Acute Enhancement of Cardiac Function by Phosphodiesterase Type 1 Inhibition

Toru Hashimoto1, Grace E Kim1, Richard S Tunin1

  • 1Division of Cardiology, Department of Medicine, Johns Hopkins University School of Medicine, Baltimore, MD (T.H., G.E.K., R.S.T., T.A., S.H., R.N., G.Z., D.I.L., D.A.K.).

Circulation
|July 22, 2018
PubMed

Insights

Phosphodiesterase type-1 (PDE1) inhibition with ITI-214 improves heart function and blood vessel dilation in mammals. This novel therapy, particularly effective in PDE1C-expressing species, shows promise for treating heart failure.

Area of Science:

  • Cardiovascular Pharmacology
  • Enzyme Inhibition
  • Heart Failure Pathophysiology

Background:

  • Phosphodiesterase type-1 (PDE1) hydrolyzes cAMP and cGMP, with cardiac expression largely uncharacterized regarding acute inhibition effects.
  • Rodent studies are limited due to predominant PDE1A isoform expression, unlike the human heart's PDE1C isoform.
  • This study investigates PDE1 inhibition in PDE1C-expressing mammals, focusing on normal and failing hearts.

Purpose of the Study:

  • To determine the acute cardiovascular effects of PDE1 inhibition in PDE1C-expressing mammals.
  • To explore the regulatory pathways involved in PDE1 inhibition's cardiac effects.
  • To assess the potential of PDE1 inhibition as a novel heart failure therapy.

Main Methods:

  • Utilized pressure-volume analysis in conscious dogs with induced heart failure and anesthetized rabbits.
  • Administered a selective PDE1 inhibitor (ITI-214) orally and intravenously, with and without dobutamine.
  • Investigated effects on sarcomere and calcium dynamics in rabbit ventricular myocytes, alongside receptor signaling pathways.

Main Results:

  • In dogs and rabbits, ITI-214 enhanced contractility, improved relaxation, and reduced arterial resistance, increasing cardiac output without affecting blood pressure.
  • Cardiovascular effects were additive to dobutamine and primarily mediated through adenosine A2B receptor signaling, not beta-adrenergic pathways.
  • Unlike PDE3 inhibition, ITI-214 did not directly impact calcium dynamics but accelerated calcium decay when combined with forskolin.

Conclusions:

  • PDE1 inhibition via ITI-214 provides acute inotropic, lusitropic, and vasodilatory effects in PDE1C-expressing mammals, irrespective of heart failure status.
  • These effects are linked to a distinct cAMP signaling pathway, separate from beta-adrenergic or PDE3 modulation.
  • ITI-214 demonstrates potential as a novel therapeutic agent for heart failure.
Abstract

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