scholarly article | Q13442814 |
P50 | author | Glenn I Fishman | Q58448752 |
P2093 | author name string | Jie Zhang | |
Gregory E Morley | |||
David E Gutstein | |||
Stephan B Danik | |||
Fangyu Liu | |||
H Jacqueline Suk | |||
P2860 | cites work | Enhanced dispersion of repolarization and refractoriness in transgenic mouse hearts promotes reentrant ventricular tachycardia | Q73505422 |
Regional alterations in protein expression in the dyssynchronous failing heart | Q73821989 | ||
Functional consequences of elimination of i(to,f) and i(to,s): early afterdepolarizations, atrioventricular block, and ventricular arrhythmias in mice lacking Kv1.4 and expressing a dominant-negative Kv4 alpha subunit | Q73964069 | ||
Myocardial architecture and ventricular arrhythmogenesis | Q74561909 | ||
Remodeling of cardiac gap junctions: the relationship to the genesis of ventricular tachycardia | Q77463705 | ||
Cardiac structure and function in young and senescent mice heterozygous for a connexin43 null mutation | Q77651236 | ||
Reentry and fibrillation in the mouse heart. A challenge to the critical mass hypothesis | Q78031811 | ||
Heterogeneous loss of connexin43 protein in nonischemic dilated cardiomyopathy with ventricular tachycardia | Q78375776 | ||
Cell coupling between ventricular myocyte pairs from connexin43-deficient murine hearts | Q79074160 | ||
Basic Mechanisms of Cardiac Impulse Propagation and Associated Arrhythmias | Q22337019 | ||
Ankyrin-B mutation causes type 4 long-QT cardiac arrhythmia and sudden cardiac death | Q24294267 | ||
FKBP12.6 deficiency and defective calcium release channel (ryanodine receptor) function linked to exercise-induced sudden cardiac death | Q28183817 | ||
Spatiotemporal relation between gap junctions and fascia adherens junctions during postnatal development of human ventricular myocardium | Q28245739 | ||
Conduction slowing and sudden arrhythmic death in mice with cardiac-restricted inactivation of connexin43 | Q28506915 | ||
Slow ventricular conduction in mice heterozygous for a connexin43 null mutation | Q28591559 | ||
Redistribution of connexin45 in gap junctions of connexin43-deficient hearts | Q28591922 | ||
Inducible polymorphic ventricular tachyarrhythmias in a transgenic mouse model with a long Q-T phenotype | Q28595000 | ||
Downregulation of immunodetectable connexin43 and decreased gap junction size in the pathogenesis of chronic hibernation in the human left ventricle | Q32100784 | ||
Vortex shedding as a precursor of turbulent electrical activity in cardiac muscle | Q34017314 | ||
Ventricular fibrillation: how do we stop the waves from breaking? | Q34101077 | ||
Long QT and ventricular arrhythmias in transgenic mice expressing the N terminus and first transmembrane segment of a voltage-gated potassium channel | Q35974594 | ||
Characterization of mice with a combined suppression of I(to) and I(K,slow). | Q43713897 | ||
Abrupt rate accelerations or premature beats cause life-threatening arrhythmias in mice with long-QT3 syndrome. | Q43726773 | ||
Increased vulnerability to inducible atrial fibrillation caused by partial cellular uncoupling with heptanol. | Q44103959 | ||
c-Jun N-terminal kinase activation mediates downregulation of connexin43 in cardiomyocytes | Q44167991 | ||
Subdiaphragmatic murine electrophysiological studies: sequential determination of ventricular refractoriness and arrhythmia induction | Q44443099 | ||
Functional role of connexin43 gap junction channels in adult mouse heart assessed by inducible gene deletion | Q44735472 | ||
Electrical propagation in synthetic ventricular myocyte strands from germline connexin43 knockout mice | Q44932498 | ||
Targeted activation of c-Jun N-terminal kinase in vivo induces restrictive cardiomyopathy and conduction defects | Q46858649 | ||
Implications of ventricular arrhythmia vulnerability during murine electrophysiology studies | Q47726858 | ||
Alterations of intercellular communication in neonatal cardiac myocytes from connexin43 null mice. | Q47741509 | ||
Slow conduction and enhanced anisotropy increase the propensity for ventricular tachyarrhythmias in adult mice with induced deletion of connexin43. | Q51033472 | ||
Disturbed connexin43 gap junction distribution correlates with the location of reentrant circuits in the epicardial border zone of healing canine infarcts that cause ventricular tachycardia. | Q52524238 | ||
The rate and anisotropy of impulse propagation in the postnatal terminal crest are correlated with remodeling of Cx43 gap junction pattern. | Q52538479 | ||
Increased wave break during ventricular fibrillation in the epicardial border zone of hearts with healed myocardial infarction. | Q53895916 | ||
Paradoxical improvement of impulse conduction in cardiac tissue by partial cellular uncoupling. | Q54107288 | ||
Characterization of conduction in the ventricles of normal and heterozygous Cx43 knockout mice using optical mapping | Q59241313 | ||
Heterogeneous Expression of Gap Junction Channels in the Heart Leads to Conduction Defects and Ventricular Dysfunction | Q63425482 | ||
Reduced content of connexin43 gap junctions in ventricular myocardium from hypertrophied and ischemic human hearts | Q70470418 | ||
Remodeling of gap junctional channel function in epicardial border zone of healing canine infarcts | Q73035933 | ||
Remodeling of cell-cell and cell-extracellular matrix interactions at the border zone of rat myocardial infarcts | Q73204507 | ||
Accelerated onset and increased incidence of ventricular arrhythmias induced by ischemia in Cx43-deficient mice | Q73419545 | ||
P433 | issue | 10 | |
P304 | page(s) | 1035-1041 | |
P577 | publication date | 2004-10-21 | |
P1433 | published in | Circulation Research | Q2599020 |
P1476 | title | Modulation of cardiac gap junction expression and arrhythmic susceptibility | |
P478 | volume | 95 |
Q30576277 | A micropatterning approach for imaging dynamic Cx43 trafficking to cell-cell borders |
Q35202968 | A possible mechanism of halocarbon-induced cardiac sensitization arrhythmias |
Q47835369 | Adipose-derived stem cell adhesion on laminin-coated microcarriers improves commitment toward the cardiomyogenic lineage |
Q51792723 | Altered expression of connexin43 contributes to the arrhythmogenic substrate during the development of heart failure in cardiomyopathic hamster. |
Q80619238 | Altered expression of gap junction connexin proteins may partly underlie heart rhythm disturbances in the streptozotocin-induced diabetic rat heart |
Q42871100 | Angiotensin II type 1a receptor signalling directly contributes to the increased arrhythmogenicity in cardiac hypertrophy |
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Q27314754 | Calreticulin induces dilated cardiomyopathy |
Q58764685 | Cardiac Arrhythmias as Manifestations of Nanopathies: An Emerging View |
Q92372231 | Cardiac Cx43 and ECM Responses to Altered Thyroid Status Are Blunted in Spontaneously Hypertensive versus Normotensive Rats |
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Q36730499 | Cardiac conduction in isolated hearts of genetically modified mice--Connexin43 and salts |
Q37591571 | Cardiac connexins and impulse propagation |
Q38042920 | Cardiac electrophysiology in mice: a matter of size |
Q93195967 | Cardiac remodeling and arrhythmogenesis are ameliorated by administration of Cx43 mimetic peptide Gap27 in heart failure rats |
Q35176717 | Cardiac-restricted angiotensin-converting enzyme overexpression causes conduction defects and connexin dysregulation. |
Q24657715 | Cardiomyocyte cyclooxygenase-2 influences cardiac rhythm and function |
Q27324330 | Cardiomyocyte-specific expression of lamin a improves cardiac function in Lmna-/- mice |
Q36269300 | Cardiomyocyte-specific overexpression of the ubiquitin ligase Wwp1 contributes to reduction in Connexin 43 and arrhythmogenesis |
Q33382903 | Cardiovascular imaging using two-photon microscopy |
Q34919617 | Cell junctions in the specialized conduction system of the heart |
Q35921229 | Cell-to-cell coupling in engineered pairs of rat ventricular cardiomyocytes: relation between Cx43 immunofluorescence and intercellular electrical conductance |
Q35048220 | Characterization of gap junction remodeling in epicardial border zone of healing canine infarcts and electrophysiological effects of partial reversal by rotigaptide |
Q36729018 | Clinical Diagnosis of Electrical Versus Anatomic Left Ventricular Hypertrophy: Prognostic and Therapeutic Implications |
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Q47954061 | Combined reduction of intercellular coupling and membrane excitability differentially affects transverse and longitudinal cardiac conduction |
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Q37058574 | Connexin 43 and CaV1.2 Ion Channel Trafficking in Healthy and Diseased Myocardium. |
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Q35904761 | Connexin43 mutation causes heterogeneous gap junction loss and sudden infant death |
Q47989343 | Connexins and Disease |
Q38263987 | Connexins in the heart. |
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Q46674136 | Downregulated myocardial connexin 43 and suppressed contractility in rabbits subjected to a cholesterol-enriched diet |
Q36440890 | Dysregulation of cell adhesion proteins and cardiac arrhythmogenesis |
Q43064166 | Effect of pravastatin on ventricular arrhythmias in infarcted rats: role of connexin43. |
Q53098974 | Effects of aluminum oxide (Al2O3) nanoparticles on ECG, myocardial inflammatory cytokines, redox state, and connexin 43 and lipid profile in rats: possible cardioprotective effect of gallic acid. |
Q41790425 | Effects of ischemic preconditioning on ischemia/reperfusion-induced arrhythmias by upregulatation of connexin 43 expression |
Q37295191 | Effects of valsartan on ventricular arrhythmia induced by programmed electrical stimulation in rats with myocardial infarction |
Q33290232 | Electrical and structural remodeling in left ventricular hypertrophy-a substrate for a decrease in QRS voltage? |
Q36054423 | Electrical coupling and propagation in engineered ventricular myocardium with heterogeneous expression of connexin43 |
Q37304993 | Electrical remodeling contributes to complex tachyarrhythmias in connexin43-deficient mouse hearts |
Q42090742 | Electrophysiological mechanisms of antiarrhythmic protection during hypothermia in winter hibernating versus nonhibernating mammals |
Q38206259 | Engineering cardiac cell junctions in vitro to study the intercalated disc |
Q37352705 | Engineering prokaryotic channels for control of mammalian tissue excitability |
Q38175899 | Engineering the extracellular matrix for clinical applications: endoderm, mesoderm, and ectoderm |
Q57258973 | Exome-chip meta-analysis identifies novel loci associated with cardiac conduction, including ADAMTS6 |
Q37461338 | Extracellular sodium and potassium levels modulate cardiac conduction in mice heterozygous null for the Connexin43 gene. |
Q37374412 | Focal gap junction uncoupling and spontaneous ventricular ectopy. |
Q35543454 | GATA6 reporter gene reveals myocardial phenotypic heterogeneity that is related to variations in gap junction coupling. |
Q97070246 | GJA1-20k attenuates Ang II-induced pathological cardiac hypertrophy by regulating gap junction formation and mitochondrial function |
Q36300072 | Gap junction remodeling and cardiac arrhythmogenesis in a murine model of oculodentodigital dysplasia. |
Q26850591 | Gap junctions |
Q37276201 | Genetic influence on electrocardiogram time intervals and heart rate in aging mice |
Q52866707 | Genetic variations involved in sudden cardiac death and their associations and interactions. |
Q90622969 | Heart failure as a substrate and trigger for ventricular tachycardia |
Q39830669 | Histone deacetylase inhibition reduces cardiac connexin43 expression and gap junction communication. |
Q57300054 | Hydrogen Sulfide (HS)-Releasing Compounds: Therapeutic Potential in Cardiovascular Diseases |
Q41349390 | Hydrogen sulfide attenuates cardiac hypertrophy and fibrosis induced by abdominal aortic coarctation in rats |
Q42175493 | Immunohistochemical evaluation of cardiac connexin43 in rats exposed to low-frequency noise |
Q47382701 | Increased Cardiac Arrhythmogenesis Associated with Gap Junction Remodeling with Upregulation of RNA Binding Protein FXR1. |
Q33950331 | Influence of natriuretic peptide receptor-1 on survival and cardiac hypertrophy during development |
Q99617546 | Inhibition of ERK or Akt ameliorates intimal hyperplasia via up-regulation of Cx37 and down-regulation of Cx43 in balloon injury rat model |
Q37488279 | Intercellular electrical communication in the heart: a new, active role for the intercalated disk |
Q35906409 | Interstitial volume modulates the conduction velocity-gap junction relationship |
Q39347104 | Intracellular trafficking pathways of Cx43 gap junction channels |
Q48015814 | Intramolecular signaling in a cardiac connexin: Role of cytoplasmic domain dimerization. |
Q36635288 | Intramyocardial injection of hydrogel with high interstitial spread does not impact action potential propagation |
Q41851745 | Investigation of connexin 43 uncoupling and prolongation of the cardiac QRS complex in preclinical and marketed drugs. |
Q36793175 | Islands of spatially discordant APD alternans underlie arrhythmogenesis by promoting electrotonic dyssynchrony in models of fibrotic rat ventricular myocardium |
Q37294619 | K ATP channel agonists preserve connexin43 protein in infarcted rats by a protein kinase C-dependent pathway |
Q34985700 | Knockout of the neural and heart expressed gene HF-1b results in apical deficits of ventricular structure and activation |
Q36975761 | LRP6 acts as a scaffold protein in cardiac gap junction assembly |
Q30867239 | Left ventricular hypertrophy: The relationship between the electrocardiogram and cardiovascular magnetic resonance imaging. |
Q30492558 | Limited forward trafficking of connexin 43 reduces cell-cell coupling in stressed human and mouse myocardium |
Q34397295 | Mechanisms of cardiac conduction: a history of revisions |
Q35672091 | Mice with cardiac overexpression of peroxisome proliferator-activated receptor γ have impaired repolarization and spontaneous fatal ventricular arrhythmias |
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Q42733206 | Mitogen-activated protein kinase kinase 4 deficiency in cardiomyocytes causes connexin 43 reduction and couples hypertrophic signals to ventricular arrhythmogenesis. |
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Q39038606 | Murine Electrophysiological Models of Cardiac Arrhythmogenesis |
Q34426537 | Mutations in cardiovascular connexin genes |
Q51026513 | Myocardial connexin-43 is upregulated in response to acute cardiac injury in rats |
Q35965024 | Myofibroblasts cause heterogeneous Cx43 reduction and are unlikely to be coupled to myocytes in the healing canine infarct |
Q36561910 | N-cadherin haploinsufficiency affects cardiac gap junctions and arrhythmic susceptibility. |
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Q28571997 | Ordered assembly of the adhesive and electrochemical connections within newly formed intercalated disks in primary cultures of adult rat cardiomyocytes |
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Q33932684 | Reduced intercellular coupling leads to paradoxical propagation across the Purkinje-ventricular junction and aberrant myocardial activation. |
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Q35652745 | Reduction and redistribution of gap and adherens junction proteins after ischemia and reperfusion |
Q36870641 | Remodelling of gap junctions and connexin expression in diseased myocardium. |
Q42220183 | Role of Cholinergic Innervation and RGS2 in Atrial Arrhythmia. |
Q27015796 | Role of the intercalated disc in cardiac propagation and arrhythmogenesis |
Q51495849 | Sarcomeric lesions and remodeling proximal to intercalated disks in overload-induced cardiac hypertrophy. |
Q41131251 | Selective inhibition of Cx43 hemichannels by Gap19 and its impact on myocardial ischemia/reperfusion injury. |
Q46087974 | Sex-dependent impairment of cardiac action potential conduction in type 1 diabetic rats |
Q33332056 | Short-term pacing in the mouse alters cardiac expression of connexin43. |
Q46020424 | Similar arrhythmicity in hypertrophic and fibrotic cardiac cultures caused by distinct substrate-specific mechanisms. |
Q51305097 | Similarities and differences between electrocardiogram signs of left bundle-branch block and left-ventricular uncoupling. |
Q36098333 | Slow conduction in mixed cultured strands of primary ventricular cells and stem cell-derived cardiomyocytes |
Q28270379 | Sodium current deficit and arrhythmogenesis in a murine model of plakophilin-2 haploinsufficiency. |
Q39045207 | Sox4 mediates Tbx3 transcriptional regulation of the gap junction protein Cx43. |
Q34378881 | Spatiotemporal induction of matrix metalloproteinase-9 transcription after discrete myocardial injury |
Q37867552 | Spontaneous high-frequency action potential |
Q34974501 | Super-resolution imaging reveals that loss of the C-terminus of connexin43 limits microtubule plus-end capture and NaV1.5 localization at the intercalated disc. |
Q92702916 | Suppression of β1-Adrenoceptor Autoantibodies is Involved in the Antiarrhythmic Effects of Omega-3 Fatty Acids in Male and Female Hypertensive Rats |
Q35224007 | Susceptibility to arrhythmia in the infarcted heart depends on myofibroblast density. |
Q37138964 | Temporal changes in expression of connexin 43 after load-induced hypertrophy in vitro. |
Q36902136 | The "tail" of Connexin43: An unexpected journey from alternative translation to trafficking. |
Q36654881 | The cardiac connexome: Non-canonical functions of connexin43 and their role in cardiac arrhythmias |
Q35629419 | The connexin43 carboxyl terminus and cardiac gap junction organization |
Q39581161 | The noncanonical functions of Cx43 in the heart |
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Q38934306 | The role of Epac in the heart. |
Q38181536 | Trafficking highways to the intercalated disc: new insights unlocking the specificity of connexin 43 localization. |
Q55430522 | Up-regulated Cx43 phosphorylation at Ser368 prolongs QRS duration in myocarditis. |
Q30578202 | Up-regulation of heme oxygenase-1 after infarct initiation reduces mortality, infarct size and left ventricular remodeling: experimental evidence and proof of concept |
Q42472660 | Upregulation of SERCA2a following short-term ACE inhibition (by enalaprilat) alters contractile performance and arrhythmogenicity of healthy myocardium in rat. |
Q62667919 | Ventricular arrhythmogenesis following slowed conduction in heptanol-treated, Langendorff-perfused mouse hearts |
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