This subproject is one of many research subprojects utilizing the resources provided by a Center grant funded by NIH/NCRR. The subproject and investigator (PI) may have received primary funding from another NIH source, and thus could be represented in other CRISP entries. The institution listed is for the Center, which is not necessarily the institution for the investigator. The increasing prevalence of obesity, especially during the 1990's, has become a national epidemic with enormous public health implications. All subjects who become obese become more insulin resistant, and this insulin resistance, coupled with an insulin secretory defect, leads to type 2 diabetes in susceptible subjects. Yet the mechanisms interrelating obesity, insulin resistance, and type 2 diabetes are not well understood. Among subjects with the same BMI, there is a wide spectrum of insulin sensitivity: many lean subjects are insulin resistant, and many obese subjects are remarkably insulin sensitive. The insulin resistance phenotype encompasses many different tissues. Muscle is the primary tissue that controls glucose disposal, and there are numerous defects in the muscle of insulin resistant subjects, including an increase in intramuscular triglyceride (IMTG) and a decrease in muscle fiber lipid oxidative capacity. The link between insulin resistance and obesity suggest that adipocytes either directly or indirectly affect glucose disposal. However, not all fat is the same, and the expansion of abdominal fat is more important in the insulin resistance syndrome than is total fat. One explanation for obesity-related insulin resistance is the production of factors by adipose tissue, in particular visceral adipose tissue, that render some subjects more insulin resistant than others. Our recent data demonstrate for the first time that adipose tumor necrosis factor and IL-6 expression is related to insulin resistance independent of obesity. Thus, this proposal examines TNF and IL-6 expression in relation to the insulin resistance syndrome. Our overall goal is to determine whether the adipose tissue expression of these cytokines play a role in insulin resistance in humans, and to examine possible mechanisms for their actions. Hypothesis. High expression of IL-6 and TNF is associated with insulin resistance. Common polymorphisms for IL-6 and TNF result in increased adipose tissue expression of these cytokines.
Aim 1. Adipose tissue cytokine expression, along with features of the insulin resistance syndrome, will be measured in subjects with common polymorphisms in TNF (G-308A) and IL-6 (G-174C). Hypothesis 2. Visceral adipose tissue expression of IL-6 and TNF is increased in subjects with insulin resistance, and common polymorphisms in TNF and IL-6 influence the visceral/SQ expression of these cytokines.
Aim 2. TNF and IL-6 expression will be measured in subcutaneous and visceral adipose tissue of patients undergoing elective surgery. The relationship between adipose cytokine expression and the insulin resistance syndrome will be assessed.
Aim 3. TNF and IL-6 expression will be examined in visceral and SQ adipose tissue of subjects with the TNF (G-308A) and IL-6 (G-174C) polymorphisms. Hypothesis 3. The expression of IL-6 in adipose tissue is responsible for insulin resistance in mice.
Aim 4. Insulin sensitivity will be measured in rodents that are deficient in IL-6.
Aim 5. We will create transgenic mice that express IL-6 in adipose tissue only, and determine whether these mice demonstrate insulin resistance compared to IL-6 knockout mi

Agency
National Institute of Health (NIH)
Institute
National Center for Research Resources (NCRR)
Type
General Clinical Research Centers Program (M01)
Project #
5M01RR014288-08
Application #
7377661
Study Section
National Center for Research Resources Initial Review Group (RIRG)
Project Start
2006-04-01
Project End
2007-03-31
Budget Start
2006-04-01
Budget End
2007-03-31
Support Year
8
Fiscal Year
2006
Total Cost
$9,454
Indirect Cost
Name
University of Arkansas for Medical Sciences
Department
Type
Schools of Medicine
DUNS #
122452563
City
Little Rock
State
AR
Country
United States
Zip Code
72205
Serra, Monica C; Blumenthal, Jacob B; Addison, Odessa R et al. (2017) Effects of Weight Loss with and without Exercise on Regional Body Fat Distribution in Postmenopausal Women. Ann Nutr Metab 70:312-320
Grams, Morgan E; Yang, Wei; Rebholz, Casey M et al. (2017) Risks of Adverse Events in Advanced CKD: The Chronic Renal Insufficiency Cohort (CRIC) Study. Am J Kidney Dis 70:337-346
Coker, Robert H; Hays, Nicholas P; Williams, Rick H et al. (2015) Bed rest promotes reductions in walking speed, functional parameters, and aerobic fitness in older, healthy adults. J Gerontol A Biol Sci Med Sci 70:91-6
Coker, Robert H; Hays, Nicholas P; Williams, Rick H et al. (2014) Bed rest worsens impairments in fat and glucose metabolism in older, overweight adults. J Gerontol A Biol Sci Med Sci 69:363-70
Herrick, Jeffrey E; Bliwise, Donald L; Puri, Shipra et al. (2014) Strength training and light physical activity reduces the apnea-hypopnea index in institutionalized older adults. J Am Med Dir Assoc 15:844-6
Conley, Travis B; McCabe, George P; Lim, Eunjung et al. (2013) Age and sex affect protein metabolism at protein intakes that span the range of adequacy: comparison of leucine kinetics and nitrogen balance data. J Nutr Biochem 24:693-9
Mondal, Ashis K; Sharma, Neeraj K; Elbein, Steven C et al. (2013) Allelic expression imbalance screening of genes in chromosome 1q21-24 region to identify functional variants for Type 2 diabetes susceptibility. Physiol Genomics 45:509-20
Sharma, Neeraj K; Langberg, Kurt A; Mondal, Ashis K et al. (2013) Phospholipid biosynthesis genes and susceptibility to obesity: analysis of expression and polymorphisms. PLoS One 8:e65303
Lorenz, Rebecca A; Gooneratne, Nalaka; Cole, Catherine S et al. (2012) Exercise and social activity improve everyday function in long-term care residents. Am J Geriatr Psychiatry 20:468-76
Thrailkill, K M; Jo, C-H; Cockrell, G E et al. (2012) Determinants of undercarboxylated and carboxylated osteocalcin concentrations in type 1 diabetes. Osteoporos Int 23:1799-806

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