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PMID: 8175614 Published · ppublish English Journal Article Research Support, U.S. Gov't, P.H.S.

Suitability of 2-deoxyglucose for in vitro measurement of glucose transport activity in skeletal muscle.

Journal of applied physiology (Bethesda, Md. : 1985) ·Vol. 76 ·No. 2 ·1994-02-00 ·Pages 979-85

Hansen PA, Gulve EA, Holloszy JO

Abstract

The purpose of this study was to evaluate the suitability of the glucose analogue 2-deoxyglucose (2-DG) for measurement of glucose transport activity in rat skeletal muscles in vitro when transport rates are high. The goal was to determine whether glucose phosphorylation rather than transport becomes limiting under experimental conditions normally employed in muscle incubation experiments. The rate of 2-DG uptake assayed in the presence of 8 mM 2-DG and a maximally effective concentration of insulin remained linear for > or = 60 min in the split soleus and 120 min in the epitrochlearis. Hexokinase activity assayed in skeletal muscle homogenates was not inhibited appreciably by 2-deoxyglucose 6-phosphate (2-DG-6-P) concentrations in the range of those achieved intracellularly during the linear phase of 2-DG uptake (i.e., 2-DG-6-P below approximately 30 mM). During this linear phase of 2-DG uptake, total intracellular 2-DG concentrations did not exceed 30 mM. The combined effects of contractions plus a maximally effective concentration of insulin on glucose transport activity measured at a near-saturating concentration of 2-DG were additive in the epitrochlearis and the soleus. Our results indicate that, under the conditions employed in our isolated muscle preparations, 2-DG uptake accurately reflects glucose transport activity and that 2-DG is the most appropriate glucose analogue for measurement of glucose transport activity when transport rates are high.

MeSH Terms
Animals Biological Transport Deoxyglucose/pharmacokinetics Glucose/metabolism Glucose-6-Phosphate/analogs & derivatives Glucosephosphates/pharmacology Hexokinase/metabolism Insulin/pharmacology Male Muscle Contraction/physiology Muscles/metabolism Rats Rats, Wistar Time Factors
Chemicals
Glucosephosphates Insulin 2-deoxyglucose-6-phosphate Glucose-6-Phosphate Deoxyglucose Hexokinase Glucose
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Hansen P A
Department of Internal Medicine, Washington University School of Medicine, St. Louis, Missouri 63110.
Gulve E A
Holloszy J O
Article Info
Journal
Journal of applied physiology (Bethesda, Md. : 1985)
Abbr.
J Appl Physiol (1985)
ISSN
8750-7587
Published
1994-02-00
Pages
979-85
Language
English
Region
United States
NLM ID
8502536
Subset
IM
Grants
NIA NIH HHS · AG-00078 · United States
NIDDK NIH HHS · DK-18986 · United States
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