Abstract
Previous impedance analysis studies of intact epithelia have been complicated by the presence of connective tissue or smooth muscle. We now report the first application of this method to cultured epithelial monolayers. Impedance analysis was used as a nondestructive method for deducing quantitative morphometric parameters for epithelia grown from the renal cell line A6, and its subclonal cell line 2F3. The subclonal 2F3 cell line was chosen for comparison to A6 because of its inherently higher Na+ transport rate. In agreement with previous results, 2F3 epithelia showed significantly higher amiloride-sensitive short-circuit currents (Isc) than A6 epithelia (44 +/- 2 and 27 +/- 2 microA/cm2, respectively). However, transepithelial conductances (GT) were similar for the two epithelia (0.62 +/- 0.04 mS/cm2 for 2F3 and 0.57 +/- 0.04 mS/cm2 for A6) because of reciprocal differences in cellular (Gc) and paracellular (Gj) conductances. Significantly lower Gj and higher Gc values were observed for 2F3 epithelia than A6 (Gj = 0.23 +/- 0.02 and 0.33 +/- 0.04 mS/cm2 and Gc = 0.39 +/- 0.16 and 0.26 +/- 0.10 mS/cm2, respectively). Nonetheless, the cellular driving force for Na+ transport (Ec) and the amount of transcellular Na+ current under open-circuit conditions (Ic) were similar for the two epithelia. Three different morphologically-based equivalent circuit models were derived to assess epithelial impedance properties: a distributed model which takes into account the resistance of the lateral intercellular space and two models (the "dual-layer" and "access resistance" models), which corrected for impedance of small fluid-filled projections of the basal membrane into the underlying filter support. Although the data could be fitted by the distributed model, the estimated value for the ratio of apical to basolateral membrane resistances was unreasonably large. In contrast, the other models provided statistically superior fits and reasonable estimates of the membrane resistance ratio. The dual-layer model and access resistance models also provided similar estimates of apical and basolateral membrane conductances and capacitances. In addition, both models provided new information concerning the conductance and area of the basolateral protrusions. Estimates of the apical membrane conductance were significantly higher for 2F3 (0.79 +/- 0.23 mS/cm2) than A6 epithelia (0.37 +/- 0.07 mS/cm2), but no significant difference could be detected for apical membrane capacitances (1.4 +/- 0.04 and 1.2 +/- 0.1 microF/cm2 for 2F3 and A6, respectively) or basolateral membrane conductances (3.48 +/- 1.67 and 2.95 +/- 0.40 mS/cm2). The similar basolateral membrane properties for the two epithelia may be explained by their comparable transcellular Na+ currents under open-circuit conditions.
MeSH Terms
Amiloride/pharmacology
Animals
Biological Transport/drug effects
Cell Membrane/metabolism
Cells, Cultured
Epithelial Cells
Epithelium/metabolism,ultrastructure
Kidney/cytology,metabolism,ultrastructure
Membrane Potentials
Microscopy, Electron
Models, Biological
Sodium/metabolism
Xenopus laevis
Chemicals
Amiloride
Sodium
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Wills N K
Department of Physiology and Biophysics, University of Texas Medical Branch, Galveston 77550-2781.
Purcell R K
Clausen C
References (23)
23 references, click to expand
-
Transport properties of toad kidney epithelia in culture.
Am J Physiol. 1981 Sep;241(3):C154-9
PMID: 6269434
-
Na+ channel activity in cultured renal (A6) epithelium: regulation by solution osmolarity.
J Membr Biol. 1991 Apr;121(1):79-90
PMID: 1646891
-
Transport-dependent alterations of membrane properties of mammalian colon measured using impedance analysis.
J Membr Biol. 1987;95(1):21-35
PMID: 3560207
-
Use of AC impedance analysis to study membrane changes related to acid secretion in amphibian gastric mucosa.
Biophys J. 1983 Feb;41(2):167-78
PMID: 6601499
-
Regulation by aldosterone of Na+,K+-ATPase mRNAs, protein synthesis, and sodium transport in cultured kidney cells.
J Cell Biol. 1987 May;104(5):1231-7
PMID: 3032984
-
Rapid determination of intraepithelial resistance barriers by alternating current spectroscopy. II. Test of model circuits and quantification of results.
Pflugers Arch. 1984 Dec;402(4):421-32
PMID: 6522249
-
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.
Biochim Biophys Acta. 1987 Nov 12;931(2):205-14
PMID: 3117121
-
Time-dependent apical membrane K+ and Na+ selectivity in cultured kidney cells.
Am J Physiol. 1987 Jul;253(1 Pt 1):C1-6
PMID: 3605324
-
Impedance analysis of a tight epithelium using a distributed resistance model.
Biophys J. 1979 May;26(2):291-317
PMID: 262419
-
Microporosity of the substratum regulates differentiation of MDCK cells in vitro.
In Vitro Cell Dev Biol. 1989 Oct;25(10):914-22
PMID: 2808223
-
Apical and basolateral conductance in cultured A6 cells.
Pflugers Arch. 1991 Jan;417(5):463-8
PMID: 2011470
-
Amiloride-sensitive Na+ transport across cultured renal (A6) epithelium: evidence for large currents and high Na:K selectivity.
Pflugers Arch. 1990 Jul;416(5):481-92
PMID: 2172913
-
Saturation behavior of single, amiloride-sensitive Na+ channels in planar lipid bilayers.
Biophys J. 1984 Dec;46(6):831-5
PMID: 6097320
-
The effect of adrenal steroid hormones on epithelia formed in culture by A6 cells.
Ann N Y Acad Sci. 1981;372:442-54
PMID: 6951423
-
Immunochemical localization of amiloride-sensitive sodium channels in sodium-transporting epithelia.
J Cell Sci. 1989 Jun;93 ( Pt 2):349-62
PMID: 2559094
-
Active and passive properties of rabbit descending colon: a microelectrode and nystatin study.
J Membr Biol. 1979 Mar 28;45(1-2):81-108
PMID: 448728
-
Electrical properties of rabbit corneal endothelium as determined from impedance measurements.
Biophys J. 1981 Dec;36(3):677-95
PMID: 7326329
-
Membrane transport parameters in frog corneal epithelium measured using impedance analysis techniques.
J Membr Biol. 1986;91(3):213-25
PMID: 3489098
-
Dexamethasone accelerates differentiation of A6 epithelia and increases response to vasopressin.
Am J Physiol. 1988 Nov;255(5 Pt 1):C661-6
PMID: 3189533
-
Complete response to vasopressin requires epithelial organization in A6 cells in culture.
Am J Physiol. 1986 Jan;250(1 Pt 1):C138-45
PMID: 3002185
-
Polarized monolayers formed by epithelial cells on a permeable and translucent support.
J Cell Biol. 1978 Jun;77(3):853-80
PMID: 567227
-
Preservation of biological specimens for observation in a confocal fluorescence microscope and operational principles of confocal fluorescence microscopy.
Methods Cell Biol. 1989;31:437-52
PMID: 2674628
-
Single-channel recordings from amiloride-sensitive epithelial sodium channel.
Am J Physiol. 1985 Sep;249(3 Pt 1):C200-7
PMID: 2412449