PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
May 6, 1997Circulation88 citations

Decreased Myocyte Tension Development and Calcium Responsiveness in Rat Right Ventricular Pressure Overload

View Full Paper
DFDongsheng FanTWThomas WannenburgPTPieter P. de Tombe

Key Result

Right ventricular hypertrophy induced by pulmonary artery constriction in rats reduced maximal myocyte tension at a sarcomere length of 2.0 μm (24.3 vs 37.5 mN/mm2, P<0.01).

Structured PICO

P
Population
Single-skinned myocytes isolated from rats with right ventricular hypertrophy (RVH) induced by pulmonary artery constriction for 36 weeks, and control rats.
I
Intervention
Right ventricular hypertrophy (RVH) induced by pulmonary artery constriction for 36 weeks
C
Comparator
Control rats
O
Outcome
Contractile force, tension, and calcium responsiveness over a wide range of calcium concentrations at two sarcomere lengths (SLs)surrogate

In a rat model of right ventricular hypertrophy, depressed cardiac function is associated with decreased myocyte tension development and reduced calcium responsiveness, suggesting altered contractile protein function.

Main Result

Absolute Event Rate: 24.3% vs 37.5%

p-value: p=<.01

Abstract

Background The contractile dysfunction observed in end-stage myocardial hypertrophy has at its base an abnormality in myocyte function. However, whether depressed contractile function is related to an alteration in contractile protein function is presently unknown. Methods and Results Contractile force, tension, and calcium responsiveness were measured in single-skinned myocytes isolated from rats with right ventricular hypertrophy (RVH) and control rats. RVH was induced by pulmonary artery constriction for 36 weeks and was associated with significant myocyte hypertrophy. Myocytes were attached to micropipettes that extended from a force transducer and motor. Isometric force was measured over a wide range of calcium concentrations at two sarcomere lengths (SLs). Maximal force was increased in the RVH group: 1.20±0.10 versus 1.62±0.13 mg at SL=2.0 μm and 1.33±0.10 versus 1.84±0.15 mg at SL=2.3 μm ( P <.05). Maximal tension, however, was reduced in the RVH group: 24.3±1.91 versus 37.5±2.92 mN/mm 2 at SL=2.0 μm and 27.4±1.78 versus 41.8±3.19 mN/mm 2 at SL=2.3 μm ( P <.01). The concentration of calcium ions required for half-maximal activation was increased in the RVH group: 2.64±0.13 versus 3.47±0.22 μmol/L at SL=2.0 μm and 2.23±0.15 versus 2.86±0.18 μmol/L at SL=2.3 μm ( P <.01). The slope of the force-calcium relationship (Hill coefficient) was decreased in the RVH group at SL=2.0 μm (4.3±0.4 versus 3.1±0.2, P =.04) but not at SL=2.3 μm (3.8±0.2 versus 3.6±0.2, P =NS). Conclusions These results suggest that the depressed cardiac function of end-stage myocardial hypertrophy may be due, in part, to altered contractile protein function.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Fan et al. (1997) studied Right ventricular hypertrophy. Pulmonary artery constriction (to induce RVH) vs. Control rats was evaluated on Maximal tension at sarcomere length 2.0 μm (p=<.01). Right ventricular hypertrophy induced by pulmonary artery constriction in rats reduced maximal myocyte tension at a sarcomere length of 2.0 μm (24.3 vs 37.5 mN/mm2, P<0.01).

synapsesocial.com/papers/6a157688b2e0231f15828684https://doi.org/10.1161/01.cir.95.9.2312
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. 1Differential effects of cardiac hypertrophy and failure on right versus left ventricular calcium activation.1990 · 61 citations
  2. 2Right ventricular contractile protein function in rats with left ventricular myocardial infarction1996 · 45 citations
  3. 3Cellular versus myocardial basis for the contractile dysfunction of hypertrophied myocardium.1991 · 87 citations
  4. 4Right Ventricular Sarcomere Contractile Depression and the Role of Thick Filament Activation in Human Heart Failure with Pulmonary Hypertension2023 · 1 citations
  5. 5Changes in Contractile and Non-Contractile Proteins, Intracellular Ca2+ and Ultrastructures During The Development of Right Ventricular Hypertrophy and Failure in Rats.1992 · 9 citations