Skip to main content
Log in

Ca-abhängige Membranpotentialänderungen am Herzen und ihre Bedeutung für die elektro-mechanische Kopplung. Versuche mit Tetrodotoxin in Na-haltigen Lösungen

Ca-dependent changes of membrane potential and their significance in excitation-contraction coupling in the heart. experiments with tetrodotoxin in Na-containing solutions

  • Published:
Naunyn-Schmiedebergs Archiv für Pharmakologie Aims and scope Submit manuscript

Summary

  1. 1.

    Tetrodotoxin (TTX), at a concentration of less than 10−6 g/ml, had no effect on membrane potential and contraction of isolated, thin ventricular trabeculae of sheep and calf hearts. 10−6 to 2 × 10−5 g/ml TTX decreased the rate of rise, over-shoot, and duration (phase of 90% repolarisation) of the action potential and the amplitude of contraction, without change in the resting potential and the plateau (20% repolarisation phase) of the action potential. Excitation block regularly occurred only with 10−5 to 2×10−5 g/ml TTX.

  2. 2.

    In a solution containing Na and TTX (5×10−6-2×10−5 g/ml) graded depolarisation was possible if the preparations were stimulated by square wave pulses of 500 msec duration across a sucrose bridge. In Ca-containing solutions the time-course of the electrotonic potentials showed two steps. The second step of depolarisation (SSD) began when the membrane potential reached−60 to−50 mV (threshold), and tension was initiated at the same level. Contractions reached their steady-state values only after about 5 depolarisations of the same size. There was no difference in the amplitude of contractions (steady-state level) elicited in Tyrode and in Tyrode + TTX.

  3. 3.

    SSD and contraction were dependent on the [Ca]e. Rate of rise (V/sec) and amplitude (mV) of SSD and tension increased with increasing [Ca]e. In Ca-free solutions the electrotonic potentials reached their steady-state levels in one step. No SSD and tension were observed in the absence of Ca, even with reversal of membrane potential.

  4. 4.

    In Tyrode + TTX the SSD was identical with the changes in membrane potential which could be observed in Na-free solution without TTX, but in Na-free solutions, contractions already reached their maximum during the first SSD.

  5. 5.

    SSD in Na-free solution was not blocked by TTX.

The results indicate that the second step of depolarization in Na-free as well as in Na-containing solution + TTX is due to a Ca inward current. It is tentatively concluded that not only in Na-free but also in Na-containing solution Ca ions carry charge across the membrane of cardiac muscle during depolarisation and that this Ca inward current is an important factor in excitation-contraction coupling.

This is a preview of subscription content, log in via an institution to check access.

Access this article

Price excludes VAT (USA)
Tax calculation will be finalised during checkout.

Instant access to the full article PDF.

Similar content being viewed by others

Literatur

  • Antoni, H., Jacob, R., Kaufmann, R.: Mechanische Reaktionen des Frosch- und Warmblütermyokards bei künstlicher Verkürzung und Verlängerung der Aktionspotentialdauer. Pflügers Arch. ges. Physiol.300, 51–52 (1968).

    Google Scholar 

  • Bülbring, E., Tomita, T.: Properties of the inhibitory potential of smooth muscle as observed in the response to field stimulation of the guinea-pig taenia coli. J. Physiol. (Lond.)189, 299–315 (1967).

    Google Scholar 

  • Clark, A. J.: The action of ions and lipoids upon the frog's heart. J. Physiol. (Lond.)47, 66–107 (1913).

    Google Scholar 

  • Coraboeuf, E., Vassort, G.: Effets de la tétrodotoxine, du tétraéthylammonium et du manganese sur l'activité du myocarde de Rat et de Cobaye. C. R. Acad. Sci. (Paris)264, 1072–1075 (1967).

    Google Scholar 

  • Deck, K. A., Trautwein, W.: Ionic currents in cardiac excitation. Pflügers Arch. ges. Physiol.280, 63–80 (1964).

    Google Scholar 

  • Dudel, J., Peper, K., Rudel, R., Trautwein, W.: Excitatory membrane current in heart muscle (Purkinje fibers). Pflügers Arch. ges. Physiol.292, 255–273 (1966).

    Google Scholar 

  • — — — —: The effect of tetrodotoxin on the membrane current in cardiac muscle (Purkinje fibers). Pflügers Arch. ges. Physiol.295, 213–226 (1967).

    Google Scholar 

  • Frankenhaeuser, B., Hodgkin, A. L.: The action of calcium on the electrical properties of squid axons. J. Physiol. (Lond.)137, 218–244 (1957).

    Google Scholar 

  • Freund, H.-J.: Die Beeinflussung der bioelektrischen und mechanischen Aktivität des Säugetiermyokards bei stufenweisem Ersatz von extracellulärem Na+ durch Li+ Pflügers Arch. ges. Physiol.296, 234–238 (1967).

    Google Scholar 

  • Giebisch, G., Weidmann, S.: Membrane currents in mammalian ventricular heart muscle fibres using a “voltage-clamp” technique. Helv. physiol. pharmacol. Acta25, CR 189 (1967).

    Google Scholar 

  • Hagiwara, S., Nakajima, S.: Differences in Na and Ca spikes as examined by application of tetrodotoxin, procaine, and manganese ions. J. gen. Physiol.49, 793 -806 (1966).

    Google Scholar 

  • Hashimoto, Y., Holman, M. E., McLean, A. J.: Effect of tetrodotoxin on the electrical activity of the smooth muscle of the vas deferens. Nature (Lond.)215, 430–432 (1967).

    Google Scholar 

  • Kao, C. Y.: Tetrodotoxin, saxitoxin and their significance in the study of excitation phenomena. Pharmacol. Rev.18, 997–1049 (1966).

    Google Scholar 

  • Kuriyama, H., Osa, T., Toida, N.: Effect of tetrodotoxin on smooth muscle cells of the guinea-pig taenia coli. Brit. J. Pharmacol. Chemother.27, 366–376 (1966).

    Google Scholar 

  • Langer, G. A.: Kinetic studies of calcium distribution in ventricular muscle of the dog. Circulat. Res.15, 393–405 (1964).

    Google Scholar 

  • Lüttgau, H. C., Niedergerke, R.: The antagonism between Ca and Na ions on the frog's heart. J. Physiol. (Lond.)143, 486–505 (1958).

    Google Scholar 

  • Meves, H.: Das Aktionspotential der Riesennervenzellen der Weinbergschnecke Helix pomatia. Pflügers Arch. ges. Physiol.289, R 10 (1966).

    Google Scholar 

  • Nakamura, Y., Nakajima, S., Grundfest, H.: The action of tetrodotoxin on electrogenie components of squid giant axons. J. gen. Physiol.48, 985–996 (1965).

    Google Scholar 

  • Narahashi, T., Moore, J. W., Scott, W. R.: Tetrodotoxin blockage of sodium conductance increase in lobster giant axons. J. gen. Physiol.47, 965–974 (1964).

    Google Scholar 

  • Niedergerke, R.: Movements of Ca in frog heart ventricles at rest and during contractures. J. Physiol. (Lond.)167, 515–550 (1963a).

    Google Scholar 

  • —: Movements of Ca in beating ventricles of the frog heart. J. Physiol. (Lond.)167, 551–580 (1963b).

    Google Scholar 

  • —, Orkand, R. K.: The dual effect of calcium on the action potential of the frog's heart. J. Physiol. (Lond.)184, 291–311 (1966a).

    Google Scholar 

  • — —, Orkand, R. K.: The dependence of the action potential of the frog's heart on the external and intracellular sodium concentration. J. Physiol. (Lond.)184, 312–334 (1966b).

    Google Scholar 

  • Nonomura, Y., Hotta, Y., Ohashi, H.: Tetrodotoxin and manganese ions: effects on electrical activity and tensions in taenia coli of guinea-pig. Science152, 97–99 (1966).

    Google Scholar 

  • Ogura, Y., Mori, Y.: Comparison of crystalline tetrodotoxin sensivity on different sites of the toad heart. III. International Pharmacological Congress, Säo Paulo. Abstract 499 (1966).

  • Ozeki, M., Freeman, A. R., Grundfest, H.: The membrane components of crustacean neuromusoular systems. I. Immunity of different electrogenio components to tetrodotoxin and saxitoxin. J. gen. Physiol.49, 1319–1334 (1966).

    Google Scholar 

  • Reiter, M.: Über die verschiedene Temperaturabhängigkeit der Wirkung erhöhter Ca+- und verringerter Na+-Konzentrationen auf die Kontraktionskraft des Rattenherzens. Naunyn-Schmiedebergs Arch. exp. Path. Pharmak.241, 171–172 (1961).

    Google Scholar 

  • —: Die Beziehung von Calcium und Natrium zur inotropen Glykosidwirkung. Naunyn-Schmiedebergs Arch. exp. Path. Pharmak.245, 487–499 (1963).

    Google Scholar 

  • —: Der Einfluß der Natriumionen auf die Beziehung zwischen Frequenz und Kraft der Kontraktion des isolierten Meerschweinchenmyokards. Naunyn-Schmiedebergs Arch. Pharmak. exp. Path.254, 261–286 (1966).

    Google Scholar 

  • Reuter, H.: Über die Wirkung von Adrenalin auf den cellulären Ca-Umsatz des Meerschweinchenvorhofs. Naunyn-Schmiedebergs Arch. exp. Path. Pharmak.251, 401–412 (1965).

    Google Scholar 

  • —: Strom-Spannungsbeziehungen von Purkinje-Fasern bei verschiedenen extracellulären Calcium-Konzentrationen und unter Adrenalineinwirkung. Pflügers Arch. ges. Physiol.287, 357–367 (1966).

    Google Scholar 

  • —: The dependence of slow inward current in Purkinje fibres on the extracellular calcium-concentration. J. Physiol. (Lond.)192, 479–492 (1967).

    Google Scholar 

  • —: Slow inactivation of currents in cardiac Purkinje fibres. J. Physiol. (Lond.)197, 233–253 (1968).

    Google Scholar 

  • —, Beeler, G. W.: Calcium current and activation of contraction in ventricular myocardial fibers. Science163, 399–401 (1969).

    Google Scholar 

  • —, Scholz, H.: Über den Einfluß der extracellulären Ca-Konzentration auf Membranpotential und Kontraktion isolierter Herzpräparate bei graduierter Depolarisation. Pflügers Arch. ges. Physiol.300, 87–107 (1968).

    Google Scholar 

  • —, Seitz, N.: The dependence of calcium efflux from cardiac muscle on temperature and external ion composition. J. Physiol. (Lond.)195, 451–470 (1968).

    Google Scholar 

  • Rougier, O., Vassort, G., Stämpfli, R.: Voltage clamp experiments on frog atrial heart muscle fibres with the sucrose gap technique. Pflügers Arch. ges. Physiol.301, 91–108 (1968).

    Google Scholar 

  • Scholz, H., Reuter, H.: Über die Beziehung zwischen Membranpotential und Kontraktion am Herzen unter dem Einfluß von Adrenalin. Naunyn-Schmiedebergs Arch. Pharmak. exp. Path.260, 196–197 (1968).

    Google Scholar 

  • Stanley, E. J., Reiter, M.: The antagonistic effects of sodium and calcium on the action potential of guinea pig papillary muscle. Naunyn-Schmiedebergs Arch. exp. Path. Pharmak.262, 159–172 (1965).

    Google Scholar 

  • Takahashi, D., Inoko, Y.: Experimentelle Untersuchungen über das Fugugift. Naunyn-Schmiedebergs Arch. exp. Path. Pharmak.26, 401–418 (1890).

    Google Scholar 

  • Takata, M., Moore, J. W., Kao, C. Y., Fuhrman, F. A.: Blockage of sodium conductance increase in lobster giant axon by tarichatoxin (tetrodotoxin). J. gen. Physiol.49, 977–988 (1966).

    Google Scholar 

  • Weidmann, S.: The effect of the cardiac membrane potential on the rapid availability of the sodium carrying system. J. Physiol. (Lond.)127, 213–224 (1955a).

    Google Scholar 

  • —: Effects of calcium ions and local anaesthetics on the electrical properties of Purkinje fibres. J. Physiol. (Lond.)129, 568–582 (1955b).

    Google Scholar 

  • Wilbrandt, W., Koller, H.: Die Calciumwirkung am Froschherzen als Funktion des Ionengleichgewichts zwischen Zellmembran und Umgebung. Helv. physiol. pharmacol. Acta6, 208–221 (1948).

    Google Scholar 

Download references

Author information

Authors and Affiliations

Authors

Additional information

Herrn Prof. Dr. H. Reuter bin ich für seinen Rat bei der Durchführung der Versuche und für die kritische Durchsicht des Manuskriptes sehr dankbar.

Rights and permissions

Reprints and permissions

About this article

Cite this article

Scholz, H. Ca-abhängige Membranpotentialänderungen am Herzen und ihre Bedeutung für die elektro-mechanische Kopplung. Versuche mit Tetrodotoxin in Na-haltigen Lösungen. Naunyn-Schmiedebergs Arch. Pharmak. 265, 187–204 (1969). https://doi.org/10.1007/BF00997150

Download citation

  • Received:

  • Issue Date:

  • DOI: https://doi.org/10.1007/BF00997150

Key-Words

Schlüsselwörter

Navigation