PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
June 3, 2006AJP Heart and Circulatory Physiology57 citations

Impact of osmotic compression on sarcomere structure and myofilament calcium sensitivity of isolated rat myocardium

View Full Paper
GFGerrie P. FarmanJWJohn S. WalkerPTPieter P. de Tombe

Structured PICO

P
Population
Skinned isolated rat myocardium
I
Intervention
Osmotic compression using Dextran T500 (0-6%)
O
Outcome
Myofilament calcium sensitivity (EC50), interfilament spacing, and I(1,1)/I(1,0) intensity ratiosurrogate

These findings provide support for a 'switch-like' activation mechanism within the cardiac sarcomere that is highly sensitive to changes in external osmotic pressure.

Abstract

Changes in interfilament lattice spacing have been proposed as the mechanism underlying myofilament length-dependent activation. Much of the evidence to support this theory has come from experiments in which high-molecular-weight compounds, such as dextran, were used to osmotically shrink the myofilament lattice. However, whether interfilament spacing directly affects myofilament calcium sensitivity (EC(50)) has not been established. In this study, skinned isolated rat myocardium was osmotically compressed over a wide range (Dextran T500; 0-6%), and EC(50) was correlated to both interfilament spacing and I(1,1)/I(1,0) intensity ratio. The latter two parameters were determined by X-ray diffraction in a separate group of skinned muscles. Osmotic compression induced a marked reduction in myofilament lattice spacing, concomitant with increases in both EC(50) and I(1,1)/I(1,0) intensity ratio. However, interfilament spacing was not well correlated with EC(50) (r(2) = 0.78). A much better and deterministic relationship was observed between EC(50) and the I(1,1)/I(1,0) intensity ratio (r(2) = 0.99), albeit with a marked discontinuity at low levels of dextran compression; that is, a small amount of external osmotic compression (0.38 kPa, corresponding to 1% Dextran T500) produced a stepwise increase in the I(1,1)/I(1,0) ratio concomitant with a stepwise decrease in EC(50). These parameters then remained stable over a wide range of further applied osmotic compression (up to 6% dextran). These findings provide support for a "switch-like" activation mechanism within the cardiac sarcomere that is highly sensitive to changes in external osmotic pressure.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Farman et al. (2006) studied this question.

synapsesocial.com/papers/6a83e6c3be3ac444ce3ea337https://doi.org/10.1152/ajpheart.01237.2005
Ask AI
Helpful
Bookmark
Share
View Full Paper

Also Consider

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

  1. 1Comparison between the sarcomere length-force relations of intact and skinned trabeculae from rat right ventricle. Influence of calcium concentrations on these relations.1986 · 397 citations
  2. 2Osmotic Compression of Single Cardiac Myocytes Eliminates the Reduction in Ca 2+ Sensitivity of Tension at Short Sarcomere Length1995 · 169 citations
  3. 3Myofilament lattice spacing as a function of sarcomere length in isolated rat myocardium2000 · 156 citations
  4. 4Cooperative activation in cardiac muscle: impact of sarcomere length2002 · 127 citations
  5. 5In Situ Measurements of Crossbridge Dynamics and Lattice Spacing in Rat Hearts by X-Ray Diffraction2004 · 23 citations