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  • 1
    In: The Journal of Physiology, Wiley, Vol. 594, No. 2 ( 2016-01-15), p. 295-306
    Kurzfassung: The transient receptor potential melastatin 4 (TRPM4) inhibitor 9‐phenanthrol reduces action potential duration in rabbit Purkinje fibres but not in ventricle. TRPM4‐like single channel activity is observed in isolated rabbit Purkinje cells but not in ventricular cells. The TRPM4‐like current develops during the notch and early repolarization phases of the action potential in Purkinje cells.
    Materialart: Online-Ressource
    ISSN: 0022-3751 , 1469-7793
    URL: Issue
    RVK:
    Sprache: Englisch
    Verlag: Wiley
    Publikationsdatum: 2016
    ZDB Id: 1475290-6
    SSG: 12
    Standort Signatur Einschränkungen Verfügbarkeit
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  • 2
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    Wiley ; 2005
    In:  Journal of Cardiovascular Electrophysiology Vol. 0, No. 0 ( 2005-08-02), p. 060118052427041-???
    In: Journal of Cardiovascular Electrophysiology, Wiley, Vol. 0, No. 0 ( 2005-08-02), p. 060118052427041-???
    Materialart: Online-Ressource
    ISSN: 1045-3873 , 1540-8167
    URL: Issue
    Sprache: Englisch
    Verlag: Wiley
    Publikationsdatum: 2005
    ZDB Id: 2037519-0
    Standort Signatur Einschränkungen Verfügbarkeit
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  • 3
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    Wiley ; 2007
    In:  Journal of Cardiovascular Electrophysiology Vol. 18, No. 11 ( 2007-11), p. 1190-1196
    In: Journal of Cardiovascular Electrophysiology, Wiley, Vol. 18, No. 11 ( 2007-11), p. 1190-1196
    Kurzfassung: Introduction: It has been speculated that pacemaker current (I f ) in human atria could play a role in causing ectopic atrial automaticity. Ivabradine is a novel selective and specific I f inhibitor in the sinus node that reduces heart rate without any negative inotropic effect. The aim of the study was to explore possible effects of ivabradine on I f in atrial myocytes. Methods and Results:  Using patch‐clamp technique, we studied effects of ivabradine on I f present in atrial myocytes isolated from human right appendages of patients undergoing cardiac surgery. The identification of HCN isoforms was obtained by means of multiplex single‐cell RT‐PCR. Ivabradine induced a marked concentration and use‐dependent I f inhibition with an IC 50 at steady state of 2.9 μM. Time constant of block development (Tau on ) decreases with the increase in the ivabradine concentration. Use‐dependent inhibition induced by ivabradine (3 μM) was not modified in the presence of cAMP (10 μM) in the pipette solution. Multiplex single‐cell RT‐PCR indicates that the major HCN gene subtype detected in atria was HCN2. HCN4 is detected weakly and HCN1 is not significantly detected. Conclusions:  Ivabradine inhibits I f current in the nonpacemaker cell with characteristics similar to those described previously in rabbit sinus node cells, but revealed a lesser sensitivity for I f recorded in human atrial cell than hHCN4 subunits considered as the major contributors to native f ‐channels in human sinoatrial node. A potential protection of atrial arrhythmias by ivabradine is discussed.
    Materialart: Online-Ressource
    ISSN: 1045-3873 , 1540-8167
    URL: Issue
    Sprache: Englisch
    Verlag: Wiley
    Publikationsdatum: 2007
    ZDB Id: 2037519-0
    Standort Signatur Einschränkungen Verfügbarkeit
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  • 4
    In: Journal of Cardiovascular Pharmacology and Therapeutics, SAGE Publications, Vol. 22, No. 6 ( 2017-11), p. 564-573
    Kurzfassung: Cardioprotection against ischemia–reperfusion (I/R) damages remains a major concern during prehospital management of acute myocardial infarction. Noble gases have shown beneficial effects in preconditioning studies. Because emergency proceedings in the context of myocardial infarction require postconditioning strategies, we evaluated the effects of argon in such protocols on mammalian cardiac tissue. Experimental Approaches: In rat, cardiac I/R was induced in vivo by transient coronary artery ligature and cardiac functions were evaluated by magnetic resonance imaging. Hypoxia–reoxygenation (H/R)-induced arrhythmias were evaluated in vitro using intracellular microelectrodes on both rat-isolated ventricle and a model of border zone in guinea pig ventricle. Hypoxia–reoxygenation loss of contractile force was assessed in human atrial appendages. In those models, postconditioning was induced by 5 minutes application of argon at the time of reperfusion. Key Results: In the in vivo model, I/R produced left ventricular ejection fraction decrease (24%) and wall motion score increase (36%) which was prevented when argon was applied in postconditioning. In vitro, argon postconditioning abolished H/R-induced arrhythmias such as early after depolarizations, conduction blocks, and reentries. Recovery of contractile force in human atrial appendages after H/R was enhanced in the argon group, increasing from 51% ± 2% in the nonconditioned group to 83% ± 7% in the argon-treated group ( P 〈 .001). This effect of argon was abolished in the presence of wortmannin and PD98059 which inhibit prosurvival phosphatidylinositol-3-kinase (PI3K)/protein kinase B (Akt) and MEK/extracellular receptor kinase 1/2 (ERK 1/2), respectively, or in the presence of the mitochondrial permeability transition pore opener atractyloside, suggesting the involvement of the reperfusion injury salvage kinase pathway. Conclusion and Implications: Argon has strong cardioprotective properties when applied in conditions of postconditioning and thus appears as a potential therapeutic tool in I/R situations.
    Materialart: Online-Ressource
    ISSN: 1074-2484 , 1940-4034
    Sprache: Englisch
    Verlag: SAGE Publications
    Publikationsdatum: 2017
    ZDB Id: 2230155-0
    Standort Signatur Einschränkungen Verfügbarkeit
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  • 5
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    Wiley ; 2021
    In:  Acta Physiologica Vol. 232, No. 4 ( 2021-08)
    In: Acta Physiologica, Wiley, Vol. 232, No. 4 ( 2021-08)
    Materialart: Online-Ressource
    ISSN: 1748-1708 , 1748-1716
    URL: Issue
    Sprache: Englisch
    Verlag: Wiley
    Publikationsdatum: 2021
    ZDB Id: 2617148-X
    ZDB Id: 2219379-0
    SSG: 12
    Standort Signatur Einschränkungen Verfügbarkeit
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  • 6
    In: Cancers, MDPI AG, Vol. 14, No. 18 ( 2022-09-15), p. 4477-
    Kurzfassung: Thoracic radiotherapy can lead to cardiac remodeling including valvular stenosis due to fibrosis and calcification. The monovalent non-selective cation channel TRPM4 is known to be involved in calcium handling and to participate in fibroblast transition to myofibroblasts, a phenomenon observed during aortic valve stenosis. The goal of this study was to evaluate if TRPM4 is involved in irradiation-induced aortic valve damage. Four-month-old Trpm4+/+ and Trpm4−/− mice received 10 Gy irradiation at the aortic valve. Cardiac parameters were evaluated by echography until 5 months post-irradiation, then hearts were collected for morphological and histological assessments. At the onset of the protocol, Trpm4+/+ and Trpm4−/− mice exhibited similar maximal aortic valve jet velocity and mean pressure gradient. Five months after irradiation, Trpm4+/+ mice exhibited a significant increase in those parameters, compared to the untreated animals while no variation was detected in Trpm4−/− mice. Morphological analysis revealed that irradiated Trpm4+/+ mice exhibited a 53% significant increase in the aortic valve cusp surface while no significant variation was observed in Trpm4−/− animals. Collagen staining revealed aortic valve fibrosis in irradiated Trpm4+/+ mice but not in irradiated Trpm4−/− animals. It indicates that TRPM4 influences irradiation-induced valvular remodeling.
    Materialart: Online-Ressource
    ISSN: 2072-6694
    Sprache: Englisch
    Verlag: MDPI AG
    Publikationsdatum: 2022
    ZDB Id: 2527080-1
    Standort Signatur Einschränkungen Verfügbarkeit
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  • 7
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    American Physiological Society ; 2021
    In:  American Journal of Physiology-Heart and Circulatory Physiology Vol. 320, No. 3 ( 2021-03-01), p. H1156-H1169
    In: American Journal of Physiology-Heart and Circulatory Physiology, American Physiological Society, Vol. 320, No. 3 ( 2021-03-01), p. H1156-H1169
    Kurzfassung: The TRPV4 channel is a calcium-permeable channel ( P Ca / P Na ∼ 10). Its expression has been reported in ventricular myocytes, where it is involved in several cardiac pathological mechanisms. In this study, we investigated the implication of TRPV4 in ventricular electrical activity. Left ventricular myocytes were isolated from trpv4 +/+ and trpv4 −/− mice. TRPV4 membrane expression and its colocalization with L-type calcium channels (Ca v 1.2) was confirmed using Western blot biotinylation, immunoprecipitation, and immunostaining experiments. Then, electrocardiograms (ECGs) and patch-clamp recordings showed shortened QTc and action potential (AP) duration in trpv4 −/− compared with trpv4 +/+ mice. Thus, TRPV4 activator GSK1016790A produced a transient and dose-dependent increase in AP duration at 90% of repolarization (APD 90 ) in trpv4 +/+ but not in trpv4 −/− myocytes or when combined with TRPV4 inhibitor GSK2193874 (100 nM). Hence, GSK1016790A increased calcium transient (CaT) amplitude in trpv4 +/+ but not in trpv4 −/− myocytes, suggesting that TRPV4 carries an inward Ca 2+ current in myocytes. Conversely, TRPV4 inhibitor GSK2193874 (100 nM) alone reduced APD 90 in trpv4 +/+ but not in trpv4 −/− myocytes, suggesting that TRPV4 prolongs AP duration in basal condition. Finally, introducing TRPV4 parameters in a mathematical model predicted the development of an inward TRPV4 current during repolarization that increases AP duration and CaT amplitude, in accord with what was found experimentally. This study shows for the first time that TRPV4 modulates AP and QTc durations. It would be interesting to evaluate whether TRPV4 could be involved in long QT-mediated ventricular arrhythmias. NEW & NOTEWORTHY Transient receptor potential vanilloid 4 (TRPV4) is expressed at the membrane of mouse ventricular myocytes and colocalizes with non-T-tubular L-type calcium channels. Deletion of trpv4 gene in mice results in shortened QT interval on electrocardiogram and reduced action potential duration of ventricular myocytes. Pharmacological activation of TRPV4 channel leads to increased action potential duration and increased calcium transient amplitude in trpv4 −/− but not in trpv4 −/− ventricular myocytes. To the contrary, TRPV4 channel pharmacological inhibition reduces action potential duration in trpv4 +/+ but not in trpv4 −/− myocytes. Integration of TRPV4 channel in a computational model of mouse action potential shows that the channel carries an inward current contributing to slowing down action potential repolarization and to increase calcium transient amplitude, similarly to what is observed experimentally. This study highlights for the first time the involvement of TRPV4 channel in ventricular electrical activity.
    Materialart: Online-Ressource
    ISSN: 0363-6135 , 1522-1539
    RVK:
    Sprache: Englisch
    Verlag: American Physiological Society
    Publikationsdatum: 2021
    ZDB Id: 1477308-9
    SSG: 12
    Standort Signatur Einschränkungen Verfügbarkeit
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  • 8
    Online-Ressource
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    American Chemical Society (ACS) ; 1999
    In:  Biochemistry Vol. 38, No. 17 ( 1999-04-01), p. 5528-5537
    In: Biochemistry, American Chemical Society (ACS), Vol. 38, No. 17 ( 1999-04-01), p. 5528-5537
    Materialart: Online-Ressource
    ISSN: 0006-2960 , 1520-4995
    RVK:
    Sprache: Englisch
    Verlag: American Chemical Society (ACS)
    Publikationsdatum: 1999
    ZDB Id: 1472258-6
    SSG: 12
    Standort Signatur Einschränkungen Verfügbarkeit
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  • 9
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    Elsevier BV ; 2013
    In:  Pharmacology & Therapeutics Vol. 138, No. 2 ( 2013-5), p. 272-284
    In: Pharmacology & Therapeutics, Elsevier BV, Vol. 138, No. 2 ( 2013-5), p. 272-284
    Materialart: Online-Ressource
    ISSN: 0163-7258
    Sprache: Englisch
    Verlag: Elsevier BV
    Publikationsdatum: 2013
    ZDB Id: 1500663-3
    SSG: 15,3
    Standort Signatur Einschränkungen Verfügbarkeit
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  • 10
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    Ovid Technologies (Wolters Kluwer Health) ; 2006
    In:  Hypertension Vol. 48, No. 4 ( 2006-10), p. 587-594
    In: Hypertension, Ovid Technologies (Wolters Kluwer Health), Vol. 48, No. 4 ( 2006-10), p. 587-594
    Kurzfassung: Cardiac hypertrophy is associated with electrophysiological modifications, including modification of action potential shape that can give rise to arrhythmias. We report here a higher detection of a calcium-activated nonselective cation current in cardiomyocytes of spontaneously hypertensive rats (SHRs), a model of hypertension and heart hypertrophy when compared with Wistar-Kyoto (WKY) rat, its normotensive equivalent. Freshly isolated cells from the left ventricles of 3- to 6-month-old WKY rats or SHRs were used for patch-clamp recordings. In inside-out patches, the channel presented a linear conductance of 25±0.5 pS, did not discriminate Na + over K + , and was not permeable to Ca 2+ . Open probability was increased by depolarization and a rise in [Ca 2+ ] i (dissociation constant=10±5.4 μmol/L) but reduced by 0.5 mmol/L [ATP] i , 10 μmol/L glibenclamide, or flufenamic acid (IC 50 =5.5±1.7 μmol/L). Thus, it owns the fingerprint of the TRPM4 current. Although rarely detected in WKY cardiomyocytes, the current was present in 〉 50% of patches from SHR cardiomyocytes. Moreover, by performing RT-PCR from ventricular samples, we observed that TRPM4 mRNA detection was higher in SHRs than in WKY rats. We propose that a TRPM4 current is expressed in ventricular cardiomyocytes from SHRs. According to its properties, this channel may contribute to the transient inward current implicated in delayed-after-depolarizations observed during [Ca 2+ ] overload of cardiomyocytes.
    Materialart: Online-Ressource
    ISSN: 0194-911X , 1524-4563
    Sprache: Englisch
    Verlag: Ovid Technologies (Wolters Kluwer Health)
    Publikationsdatum: 2006
    ZDB Id: 2094210-2
    Standort Signatur Einschränkungen Verfügbarkeit
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