Abstract
The aim of the study was to determine the contribution of skeletal muscle, adipose tissue and liver to the impaired glucose clearance manifesting itself during the initial phase of OGTT in a non-obese animal model of insulin resistance, hereditary hypertriglyceridemic (HHTg) rats. Glucose utilisation and storage in insulin target tissues in vivo and in vitro after a glucose load (3 g/kg b. wt.) administered intragastrically following overnight fasting was compared in adult male HHTg rats and Wistar normotriglyceridemic controls after short-term (2 wk) high-sucrose (70 % calories as sucrose) feeding period.
In comparison with normotriglyceridemic controls, in HHTg rats the glucose administration did not stimulate GLUT4 translocation to the plasma membrane in skeletal muscle and adipose tissue that was associated with decreased glucose utilisation by these tissues in vitro. The acute glucose supply did not result in increased glycogen synthesis in the liver and fatty acid synthesis de novo in adipose tissue. On the contrary, the serum glucose, triglyceride and free fatty acid levels remained elevated.
In conclusion, in the tissues of HHTg rats, despite the increased insulinemia, the processes leading toward increased glucose utilisation and processes transforming glucose into storage forms, such as triglycerides in adipose tissue and glycogen in skeletal muscle and liver, did not start within this time interval. The combination of the impaired glucose utilisation and the impaired glucose storage in energy reserves leads to higher glycaemia following glucose load in HHTg rats.
Key words
Hereditary hypertriglyceridemic rats - GLUT4 translocation -
de novo fatty acid synthesis - glycogen synthesis - insulin resistance
References
-
1
Aiston S, Peak M, Agius L.
Impaired glycogen synthesis in hepatocytes from Zucker fatty fa/fa rats: The role of increased phophorylase activity.
Diabetologia.
2000;
43
589-597
-
2
Burant Ch-F, Lemmon S-K, Treutellar M-K, Buse M-G.
Insulin resistance of denervated rat muscle: a model for impaired receptor-function coupling.
Am J Physiol.
1984;
247
E657-E666
-
3
Cahova M, Vavrinkova H, Meskhishvili E, Kazdova L.
Changes in glucose utilization and sensitivity to insulin and adrenalin in the adipose tissue of non-obese hereditary hypertriglyceridemic rats.
Diabetes Metab.
2003;
29
4S97
-
4
Dodson M-M, Kulkarni R-N, Postic C, Previs S-F, Shulman G-I, Magnuson M-A, Kahn R-C.
Loss of insulin signaling in hepatocytes leads to severe insulin resistance and progressive hepatic dysfunction.
Mol Cell.
2000;
6
87-97
-
5
Folch J, Lees M, Stanley G-H-S.
A simple method for the isolation and purification of total lipids from animal tissues.
J Biol Chem.
1957;
226
497-509
-
6
Klimes I, Vrana A, Kunes J, Sebokova E, Dobesova Z, Stolba P, Zicha J.
Hereditary hypertriglyceridemic rat: a new animal model of metabolic alterations in hypertension.
Blood Pressure.
1995;
4
137-142
-
7
Lowry O, Rosebrough N, Farr A, Randall R.
Protein measurements with the Folin phenol reagent.
J Biol Chem.
1951;
193
265-272
-
8
McKeel D-W, Jarret L.
Preparation and characterisation of plasma membrane fraction from isolated fat cells.
J Cell Biol.
1970;
44
417-438
-
9
Prato S, Bonadonna R-C, Bonorra E-E, Gulli G, Solini A, Shank M, deFronzo R-A.
Characterisation of cellular defects of insulin action in type 2 (non-insulin dependent) diabetes mellitus.
J Clin Invest.
1993;
91
484-494
-
10
Sparks J D, Sparks C E.
Insulin regulation of triacylglycerol-rich lipoprotein synthesis and secretion.
BBA.
1994;
1215
9-32
-
11
Thomas J, Schlender K, Larner J.
A rapid filter paper assay for UDPG-glucose-glycogen glucosyltransferase, including an improved biosynthesis of UDP-14C glucose.
Anal Biochem.
1968;
25
486-499
-
12
Thorburn A-W, Gumbiner B, Bulacan F, Henry R-R.
Multiple defects in muscle glycogen synthase activity contribute to reduced glycogen synthesis in non-insulin dependent diabetes mellitus.
J Clin Invest.
1991;
87
489-495
-
13
Vrana A, Kazdova L.
Lipids and syndromes of insulin resistance.
Ann of NY Acad Sci.
1997;
827
510-513
-
14
Vrana A, Kazdova L.
The hereditary hypertriglyceridemic non-obese rat: an experimental model of human hypertriglyceridemia.
Transplant Proc.
1990;
22
2579
-
15
Vrana A, Fabry P, Kazdova L.
Effect of dietary fructose on fatty acid synthesis in adipose tissue and on triglyceride concentration in blood in the rat.
Nutr Metabol.
1973;
15
305-313
-
16
Wiggins D, Hems R, Gibbons G F.
Decreased sensitivity to the inhibitory effect of insulin on the secretion of very-low-density lipoprotein in cultured hepatocytes from fructose-fed rats.
Metabolism.
1995;
44
841-847
Monika Cahova
Centre of Experimental Medicine, Institute for Clinical and Experimental Medicine
Videnska 1958
Prague 4, 140 21
Czech Republic
Phone: + 420261083389
Fax: + 42 02 61 08 39 40
Email: moca@medicon.cz