Gallbladder epithelial cell hydraulic water permeability and volume regulation.
Open Access
- 28 February 1982
- journal article
- research article
- Published by Rockefeller University Press in The Journal of general physiology
- Vol. 79 (3) , 481-505
- https://doi.org/10.1085/jgp.79.3.481
Abstract
The hydraulic water permeability (Lp) of the cell membranes of Necturus gallbladder epithelial cells was estimated from the rate of change of cell volume after a change in the osmolality of the bathing solution. Cell volume was calculated from computer reconstruction of light microscopic images of epithelial cells obtained by the optical slice technique. The tissue was mounted in a miniature Ussing chamber designed to achieve optimal optical properties, rapid bath exchange and negligible unstirred layer thickness. The control solution contained only 80% of the normal NaCl concentration, the remainder of the osmolality was made up by mannitol, a condition that did not significantly decrease the fluid absorption rate in gallbladder sac preparations. The osmotic gradient ranged from 11.5-41 mOsmol and was achieved by the addition or removal of mannitol from the perfusion solutions. The Lp of the apical membrane of the cell was 1.0 .times. 10-3 cm/s .cntdot. Osmol (Posm = 0.055 cm/s) and that of the basolateral membrane was 2.2 .times. 10-3 cm/s .cntdot. Osmol (Posm = 0.12 cm/s). These values were sufficiently high so that normal fluid absorption by Necturus gallbladder could be accomplished by a 2.4-mOsmol solute gradient across the apical membrane and a 1.1-mOsmol gradient across the basolateral membrane. After the initial cell shrinkage or swelling resulting from the anisotonic mucosal or serosal medium, cell volume returned rapidly toward the control value despite the fact that 1 bathing solution remained anisotonic. This volume regulatory response was not influenced by serosal ouabain or reduction of bath NaCl concentration to 10 mM. Complete removal of mucosal perfusate NaCl abolished volume regulation after cell shrinkage. Estimates were also made of the reflection coefficient for NaCl and urea at the apical cell membrane and of the velocity of water flow across the cytoplasm.This publication has 28 references indexed in Scilit:
- Volume regulation by Amphiuma red blood cells. The membrane potential and its implications regarding the nature of the ion-flux pathways.The Journal of general physiology, 1980
- Models for coupling of salt and water transport; Proximal tubular reabsorption in Necturus kidney.The Journal of general physiology, 1975
- Functional Separation of the Na-K Exchange Pump from the Volume Controlling Mechanism in Enlarged Duck Red CellsThe Journal of general physiology, 1974
- Pathways for movement of ions and water across toad urinary bladderThe Journal of Membrane Biology, 1973
- Regulation of renal tubule cell volume in hypotonic mediaAmerican Journal of Physiology-Legacy Content, 1973
- THE ANATOMIC SITE OF THE TRANSEPITHELIAL PERMEABILITY BARRIERS OF TOAD BLADDERThe Journal of cell biology, 1969
- Disorders of cell volume regulation. I. Effects of inhibition of plasma membrane adenosine triphosphatase with ouabain.1968
- Effect of Osmolality on the Hydraulic Permeability Coefficient of Red CellsThe Journal of general physiology, 1968
- Osmotic volume changes induced by a permeable soluteJournal of Theoretical Biology, 1967
- Streaming potentials in the rat small intestineThe Journal of Physiology, 1966