Juvenile obesity is the most prevalent nutritional disease in the U.S. This proposal seeks continued support of a project funded since 1991, which focuses on the identification of early metabolic disturbances implicated in the pathogenesis of juvenile obesity. The studies proposed here are natural extensions of our previous work in this area. The focus of this application is to understand the mechanisms responsible for the insulin resistance associated with juvenile obesity. The central hypothesis of this renewal is that insulin resistance and hyperinsulinemia favor weight gain and lead to the associated metabolic complications of juvenile obesity. Thus, interventions that target insulin resistance may not only control weight gain but also prevent the metabolic complications of juvenile obesity.
The specific aims are: 1) to determine whether ethnic differences in insulin sensitivity are related to greater intramyocellular (IMCL) accumulations of lipid content in obese adolescents of African American and Hispanic origin, compared to Caucasian adolescents closely matched for overall adiposity; 2) to determine longitudinal changes in circulating adiponectin levels in relation to changes in insulin sensitivity during the development of juvenile obesity; and 3) to determine whether interventions--such as the use of metformin, a biguanide--can enhance insulin sensitivity and decrease hyperinsulinemia, which will lead to a reduction in weight gain and improvement in cardiovascular risk factors in obese adolescents. The combination of whole body metabolic methods (glucose clamps, stable isotope kinetics and indirect calorimetry), together with sequential measurements of the novel adipose-specific protein adiponectin and the use of 1H-NMR spectroscopy to assess non-invasively, for the first time, IMCL lipid stores in children, will provide the unique opportunity to advance the understanding of the mechanisms underlying the insulin resistance in childhood obesity.

Agency
National Institute of Health (NIH)
Institute
Eunice Kennedy Shriver National Institute of Child Health & Human Development (NICHD)
Type
Research Project (R01)
Project #
5R01HD028016-12
Application #
6910883
Study Section
Nutrition Study Section (NTN)
Program Officer
Grave, Gilman D
Project Start
2003-05-01
Project End
2008-04-30
Budget Start
2005-05-01
Budget End
2006-04-30
Support Year
12
Fiscal Year
2005
Total Cost
$257,513
Indirect Cost
Name
Yale University
Department
Pediatrics
Type
Schools of Medicine
DUNS #
043207562
City
New Haven
State
CT
Country
United States
Zip Code
06520
Galderisi, Alfonso; Giannini, Cosimo; Weiss, Ram et al. (2018) Trajectories of changes in glucose tolerance in a multiethnic cohort of obese youths: an observational prospective analysis. Lancet Child Adolesc Health 2:726-735
Tricò, Domenico; Natali, Andrea; Mari, Andrea et al. (2018) Triglyceride-rich very low-density lipoproteins (VLDL) are independently associated with insulin secretion in a multiethnic cohort of adolescents. Diabetes Obes Metab 20:2905-2910
Tricò, Domenico; Caprio, Sonia; Rosaria Umano, Giuseppina et al. (2018) Metabolic Features of Nonalcoholic Fatty Liver (NAFL) in Obese Adolescents: Findings From a Multiethnic Cohort. Hepatology 68:1376-1390
Weiss, Ram; Santoro, Nicola; Giannini, Cosimo et al. (2017) Prediabetes in youth - mechanisms and biomarkers. Lancet Child Adolesc Health 1:240-248
Tricò, Domenico; Prinsen, Hetty; Giannini, Cosimo et al. (2017) Elevated ?-Hydroxybutyrate and Branched-Chain Amino Acid Levels Predict Deterioration of Glycemic Control in Adolescents. J Clin Endocrinol Metab 102:2473-2481
Hoang, Don; Broer, Niclas; Sosa, Julie A et al. (2017) Leptin Is Produced by Parathyroid Glands and Stimulates Parathyroid Hormone Secretion. Ann Surg 266:1075-1083
Cropano, Catrina; Santoro, Nicola; Groop, Leif et al. (2017) The rs7903146 Variant in the TCF7L2 Gene Increases the Risk of Prediabetes/Type 2 Diabetes in Obese Adolescents by Impairing ?-Cell Function and Hepatic Insulin Sensitivity. Diabetes Care 40:1082-1089
Caprio, Sonia; Perry, Rachel; Kursawe, Romy (2017) Adolescent Obesity and Insulin Resistance: Roles of Ectopic Fat Accumulation and Adipose Inflammation. Gastroenterology 152:1638-1646
Tricò, Domenico; Di Sessa, Anna; Caprio, Sonia et al. (2017) Oxidized Derivatives of Linoleic Acid in Pediatric Metabolic Syndrome: Is Their Pathogenic Role Modulated by the Genetic Background and the Gut Microbiota? Antioxid Redox Signal :
Goffredo, Martina; Santoro, Nicola; Tricò, Domenico et al. (2017) A Branched-Chain Amino Acid-Related Metabolic Signature Characterizes Obese Adolescents with Non-Alcoholic Fatty Liver Disease. Nutrients 9:

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