Abstract
The association between increased (visceral) fat mass, insulin resistance and type 2 diabetes mellitus is well known. Yet, it is unclear whether the mere increase in intra-abdominal fat mass, or rather functional alterations in fat tissue in obesity contribute to the development of insulin resistance in obese patients. Here we attempted to isolate the metabolic effect of increased fat mass by fat tissue transplantation. Epididymal fat pads were removed from male C57Bl6/J mice and transplanted intraperitoneally into male littermates (recipients), increasing the combined perigonadal fat mass by 50% (p < 0.005). At 4 and 8 weeks post-transplantation, glucose and insulin tolerance tests were performed, and insulin, NEFA and adipokines measured. Circulating levels of NEFA, adiponectin and leptin were not significantly different between transplanted and sham-operated control mice, while results of the postprandial insulin tolerance test were similar between the two groups. In contrast, under fasting conditions, the mere increase in intra-abdominal fat mass resulted in decreased plasma glucose levels (6.9 +/- 0.4 vs 8.1 +/- 0.3 mmol/l, p = 0.03) and a approximately 20% lower AUC in the glucose tolerance test (p = 0.02) in transplanted mice. Homeostasis model assessment of insulin resistance (HOMA-IR) was 4.1 +/- 0.4 in transplanted mice (vs 6.2 +/- 0.7 in sham-operated controls) (p = 0.02), suggesting improved insulin sensitivity. Linear regression modelling revealed that while total body weight positively correlated, as expected, with HOMA-IR (beta: 0.728, p = 0.006), higher transplanted fat mass correlated with lower HOMA-IR (beta: -0.505, p = 0.031). Increasing intra-abdominal fat mass by transplantation of fat from normal mice improved, rather than impaired, fasting glucose tolerance and insulin sensitivity, achieving an effect opposite to the expected metabolic consequence of increased visceral fat in obesity.
MeSH Terms
Adipose Tissue/metabolism,pathology
Animals
Area Under Curve
Epididymis/metabolism
Glucose/metabolism
Glucose Tolerance Test
Insulin/metabolism
Insulin Resistance
Leptin/metabolism
Male
Mice
Mice, Inbred C57BL
Obesity
Time Factors
Tissue Transplantation
Chemicals
Insulin
Leptin
Glucose
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Konrad D
Department of Endocrinology and Diabetology, University Children's Hospital, Steinwiesstrasse 75, CH-8032, Zurich, Switzerland.
[email protected]
Rudich A
Schoenle E J
References (21)
21 references, click to expand
-
Diabetes: insulin resistance and derangements in lipid metabolism. Cure through intervention in fat transport and storage.
Diabetes Metab Res Rev. 2005 Jan-Feb;21(1):3-14
PMID: 15386813
-
Surgical removal of visceral fat reverses hepatic insulin resistance.
Diabetes. 1999 Jan;48(1):94-8
PMID: 9892227
-
Is obesity an inflammatory illness? Role of low-grade inflammation and macrophage infiltration in human white adipose tissue.
BJOG. 2006 Oct;113(10):1141-7
PMID: 16903845
-
Health risks of lipodystrophy and abdominal fat accumulation: therapeutic possibilities with leptin and human growth hormone.
Growth Horm IGF Res. 2003 Aug;13 Suppl A:S4-9
PMID: 12914718
-
Insulin responsiveness and lipid synthesis in human fat cells of different sizes: effect of the incubation medium.
Biochim Biophys Acta. 1970 Dec 15;218(3):417-23
PMID: 5499198
-
Impaired multimerization of human adiponectin mutants associated with diabetes. Molecular structure and multimer formation of adiponectin.
J Biol Chem. 2003 Oct 10;278(41):40352-63
PMID: 12878598
-
Inflammation, stress, and diabetes.
J Clin Invest. 2005 May;115(5):1111-9
PMID: 15864338
-
Troglitazone increases the number of small adipocytes without the change of white adipose tissue mass in obese Zucker rats.
J Clin Invest. 1998 Mar 15;101(6):1354-61
PMID: 9502777
-
Insulin and leptin revisited: adiposity signals with overlapping physiological and intracellular signaling capabilities.
Front Neuroendocrinol. 2003 Jan;24(1):1-10
PMID: 12609497
-
Cellular basis of insulin insensitivity in large rat adipocytes.
J Clin Invest. 1976 Jun;57(6):1523-32
PMID: 932192
-
Improvement of insulin sensitivity after peroxisome proliferator-activated receptor-alpha agonist treatment is accompanied by paradoxical increase of circulating resistin levels.
Endocrinology. 2006 Sep;147(9):4517-24
PMID: 16740970
-
Acylation-stimulating protein (ASP) deficiency induces obesity resistance and increased energy expenditure in ob/ob mice.
J Biol Chem. 2002 Nov 29;277(48):45874-9
PMID: 12244109
-
Caloric restriction, body fat and ageing in experimental models.
Obes Rev. 2004 Feb;5(1):13-9
PMID: 14969503
-
A pilot study of long-term effects of a novel obesity treatment: omentectomy in connection with adjustable gastric banding.
Int J Obes Relat Metab Disord. 2002 Feb;26(2):193-9
PMID: 11850750
-
Serum high molecular weight complex of adiponectin correlates better with glucose tolerance than total serum adiponectin in Indo-Asian males.
Diabetologia. 2005 Jun;48(6):1084-7
PMID: 15902402
-
Effects of altered adipose tissue morphology on plasma insulin levels in the rat.
Am J Physiol. 1981 Apr;240(4):E358-62
PMID: 7013495
-
Enlarged subcutaneous abdominal adipocyte size, but not obesity itself, predicts type II diabetes independent of insulin resistance.
Diabetologia. 2000 Dec;43(12):1498-506
PMID: 11151758
-
Need for GLUT4 activation to reach maximum effect of insulin-mediated glucose uptake in brown adipocytes isolated from GLUT4myc-expressing mice.
Diabetes. 2002 Sep;51(9):2719-26
PMID: 12196464
-
Alterations of insulin sensitivity by the implantation of 3T3-L1 cells in nude mice. A role for TNF-alpha?
Diabetologia. 2002 Apr;45(4):518-26
PMID: 12032627
-
Absence of an effect of liposuction on insulin action and risk factors for coronary heart disease.
N Engl J Med. 2004 Jun 17;350(25):2549-57
PMID: 15201411
-
Effects of pioglitazone on adipose tissue remodeling within the setting of obesity and insulin resistance.
Diabetes. 2001 Aug;50(8):1863-71
PMID: 11473050