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October 22, 2019Clinical and Experimental Pharmacology and Physiology3 citations

Effects of ANP on pulmonary vein electrophysiology, Ca2+ homeostasis and adrenergic arrhythmogenesis via PKA

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YLYen‐Yu LuCCChen‐Chuan ChengHWHui‐Jun Wu

Key Result

Atrial natriuretic peptide directly regulates pulmonary vein electrophysiology and calcium homeostasis, attenuating isoproterenol-induced arrhythmogenesis via the NPR-C/cAMP/PKA pathway.

Structured PICO

P
Population
Isolated rabbit pulmonary vein preparations and single cardiomyocytes used to study the effects of ANP on electrophysiology and calcium homeostasis.
I
Intervention
Atrial natriuretic peptide (ANP) administration (1, 10, and 100 nmol/L)
C
Comparator
Baseline (before ANP administration) or isoproterenol alone
O
Outcome
Spontaneous activity, burst firing, intracellular Ca2+ transient, sarcoplasmic reticulum Ca2+ content, late sodium current, and L-type Ca2+ currentsurrogate

ANP directly regulates pulmonary vein electrophysiology and calcium homeostasis, attenuating adrenergic arrhythmogenesis via the NPR-C/cAMP/PKA signaling pathway.

Abstract

Abstract Atrial fibrillation (AF) is the most common form of arrhythmia and increases the risk of stroke and heart failure (HF). Pulmonary veins (PVs) are important sources of triggers that generate AF, and calcium (Ca 2+ ) overload participates in PV arrhythmogenesis. Neurohormonal activation is an important cause of AF. Higher atrial natriuretic peptide (ANP) level predicts paroxysmal AF occurrence in HF patients. However, it is not clear if ANP directly modulates electrophysiological characteristics and Ca 2+ homeostasis in the PVs. Conventional microelectrodes, whole‐cell patch‐clamp, and the Fluo‐3 fluorimetric ratio technique were performed using isolated rabbit PV preparations or single isolated PV cardiomyocytes before and after ANP administration. We found that ANP (1, 10, and 100 nmol/L) concentration‐dependently decreased spontaneous activity in PV preparations. ANP (100 nmol/L) decreased isoproterenol (1 μmol/L)‐induced PV spontaneous activity and burst firing. AP811 (100 nmol/L, NPR‐C agonist), H89 (1μmol/L, PKA inhibitor) decreased isoproterenol‐induced PV spontaneous activity or burst firing, but successive administration of ANP had no further effect on PV activity. KT5823 (1 μmol/L, PKG inhibitor) decreased isoproterenol‐induced PV spontaneous activity but did not change isoproterenol‐induced PV burst firing, whereas successive administration of ANP did not change isoproterenol‐induced PV burst firing. ANP decreased intracellular Ca 2+ transient and sarcoplasmic reticulum Ca 2+ content in single PV cardiomyocytes. ANP decreased the late sodium current, L‐type Ca 2+ current, but did not change nickel‐sensitive Na + ‐Ca 2+ exchanger current in single PV cardiomyocytes. In conclusion, ANP directly regulates PV electrophysiological characteristics and Ca 2+ homeostasis and attenuates isoproterenol‐induced arrhythmogenesis through NPR‐C/cAMP/PKA signal pathway.

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Cite This Study

Lu et al. (2019) studied Atrial fibrillation and pulmonary vein arrhythmogenesis. Atrial natriuretic peptide (ANP) vs. Baseline (before ANP administration) or isoproterenol alone was evaluated on Spontaneous activity, burst firing, and calcium homeostasis in pulmonary vein preparations. Atrial natriuretic peptide directly regulates pulmonary vein electrophysiology and calcium homeostasis, attenuating isoproterenol-induced arrhythmogenesis via the NPR-C/cAMP/PKA pathway.

synapsesocial.com/papers/6a20b39dfb15484991e51e74https://doi.org/10.1111/1440-1681.13199
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