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May 1, 1992Cardiovascular Research16 citations

Effect of adrenaline on cardiac force-interval relationship

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ADA. J. Drake‐HollandRSRebecca SitsapesanKHK Herbaczyńska-Cedro

Key Result

Adrenaline increased force and its rate of rise with interval in isolated guinea pig papillary muscles, and slowed the decay in potentiation of the two beats following a premature contraction.

Structured PICO

Does adrenaline affect the cardiac force-interval relationship in animal models?

P
Population
8 guinea pig papillary muscles and 5 anaesthetised dogs with atrioventricular block.
I
Intervention
Adrenaline
O
Outcome
Cardiac force-interval relationship (isometric force in guinea pig papillary muscles, maximum rate of rise of left ventricular pressure [LVdP/dtmax] in dogs)surrogate

Adrenaline alters the cardiac force-interval relationship by speeding up mechanical restitution and increasing the recirculation fraction of contractile activator in isolated preparations, though effects vary in intact models.

Abstract

OBJECTIVE: The aim was to test the hypothesis that adrenaline affects the force-interval processes. METHODS: The force-interval processes were studied in eight guinea pig papillary muscles (isometric force) and five anaesthetised dogs with atrioventricular block (maximum rate of rise of left ventricular pressure, LVdP/dtmax). The contractility indices were measured during pacing sequences in which a steady state was interrupted after a variable interval by a premature beat followed by an immediate return to the steady state. RESULTS: The relationship between contractility of the premature beat and the preceding interstimulus interval displays an approximately monoexponential initial rising phase, ie, mechanical restitution. With increasing adrenaline dosage in the isolated preparation there was always a significant increase in the force, and in its rate of rise with interval in some cases. Adrenaline had a variable accelerating effect on the time course of this mechanical restitution in isolated papillary muscles, but no effect in the dog preparation. In the isolated preparation adrenaline also slowed the decay in potentiation of the two beats immediately following the premature contraction. A slope of the relationship between the contractility of the second potentiated beat and that of the first was thus increased. This difference was not apparent in the intact preparation. CONCLUSIONS: The speeding up of mechanical restitution by adrenaline may be interpreted as reflecting the time course of reavailability of contractile activator. The slope of the relationship of contractility to that of the previous beat during the decay of postextrasystolic potentiation may be interpreted as the recirculation fraction of contractile activator; this is increased by adrenaline. However, in addition, adrenaline exerts an inotropic effect by another mechanism.

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Cite This Study

Drake‐Holland et al. (1992) studied this question. Adrenaline was evaluated on Force-interval relationship (mechanical restitution and postextrasystolic potentiation). Adrenaline increased force and its rate of rise with interval in isolated guinea pig papillary muscles, and slowed the decay in potentiation of the two beats following a premature contraction.

synapsesocial.com/papers/6a92a3fbeb36ee4226182d98https://doi.org/10.1093/cvr/26.5.496
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Also Consider

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

  1. 1Interplay between adrenaline and interbeat interval on ventricular repolarisation in intact heart in vivo1990 · 41 citations
  2. 2Adrenaline increases the rate of cycling of crossbridges in rat cardiac muscle as measured by pseudo-random binary noise-modulated perturbation analysis.1988 · 97 citations
  3. 3The Effects of Adrenaline on the Work- and Power-Generating Capacity of Rat Papillary Muscle <i>In Vitro</i>1997 · 9 citations
  4. 4The Effect of Adrenaline on the Contraction of the Human Heart under Normal Circulatory Conditions1952 · 16 citations
  5. 5The action of adrenaline on pace‐maker activity in cardiac Purkinje fibres.1978 · 21 citations