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Published in: Obesity Surgery 10/2009

01-10-2009 | Animal Research

Development of Obesity is Associated with Increased Calories per Meal Rather than per Day. A Study of High-Fat Diet-Induced Obesity in Young Rats

Authors: Marianne W. Furnes, Chun-Mei Zhao, Duan Chen

Published in: Obesity Surgery | Issue 10/2009

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Abstract

Background

We challenge the current belief that obesity is a result of overnutrition by studying a rodent model of human obesity.

Methods

Male Sprague-Dawley rats at 3 weeks of age were fed with a mixed normal diet of 10% fat and high-fat diet of 60% fat (50:50) for 2 weeks and then turned to 100% high-fat diet until 43 weeks of age. Body weight gain was recorded, and food intake, eating behavior, and metabolic variables were measured by a comprehensive laboratory animal monitoring system. Body composition was determined by dual-energy X-ray absorptiometry. Ghrelin/obestatin-producing A-like cells in the stomach were analyzed by immunohistochemistry.

Results

Rats on high-fat diet were overweight at 9 weeks of age and later became obese characterized by increased body weight and excess fat deposition. There were no obesity-prone, obesity middle tertile, and obesity-resistant subgroups in rats on high-fat diet. The young rats on high-fat diet, even before becoming overweight (i.e., 8 weeks), consumed larger portion of meal (kilocalorie per meal) and ate faster but less frequent than the rats on normal diet. Obese rats had reduced food intake (expressed as gram per 100-g body weight per 24 h), unchanged calorie intake (kilocalorie per 100-g body weight per 24 h), and energy expenditure (kilocalorie per hour per 100-g body weight), and increased number of A-like cells in the stomach.

Conclusion

Large size of meal, but not overnutrition, appears to be responsible for high-fat diet-induced obesity in rats. We propose a consideration that prevention strategies for obesity epidemic should strongly focus on meal size at early childhood and adolescence.
Literature
1.
go back to reference Maximova K, McGrath JJ, Barnett T, et al. Do you see what I see? Weight status misperception and exposure to obesity among children and adolescents. Int J Obes (Lond). 2008;32:1008–15.CrossRef Maximova K, McGrath JJ, Barnett T, et al. Do you see what I see? Weight status misperception and exposure to obesity among children and adolescents. Int J Obes (Lond). 2008;32:1008–15.CrossRef
2.
go back to reference Editorial. Curbing the obesity epidemic. Lancet. 2005;367:1549. Editorial. Curbing the obesity epidemic. Lancet. 2005;367:1549.
4.
go back to reference Michels KB, Willett WC, Graubard BI, et al. A longitudinal study of infant feeding and obesity throughout life course. Int J Obes (Lond). 2007;31:1078–85.CrossRef Michels KB, Willett WC, Graubard BI, et al. A longitudinal study of infant feeding and obesity throughout life course. Int J Obes (Lond). 2007;31:1078–85.CrossRef
5.
go back to reference Rice S, McAllister EJ, Dhurandhar NV. Fast food: friendly? Int J Obes (Lond). 2007;31:884–6.CrossRef Rice S, McAllister EJ, Dhurandhar NV. Fast food: friendly? Int J Obes (Lond). 2007;31:884–6.CrossRef
6.
go back to reference Bray GA, Tartaglia LA. Medicinal strategies in the treatment of morbid obesity. Nature. 2000;404:672–7.CrossRef Bray GA, Tartaglia LA. Medicinal strategies in the treatment of morbid obesity. Nature. 2000;404:672–7.CrossRef
7.
go back to reference Mun EC, Blackburn GL, Matthews JB. Current status of medical and surgical therapy for obesity. Gastroenterology. 2001;120:669–81.CrossRef Mun EC, Blackburn GL, Matthews JB. Current status of medical and surgical therapy for obesity. Gastroenterology. 2001;120:669–81.CrossRef
8.
go back to reference Solomon C, Dluhy RG. Bariatric surgery—quick fix or long-term solution? N Engl J Med. 2004;351:2751–3.CrossRef Solomon C, Dluhy RG. Bariatric surgery—quick fix or long-term solution? N Engl J Med. 2004;351:2751–3.CrossRef
9.
go back to reference Wolfe BM, Austrheim-Smith IT, Ghaderi N. Surgical treatment of obesity: pyloric electrical stimulation. Gastroenterology. 2005;128:225–8.CrossRef Wolfe BM, Austrheim-Smith IT, Ghaderi N. Surgical treatment of obesity: pyloric electrical stimulation. Gastroenterology. 2005;128:225–8.CrossRef
10.
go back to reference O'Brien PE, McPhail T, Chaston TB, et al. Systematic review of medium-term weight loss after bariatric operations. Obes Surg. 2006;16:1032–40.CrossRef O'Brien PE, McPhail T, Chaston TB, et al. Systematic review of medium-term weight loss after bariatric operations. Obes Surg. 2006;16:1032–40.CrossRef
11.
go back to reference Stettler N. Nature and strength of epidemiological evidence for origins of childhood and adulthood obesity in the first year of life. Int J Obes (Lond). 2007;31:1035–43.CrossRef Stettler N. Nature and strength of epidemiological evidence for origins of childhood and adulthood obesity in the first year of life. Int J Obes (Lond). 2007;31:1035–43.CrossRef
12.
go back to reference Stender S, Dyerberg J, Astrup A. Fast food: unfriendly and unhealthy. Int J Obes (Lond). 2007;31:887–90.CrossRef Stender S, Dyerberg J, Astrup A. Fast food: unfriendly and unhealthy. Int J Obes (Lond). 2007;31:887–90.CrossRef
13.
go back to reference Speakman J, Hambly C, Mitchell S, et al. Animal models of obesity. Obes Rev. 2007;8(Suppl 1):55–61.CrossRef Speakman J, Hambly C, Mitchell S, et al. Animal models of obesity. Obes Rev. 2007;8(Suppl 1):55–61.CrossRef
14.
go back to reference Buettner R, Schölmerich J, Bollheimer LC. High-fat diets: modeling the metabolic disorders of human obesity in rodents. Obesity (Silver Spring). 2007;15:798–808.CrossRef Buettner R, Schölmerich J, Bollheimer LC. High-fat diets: modeling the metabolic disorders of human obesity in rodents. Obesity (Silver Spring). 2007;15:798–808.CrossRef
15.
go back to reference Stenström B, Furnes MW, Tømmerås K, et al. Mechanism of gastric bypass-induced body weight loss: one-year follow-up after micro-gastric bypass in rats. J Gastrointest Surg. 2006;10:1384–91.CrossRef Stenström B, Furnes MW, Tømmerås K, et al. Mechanism of gastric bypass-induced body weight loss: one-year follow-up after micro-gastric bypass in rats. J Gastrointest Surg. 2006;10:1384–91.CrossRef
16.
go back to reference Furnes MW, Tømmerås K, Arum CJ, et al. Gastric bypass surgery causes body weight loss without reducing food intake in rats. Obes Surg. 2008;18:415–22.CrossRef Furnes MW, Tømmerås K, Arum CJ, et al. Gastric bypass surgery causes body weight loss without reducing food intake in rats. Obes Surg. 2008;18:415–22.CrossRef
17.
go back to reference Furnes MW, Stenström B, Tømmerås K, et al. Feeding behavior in rats subjected to gastrectomy or gastric bypass surgery. Eur Surg Res. 2008;40:279–88.CrossRef Furnes MW, Stenström B, Tømmerås K, et al. Feeding behavior in rats subjected to gastrectomy or gastric bypass surgery. Eur Surg Res. 2008;40:279–88.CrossRef
18.
go back to reference Varma M, Chai JK, Meguid MM, et al. Effect of estradiol and progesterone on daily rhythm in food intake and feeding patterns in Fischer rats. Physiol Behav. 1999;68:99–107.CrossRef Varma M, Chai JK, Meguid MM, et al. Effect of estradiol and progesterone on daily rhythm in food intake and feeding patterns in Fischer rats. Physiol Behav. 1999;68:99–107.CrossRef
19.
go back to reference Levin BE, Triscari J, Hogan S, et al. Resistance to diet-induced obesity: food intake, pancreatic sympathetic tone, and insulin. Am J Physiol. 1987;252:R471–8.PubMed Levin BE, Triscari J, Hogan S, et al. Resistance to diet-induced obesity: food intake, pancreatic sympathetic tone, and insulin. Am J Physiol. 1987;252:R471–8.PubMed
20.
go back to reference Levin BE, Richard D, Michel C, et al. Differential stress responsivity in diet-induced obese and resistant rats. Am J Physiol Regul Integr Comp Physiol. 2000;279:R1357–64.CrossRef Levin BE, Richard D, Michel C, et al. Differential stress responsivity in diet-induced obese and resistant rats. Am J Physiol Regul Integr Comp Physiol. 2000;279:R1357–64.CrossRef
21.
go back to reference Chang S, Graham B, Yakubu F, et al. Metabolic differences between obesity-prone and obesity-resistant rats. Am J Physiol. 1990;259:R1103–10.PubMed Chang S, Graham B, Yakubu F, et al. Metabolic differences between obesity-prone and obesity-resistant rats. Am J Physiol. 1990;259:R1103–10.PubMed
22.
go back to reference Pagliassotti MJ, Knobel SM, Shahrokhi KA, et al. Time course of adaptation to a high-fat diet in obesity-resistant and obesity-prone rats. Am J Physiol. 1994;267:R659–64.CrossRef Pagliassotti MJ, Knobel SM, Shahrokhi KA, et al. Time course of adaptation to a high-fat diet in obesity-resistant and obesity-prone rats. Am J Physiol. 1994;267:R659–64.CrossRef
23.
go back to reference Zorrilla EP, Inoue K, Fekete EM, et al. Measuring meals: structure of prandial food and water intake of rats. Am J Physiol Regul Integr Comp Physiol. 2005;288:R1450–67.CrossRef Zorrilla EP, Inoue K, Fekete EM, et al. Measuring meals: structure of prandial food and water intake of rats. Am J Physiol Regul Integr Comp Physiol. 2005;288:R1450–67.CrossRef
24.
go back to reference Zhao CM, Furnes MW, Stenström B, et al. Characterization of obestatin- and ghrelin-producing cells in the gastrointestinal tract and pancreas of rats: an immunohistochemical and electron-microscopic study. Cell Tissue Res. 2008;331:575–87.CrossRef Zhao CM, Furnes MW, Stenström B, et al. Characterization of obestatin- and ghrelin-producing cells in the gastrointestinal tract and pancreas of rats: an immunohistochemical and electron-microscopic study. Cell Tissue Res. 2008;331:575–87.CrossRef
25.
go back to reference Archer ZA, Rayner DV, Rozman J, et al. Normal distribution of body weight gain in male Sprague-Dawley rats fed a high-energy diet. Obes Res. 2003;11:1376–83.CrossRef Archer ZA, Rayner DV, Rozman J, et al. Normal distribution of body weight gain in male Sprague-Dawley rats fed a high-energy diet. Obes Res. 2003;11:1376–83.CrossRef
26.
go back to reference Archer ZA, Corneloup J, Rayner DV, et al. Solid and liquid obesogenic diets induce obesity and counter-regulatory changes in hypothalamic gene expression in juvenile Sprague-Dawley rats. J Nutr. 2007;137:1483–90.CrossRef Archer ZA, Corneloup J, Rayner DV, et al. Solid and liquid obesogenic diets induce obesity and counter-regulatory changes in hypothalamic gene expression in juvenile Sprague-Dawley rats. J Nutr. 2007;137:1483–90.CrossRef
27.
go back to reference Elder KA, Wolfe BM. Bariatric surgery: a review of procedures and outcomes. Gastroenterology. 2007;132:2253–71.CrossRef Elder KA, Wolfe BM. Bariatric surgery: a review of procedures and outcomes. Gastroenterology. 2007;132:2253–71.CrossRef
28.
go back to reference Editorial: Time to supersize control efforts of obesity. Lancet. 2007; 370:1521 Editorial: Time to supersize control efforts of obesity. Lancet. 2007; 370:1521
29.
go back to reference Cohen D, Farley TA. Eating as an automatic behavior. Prev Chronic Dis. 2008;5:1–7. Cohen D, Farley TA. Eating as an automatic behavior. Prev Chronic Dis. 2008;5:1–7.
30.
go back to reference Berg C, Lappas G, Wolk A, et al. Eating patterns and portion size associated with obesity in a Swedish population. Appetite. 2009;52:21–6.CrossRef Berg C, Lappas G, Wolk A, et al. Eating patterns and portion size associated with obesity in a Swedish population. Appetite. 2009;52:21–6.CrossRef
Metadata
Title
Development of Obesity is Associated with Increased Calories per Meal Rather than per Day. A Study of High-Fat Diet-Induced Obesity in Young Rats
Authors
Marianne W. Furnes
Chun-Mei Zhao
Duan Chen
Publication date
01-10-2009
Publisher
Springer New York
Published in
Obesity Surgery / Issue 10/2009
Print ISSN: 0960-8923
Electronic ISSN: 1708-0428
DOI
https://doi.org/10.1007/s11695-009-9863-1

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