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Biomedical subjects

W Haverkamp

Publications and source records attributed to W Haverkamp.

At least 55 records · Page 3Linked to original sources

A patient with "atrial torsades de pointes".

A patient with long QT syndrome and a history of palpitations underwent electrophysiologic study. Runs of polymorphic self-terminating atrial tachyarrhythmias were easily induced and occurred spontaneously several times. Atrial monophasic action potential (MAP) durations were prolonged at short pacing cycle lengths. Premature high right atrial extrastimuli prolonged MAP durations in the low right atrium, resulting in an inverse electrical restitution curve, and increased dispersion of repolarization. MAP morphology showed gradually increasing early afterdepolarizations. When the arrhythmia was initiated, a new action potential reproducibly emerged from these afterdepolarizations. To the knowledge of the authors, this is the first reported case of "atrial torsades de pointes" in a patient.

Action Potentials↗

Arrhythmias in heart failure: current concepts of mechanisms and therapy.

About one half of deaths in patients with heart failure are sudden, mostly due to ventricular tachycardia (VT) degenerating to ventricular fibrillation or immediate ventricular fibrillation. In severe heart failure, sudden cardiac death also may occur due to bradyarrhythmias. Other dysrhythmias complicating heart failure include atrial and ventricular extrasystoles, atrial fibrillation (AF), and sustained and nonsustained ventricular tachyarrhythmias. The exact mechanism of the increased vulnerability to arrhythmias is not known. Depending on the etiology of heart failure, different preconditions, including ischemia or structural alterations such as fibrosis or myocardial scarring, may be prominent. Reentrant mechanisms around scar tissue, afterdepolarizations, and triggered activity due to changes in calcium metabolism significantly contribute to arrhythmogenesis. Furthermore, alterations in potassium currents leading to action potential prolongation and an increase in dispersion of repolarization play a significant role. Treatment of arrhythmias is necessary either because patients are symptomatic or to reduce the risk for sudden cardiac death. The individual history, left ventricular function, electrophysiologic testing, and the signal-averaged ECG give useful information for identifying patients at risk for sudden cardiac death. The implantable cardioverter defibrillator (ICD) has evolved as a promising therapy for life-threatening arrhythmias. A potential role may exist for antiarrhythmic drugs, mainly amiodarone. There is growing evidence that patients with sustained VT or a history of resuscitation have the best outcome with ICD therapy regardless of the degree of heart failure. Many of these patients require additional antiarrhythmic therapy because of AF or nonsustained VTs that may activate the device. Catheter ablation or map-guided endocardial resection are additional options in selected patients but seldom represent the only therapeutic strategy.

Anti-Arrhythmia Agents↗

Gene-specific differences in the circadian variation of ventricular repolarization in the long QT syndrome: a key to sudden death during sleep?

BACKGROUND: In the long QT syndrome (LQTS) most life-threatening cardiac events occur in association with physical or emotional stress. However, a minority of patients dies suddenly during sleep; intriguingly, these sleep-related sudden deaths tend to cluster in families. The mechanism(s) underlying this phenomenon and the reason why it occurs in few selected families are unknown. Recently, some of the LQTS genes have been identified leading to three main subgroups (LQT1, LQT2, LQT3) associated respectively with mutations affecting the following ionic currents involved in the control of ventricular repolarization: I(Ks), I(Kr), I(Na). We have recently observed that cardiac events nighttime are rare in LQT1 and frequent in LQT3 patients. METHODS: We studied 26 LQTS patients all genotyped (11 LQT1, 9 LQT2, 6 LQT3) and 26 healthy controls matched by age and gender. Using a specific software, 24-hour ambulatory ECG recordings were performed and the QT interval was measured in order to allow comparison between QTc nighttime and daytime. RESULTS: The main finding is that while LQT1 patients show a trend for modest QTc shortening and LQT2 patients a trend for modest lengthening nighttime versus daytime, LQT3 patients show clear lengthening of the QTc nighttime. These changes are not explained by heart rate changes or by the use of beta-blockers. CONCLUSIONS: The marked tendency for further QT prolongation nighttime, which clearly increases arrhythmic risk, present among LQT3 patients and absent among LQT1 patients, provides an explanation for the gene-specific higher risk for sudden death during sleep for LQT3 compared to LQT1 patients.

Adolescent↗

Fetoscopic transesophageal electrocardiography and stimulation in fetal sheep: a minimally invasive approach aimed at diagnosis and termination of therapy-refractory supraventricular tachycardias in human fetuses.

BACKGROUND: Therapy-refractory supraventricular tachycardia commonly results in hydrops and death in human fetuses. The purpose of this study in fetal sheep was to assess the feasibility of a minimally invasive fetoscopic approach for fetal transesophageal electrocardiography and stimulation aimed at diagnosis and termination of these tachycardias. METHODS AND RESULTS: We studied a total of 10 fetal sheep (87 to 103 days of gestation; term=145 days). We entered the amniotic cavity using a percutaneous fetoscopic approach and placed various electrophysiology catheters into the fetal esophagus. We recorded the number of animals in which fetoscopic transesophageal electrocardiography and stimulation were successful and assessed pacing success and thresholds for different catheters. In addition, we monitored for potential adverse effects from stimulation and for other complications of the operation. Recording of transesophageal electrocardiograms was successful in all fetal sheep. Capture during stimulation was successfully documented by additional fetal bipolar surface electrocardiograms in 7 fetuses. In fetuses in which fetal surface electrocardiograms were not recorded, pacing stimulus artifacts interfered with documentation of capture. Although stimulation thresholds were high, the maternal rhythm was not affected by fetal stimulation. CONCLUSIONS: Fetoscopic fetal transesophageal electrocardiography and stimulation are feasible in fetal sheep. This minimally invasive approach might have the potential to improve diagnosis and management of therapy-refractory supraventricular tachycardias in human fetuses.

Animals↗

Genetic and molecular basis of cardiac arrhythmias: impact on clinical management parts I and II.

Genetic approaches have succeeded in defining the molecular basis of an increasing array of heart diseases, such as hypertrophic cardiomyopathy and the long-QT syndromes, associated with serious arrhythmias. Importantly, the way in which this new knowledge can be applied to managing patients and to the development of syndrome-specific antiarrhythmic strategies is evolving rapidly because of these recent advances. In addition, the extent to which new knowledge represents a purely research tool versus the extent to which it can be applied clinically is also evolving. The present article represents a consensus report of a meeting of the European Working Group on Arrhythmias. The current state of the art of the molecular and genetic basis of inherited arrhythmias is first reviewed, followed by practical advice on the role of genetic testing in these and other syndromes and the way in which new findings have influenced current understanding of the molecular and biophysical basis of arrhythmogenesis.

Arrhythmias, Cardiac↗

The LQT syndromes--current status of molecular mechanisms.

Our knowledge on the molecular genetics of inherited cardiac arrhythmias is very recent in comparison to the advances of genetics achieved in other inherited cardiac disorders. This is related to the high mortality and early disease onset of these arrhythmias resulting in mostly small nucleus families. Thus, traditional genetic linkage studies that are based on the genetic information obtained from large multi-generation families were made difficult. In 1991, the first chromosomal locus for congenital long-QT (LQT) syndrome was identified on chromosome 11p15.5 (LQT1 locus) by linkage analysis. Meanwhile, the disease-causing gene at the LQT1 locus (KCNQ1), a gene encoding a K+ channel subunit of the IKs channel, and three other, major genes, all encoding cardiac ion channel components, have been identified. Taken together, LQT syndrome turned out to be a heterogeneous channelopathy. Moreover, the power of linkage studies to reveal the genetic causes of the LQT syndrome was also important to identify unknown but fundamental channel components that contribute to the ion currents tuning ventricular repolarization. In-vitro expression of the altered ion channel genes demonstrated in each case that the altered ion channel function produces prolongation of the action potential and thus the increasing propensity to ventricular tachyarrhythmias. Since these ion channels are pharmacological targets of many antiarrhythmic (and other) drugs, individual and potentially deleterious drug responses may be related to genetic variation in ion channel genes. Very recently, also in acquired LQT syndrome, which is a frequent clinical disorder in cardiology a genetic basis has been proposed in part since mutations in LQT genes have been specifically found. The discovery of ion channel defects in LQT syndrome represents the major achievement in our understanding and implies potential therapeutic options. The knowledge of the genomic structure of the LQT genes now offers the possibility to detect the underlying genetic defect in 80-90% of all patients. With this specific information, containing the type of ion channel (Na+ versus K+ channel) and electrophysiological alteration by the mutation (loss-of-function versus change-of-function mutation), gene-directed, elective drug therapies have been initiated in genotyped LQT patients. Based on preliminary data, that were supported by in vitro studies, this approach may be useful in recompensating the characteristic phenotypes in some LQT patients. Mutation detection is a new diagnostic tool which may become of more increasing importance in patients with a normal QTc or just a borderline prolongation of the QTc interval at presentation. These patients represent approximately 40% of all familial cases. Moreover, LQT3 syndrome and idiopathic ventricular fibrillation are allelic disorders and genetically overlap. In both mutations in the LQT3 gene SCN5A encoding the Na+ channel alpha-subunit for INa have been reported. Thus, the clinical nosology of inherited arrhythmias may be reconsidered after elucidation of the underlying molecular bases. Meanwhile, genotype-phenotype correlations in large families are on the way to evaluate intergene, interfamilial, and intrafamilial differences in the clinical phenotype reflecting gene specific, gene-site specific, and individual consequences of a given mutation. LQT syndrome is phenotypically heterogeneous due to the reduced penetrance and variable expressivity associated with the mutations. This paper discusses the current data on molecular genetics and genotype-phenotype correlations and the implications for diagnosis and treatment.

Chromosome Mapping↗

Transient local changes in right ventricular monophasic action potentials due to ajmaline in a patient with Brugada Syndrome.

A 48-year-old patient with recurrent episodes of palpitations and syncope presented with transient ST segment elevation in the right precordial ECG leads. Structural heart disease was excluded. No arrhythmias were inducible by programmed ventricular stimulation. Parallel to ST elevation after intravenous ajmaline, a gradual and reversible delay in the upstroke of right ventricular (RV) monophasic action potentials (MAPs) occurred that was most marked in the RV outflow tract and nearly absent at right free-wall recordings. Ajmaline led to a cycle length-dependent increase in RV dispersion of repolarization. Thus, right endocardial MAPs may demonstrate regionally different action potential changes that may contribute to the ECG changes in Brugada syndrome.

Action Potentials↗

Torsade de pointes secondary to d,l-sotalol after catheter ablation of incessant atrioventricular reentrant tachycardia--evidence for a significant contribution of the "cardiac memory".

Radiofrequency catheter ablation of a right septal accessory pathway was performed in a 66-year-old patient with incessant orthodromic atrioventricular reentrant tachycardia. Intravenous administration of flecainide, ajmaline, verapamil, and d,l-sotalol had been ineffective in controlling the tachycardia. After the ablation procedure, precordial T-wave inversion was observed during sinus rhythm. These repolarization abnormalities persisted and were suggested to represent "cardiac memory." Three days later, atrial fibrillation with a fast ventricular response developed and oral d,l-sotalol, which had been well tolerated previously on a long-term basis, was started again. However, at this time, and in the presence of the persisting repolarization abnormalities, the T waves became deeper and broader within a few hours after the introduction of d,l-sotalol. Marked QT prolongation that was paralleled by the occurrence of repeated episodes of torsade de pointes developed. Serum electrolytes were normal. Direct current cardioversion was necessary due to the degeneration of torsade de pointes into ventricular fibrillation. Further sustained arrhythmia episodes were suppressed by temporary endocardial ventricular pacing. The patient recovered without any sequela. This case demonstrates that repolarization abnormalities after catheter ablation, which may be due, at least in part, to the "cardiac memory," are not always benign but may contribute significantly to proarrhythmia.

Administration, Oral↗

Clofilium in the isolated perfused rabbit heart: a new model to study proarrhythmia induced by class III antiarrhythmic drugs.

OBJECTIVE: The clinical usefulness of class III antiarrhythmic drugs for the treatment of tachyarrhythmias is limited by their potential proarrhythmic effects, mainly torsades-depointes (TdP). The goal of this experimental study was to develop an isolated whole-heart model exhibiting typical characteristics of class III drug-induced ventricular arrhythmias. METHODS: Isolated rabbit hearts were perfused with a Krebs-Henseleit buffer containing 10 microM clofilium and then exposed to a modified Krebs-Henseleit buffer with 2.0 mM K+ and 0.5 mM Mg2+. Hearts subjected to either clofilium alone or modified buffer alone were used as controls. RESULTS: Under clofilium the QT interval increased from 187 +/- 16 to 282 +/- 33 ms. Within 8 to 25 s after the change of the perfusate, ventricular arrhythmias developed in all hearts associated with a further QT prolongation to 380 +/- 73 ms when the first ventricular extrasystole occurred. Simultaneously, the monophasic action potential durations increased relatively more during late repolarization; from 99 +/- 21 to 110 +/- 25 ms (+11%) at 50% repolarization, from 143 +/- 24 to 178 +/- 40 ms (+24%) at 70%, and from 200 +/- 30 to 275 +/- 53 ms (+38%) at 90%. The predominant rhythm was polymorphic with either two alternating or multiple QRS morphologies exhibiting the characteristic features of torsades-depointes. All control hearts stayed in normal sinus rhythm. CONCLUSION: Under the conditions selected, the isolated perfused rabbit heart represents a useful experimental approach to study the proarrhythmic effects of class III agents. This model provides a convenient way to manipulate the ionic and pharmacologic milieu in a preparation conserving the functional anatomy of the whole organ without interference by cardiovascular reflexes. It might be useful for analyzing the conditions favoring and preventing drug-induced torsades-depointes.

Animals↗

Experimental models of torsade de pointes.

Torsade de pointes is a potentially life threatening form of polymorphic ventricular tachycardia typically seen in the setting of congenital and acquired abnormal QT-prolongation. Numerous in vitro studies have investigated basic ionic mechanisms underlying delayed repolarization. The role of different ion channels and the induction of early afterdepolarizations have been studied in various cardiac cells including M cells. In addition, isolated heart models with and without electrical stimulation and/or the use of drugs which prolong repolarization have been developed in recent years. Some of these models have simulated conditions likely to exist in the clinical setting of torsade de pointes, such as bradycardia and hypokalemia. In in vivo canine and rabbit models, torsade-like polymorphic ventricular tachyarrhythmias have been induced by the administration of different agents such as cesium, neurotoxins, e.g., anthopleurin or various class III drugs under conditions designed to mimic the clinical situation. In the context of recent advances in the molecular genetics of long QT syndrome, those models which have used sodium or potassium channel blockers have gained particular interest. Based on all experimental studies it seems probable that the first beats of torsade occur due to early afterdepolarizations and triggered activity. The development of subsequent beats is less clear. Reentry based on inhomogeneity of refractoriness has been suggested as the underlying mechanism.

Animals↗

Drug-related torsades de pointes in the isolated rabbit heart: comparison of clofilium, d,l-sotalol, and erythromycin.

Torsades de pointes is a potentially life-threatening form of polymorphic ventricular tachyarrhythmia typically seen in the presence of repolarization-prolonging agents. We investigated this particular form of tachyarrhythmia in the isolated, perfused rabbit heart. The experimental model was designed to reproduce conditions that are clinically known to be associated with an increased propensity to the development of torsades de pointes. The class III agent clofilium (1 microM) and d,l-sotalol (10 microM), as well as the antibiotic erythromycin (30-150 microM) were infused in the presence of either normal (5.88 mM) or low (1.5 mM) potassium concentration in sinus-driven or atrioventricular (AV)-blocked hearts. Ventricular tachyarrhythmias spontaneously emerged in the clofilium-, d,l-sotalol-, and erythromycin-treated AV-blocked hearts. The episodes showed typical features of torsades de pointes found in humans. They developed within 4-12 min after the onset of infusion, were normally nonsustained, and only rarely degenerated into ventricular fibrillation. Electrical stimulation at cycle lengths <600 ms and perfusion with MgSO4 suppressed arrhythmic activity. In the d,l-sotalol- and erythromycin-treated hearts, torsades de pointes occurred only in the presence of hypokalemia and bradycardia, whereas, in the presence of clofilium, bradycardia alone caused torsades de pointes. Monophasic action-potential recordings demonstrated early afterdepolarizations in endocardial and epicardial recordings. Thus the isolated AV-blocked rabbit heart represents a model for studying drug-related torsades de pointes and its mechanism.

Animals↗

Divergent effect of acute ventricular dilatation on the electrophysiologic characteristics of d,l-sotalol and flecainide in the isolated rabbit heart.

INTRODUCTION: The interaction between acute ventricular dilatation (AVD) as one aspect of ventricular dysfunction and Class I and III antiarrhythmic drugs is uncertain. We therefore investigated the effects of AVD on the electrophysiologic properties of d,l-sotalol and flecainide. METHODS AND RESULTS: The isolated rabbit heart was used as a model of AVD. The ventricular size and, therefore, the diastolic pressure were modified by sudden volume changes of a fluid-filled balloon placed in the left ventricle. Pacing was performed alternately using epi- and endocardial monophasic action potential (MAP)-pacing catheters at cycle lengths from 1,000 to 300 msec. d,l-Sotalol (10 microM) resulted in a significant (P < 0.05) lengthening of refractoriness (+13.5% +/- 3.1%), MAP duration (+14.9% +/- 3.2%), and QT interval (+15.5% +/- 4.1%) (mean +/- SEM at 1,000 msec). These effects had a reverse rate-dependence. AVD to a diastolic pressure of 30 mmHg reduced refractoriness and left ventricular MAP duration. In comparison with the control group with the same extent of AVD, d,l-sotalol still led to a significant prolongation of repolarization for all cycle lengths except 300 msec, so that its effects were not absolutely but relatively preserved. In contrast, flecainide (2 microM) had no significant effects on refractoriness or MAP duration. It led to a significant, rate-dependent increase of pacing thresholds (+47.6% +/- 8.2%), prolongation of QRS (+48.8% +/- 5.6%), and conduction time (+78.6% +/- 8.6%) (mean +/- SEM at 300 msec). In the flecainide group, AVD significantly increased the normal rate-dependent prolongation of QRS (+16.7% +/- 5.5%) and conduction time (+17.1% +/- 4.3%). CONCLUSION: Our data demonstrate that, during AVD, the Class III effect of d,l-sotalol is preserved, whereas flecainide's effect of slowing conduction is exaggerated. This may contribute to flecainide-related proarrhythmia in certain clinical situations.

Action Potentials↗

Philosophy of antiarrhythmic approaches to ventricular tachyarrhythmias close to the 21st century.

The scientific basis and the reasoning underlying the changes in antiarrhythmic approaches to ventricular arrhythmias during recent decades are discussed. The early enthusiasm in the use of antiarrhythmic drugs in patients after myocardial infarction to prevent sudden cardiac death was severely affected by the results of the Cardiac Arrhythmia Suppression Trial (CAST) which show an increased mortality of patients on sodium-channel antagonist antiarrhythmic drugs. A transient euphoria for drugs that prolong repolarization received criticism after premature termination of the Survival With Oral D-sotalol-trial (SWORD). Recently, attention has focused on the use of the implantable cardioverter defibrillator in both secondary and primary prevention of sudden death. In contrast, catheter ablation, although very useful in supraventricular tachycardia, still plays a limited role in the management of ventricular tachyarrhythmias in the presence of organic heart disease.

Anti-Arrhythmia Agents↗