Guinea‐pig isolated trachealis: the effects of charybdotoxin on mechanical activity, membrane potential changes and the activity of plasmalemmal K+‐channels
Open Access
- 19 July 1991
- journal article
- Published by Wiley in British Journal of Pharmacology
- Vol. 103 (3) , 1814-1818
- https://doi.org/10.1111/j.1476-5381.1991.tb09868.x
Abstract
1 A study has been made, in guinea-pig isolated trachealis, of the effects of charybdotoxin in modulating (a) the activity of large conductance K+-channels, (b) the spontaneous electrical activity of intact cells and (c) the mechanical effects of some bronchodilator drugs. 2 Single smooth muscle cells were isolated from guinea-pig trachealis by enzymic digestion and were studied by the patch clamp recording technique. Recordings were made from outside-out plasmalemmal patches when the medium bathing the external surface of the patches contained 1.2 mm Ca2+ and 6 mm K+ while that bathing the cytosolic surface contained 0.1 μm Ca2+ and 140 mm K+. Charybdotoxin (100 nm), applied to the external surface of patches held at 0 mV, abolished the unitary currents associated with the opening of large conductance K+-channels. 3 Opened segments of guinea-pig trachea were used for the simultaneous recording of membrane potential and tension changes. In these experiments charybdotoxin (100 nm) caused the conversion of spontaneous electrical slow waves into spike-like action potentials. This effect was accompanied by a very small reduction in resting membrane potential. 4 Tissue bath recording showed that charybdotoxin (100 nm) increased the spontaneous mechanical tone of the tissue, antagonized (2.8 fold in each case) the relaxant actions of isoprenaline and theophylline but did not antagonize the relaxant actions of cromakalim or RP 49356. 5 It is concluded that charybdotoxin is an effective inhibitor of large conductance K+-channels in guinea-pig trachealis cells. The ability of charybdotoxin to convert spontaneous slow waves into spike-like action potentials suggests that the large, charybdotoxin-sensitive, K+-channels play an important role in determining the strong outward rectifying behaviour of the cells. The ability of charybdotoxin to antagonize isoprenaline and theophylline, but not to antagonize cromakalim and RP 49356, suggests that opening of the large conductance, charybdotoxin-sensitive K+-channel is implicated in the action of the former but not the latter pair of bronchodilator drugs.Keywords
This publication has 16 references indexed in Scilit:
- A patch‐clamp study of K+‐channel activity in bovine isolated tracheal smooth muscle cellsBritish Journal of Pharmacology, 1991
- Mechanical, biochemical and electrophysiological studies of RP 49356 and cromakalim in guinea-pig and bovine trachealis musclePulmonary Pharmacology, 1991
- Inhibition of relaxation of guinea-pig trachea by the K+ -channel antagonist, charybdotoxin (CHTX)European Journal of Pharmacology, 1990
- Regulation of Ca2+ -dependent K+ -channel activity in tracheal myocytes by phosphorylationNature, 1989
- Analysis of the relaxant effects of AH 21-132 in guinea-pig isolated trachealisBritish Journal of Pharmacology, 1989
- Electrical and mechanical effects of BRL34915 in guinea‐pig isolated trachealisBritish Journal of Pharmacology, 1986
- Electrophysiological and other aspects of the relaxant action of isoprenaline in guinea-pig isolated trachealisBritish Journal of Pharmacology, 1985
- Evidence that the spasmogenic action of tetraethylammonium in guinea‐pig trachealis is both direct and dependent on the cellular influx of calcium ionBritish Journal of Pharmacology, 1983
- Evidence of poor conduction of muscle excitation in the longitudinal axis of guinea‐pig isolated tracheaBritish Journal of Pharmacology, 1983
- ELECTRICAL SLOW WAVES AND TONE OF GUINEA-PIG ISOLATED TRACHEALIS MUSCLE: EFFECTS OF DRUGS AND TEMPERATURE CHANGESBritish Journal of Pharmacology, 1982