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May 10, 2026Life0 citationsOpen Access

Aglianico Grape Pomace Extract Reduces Cardiac Pacemaker Activity by Decreasing Hyperpolarization-Activated Current Density Independently of cAMP Signaling

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RZRoberta De ZioMCMaira CertiniEPEugenia Pignataro

Key Result

Aglianico grape pomace extract significantly reduced spontaneous action frequency and heart rate by decreasing hyperpolarization-activated funny current density independently of cAMP signaling.

Key Points

  • This research aims to investigate the electrophysiological effects of Aglianico grape pomace extract on cardiac pacemaker activity.
  • Examined chronotropic effects of grape pomace extract (GPE) using HL-1 cardiomyocytes and Drosophila melanogaster larvae.
  • Assessed HL-1 cells via whole-cell patch-clamp and intracellular Ca2+ imaging.
  • Administered GPE (25 µg/mL) for 48 hours and evaluated heart rate in Drosophila larvae.
  • GPE significantly reduced spontaneous action frequency in HL-1 cells (p<0.05).
  • GPE treatment prolonged diastolic depolarization without affecting overall action potential morphology or calcium homeostasis.
  • In Drosophila larvae, GPE reduced heart rate, indicating a conserved cAMP-independent mechanism.

Structured PICO

Does Aglianico Grape Pomace Extract reduce cardiac pacemaker activity in preclinical models?

P
Population
HL-1 cardiomyocytes and Drosophila melanogaster larval heart tube
I
Intervention
Aglianico Grape Pomace Extract (GPE) (25 µg/mL for 48 h in HL-1 cells; administered in diet for Drosophila)
C
Comparator
Control/untreated models
O
Outcome
Chronotropic effects (spontaneous action potential frequency and heart rate)surrogate

Aglianico Grape Pomace Extract exerts a negative chronotropic effect by reducing functional If density independently of cAMP signaling, suggesting potential heart rate-lowering properties.

Abstract

Grape pomace extract (GPE) from Vitis vinifera L. cv. Aglianico is rich in polyphenols with recognized cardioprotective properties, yet its direct electrophysiological effects on spontaneous cardiac activity have not been previously investigated. Here, we examined the chronotropic effects of GPE using two complementary models: HL-1 cardiomyocytes, assessed by whole-cell patch-clamp and intracellular Ca2+ imaging, and the Drosophila melanogaster larval heart tube, evaluated by optical recording. In HL-1 cells, chronic treatment with 25 µg/mL GPE for 48 h significantly reduced potential spontaneous action frequency and selectively prolonged the diastolic depolarization phase without altering action potential morphology, depolarization-activated currents, or cytosolic Ca2+ homeostasis. GPE reduced the hyperpolarization-activated funny current (If) density without shifting its voltage dependence. GPE-treated cells retained cAMP sensitivity, as both isoproterenol and intracellular 8-Br-cAMP significantly increased If amplitude, while ELISA quantification confirmed that global cAMP levels were unaffected by GPE. In Drosophila larvae, a cAMP-independent myogenic preparation, GPE administered in the diet significantly reduced heart rate. These findings demonstrate that Aglianico GPE exerts a negative chronotropic effect through a mechanism that reduces functional If density without altering cAMP availability or HCN channel voltage dependence, and reveal a cAMP-independent component of action conserved across phylogenetically distant species.

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Cite This Study

Zio et al. (2026) studied Cardiac pacemaker activity. Aglianico Grape Pomace Extract (GPE) was evaluated on Chronotropic effects (spontaneous action frequency and heart rate). Aglianico grape pomace extract significantly reduced spontaneous action frequency and heart rate by decreasing hyperpolarization-activated funny current density independently of cAMP signaling.

synapsesocial.com/papers/6a0021fec8f74e3340f9cfe4https://doi.org/10.3390/life16050786
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