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P2Y 2 receptor‐mediated inhibition of ion transport in distal lung epithelial cells
Author(s) -
Ramminger S J,
Collett A,
Baines D L,
Murphie H,
McAlroy H L,
Olver R E,
Inglis S K,
Wilson S M
Publication year - 1999
Publication title -
british journal of pharmacology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.432
H-Index - 211
eISSN - 1476-5381
pISSN - 0007-1188
DOI - 10.1038/sj.bjp.0702767
Subject(s) - p2y receptor , stimulation , apical membrane , receptor , medicine , isoprenaline , endocrinology , ion transporter , amiloride , chemistry , microbiology and biotechnology , purinergic receptor , biology , biophysics , biochemistry , sodium , organic chemistry , membrane
Rat foetal distal lung epithelial cells were plated onto permeable supports where they became integrated into epithelial sheets that spontaneously generated short circuit current ( I SC ). Apical ATP (100 μ M ) evoked a transient fall in I SC that was followed by a rise to a clear peak which, in turn, was succeeded by a slowly developing decline to a value below control. Apical UTP evoked an essentially identical response. UDP and ADP were ineffective whilst ATP had no effect when added to the basolateral solution. These effects thus appear to be mediated by apical P2Y 2 receptors. The rising phase of the responses to ATP/UTP was selectively inhibited by anion transport inhibitors but persisted in the presence of amiloride, which abolished the inhibitory effects of both nucleotides. Thus, apical nucleotides appear to evoke a transient stimulation of anion secretion and sustained inhibition of Na + absorption. Basolateral isoprenaline (10 μ M ) elicited a rise in I SC but subsequent addition of apical ATP reversed this effect. Conversely, isoprenaline restored I SC to its basal level following stimulation with ATP. Apical P2Y 2 receptors and basolateral β‐adrenoceptors thus allow their respective agonists to exert mutually opposing effects on I SC .British Journal of Pharmacology (1999) 128 , 293–300; doi: 10.1038/sj.bjp.0702767

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