Literature DB >> 2172913

Amiloride-sensitive Na+ transport across cultured renal (A6) epithelium: evidence for large currents and high Na:K selectivity.

N K Wills1, L P Millinoff.   

Abstract

Electrical techniques were used to determine the Na:K selectivity of the amiloride-sensitive pathway and to characterize cellular and paracellular properties of A6 epithelium. Under control conditions, the mean transepithelial voltage (VT) was -57 +/- 5 mV, the short-circuit current (Isc) averaged 23 +/- 2 microA/cm2 and the transepithelial resistance (RT) was 2.8 +/- 0.3 k omega cm2 (n = 13). VT and Isc were larger than reported in previous studies and were increased by aldosterone. The conductance of the amiloride-sensitive pathway (Gamil) was assessed before and after replacement of Na+ in the mucosal bath by K+, using two independent measurements: (1) the slope conductance (GT), determined from current-voltage (I-V) relationships for control and amiloride-treated tissues and (2) the maximum amiloride-sensitive conductance (Gmax) calculated from the amiloride dose-response relationship. The ratio of Gamil in mucosal Na+ solutions to Gamil for mucosal K+ solutions was 22 +/- 6 for GT measurements and 15 +/- 2 for Gmax data. Serosal ion replacements in tissues treated with mucosal nystatin indicated a potassium conductance in the basolateral membrane. Equivalent circuit analyses of nystatin and amiloride data were used to resolve the cellular (Ec) and paracellular (Rj) resistances (approximately 5 k omega cm2 and 8-9 k omega cm2, respectively). Analysis of I-V relationships for tissues depolarized with serosal K+ solutions revealed that the amiloride-sensitive pathway could be described as a Na+ conductance with a permeability coefficient (PNa) = 1.5 +/- 0.2 x 10(-6) cm/s and the intracellular Na+ concentration (Nai) = 5 +/- 1 mM (n = 5), similar to values from other tight epithelia. We conclude that A6 epithelia are capable of expressing large amiloride-sensitive currents which are highly Na+ selective.

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Year:  1990        PMID: 2172913     DOI: 10.1007/BF00382680

Source DB:  PubMed          Journal:  Pflugers Arch        ISSN: 0031-6768            Impact factor:   3.657


  34 in total

Review 1.  Transport in cultured epithelia.

Authors:  J S Handler
Journal:  Curr Eye Res       Date:  1985-04       Impact factor: 2.424

2.  Time-dependent apical membrane K+ and Na+ selectivity in cultured kidney cells.

Authors:  S R Thomas; E Mintz
Journal:  Am J Physiol       Date:  1987-07

3.  Transport properties of toad kidney epithelia in culture.

Authors:  F M Perkins; J S Handler
Journal:  Am J Physiol       Date:  1981-09

4.  Intracellular Na+ activity as a function of Na+ transport rate across a tight epithelium.

Authors:  N K Wills; S A Lewis
Journal:  Biophys J       Date:  1980-04       Impact factor: 4.033

5.  Effect of aldosterone and insulin on mannitol, Na+ and Cl- fluxes in cultured epithelia of renal origin (A6): evidence for increased permeability in the paracellular pathway.

Authors:  M L Fidelman; C O Watlington
Journal:  Biochim Biophys Acta       Date:  1987-11-12

6.  Amiloride-sensitive epithelial Na+ channels reconstituted into planar lipid bilayer membranes.

Authors:  S Sariban-Sohraby; R Latorre; M Burg; L Olans; D Benos
Journal:  Nature       Date:  1984 Mar 1-7       Impact factor: 49.962

7.  Transport-dependent alterations of membrane properties of mammalian colon measured using impedance analysis.

Authors:  N K Wills; C Clausen
Journal:  J Membr Biol       Date:  1987       Impact factor: 1.843

8.  Adenosine stimulates sodium transport in kidney A6 epithelia in culture.

Authors:  M A Lang; A S Preston; J S Handler; J N Forrest
Journal:  Am J Physiol       Date:  1985-09

9.  Evidence that prostaglandin E2 stimulates chloride secretion in cultured A6 renal epithelial cells.

Authors:  R Keeler; N L Wong
Journal:  Am J Physiol       Date:  1986-03

10.  Insulin stimulation of Na+ transport and glucose metabolism in cultured kidney cells.

Authors:  M L Fidelman; J M May; T U Biber; C O Watlington
Journal:  Am J Physiol       Date:  1982-01
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  14 in total

1.  Pulses of cell Ca(2+) and the dynamics of tight junction opening and closing.

Authors:  F Lacaz-Vieira; M M Marques
Journal:  J Membr Biol       Date:  2003-11-15       Impact factor: 1.843

2.  Influence of apical Na+ entry on Na(+)-K(+)-ATPase in amphibian distal nephron cells in culture.

Authors:  B Lyoussi; J Crabbé
Journal:  J Physiol       Date:  1992-10       Impact factor: 5.182

3.  Na+ transport and impedance properties of cultured renal (A6 and 2F3) epithelia.

Authors:  N K Wills; R K Purcell; C Clausen
Journal:  J Membr Biol       Date:  1992-02       Impact factor: 1.843

4.  Na+ channel activity in cultured renal (A6) epithelium: regulation by solution osmolarity.

Authors:  N K Wills; L P Millinoff; W E Crowe
Journal:  J Membr Biol       Date:  1991-04       Impact factor: 1.843

5.  A simple method for monitoring changes in cell height using fluorescent microbeads and an Ussing-type chamber for the inverted microscope.

Authors:  W E Crowe; N K Wills
Journal:  Pflugers Arch       Date:  1991-10       Impact factor: 3.657

6.  Poorly selective cation channels in the apical membrane of A6 cells.

Authors:  W Van Driessche; P De Smet; H de Smedt
Journal:  Pflugers Arch       Date:  1994-03       Impact factor: 3.657

7.  Amiloride blockage of Na+ channels in amphibian epithelia does not require external Ca2+.

Authors:  L Desmedt; J Simaels; W Van Driessche
Journal:  Pflugers Arch       Date:  1991-12       Impact factor: 3.657

8.  Ion channels and transporters in the electroreceptive ampullary epithelium from skates.

Authors:  J Lu; H M Fishman
Journal:  Biophys J       Date:  1995-12       Impact factor: 4.033

9.  Effects of aldosterone on the impedance properties of cultured renal amphibian epithelia.

Authors:  N K Wills; R K Purcell; C Clausen; L P Millinoff
Journal:  J Membr Biol       Date:  1993-04       Impact factor: 1.843

10.  Apical membrane sodium and chloride entry during osmotic swelling of renal (A6) epithelial cells.

Authors:  W E Crowe; J Ehrenfeld; E Brochiero; N K Wills
Journal:  J Membr Biol       Date:  1995-03       Impact factor: 1.843

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