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March 5, 1999Circulation Research162 citationsOpen Access

The Sarcoplasmic Reticulum and the Na + /Ca 2+ Exchanger Both Contribute to the Ca 2+ Transient of Failing Human Ventricular Myocytes

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ΚΔΚωνσταντίνα ΔίπλαJMJulian A. MattielloKMKenneth B. Margulies

Structured PICO

Does inhibition of SR Ca2+ transport or reverse-mode Na+/Ca2+ exchange alter Ca2+ transients in failing human ventricular myocytes?

P
Population
Left ventricular myocytes isolated from explanted hearts of patients with severe heart failure (n=18)
I
Intervention
Selective inhibitors of SR Ca2+ transport (thapsigargin) and reverse-mode Na+/Ca2+ exchange activity (No. 7943)
C
Comparator
Baseline/control conditions without inhibitors
O
Outcome
Cytosolic Ca2+ transients, contraction, and action potentialssurrogate

In failing human ventricular myocytes, Ca2+ influx via reverse-mode Na+/Ca2+ exchange during the action potential contributes to the slow decay of the Ca2+ transient.

Abstract

Our objective was to determine the respective roles of the sarcoplasmic reticulum (SR) and the Na+/Ca2+ exchanger in the small, slowly decaying Ca2+ transients of failing human ventricular myocytes. Left ventricular myocytes were isolated from explanted hearts of patients with severe heart failure (n=18). Cytosolic Ca2+, contraction, and action potentials were measured by using indo-1, edge detection, and patch pipettes, respectively. Selective inhibitors of SR Ca2+ transport (thapsigargin) and reverse-mode Na+/Ca2+ exchange activity (No. 7943, Kanebo Ltd) were used to define the respective contribution of these processes to the Ca2+ transient. Ca2+ transients and contractions induced by action potentials (AP transients) at 0.5 Hz exhibited phasic and tonic components. The duration of the tonic component was determined by the action potential duration. Ca2+ transients induced by caffeine (Caf transients) exhibited only a phasic component with a rapid rate of decay that was dependent on extracellular Na+. The SR Ca2+-ATPase inhibitor thapsigargin abolished the phasic component of the AP Ca2+ transient and of the Caf transient but had no significant effect on the tonic component of the AP transient. The Na+/Ca2+ exchange inhibitor No. 7943 eliminated the tonic component of the AP transient and reduced the magnitude of the phasic component. In failing human myocytes, Ca2+ transients and contractions exhibit an SR-related, phasic component and a slow, reverse-mode Na+/Ca2+ exchange-related tonic component. These findings suggest that Ca2+ influx via reverse-mode Na+/Ca2+ exchange during the action potential may contribute to the slow decay of the Ca2+ transient in failing human myocytes.

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Cite This Study

Δίπλα et al. (1999) studied this question.

synapsesocial.com/papers/6a1bccfc26cb5670aa9cea77https://doi.org/10.1161/01.res.84.4.435
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