Literature DB >> 9843796

INaCa and ICl(Ca) contribute to isoproterenol-induced delayed after depolarizations in midmyocardial cells.

A C Zygmunt1, R J Goodrow, C M Weigel.   

Abstract

The contributions of electrogenic sodium/calcium exchange current (INaCa), calcium-activated chloride conductance [ICl(Ca)], and calcium-activated nonselective cation conductance to delayed afterdepolarizations (DAD) were examined. Nonselective cation channels were absent in canine M cells, since inhibition of INaCa and ICl(Ca) eliminated all calcium-activated currents without abolishing cell shortening. After the cells were treated with isoproterenol and ouabain to increase calcium loading, INaCa was 168 +/- 30 x 10(-3) pC/pF and ICl(Ca) was 114 +/- 24 x 10(-3) pC/pF. Transient overlapping inward and outward currents were evoked positive to the chloride reversal potential (ECl). Outward current was chloride sensitive, and inward current was blocked by replacement of external sodium with lithium. When ECl was -50 mV, triggered activity occurred in normal external sodium and persisted after inhibition of INaCa. Steps to -80 mV revealed oscillating inward currents in normal sodium and chloride, which persisted after inhibition of INaCa. When ECl was equal to -113 mV, ICl(Ca) opposed INaCa at the resting potential. DAD occurred in normal sodium, and inhibition of outward ICl(Ca) provoked triggered activity. We conclude that INaCa represents approximately 60% of the total calcium-activated current at resting potentials but that both INaCa and ICl(Ca) work in concert to cause DAD in calcium-overloaded cells.

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Year:  1998        PMID: 9843796     DOI: 10.1152/ajpheart.1998.275.6.H1979

Source DB:  PubMed          Journal:  Am J Physiol        ISSN: 0002-9513


  18 in total

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3.  Ca2+-activated non-selective cation current in rabbit ventricular myocytes.

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7.  Intracellular cyclic AMP inhibits native and recombinant volume-regulated chloride channels from mammalian heart.

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Review 8.  Cl- current blockade reduces triggered activity based on delayed afterdepolarisations.

Authors:  A O Verkerk; M W Veldkamp; A C G van Ginneken
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Review 9.  Mechanisms and potential therapeutic targets for ventricular arrhythmias associated with impaired cardiac calcium cycling.

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