Pilocarpine modulates the cellular electrical properties of mammalian hearts by activating a cardiac M3 receptor and a K+ current
- 1 April 1999
- journal article
- Published by Wiley in British Journal of Pharmacology
- Vol. 126 (8) , 1725-1734
- https://doi.org/10.1038/sj.bjp.0702486
Abstract
1. Pilocarpine, a muscarinic acetylcholine receptor (mAChR) agonist, is widely used for treatment of xerostomia and glaucoma. It can also cause many other cellular responses by activating different subtypes of mAChRs in different tissues. However, the potential role of pilocarpine in modulating cardiac function remained unstudied. 2. We found that pilocarpine produced concentration-dependent (0.1-10 microM) decrease in sinus rhythm and action potential duration, and hyperpolarization of membrane potential in guinea-pig hearts. The effects were nearly completely reversed by 1 microM atropine or 2 nM 4DAMP methiodide (an M3-selective antagonist). 3. Patch-clamp recordings in dispersed myocytes from guinea-pig and canine atria revealed that pilocarpine induces a novel K+ current with delayed rectifying properties. The current was suppressed by low concentrations of M3-selective antagonists 4DAMP methiodide (2-10 nM), 4DAMP mustard (4-20 nM, an ackylating agent) and p-F-HHSiD (20-200 nM). Antagonists towards other subtypes (M1, M2 or M4) all failed to alter the current. 4. The affinity of pilocarpine (KD) at mAChRs derived from displacement binding of [3H]-NMS in the homogenates from dog atria was 2.2 microM (65% of the total binding) and that of 4DAMP methiodide was 2.8 nM (70% of total binding), consistent with the concentration of pilocarpine needed for the current induction and for the modulation of the cardiac electrical activity and the concentration of 4DAMP to block pilocarpine effects. 5. Our data indicate, for the first time, that pilocarpine modulates the cellular electrical properties of the hearts, likely by activating a K+ current mediated by M3 receptors.Keywords
This publication has 34 references indexed in Scilit:
- Oral PilocarpineDrugs, 1995
- The Effect of Muscarinic Agonists and Selective Receptor Subtype Antagonists on the Contractile Response of the Isolated Rhesus Monkey Ciliary MuscleExperimental Eye Research, 1994
- Heterogeneous binding of [3H]4-DAMP to muscarinic cholinergic sites in the rat brain: Evidence from membrane binding and autoradiographic studiesSynapse, 1991
- Biochemical and behavioral responses of pilocarpine at muscarinic receptor subtypes in the CNS. Comparison with receptor binding and low-energy conformationsBrain Research, 1990
- Muscarinic Receptor SubtypesAnnual Review of Pharmacology and Toxicology, 1990
- Muscarinic Receptor SubtypesNew England Journal of Medicine, 1989
- Direct labeling of rat M3-muscarinic receptors by [3H]4DAMPEuropean Journal of Pharmacology, 1989
- p-fluoro-hexahydro-sila-difenidol: The first M2β-selective muscarinic antagonistEuropean Journal of Pharmacology, 1988
- Methoctramine, a polymethylene tetraamine, differentiates three subtypes of muscarinic receptor in direct binding studiesEuropean Journal of Pharmacology, 1988
- Differential blockade of muscarinic receptor subtypes by polymethylene tetraamines. Novel class of selective antagonists of cardiac M-2 muscarinic receptorsJournal of Medicinal Chemistry, 1987