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Avenet, P. and Lindemann, B. (1989) Chemoreception of Salt Taste. The Blockage of Stationary Sodium Currents by Amiloride in Isolated Recpetor Cells and Excised Membrane Patches. In: Brand, J.G., Teeter, J.H., Cagan, R.H. and Kare, M.R., Eds., Chemical Senses: Molecular Aspects of Taste and Odor Reception, Marcel Dekker, New York, 171- 182.
has been cited by the following article:
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TITLE:
Electrophysiology of Sodium Receptors in Taste Cells
AUTHORS:
Albertino Bigiani
KEYWORDS:
Sodium Taste, Epithelial Sodium Channel, Patch-Clamp Recording
JOURNAL NAME:
Journal of Biomedical Science and Engineering,
Vol.9 No.8,
June
30,
2016
ABSTRACT: Sodium intake is important to maintain proper osmolarity and volume of extracellular fluid in vertebrates. The ability to find sources of sodium ions for managing electrolyte homeostasis relies on the activity of the taste system to sense salt. Several studies have been performed to understand the mechanisms underlying Na+ reception in taste cells, the peripheral detectors for food chemicals. It is now generally accepted that Na+ interacts with specific ion channels in taste cell membrane, called sodium receptors. As ion channels, these proteins mediate transmembrane ion fluxes (that is, electrical currents) during their operation. Thus, a lot of information on the functional properties of sodium receptors has been obtained by using electrophysiological techniques. Here, I review our current knowledge on the biophysical and physiological features of these receptors obtained by applying the patch-clamp recording techniques to single taste cells.