» Articles » PMID: 2415000

Electrophysiology and Noise Analysis of K+-depolarized Epithelia of Frog Skin

Overview
Journal Am J Physiol
Specialty Physiology
Date 1985 Nov 1
PMID 2415000
Citations 12
Authors
Affiliations
Soon will be listed here.
Abstract

Epithelia of frog skin bathed either symmetrically with a sulfate-Ringer solution or bathed asymmetrically and depolarized with a 112 mM K+ basolateral solution (Kb+) were studied with intracellular microelectrode techniques. Kb+ depolarization caused an initial decrease of the short-circuit current (Isc) with a subsequent return of the Isc toward control values in 60-90 min. Whereas basolateral membrane resistance (Rb) and voltage were decreased markedly by high [Kb+], apical membrane electrical resistance (Ra) was decreased also. After 60 min, intracellular voltage averaged -27.3 mV, transcellular fractional resistance (fRa) was 86.8%, and Ra and Rb were decreased to 36.1 and 13.0%, of their control values, respectively. Amiloride-induced noise analysis of the apical membrane Na+ channels revealed that Na+ channel density was increased approximately 72% while single-channel Na+ current was decreased to 39.9% of control, roughly proportional to the decrease of apical membrane voltage (34.0% of control). In control and Kb+-depolarized epithelia, the Na+ channel density exhibited a phenomenon of autoregulation. Inhibition of Na+ entry (by amiloride) caused large increases of Na+ channel density toward saturating values of approximately 520 X 10(6) channels/cm2 in Kb+-depolarized tissues.

Citing Articles

High-yield, automated intracellular electrophysiology in retinal pigment epithelia.

Lewallen C, Wan Q, Maminishkis A, Stoy W, Kolb I, Hotaling N J Neurosci Methods. 2019; 328:108442.

PMID: 31562888 PMC: 7071944. DOI: 10.1016/j.jneumeth.2019.108442.


Endogenous protease activation of ENaC: effect of serine protease inhibition on ENaC single channel properties.

Adebamiro A, Cheng Y, Johnson J, Bridges R J Gen Physiol. 2005; 126(4):339-52.

PMID: 16186561 PMC: 2266620. DOI: 10.1085/jgp.200509285.


Frequency-dependent capacitance of the apical membrane of frog skin: dielectric relaxation processes.

Awayda M, Van Driessche W, Helman S Biophys J. 1999; 76(1 Pt 1):219-32.

PMID: 9876136 PMC: 1302513. DOI: 10.1016/S0006-3495(99)77191-2.


Tetraethylammonium-sensitive apical K+ channels mediating K+ secretion by turtle colon.

Wilkinson D, Kushman N, Dawson D J Physiol. 1993; 462:697-714.

PMID: 8392578 PMC: 1175323. DOI: 10.1113/jphysiol.1993.sp019577.


Relationships among sodium current, permeability, and Na activities in control and glucocorticoid-stimulated rabbit descending colon.

Thompson S, Sellin J J Membr Biol. 1986; 92(2):121-34.

PMID: 3761358 DOI: 10.1007/BF01870702.