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January 1, 2008Circulation Journal88 citationsOpen Access

Cardiac Ca2+ Signaling and Ca2+ Sensitizers

MEMasao Endoh

Key Points

  • This research aims to elucidate the role of calcium signaling in cardiac contraction and the impact of calcium sensitizers on myocardial function.
  • Simultaneous measurements of contractility and Ca2+ transients were performed using aequorin and Ca2+ sensitive fluorescent dyes in intact myocardium and single myocytes.

Structured PICO

P
Population
Preclinical models (intact myocardium and single myocytes from mammalian species including rabbit, ferret, dog, and mouse) and patients with congestive heart failure.
I
Intervention
Ca2+ sensitizers (e.g., levosimendan, pimobendan, EMD 57033, Org 30029) and Ca2+ mobilizers (e.g., digitalis, catecholamines, phosphodiesterase 3 inhibitors).

Ca2+ sensitizers offer a safer and energetically favorable alternative to traditional Ca2+ mobilizers for treating contractile dysfunction in heart failure by acting on central and downstream mechanisms without causing Ca2+ overload.

Abstract

The role of Ca2+ in cardiac excitation-contraction (E-C) coupling has been established by simultaneous measurements of contractility and Ca2+ transients by means of aequorin in intact myocardium and Ca2+ sensitive fluorescent dyes in single myocytes. The E-C coupling process can be classified into 3 processes: upstream (Ca2+ mobilization), central (Ca2+ binding to troponin C) and downstream mechanism (thin filament regulation and crossbridge cycling). These mechanisms are regulated differentially by various inotropic interventions. Positive force-frequency relationship and effects of beta-adrenoceptor stimulation, phosphodiesterase 3 inhibitors and digitalis are essentially exerted via upstream mechanism. Alpha-adrenoceptor stimulation, endothelin-1, angiotensin II, and clinically available Ca2+ sensitizers, such as levosimendan and pimobendan, act by a combination of the upstream and central/downstream mechanism. The Frank-Starling mechanism and effects of Ca2+ sensitizers such as EMD 57033 and Org 30029 are primarily induced via the central/downstream mechanism. Whereas the upstream and central mechanisms are markedly suppressed in failing myocytes and under acidotic conditions, Ca2+ sensitizers such as EMD 57033 and Org 30029 can induce cardiotonic effects under such conditions. Ca2+ sensitizers have high therapeutic potential for the treatment of contractile dysfunction in congestive heart failure and ischemic heart diseases, because they have energetic advantages and less risk of Ca2+ overload and can maintain effectiveness under pathological conditions.

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Cite This Study

Masao Endoh (2008) studied this question.

synapsesocial.com/papers/6a70c75587f921057127e1bchttps://doi.org/10.1253/circj.cj-08-0838
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