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March 1, 1990Circulation Research126 citationsOpen Access

Changes in intracellular calcium during mechanical alternans in isolated ferret ventricular muscle.

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MLM J LabJLJ A Lee

Key Result

Mechanical alternans in isolated ferret ventricular muscle is associated with in-phase alternation of intracellular calcium and is abolished by caffeine or ryanodine.

Structured PICO

P
Population
Isolated ferret papillary muscles used to investigate the cellular mechanisms of mechanical alternans.
I
Intervention
Induction of mechanical alternans via rapid stimulation (2-4 Hz) and altered conditions (25°C, 1 mM Ca2+, pH 6.91), followed by addition of 10 mM caffeine or 10 µM ryanodine
C
Comparator
Control conditions (0.33-0.5 Hz, 30°C, 2 mM Ca2+, pH 7.36)
O
Outcome
Intracellular free calcium concentration ([Ca2+]i) measured with photoprotein aequorin, tension, and lengthsurrogate

Mechanical alternans is caused by intracellular calcium cycling involving the sarcoplasmic reticulum, and does not require incomplete muscle relaxation between beats.

Abstract

Alternans in heart is important as pulsus alternans in cardiac failure and electrophysiological alternans in myocardial ischemia. The explanation of this phenomenon is still unclear. We attempted to investigate the cellular mechanisms of alternans by measuring intracellular free calcium concentration ( Ca2+i) with the photoprotein aequorin in isolated ferret papillary muscles. Tension and length were also recorded simultaneously. Transient mechanical alternans lasting five to 20 contractions could be reliably induced in this preparation by following a 30-second rest period with stimulation at a fast rate (2-4 Hz). Production of sustained mechanical alternans, which lasted longer than 20 contractions and could persist for several hundred contractions, required additional interventions, consisting of a lower temperature (25 degrees C), a lower external calcium concentration (1 mM), and a lower pH (6.91) than control conditions (0.33-0.5 Hz, 30 degrees C, 2 mM Ca2+, pH 7.36). Transient mechanical alternans was associated with transient in-phase alternation of aequorin light and, hence, Ca2+i. Sustained mechanical alternans was associated with sustained in-phase alternation of aequorin light as well as incomplete relaxation of tension. However, when muscles were switched from isometric to unloaded isotonic contraction, relaxation between stimuli was complete but contraction and the aequorin light signal continued to alternate. The addition of 10 mM caffeine or 10 microns ryanodine abolished transient and sustained mechanical alternans and also abolished the associated alternation of aequorin light. Commensurate with the action of ryanodine, which allows the sarcoplasmic reticulum to reaccumulate calcium to a limited extent after a period of rapid stimulation, sustained mechanical alternans sometimes reappeared in an attenuated form 30 to 50 contractions after the addition of ryanodine. These results demonstrate that incomplete muscle relaxation between beats need not be present for alternans to occur, and support the hypothesis that alternans is caused by intracellular calcium cycling involving the sarcoplasmic reticulum.

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Cite This Study

Lab et al. (1990) studied Mechanical alternans. Caffeine or ryanodine vs. Control conditions was evaluated on Intracellular free calcium concentration and tension. Mechanical alternans in isolated ferret ventricular muscle is associated with in-phase alternation of intracellular calcium and is abolished by caffeine or ryanodine.

synapsesocial.com/papers/6a1ebc8f6b4935698da443b0https://doi.org/10.1161/01.res.66.3.585
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Abnormal Cai2+ handling is the primary cause of mechanical alternans: study in ferret ventricular muscles1991 · 76 citations
  2. 2Mechanical alternans during acidosis in ferret heart muscle.1991 · 76 citations
  3. 3Functional coupling between glycolysis and excitation—contraction coupling underlies alternans in cat heart cells2000 · 208 citations
  4. 4Alternans of cardiac calcium cycling in a cluster of ryanodine receptors: a simulation study2008 · 40 citations
  5. 5Refractoriness of sarcoplasmic reticulum Ca<sup>2+</sup> release determines Ca<sup>2+</sup> alternans in atrial myocytes2012 · 89 citations