17
Views
38
CrossRef citations to date
0
Altmetric
Original Article

Hormonal and Neurotransmitter Regulation of Ca++ Influx Through Voltage-Dependent Slow Channels in Cardiac Muscle Membrane

Pages 131-166 | Published online: 09 Jul 2009

References

  • Belardinelli L., Vogel S. M. M., Sperelakis N., Rubio R., Berne R. M. Restoration of inward slow current in hypoxic heart muscle by alkaline pH. J. Mol. Cell. Cardiol. 1979; 11: 877–892
  • Chesnais J. M., Coraboeuf E., Sauvain M. P., Vassas J. M. Sensitivity to H, Li, and Mg ions of the slow inward sodium current in frog atrial fibers. J. Mol. Cell. Cardiol. 1975; 7: 627–642
  • Cukierman S., Paes de Carvalho A. Slow response excitation: dependence on rate and rhythm. Normal and Abnormal Conduction in the Heart, A. Paes de Carvalho, B. F. Hoffman, M. Lieberman. Futura Publishing Co., Mt Kisco, NY. 1982; 413–428
  • Fabiato A., Fabiato F. Calcium and cardiac excitation-contraction coupling. Anna. Rev. Physiol. 1979; 41: 473–484
  • Ferrier G. R., Moe G. K. Effect of calcium on acetylstrophanthi-din-induced transient depolarizations in canine Purkinje tissue. Circ. Res. 1973; 33: 508–515
  • Freer R. J., Pappano A. J., Peach M. J., Bing K. T., McLean M. J., Vogel S. M., Sperelakis N. Mechanism of the positive inotropic effect of angiotensin II on isolated cardiac muscle. Circ. Res. 1976; 39: 178–183
  • Hescheler J., Pelzer D., Trube G., Trautwein W. Does the organic calcium channel blocker D-600 act from inside or outside on the cardiac cell membrane. Pfluegers Arch. 1982; 393: 287–291
  • Isenberg G. Cardiac Purkinje fibers: [Ca2+] controls the potassium permeability via the conductance components gk1 and gk2. Pfluegers Arch. 1977; 371: 77–85
  • Josephson I., Renaud J. F., Vogel S., McLean M., Sperelakis N. Mechanism of the histamine-induced positive inotropic action in cardiac muscle. Eur. J. Pharmacol. 1976; 35: 393–398
  • Josephson I., Sperelakis N. 5-Guanylimidodiphosphate stimulation of slow Ca++ current in myocardial cells. J. Mol. Cell. Cardiol. 1978; 10: 1157–1166
  • Josephson I., Sperelakis N. On the ionic mechanism underlying adrenergic-cholinergic antagonism in ventricular muscle. J. Gen. Physiol. 1982; 79: 69–86
  • Josephson I., Sperelakis N. Local anesthetic blockade of Ca2+-mediated action potentials in cardiac muscle. Eur. J. Pharmacol. 1976; 40: 201–208
  • Kass R. S., Tsien P. S., Weingart R. Ionic basis of transient inward current induced by strophanthidin in cardiac Purkinje fibers. J. Physiol. (London) 1978; 281: 209–226
  • Kojima M., Sperelakis N. Calcium antagonistic drugs differ in blockade of slow Na+ channels in young embryonic chick hearts. Eur. J. Pharmacol.
  • Lee K. S., Isien R. W. Reversal of current through calcium channels in dialysed single heart cells. Nature (London) 1982; 297: 498–501
  • Lehmkuhl D., Sperelakis N. Electrical activity of cultured heart cells. Factors Influencing Myocardial Contractility, R. D. Tanz, F. Kavaler, J. Roberts. Academic Press, New York 1967; 245–278
  • Li T., Sperelakis N. Stimulation of slow action potentials in guinea pig papillary muscle cells by intracellular injection of cAMP, Gpp(NH)p, and cholera toxin. Circ. Res. 1983; 52: 111–117
  • Li T., Sperelakis N. Calcium antagonist blockade of slow action potentials in cultured chick heart cells. Can. J. Physiol. Pharmacol.. 61, in press
  • Lynch C., Vogel S., Sperelakis N. Halothane depression of myocardial slow action potentials. Anesthesiology 1976; 55: 360–368
  • Marban E., Tsien R. W. Enhancement of calcium current during digitalis inotropy in mammalian heart: positive feedback regulation by intracellular calcium. J. Physiol. (London) 1982; 329: 589–614
  • Masuda M. O., Paula-Carvalho M., Paes de Carvalho A. Excitability and propagation of slow responses in rabbit atrium partially depolarized by added K+ and Ba2+. Normal and Abnormal Conduction in the Heart, A. Paes de Carvalho, B. F. Hoffman, M. Lieberman. Futura Publishing Co., Mt Kisco, NY. 1982; 397–412
  • Metzer H., Lindner E. The positive inotropic-acting forskolin, a potent adenylate cyclase activator. Arzneim.-Forsch. J Drug Res. 1981; 31: 1248–1250
  • Molyvdas P.-A., Sperelakis N. Comparison of the effects of several calcium-antagonistic drugs (slow-channel blockers) on the electrical and mechanical activities of guinea pig papillary muscle. J. Cardiovasc. Pharmacol. 1983; 5: 162–169
  • Molyvdas P.-A., Sperelakis N. Comparison of the effects of several calcium-antagonistic drugs on the electrical activity of guinea pig Purkinje fibers. Eur. J. Pharmacol. 1983; 88: 205–214
  • Pang D. C., Sperelakis N. Differential actions of calcium antagonists on calcium binding to cardiac sarcolemma. Eur. J. Pharmacol. 1982; 81: 403–409
  • Pang D. C., Sperelakis N. Nifedipine, diltiazem, verapamil, and bepridil uptakes into cardiac and smooth muscles. Eur. J. Pharmacol. 1983; 87: 199–207
  • Pang D. C., Sperelakis N. Uptakes of calcium antagonists into muscles related to their lipid solubilities. Biochem. Pharmacol.
  • Pappano A. J. Calcium-dependent action potentials produced by catecholamines in guinea pig atrial muscle fibers depolarized by potassium. Circ. Res. 1970; 27: 379–390
  • Reuter H., Scholz H. The regulation of the calcium conductance of cardiac muscle by adrenaline. J. Physiol. (London) 1977; 264: 49–62
  • Reuter H., Stevens C. F., Tsien R. W., Yellen G. Properties of single calcium channels in cardiac cell culture. Nature (London) 1982; 297: 501–504
  • Rinaldi M. L., Capony J.-P., Demaille J. G. The cyclic AMP-dependent modulation of cardiac sarcolemmal slow calcium channels. J. Mol. Cell. Cardiol. 1982; 14: 279–289
  • Schneider J. A., Sperelakis N. The demonstration of energy dependence of the isoproterenol-induced transcellular Ca++ current in isolated perfused guinea pig hearts-an explanation for mechanical failure in ischemic myocardium. J. Surg. Res. 1974; 16: 389–403
  • Schneider J. A., Sperelakis N. Valinomycin blockade of slow channels in guinea pig hearts perfused with elevated K+ and isoproterenol. Eur. J. Pharmacol. 1974; 27: 349–354
  • Schneider J. A., Sperelakis N. Slow Ca4+ and Na+ responses induced by isoproterenol and methylxanthines in isolated perfused guinea pig hearts exposed to elevated K+. J. Mol. Cell. Cardiol. 1975; 7: 249–273
  • Shigenobu K., Schneider J. A., Sperelakis N. Verapamil blockade of slow Na+ and Ca++ responses in myocardial cells. J. Pharmcol. Exp. Ther. 1974; 190: 280–288
  • Shigenobu K., Sperelakis N. Ca++ current channels induced by catecholamines in chick embryonic hearts whose fast Na+ channels are blocked by tetrodotoxin or elevated K+. Circ. Res. 1972; 31: 932–952
  • Sperelakis N. Changes in membrane electrical properties during development of the heart. The Slow Inward Current and Cardiac Arryhthmias, D. P. Zipes, J. C. Bailey, V. Elharrar. Martinus Nijhoff, The Hague 1980; 221–262
  • Sperelakis N. Electrophysiology of vascular smooth muscle of coronary artery. Chapter 4. The Coronary Artery, S. Kalsner. Croom Helm, Ltd., London 1982; 118–167
  • Sperelakis N. Properties of calcium-dependent slow action potentials and their possible role in arrhythmias. Calcium-Antagonists and Cardiovascular Disease, L. H. Opie, R. Krebs. Raven Press, New York, (in press)
  • Sperelakis N. Cyclic AMP and phosphorylation in regulation of Ca++ influx into myocardial cells, and blockade by calcium-antagonistic drugs. Am. Heart J.
  • Sperelakis N., Belardinelli L., Vogel S. M. Electrophysiological aspects during myocardial ischemia. Proceedings of VIII World Congress of Cardiology, S. Hayase, S. Murao. Excerpta Medica, Amsterdam 1979; 229–236
  • Sperelakis N., Schneider J. A. A metabolic control mechanism for calcium ion influx that may protect the ventricular myocardial cell. Am. J. Cardiol. 1976; 37: 1079–1085
  • Tsien R. W., Giles W., Greengard P. Cyclic AMP mediates the effects of adrenaline on cardiac Purkinje fibers. Nature (London) New Biol. 1972; 240: 181–183
  • Vogel S., Crampton R., Sperelakis N. Blockade of myocardial slow channels by Bepridil (CERM-1978). J. Pharmacol. Exp. Ther. 1979; 210: 378–385
  • Vogel S., Sperelakis N. Blockade of myocardial slow inward current at low pH. Am. J. Physiol. 1977; 233: 99–103
  • Vogel S., Sperelakis N. Valinomycin blockade of myocardial slow channels is reversed by high glucose. Am. J. Physiol. 1978; 235: H46–H51
  • Vogel S., Sperelakis N. Induction of slow action potentials by microiontophoresis of cyclic AMP into heart cells. J. Mol. Cell. Cardiol. 1981; 13: 51–64
  • Vogel S., Sperelakis N., Josephson I., Brooker G. Fluoride stimulation of slow Ca++ current in cardiac muscle. J. Mol. Cell. Cardiol. 1977; 9: 461–475
  • Watanabe A. M., Besch H. R., Jr. Cyclic adenosine monophosphate modulation of slow calcium influx channels in guinea pig hearts. Circ. Res. 1974; 35: 316–324

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.