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July 1, 1985The Journal of General Physiology718 citationsOpen Access

Two kinds of calcium channels in canine atrial cells. Differences in kinetics, selectivity, and pharmacology.

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BBBruce P. Bean

Key Points

  • This research aims to investigate the differences in kinetics, selectivity, and pharmacological properties of two types of calcium channels in canine atrial cells.
  • Recorded Ca channel currents in single canine atrial cells using whole-cell patch-clamp technique.

Structured PICO

P
Population
Single canine atrial cells
I
Intervention
Electrophysiological characterization and pharmacological testing (tetrodotoxin, Co, Ba, nitrendipine, BAY K8644, isoproterenol)
O
Outcome
Characteristics of calcium channel currents (kinetics, selectivity, and pharmacology)surrogate

This study identifies two distinct types of calcium channels (fast and slow) in canine atrial cells with different kinetic and pharmacological properties.

Abstract

Currents through Ca channels were recorded in single canine atrial cells using whole-cell recording with patch pipettes. Two components of Ca channel current could be distinguished. One ("Ifast") was present only if cells were held at negative potentials, was most prominent for relatively small depolarizations, and inactivated within tens of milliseconds. The other ("Islow"), corresponding to the Ca current previously reported in single cardiac cells, persisted even at relatively positive holding potentials, required stronger depolarizations for maximal current, and inactivated much more slowly. Both currents were unaffected by tetrodotoxin and both were reduced by Co. Ifast had the same size and kinetics when Ca was exchanged for Ba, while Islow was bigger and slower with Ba as the charge carrier. In isotonic BaCl2, fluctuation analysis showed that Ifast had a smaller single channel current than Islow. Islow was much more sensitive to block by nitrendipine than was Ifast; also, Islow, but not Ifast, was increased by the dihydropyridine drug BAY K8644. Isoproterenol produced large increases in Islow but had no effect on Ifast.

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Cite This Study

Bruce P. Bean (1985) studied this question.

synapsesocial.com/papers/6a1e2dfdd7563bdf2e1fb194https://doi.org/10.1085/jgp.86.1.1
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