum. Genet. 1997, 60, 143–152. [Google Scholar]
- Bosy-Westphal, A.; Onur, S.; Geisler, C.; Wolf, A.; Korth, O.; Pfeuffer, M.; Schrezenmeir, J.; Krawczak, M.; Müller, M.J. Common familial influences on clustering of metabolic syndrome traits with central obesity and insulin resistance: The Kiel obesity prevention study. Int. J. Obes. 2007, 31, 784–790. [Google Scholar]
- Mayer, E.J.; Newman, B.; Austin, M.A.; Zhang, D.; Quesenberry, C.P., Jr.; Edwards, K.; Selby, J.V. Genetic and environmental influences on insulin levels and the insulin resistance syndrome: An analysis of women twins. Am. J. Epidemiol. 1996, 143, 323–332. [Google Scholar]
- Poulsen, P.; Vaag, A.; Kyvik, K.; Beck-Nielsen, H. Genetic versus environmental aetiology of the metabolic syndrome among male and female twins. Diabetologia 2001, 44, 537–543. [Google Scholar]
- Voruganti, V.S.; Lopez-Alvarenga, J.C.; Nath, S.D.; Rainwater, D.L.; Bauer, R.; Cole, S.A.; Maccluer, J.W.; Blangero, J.; Comuzzie, A.G. Genetics of variation in HOMA-IR and cardiovascular risk factors in Mexican-Americans. J. Mol. Med. 2008, 86, 303–311. [Google Scholar]
- Young-Hyman, D.; Schlundt, D.G.; Herman, L.; de Luca, F.; Counts, D. Evaluation of the insulin resistance syndreome in 5- to 10-year-old overweight/obese African-American children. Diabetes Care 2001, 24, 1359–1364. [Google Scholar]
- Gardner, D.S.L.; Metcalf, B.S.; Hosking, J.; Jeffery, A.N.; Voss, L.D.; Wilkin, T.J. Trends, associations and predictions of insulin resistance in prepubertal children (EarlyBird 29). Pediatr. Diabetes 2008, 9, 214–220. [Google Scholar]
- Kelley, D.E.; Goodpaster, B.H. Effects of physical activity on insulin action and glucose tolerance in obesity. Med. Sci. Sports Exerc. 1999, 31 (Suppl 11), S619–S623. [Google Scholar]
- McGavock, J.; Sellers, E.; Dean, H. Physical activity for the prevention and management of youth-onset type 2 diabetes mellitus: Focus on cardiovascular complication. Diab. Vas. Dis. Res. 2007, 4, 305–310. [Google Scholar]
- Isacco, L.; Lazaar, N.; Ratel, S.; Thivel, D.; Aucouturier, J.; Dore, E.; Meyer, M.; Duche, P. The impact of eating habits on anthropometric characteristics in French primary school children. Child Care Health Dev. 2010, 36, 835–842. [Google Scholar]
- Cho, Y.G.; Kang, J.H.; Kim, K.A.; Song, J.H. The relationship between low maternal education level and children’s overweight in the Korean society. Obes. Res. Clin. Pract. 2009, 3, 133–140. [Google Scholar]
© 2011 by the authors; licensee MDPI, Basel, Switzerland. This article is an open-access article distributed under the terms and conditions of the Creative Commons Attribution license (http://creativecommons.org/licenses/by/3.0/).
Share and Cite
Cho, Y.-G.; Kang, J.-H.; Hur, Y.-I.; Song, J.; Lee, K.-S. Related Factors of Insulin Resistance in Korean Children: Adiposity and Maternal Insulin Resistance. Int. J. Environ. Res. Public Health 2011, 8, 4596-4607. https://doi.org/10.3390/ijerph8124596
Cho Y-G, Kang J-H, Hur Y-I, Song J, Lee K-S. Related Factors of Insulin Resistance in Korean Children: Adiposity and Maternal Insulin Resistance. International Journal of Environmental Research and Public Health. 2011; 8(12):4596-4607. https://doi.org/10.3390/ijerph8124596
Chicago/Turabian StyleCho, Young-Gyu, Jae-Heon Kang, Yang-Im Hur, Jihyun Song, and Kang-Sook Lee. 2011. "Related Factors of Insulin Resistance in Korean Children: Adiposity and Maternal Insulin Resistance" International Journal of Environmental Research and Public Health 8, no. 12: 4596-4607. https://doi.org/10.3390/ijerph8124596
APA StyleCho, Y. -G., Kang, J. -H., Hur, Y. -I., Song, J., & Lee, K. -S. (2011). Related Factors of Insulin Resistance in Korean Children: Adiposity and Maternal Insulin Resistance. International Journal of Environmental Research and Public Health, 8(12), 4596-4607. https://doi.org/10.3390/ijerph8124596