The major barrier to successful obesity treatment is the inability, in most people, to maintain weight loss over time. The investigators propose to use a well-established rat model of high fat diet (HFD)-induced dietary obesity to study barriers to maintenance of reduced body weight. The investigators believe that this model will allow them to identify rats most (obesity prone or OP) and least (obesity resistant or OR) susceptible to dietary obesity. They propose to study OP rats in the reduced-obese state after a period of dietary obesity in order to identify the contribution of the reduced-obese metabolic state to weight regain. The metabolic state will be defined by a) energy expenditure per unit of fat-free mass (FFM), b) the proportion of total energy expenditure from fat oxidation, c) the changes in energy expenditure and fat oxidation in response to acute dietary challenges (i.e. under- and overfeeding).
Specific aims of the proposal are: 1) to determine why and to what extent the metabolic state of the reduced-obese OP rat contributes to weight regain, and whether this metabolic state is partially or completely reversed with sustained weight maintenance; 2) To determine why and to what extent exercise prevents weight regain in reduced-obese OP rates. Two studies are proposed to accomplish the proposed specific aims. Both studies involve assessing the metabolic state of OP rats before HF-feeding (pre-obese state), during HFD-feeding (obese state) and following weight reduction by restriction of a low fat diet (reduced-obese state). OR rats will be subjected to similar conditions. In Study 1, reduced-obese OP rats will be studied at three time points during a 16- week weight maintenance period in order to assess the constancy of the reduced-obese metabolic state. The investigators will compare the reduced-obese metabolic state of reduced-obese OP rats with the metabolic state seen in their pre-obese condition. The investigators propose to compare OP to OR rats and to a group of OP controls, fed a LFD throughout. In study 2, exercise (at 1 hr/d or 2/hr/d) will be used in reduced-obese OP rats to assess its impact upon weight regain and the reduced-obese metabolic states. The investigators have previously identified physiological pathways that differ between OP and OR rats before and during HFD feeding. In both studies, they will assess these pathways in order to determine potential mechanisms underlying the reduced-obese metabolic state. The results of these studies will help determine the extent to which metabolism in the reduced-obese state contributes to weight regain, whether this state is reversible over time and which physiological mechanisms are responsible for this metabolic state.

Agency
National Institute of Health (NIH)
Institute
National Institute of Diabetes and Digestive and Kidney Diseases (NIDDK)
Type
Research Project (R01)
Project #
5R01DK038088-18
Application #
6681860
Study Section
Special Emphasis Panel (ZRG1-REN (02))
Program Officer
Yanovski, Susan Z
Project Start
1986-03-01
Project End
2005-11-30
Budget Start
2003-12-01
Budget End
2004-11-30
Support Year
18
Fiscal Year
2004
Total Cost
$353,521
Indirect Cost
Name
University of Colorado Denver
Department
Pediatrics
Type
Schools of Medicine
DUNS #
041096314
City
Aurora
State
CO
Country
United States
Zip Code
80045
Rudolph, M C; Young, B E; Lemas, D J et al. (2017) Early infant adipose deposition is positively associated with the n-6 to n-3 fatty acid ratio in human milk independent of maternal BMI. Int J Obes (Lond) 41:510-517
Giles, Erin D; Steig, Amy J; Jackman, Matthew R et al. (2016) Exercise Decreases Lipogenic Gene Expression in Adipose Tissue and Alters Adipocyte Cellularity during Weight Regain After Weight Loss. Front Physiol 7:32
Giles, Erin D; Hagman, Jennifer; Pan, Zhaoxing et al. (2016) Weight restoration on a high carbohydrate refeeding diet promotes rapid weight regain and hepatic lipid accumulation in female anorexic rats. Nutr Metab (Lond) 13:18
Giles, Erin D; Jackman, Matthew R; MacLean, Paul S (2016) Modeling Diet-Induced Obesity with Obesity-Prone Rats: Implications for Studies in Females. Front Nutr 3:50
MacLean, P S; Higgins, J A; Giles, E D et al. (2015) The role for adipose tissue in weight regain after weight loss. Obes Rev 16 Suppl 1:45-54
Hernandez, Teri L; Bessesen, Daniel H; Cox-York, Kimberly A et al. (2015) Femoral lipectomy increases postprandial lipemia in women. Am J Physiol Endocrinol Metab 309:E63-71
Bessesen, Daniel H; Cox-York, Kimberly A; Hernandez, Teri Lynn et al. (2015) Postprandial triglycerides and adipose tissue storage of dietary fatty acids: impact of menopause and estradiol. Obesity (Silver Spring) 23:145-53
Morris, E Matthew; Jackman, Matthew R; Johnson, Ginger C et al. (2014) Intrinsic aerobic capacity impacts susceptibility to acute high-fat diet-induced hepatic steatosis. Am J Physiol Endocrinol Metab 307:E355-64
Saben, Jessica L; Bales, Elise S; Jackman, Matthew R et al. (2014) Maternal obesity reduces milk lipid production in lactating mice by inhibiting acetyl-CoA carboxylase and impairing fatty acid synthesis. PLoS One 9:e98066
Higgins, Janine A (2014) Resistant starch and energy balance: impact on weight loss and maintenance. Crit Rev Food Sci Nutr 54:1158-66

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