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March 1, 2002AJP Heart and Circulatory Physiology127 citations

Cooperative activation in cardiac muscle: impact of sarcomere length

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DDDavid DobeshJKJohn P. KonhilasPTPieter P. de Tombe

Key Points

  • The research aims to explore how changes in sarcomere length affect cooperative activation in cardiac muscle under physiological conditions.
  • Active force development was measured in skinned rat cardiac trabeculae across five sarcomere lengths (1.85-2.25 microm) at 1 mM free Mg2+ and 15 degrees C.

Structured PICO

P
Population
Skinned rat cardiac trabeculae
I
Intervention
Variation in sarcomere length (five lengths: 1.85-2.25 microm; 1 mM free [Mg2+]; 15 degrees C)
O
Outcome
Active force development as a function of free [Ca2+] (including maximum Ca2+-saturated force, Ca2+ sensitivity, and level of cooperativity)surrogate

Increasing sarcomere length enhances calcium responsiveness in cardiac muscle without altering cooperative activation.

Abstract

This study was undertaken to determine the impact of sarcomere length (SL) on the level of cooperative activation of the cardiac myofilament at physiological Mg2+. Active force development was measured in skinned rat cardiac trabeculae as a function of free Ca2+ at five SLs (1.85-2.25 microm; 1 mM free Mg2+; 15 degrees C). Only muscle preparations with minimal force rundown during the entire protocol were included in the analysis (average 7.2 +/- 1.7%). Median SL was measured by on-line computer video micrometry and controlled within 0.01 microm. Care was taken to ensure a sufficient number of data points in the steep portion of the Ca2+-force relationship at every SL to allow for accurate fit of the data to a modified Hill equation. Multiple linear regression analysis of the fit parameters revealed that both maximum, Ca2+-saturated force and Ca2+ sensitivity were a significant function of SL (P < 0.001), whereas the level of cooperativity did not depend on SL (P = 0.2). Further analysis of the Ca2+-force relationships revealed a marked asymmetry that, also, was not affected by SL (P = 0.2-0.6). Finally, we found that the level of cooperativity in isolated skinned myocardium was comparable to that reported for intact, nonskinned myocardium. Our results suggest that an increase in SL induces an increase in the Ca2+ responsiveness of the cardiac sarcomere without affecting the level of cooperativity.

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Cite This Study

Dobesh et al. (2002) studied this question.

synapsesocial.com/papers/6a750e7a508d802509f55327https://doi.org/10.1152/ajpheart.00667.2001
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