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PMID: 6325904 Published · ppublish English Case Reports Comparative Study Journal Article Research Support, Non-U.S. Gov't

Hypokalemic periodic paralysis: in vitro investigation of muscle fiber membrane parameters.

Muscle & nerve ·Vol. 7 ·No. 2 ·1984-02-00 ·Pages 110-20

Rüdel R, Lehmann-Horn F, Ricker K, Küther G

Abstract

To study the mechanism of attacks in familial hypokalemic paralysis, we recorded resting membrane potentials, action potentials, current-voltage relationships, and isometric forces in intercostal muscle fibers from three patients. In normal extracellular medium, the resting potential was reduced, but membrane conductance was not different from control. Excitability was reduced and the action potentials had no overshoot. On exposure to a 1-mM potassium solution, with or without insulin, the cells depolarized to about -50 mV, and became inexcitable. Over the tested membrane potential range from -120 to -40 mV, the slope conductance in the 1-mM potassium solution was not different from that of control fibers in a 1-mM potassium solution. In particular, the potassium component conductance was not reduced. Depolarized fibers could not be completely repolarized by returning to a 3.5-mM potassium solution. An experimentally induced transient shift of the chloride equilibrium potential to a highly negative value caused stable repolarization. Paralysis could also be induced by replacement of extracellular chloride with an impermanent anion, a treatment which causes myotonia in healthy fibers. It was concluded that the basic defects are a reduced excitability and an increased sodium conductance, and that these defects are aggravated on reduction of the extracellular potassium concentration.

MeSH Terms
Adult Female Humans Hypokalemia/metabolism In Vitro Techniques Ion Channels/drug effects Male Membrane Potentials/drug effects Middle Aged Muscle Contraction/drug effects Muscles/metabolism Paralyses, Familial Periodic/metabolism Potassium/metabolism,pharmacology Sodium/metabolism Tetrodotoxin/pharmacology
Chemicals
Ion Channels Tetrodotoxin Sodium Potassium
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Rüdel R
Lehmann-Horn F
Ricker K
Küther G
Article Info
Journal
Muscle & nerve
Abbr.
Muscle Nerve
ISSN
0148-639X
Published
1984-02-00
Pages
110-20
Language
English
Region
United States
NLM ID
7803146
Subset
IM
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