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Voltage-gated potassium currents in cultured ovine oligodendrocytes

B Soliven, S Szuchet, BG Arnason and DJ Nelson
Journal of Neuroscience 1 June 1988, 8 (6) 2131-2141; https://doi.org/10.1523/JNEUROSCI.08-06-02131.1988
B Soliven
Department of Neurology, University of Chicago, Illinois 60637.
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S Szuchet
Department of Neurology, University of Chicago, Illinois 60637.
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BG Arnason
Department of Neurology, University of Chicago, Illinois 60637.
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DJ Nelson
Department of Neurology, University of Chicago, Illinois 60637.
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Abstract

Cultured oligodendrocytes (OLGs) develop processes and form myelin following attachment to a substratum. We applied the whole-cell voltage- clamp technique to identify and characterize the ionic currents of OLGs in culture. Within 2 d after attachment, OLGs extended processes and began to express an outward current that represents a composite response of an inactivating/transient component and a non-inactivating component. The current had a reversal potential of -66 mV and was sensitive to potassium channel blockers. After 4–5 d in culture, the transient component was less prominent, often accompanied by an increase in noninactivating or steady-state outward current. In addition, there was an increase in inward rectifier current. Four of 7 cells that failed to develop processes exhibited only linear high- resistance membranes. We conclude that cultured OLGs express 3 voltage- gated potassium conductances: (1) a transient outward current, (2) a noninactivating outward current, and (3) an inward rectifier current. The sequential appearance of the several currents may relate, at least in part, to process formation.

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The Journal of Neuroscience: 8 (6)
Journal of Neuroscience
Vol. 8, Issue 6
1 Jun 1988
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Voltage-gated potassium currents in cultured ovine oligodendrocytes
B Soliven, S Szuchet, BG Arnason, DJ Nelson
Journal of Neuroscience 1 June 1988, 8 (6) 2131-2141; DOI: 10.1523/JNEUROSCI.08-06-02131.1988

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Voltage-gated potassium currents in cultured ovine oligodendrocytes
B Soliven, S Szuchet, BG Arnason, DJ Nelson
Journal of Neuroscience 1 June 1988, 8 (6) 2131-2141; DOI: 10.1523/JNEUROSCI.08-06-02131.1988
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