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T-Type and tetrodotoxin-sensitive Ca(2+) currents coexist in guinea pig ventricular myocytes and are both blocked by

J F Heubach1, A Köhler, E Wettwer

  • 1Institut für Pharmakologie und Toxikologie, Universitätsklinikum Carl Gustav Carus, Technische Universität Dresden, Dresden, Germany.

Circulation Research
|April 4, 2000
PubMed

Insights

Low-voltage-activated calcium currents, T-type (I(Ca(T))) and TTX-sensitive (I(Ca(TTX))), coexist in guinea pig ventricular myocytes. Both currents are sensitive to mibefradil, impacting future research.

Area of Science:

  • Cardiovascular Physiology
  • Ion Channel Electrophysiology
  • Pharmacology

Background:

  • Low-voltage-activated calcium currents in cardiomyocytes are typically described as either Ni(2+)-sensitive T-type calcium current (I(Ca(T))) or tetrodotoxin (TTX)-sensitive calcium current (I(Ca(TTX))) under Na(+)-free conditions.
  • The coexistence of both I(Ca(T)) and I(Ca(TTX)) within the same myocyte type has not been previously reported.

Purpose of the Study:

  • To establish experimental conditions for separating and studying both I(Ca(T)) and I(Ca(TTX)) within the same cardiomyocyte.
  • To characterize the electrophysiological properties and pharmacological sensitivities of I(Ca(T)) and I(Ca(TTX)) in guinea pig ventricular myocytes.

Main Methods:

  • Whole-cell voltage-clamp technique was employed on rat and guinea pig ventricular myocytes in Na(+)-free solutions.
  • Pharmacological separation of currents was achieved using superfusion with TTX or Ni(2+).
  • The effect of mibefradil on both I(Ca(T)) and I(Ca(TTX)) was investigated.

Main Results:

  • Rat myocytes exhibited only I(Ca(TTX)), while guinea pig myocytes displayed both I(Ca(T)) and I(Ca(TTX)).
  • I(Ca(TTX)) activated at more negative potentials and showed faster deactivation and recovery from inactivation compared to I(Ca(T)).
  • Mibefradil inhibited both I(Ca(T)) (85±2%) and I(Ca(TTX)) (48±8%).

Conclusions:

  • I(Ca(T)) and I(Ca(TTX)) coexist in guinea pig ventricular myocytes under Na(+)-free conditions.
  • Both identified calcium currents are sensitive to mibefradil, necessitating consideration in future research on I(Ca(T)).

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