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PMID: 14324994 Published · ppublish English Journal Article

INFLUENCE OF GLUCOSE ON THE TRANSMEMBRANE ACTION POTENTIAL OF ANOXIC PAPILLARY MUSCLE.

The Journal of general physiology ·Vol. 48 ·1965-05-00 ·Pages 887-99

MACLEOD DP, DANIEL EE

Abstract

The response of the cat papillary muscle to anoxia has been found to alter depending on the glucose concentration in the medium. At a glucose concentration of 5 mM anoxia caused a marked reduction in force of contraction and action potential duration within 20 minutes. At a glucose concentration of 50 mM anoxia induced similar changes in the force of contraction but little or no change in action potential duration. Elevation of glucose concentration during an anoxic interval reversed the anoxia-induced changes in action potential but had little effect on force of contraction. This effect of glucose could be partially duplicated by xylose and 2-deoxyglucose and in addition, 2-deoxyglucose has been found to prevent the effect of subsequently added glucose. These sugars appear to be transported by a system responsible for glucose transport but are not metabolized to any extent. It would appear therefore that transport of glucose is in some way related to transport of potassium as increased potassium permeability is thought by many to be responsible for anoxia-induced changes in action potential duration.

Keywords
ANOXIA CATS ELECTROPHYSIOLOGY EXPERIMENTAL LAB STUDY GLUCOSE GLUCOSE METABOLISM MUSCLE CONTRACTION PAPILLARY MUSCLES PHARMACOLOGY XYLOSE
MeSH Terms
Action Potentials Biological Transport Cats Electrophysiology Glucose/metabolism Hypoxia Membrane Potentials Muscle Contraction Papillary Muscles Pharmacology Potassium Research Xylose
Chemicals
Xylose Glucose Potassium
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
MACLEOD D P
DANIEL E E
References (14)
14 references, click to expand
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Article Info
Journal
The Journal of general physiology
Abbr.
J Gen Physiol
ISSN
0022-1295
Published
1965-05-00
Pages
887-99
Language
English
Region
United States
NLM ID
2985110R
PMCID
PMC2213770
Subset
OM
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