DOURADO RAMALHO, Nuno Jorge, Olga ŠVECOVÁ, Roman KULA, Milena ŠIMURDOVÁ, Jiří ŠIMURDA and Markéta BÉBAROVÁ. Aminophylline affects the cardiac rat inward rectifier potassium current in a dual way. In EHRA-EWGCCE 2021. 2021. ISSN 1532-2092. Available from: https://dx.doi.org/10.1093/europace/euab116.561.
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Basic information
Original name Aminophylline affects the cardiac rat inward rectifier potassium current in a dual way
Authors DOURADO RAMALHO, Nuno Jorge, Olga ŠVECOVÁ, Roman KULA, Milena ŠIMURDOVÁ, Jiří ŠIMURDA and Markéta BÉBAROVÁ.
Edition EHRA-EWGCCE 2021, 2021.
Other information
Original language English
Type of outcome Conference abstract
Country of publisher Spain
Confidentiality degree is not subject to a state or trade secret
Impact factor Impact factor: 5.486
Organization unit Faculty of Medicine
ISSN 1532-2092
Doi http://dx.doi.org/10.1093/europace/euab116.561
Tags International impact, Reviewed
Changed by Changed by: doc. MUDr. Markéta Bébarová, Ph.D., učo 15000. Changed: 19/10/2021 12:17.
Abstract
Introduction: Aminophylline, a bronchodilator used in clinical practice to treat namely severe asthma attacks, often induces atrial fibrillation in patients. Modifications of the inward rectifier potassium current IK1 are known to play a role in the genesis of fibrillation. Purpose: We aimed to investigate the effect of aminophylline at clinically-relevant concentrations between 3 and 100 µM on IK1 in isolated rat ventricular myocytes. Methods: Experiments were performed by the whole cell patch clamp technique on enzymatically isolated rat right ventricular myocytes at room temperature. IK1 was measured as the current sensitive to 100 µM Ba2+. Results: We observed a dual steady-state effect of aminophylline at most of the applied concentrations. Either inhibition or activation was apparent in individual cells during application of aminophylline at a given concentration. The smaller was magnitude of the control IK1, the more likely was activation of the current in the presence of aminophylline and vice versa (tested at 10 and 30 µM). The effect was voltage-independent and fully reversible during the subsequent wash-out. The mean aminophylline effect was inhibitory at all concentrations (10, 15, 4, and 23%-inhibition at -50 mV at 3, 10, 30, and 100 µM, respectively). Using a modified version of the population model of IK1 channels that we published before, the dual effect can be explained by interaction of aminophylline with two channel populations in a different way, the first one being inhibited and the second one being activated by the drug. Considering various fractions of these two channel populations in individual cells, varying effects observed in the measured cells can be simulated. Conclusions: Aminophylline at clinically-relevant concentrations affects IK1 in rat ventricular myocytes in a dual way, showing both steady-state activation and inhibition in various cells, even at the same concentration. It may be related to a different effect of the drug on various Kir2.x subunits forming the heterotetrameric IK1 channels present at the cell membrane of a single cell.
Links
MUNI/A/1246/2020, interní kód MUName: Kardiovaskulární systém: od iontového kanálu k celotělovému modelu (Acronym: KAVASYKAMO)
Investor: Masaryk University
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