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Changes in cytosolic calcium monitored by inward currents during action potentials in guinea-pig ventricular cells

D A Terrar1, E White

  • 1University Department of Pharmacology, Oxford, U.K.

Insights

Calcium-activated tail currents in guinea-pig ventricular cells provide a reliable index of cytosolic calcium changes. Caffeine affects calcium handling and action potential duration, impacting muscle contraction.

Area of Science:

  • Cardiology
  • Cell Physiology
  • Biophysics

Background:

  • Action potentials in cardiac muscle are crucial for contraction.
  • Cytosolic calcium transients regulate excitation-contraction coupling.
  • Understanding calcium dynamics is key to cardiac function.

Purpose of the Study:

  • To investigate the relationship between action potentials and cytosolic calcium.
  • To validate tail currents as an index of calcium transients.
  • To explore the effects of caffeine on cardiac calcium handling.

Main Methods:

  • Recorded action potentials and contractions in guinea-pig ventricular cells.
  • Utilized voltage-clamp to interrupt action potentials and measure tail currents.
  • Employed BAPTA to chelate intracellular calcium.
  • Applied caffeine to modulate calcium stores.

Main Results:

  • Tail current amplitude correlated with cytosolic calcium levels.
  • Caffeine prolonged action potentials, delayed contraction, and altered calcium transients.
  • BAPTA suppressed caffeine-induced effects.
  • Abbreviated action potentials reduced subsequent contractions.

Conclusions:

  • Calcium-activated tail currents are a valuable tool for assessing cytosolic calcium.
  • Caffeine influences cardiac calcium handling via sensitive stores.
  • Action potential duration impacts calcium loading and subsequent contraction.

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