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November 1, 1980The Journal of General Physiology96 citationsOpen Access

Uniform sarcomere shortening behavior in isolated cardiac muscle cells.

JKJohn W. KruegerDFD ForlettiBWB A Wittenberg

Key Result

Electrical stimulation of isolated adult rat ventricular cells resulted in uniform sarcomere shortening (peak 1.57 ± 0.13 μm) and relengthening, indicating uniform activation between myofibrils.

Structured PICO

P
Population
Single, functionally intact, unattached cardiac muscle cells enzymatically isolated from the ventricular tissue of adult rats
I
Intervention
Electrical stimulation (≤1.0-ms pulse width) with added CaCl2 (0.5-2.0 mM)
C
Comparator
Longitudinal compression of resting cell embedded in gelatin
O
Outcome
Dynamics of sarcomere shortening and relengthening (sarcomere length, maximum velocity, dispersion of light diffracted)surrogate

Shortening and relengthening in isolated cardiac muscle cells is characterized by uniform activation between myofibrils, suggesting that physiologically significant relengthening forces originate at the cellular level.

Main Result

Absolute Event Rate: 1.57% vs 1.93%

Abstract

We have observed the dynamics of sarcomere shortening and the diffracting action of single, functionally intact, unattached cardiac muscle cells enzymatically isolated from the ventricular tissue of adult rats. Sarcomere length was measured either (a) continuously by a light diffraction method or (b) by direct inspection of the cell's striated image as recorded on videotape or by cinemicroscopy (120--400 frames/s). At physiological levels of added CaCl2 (0.5--2.0 mM), many cells were quiescent (i.e., they did not beat spontaneously) and contracted in response to electrical stimulation (less than or equal to 1.0-ms pulse width). Sarcomere length in the quiescent, unstimulated cells (1.93 +/- 0.10 SD micrometers), at peak shortening (1.57 +/- 0.13 micrometers, n = 49), and the maximum velocity of sarcomere shortening and relengthening were comparable to previous observations in intact heart muscle preparations. The dispersion of light diffracted by the cell remained narrow, and individual striations remained distinct and laterally well registered throughout the shortening-relengthening cycle. In contrast, appreciable nonuniformity and internal buckling were seen at sarcomere lengths < 1.8 micrometers when the resting cell, embedded in gelatin, was longitudinally compressed These results indicate (a) that shortening and relengthening is characterized by uniform activation between myofibrils within the cardiac cell and (b) that physiologically significant relengthening forces in living heart muscle originate at the level of the cell rather than in extracellular connections. First-order diffracted light intensity, extremely variable during sarcomere shortening, was always greatest during midrelaxation preceding the onset of a very slow and uniform phase of sarcomere relengthening.

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Cite This Study

Krueger et al. (1980) studied Isolated cardiac muscle cells (n=49). Electrical stimulation vs. Quiescent, unstimulated cells was evaluated on Sarcomere length at peak shortening. Electrical stimulation of isolated adult rat ventricular cells resulted in uniform sarcomere shortening (peak 1.57 ± 0.13 μm) and relengthening, indicating uniform activation between myofibrils.

synapsesocial.com/papers/6a0f5a857b46c501a19bcb6ehttps://doi.org/10.1085/jgp.76.5.587
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