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Biomedical subjects

M V Elizari

Publications and source records attributed to M V Elizari.

At least 19 recordsLinked to original sources

High prevalence of antibodies against beta 1- and beta 2-adrenoceptors in patients with primary electrical cardiac abnormalities.

OBJECTIVES: This study sought to determine the prevalence of autoantibodies directed against the beta-adrenoceptors in patients with primary electrical cardiac abnormalities, including atrial arrhythmias, ventricular arrhythmias and conduction disturbances, in the absence of any other cardiac abnormality. BACKGROUND: Using synthetic peptides corresponding to the predicted sequences for the second extracellular loop of the human beta 1- and beta 2-adrenoceptors as antigenic targets, autoantibodies directed against the beta-adrenoceptors were recently shown to occur in patients with idiopathic dilated cardiomyopathy and Chagas' heart disease. METHODS: Eighty-six patients (57 with primary electrical abnormalities, 29 with idiopathic dilated cardiomyopathy) and 101 healthy and cardiopathic control subjects were studied. Antibodies against the beta 1- and beta 2-peptides were detected with an enzyme immunoassay performed in blinded manner. In nine selected (seropositive) cases, the immunoglobulin G (IgG) fraction was tested for functional effects on the rate of beating of cultured neonatal rat cardiomyocytes. RESULTS: Antibodies recognizing the beta 1- and beta 2-peptides were found in 11 (52.3%) of 21 patients with ventricular arrhythmias (p < 0.01), 5 (35.7%) of 14 patients with conduction disturbances (p < 0.05), 3 (13.6%) of 22 patients with atrial arrhythmias (p > 0.05) and 11 (37.9%) of 29 patients with dilated cardiomyopathy (p < 0.05) compared with 15 (14.8%) of 101 control subjects. A rapid increase in the rate of beating of the cultured cardiomyocytes was induced by IgG from a selected group of patients, suggesting an agonist-like interaction with a functional epitope. This response was mediated by stimulation of both the beta 1- and beta 2-adrenoceptors in the patients with primary ventricular arrhythmias but only the beta 1-adrenoceptors in the patients with idiopathic dilated cardiomyopathy. CONCLUSIONS: Primary ventricular arrhythmias and conduction disturbances, like idiopathic cardiomyopathy, show a high prevalence of antibodies interacting with functional epitopes of the beta-adrenoceptors, suggesting a common or similar abnormal immunoregulatory process.

Adult

Antibodies to beta-adrenergic receptors disclosing agonist-like properties in idiopathic dilated cardiomyopathy and Chagas' heart disease.

Recent studies confirm the existence of antibodies (Abs) to beta-adrenoceptors in patients with idiopathic dilated cardiomyopathy and Chagas' heart disease. These Abs can be shown to exert both stimulatory and inhibitory effects, which may play a role in the development of the cardiac abnormalities known to occur in these diseases, including advanced heart failure. The hypothesis is advanced that Chagas' heart disease and some forms of idiopathic dilated cardiomyopathy may represent, at least partially, a form of "adrenergic cardiomyopathy."

Animals

Intraventricular conduction disturbances in civilian flying personnel: left anterior hemiblock.

We undertook a retrospective study of the natural history, clinical significance, prognosis, associated conduction disturbances, and pathology, as well as flying fitness qualification of 247 cases of left anterior hemiblock (LAH), detected in a presumably healthy population of 8,915 male individuals engaged in civilian flying activities (prevalence: 2.77%). The cases were divided into three groups according to the electrical axis value of the first electrocardiogram (ECG). The group with the slow mode of appearance of LAH was the most common. If associated with right bundle branch block, LAH usually evolves first. LAH could not be ascribed to any definite pathology; neither was it a forerunner of left bundle branch block nor complete atrioventricular block. Not one episode of syncope nor of sudden incapacitation was reported. As a mere ECG finding, LAH does not modify an aviator's fitness qualification. If another conduction disturbance develops, qualification will depend on the results of complementary studies, non-invasive or invasive, according to any associated conduction disturbance.

Adult

Contrasting effects of verapamil and procainamide on rate-dependent bundle branch block: pharmacologic evidence for the role of depressed sodium channel responses.

The mechanisms responsible for intermittent bundle branch block are still under debate. The role of the time-dependent behavior of the slow calcium channel has recently been emphasized. To test this hypothesis and ascertain the possible involvement of the fast sodium channel, the effects of the slow calcium channel blocker verapamil and the fast sodium channel blocker procainamide were compared in 10 patients with intermittent bundle branch block. All 10 patients showed bundle branch block during spontaneous sinus rhythm. Maneuvers to slow cardiac rate (that is, carotid sinus massage, Valsalva maneuver) were performed to identify normal conduction as well as phase 4 bundle branch block. Thus, the ranges of diastolic intervals (RR) resulting in phase 3 (tachycardia-dependent) bundle branch block, phase 4 (bradycardia-dependent) bundle branch block and normal conduction were measured in two control studies performed before intravenous administration of verapamil (control 1) and procainamide (control 2) and at the peak effect of both drugs. In the control studies, all 10 patients showed phase 3 bundle branch block, whereas phase 4 bundle branch block occurred in only 4 patients. The ranges of phase 3 bundle branch block, phase 4 bundle branch block and normal conduction were very similar in control studies 1 and 2. The phase 3 bundle branch block range was slightly shortened by verapamil (983 +/- 83.5 ms in control 1; 930 +/- 69.4 ms at the peak effect of verapamil), whereas phase 4 bundle branch block remained unchanged. In contrast, conduction was systematically worsened by procainamide.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult

Rate dependence and supernormality in excitability of guinea pig papillary muscle.

It is well known that in most cardiac tissues an increase in rate results in a decrease of excitability and, eventually, conduction block. We used microelectrode techniques to evaluate the rate and time dependence of excitation latency in 27 isolated guinea pig papillary muscles (GPPM). Latency was measured as the interval between the stimulus onset and action potential upstroke. When the intensity of current was just suprathreshold, prolongation of the basic cycle length (BCL) from 300 to 1,000 ms produced an increase in latency or failure of excitation. Such behavior was observed with extracellular as well as intracellular stimulation. Rate-dependent changes in latency were maximal during the first 10-20 s following the rate change and reached a steady state in approximately 200 s. Application of premature beats revealed the presence of a "supernormal phase" in which latency abbreviated. Strength-interval and strength-duration curves demonstrated that changes in excitability accurately paralleled those observed in latency. Hence, supernormal excitability at the end of the phase 3 repolarization was consistently observed in all ventricular muscle experiments. Deceleration-induced decrease of excitability was attended by hyperpolarization, increase of action potential upstroke velocity (Vmax) and action potential amplitude, and decrease in membrane resistance. Our data suggest that paradoxical rate-related changes of excitability in GPPM are the result of changes in the passive membrane properties. Under conditions of depressed conductivity, this particular behavior may account for the occurrence of bradycardia-dependent block.

Animals

Supernormal conduction in the accessory pathway of patients with overt or concealed ventricular pre-excitation.

It was recently shown that supernormal conduction in the diseased His-Purkinje system is more common than previously thought, and is always associated with prolongation of refractoriness. To assess whether supernormal conduction could also occur in the accessory pathway of patients with ventricular pre-excitation, 21 patients with manifestly prolonged refractoriness in the accessory pathway were studied. Under these conditions, programmed atrial stimulation revealed a phase of supernormal conduction in 16 (76%) of the 21. Therefore, what was believed to be a nonexistent or exceptional physiologic event was shown to be a rather common finding, at least under certain circumstances. Supernormal conduction occurred in all 7 patients with an anterograde refractory period of 480 to 980 ms, and in 5 of 10 patients with a refractory period greater than 1.0 second or with no anterograde conduction. Supernormal conduction could not be demonstrated in four patients with a refractory period less than or equal to 440 ms, but appeared in all four patients after the refractory period was prolonged by a rapid rate of stimulation or administration of ajmaline. The electrophysiologic changes underlying the occurrence of supernormal conduction in the accessory pathway are similar to those previously reported for the bundle branch system. The demonstration of supernormal conduction in the accessory pathway may uncover the presence of concealed ventricular pre-excitation. Supernormal conduction over the accessory pathway may facilitate a rapid ventricular response during atrial fibrillation, even if the refractory period is prolonged.

Heart Conduction System

Chronic idiopathic idioventricular tachycardia caused by slow response automaticity.

A 22-year-old female, asymptomatic and without any evidence of cardiac disease, was found to have a persistent idioventricular tachycardia (IVT). Sinus rhythm and IVT rates were similar and showed parallel changes in successive resting electrocardiograms. Both IVT and sinus rhythm were transiently slowed or suppressed by vagal stimulation and accelerated by sympathetic stimulation. Long periods of atrial overdrive pacing, at a rate 62% faster than the spontaneous rate of IVT, depressed both ectopic and sinus activity. Fast channel blocking agents (lidocaine, disopyramide), and digoxin and amiodarone failed to modify IVT significantly. Verapamil, a calcium channel blocking drug, allowed total control of the arrhythmia. These electrophysiologic and pharmacologic responses suggest that the IVT may relate to the automatic activity of a ventricular focus of the "slow response" type, functionally resembling an "additional" sinus node with preserved innervation. During an 88-month follow-up, the patient continued to be asymptomatic, warning arrhythmias were never found and the features of IVT remained unmodified.

Adult

Comparative antiarrhythmic efficacy of verapamil, 17-monochloracetylajmaline, mexiletine and amiodarone in patients with severe chagasic myocarditis: relation with the underlying arrhythmogenic mechanisms.

The antiarrhythmic effects of verapamil, 17-monochloracetylajmaline, mexiletine and amiodarone were compared in 14 patients with chagasic myocarditis. Drugs and placebo were administered orally in the following order: placebo and verapamil, placebo and 17-monochloracetylajmaline, placebo and mexiletine (1 week each) and placebo and amiodarone (4 weeks each). A 24 hour ambulatory electrocardiographic recording was obtained after administration of each placebo and drug. Verapamil had no effect on the number of ventricular premature complexes, ventricular couplets and runs of ventricular tachycardia. 17-Monochloracetylajmaline did not reduce the number of ventricular premature complexes and ventricular couplets but caused a moderate reduction in runs of ventricular tachycardia. Mexiletine failed to significantly reduce ventricular premature complexes but caused a moderate decrease in both ventricular couplets and runs of ventricular tachycardia. Amiodarone was the only one of the four drugs that caused a substantial reduction of ventricular premature complexes (logarithmic mean 97.8%; p less than 0.001), total suppression of runs of ventricular tachycardia in 11 of 11 patients and suppression of ventricular couplets in 8 of 14 patients and a significant reduction in the remaining 6 patients. The much greater efficacy of amiodarone as compared with the two sodium channel modifiers (17-monochloracetylajmaline and mexiletine) and one calcium channel blocker (verapamil) suggests that its potent antiarrhythmic activity is probably related to other peculiar and still undefined electrophysiologic and pharmacologic properties.

Adult

Efficacy of amiodarone during long-term treatment of potentially dangerous ventricular arrhythmias in patients with chronic stable ischemic heart disease.

Amiodarone was administered orally to 30 patients with chronic stable coronary artery disease and severe ventricular arrhythmias. Control studies revealed frequent (more than 30/hr) ventricular premature beats (VPBs) (27 patients), bigeminy (21 patients), couples (29 patients), R-on-T phenomenon (14 patients), ventricular tachycardia (16 patients), and ventricular fibrillation (1 patient). Two 24-hour Holter recordings and stress tests were performed before treatment, and an average of 3.6 per patient were done during treatment. Amiodarone caused suppression of all ventricular arrhythmias in 13 (43%) of the 30 patients and suppression of all complex forms and greater than 90% reduction of VPB number in 14 patients (47%) during a follow-up of 12.4 months. The mean dose was 590 mg/day in the 27 responders and 300 mg/day in the three nonresponders. A similar antiarrhythmic response was observed during stress testing. One of the 30 patients died due to massive pulmonary embolism and no arrhythmias were detected. In addition, amiodarone suppressed the occurrence of anginal pain and effort-induced ST changes in 9 of 10 patients and in 11 of 13 patients, respectively. The rate-pressure product and peak heart rate were significantly reduced in all patients. Our results suggest that amiodarone may be ideally suited for treatment of ventricular arrhythmias and for possible prevention of sudden death in patients with ischemic heart disease.

Adult

Efficacy of amiodarone during long-term treatment of malignant ventricular arrhythmias in patients with chronic chagasic myocarditis.

Oral amiodarone was administered to 24 patients with chronic chagasic myocarditis (CCM) and malignant ventricular arrhythmias. Control 24-hour Holter recordings revealed frequent ventricular premature beats (VPBs) (157 to 2572/hr; mean 714 +/- 125), multiform VPBs, and countless numbers of ventricular couplets in all patients, R-on-T phenomenon in 17 patients, and ventricular tachycardia in 21 patients. Amiodarone caused total and persistent suppression of ventricular couplets and tachycardia and greater than 93% reduction of VPB number in 22 patients, during a follow-up of 26.6 months (range 2 to 55 months). In 1 patient, ventricular couplets and tachycardia persisted despite the fact that a 98.2% reduction of VPB number was achieved. This latter patient was the only one in the whole group who experienced sudden death. The maximal antiarrhythmic effect was attained gradually after 3 to 26 weeks (mean 7.4). In four patients in whom treatment was discontinued after 3 to 12 months, the antiarrhythmic protection lasted 4 to 9 weeks. In nine patients the dose of amiodarone was 600 to 800 mg/day. In 15 patients the dose had to be increased to 800 to 1000 mg/day. Despite the presence of congestive heart failure in seven patients and intraventricular block in 17 patients, no limiting side effects were observed. Amiodarone proved to be extremely effective and safe against the most malignant ventricular arrhythmias of CCM.

Adult

Ten years of experience with amiodarone.

Arrhythmias may be controlled in most patients with recurrent supraventricular tachycardia or atrial fibrillation with small to moderate maintenance doses of amiodarone (100 to 400 mg/day). Moderate doses (400 mg/day) are also highly effective in suppressing "warning" ventricular arrhythmias in patients with chronic ischemic heart disease, particularly if the goal of treatment is to eliminate ventricular couplets, runs of ventricular tachycardia (VT), and the "R on T" phenomenon. Treatment and prevention of sustained recurrent VT and the malignant arrhythmias of chagasic myocarditis require, however, doses of about 800 mg/day, which may be higher than those needed for ischemic heart disease complicated by VT and ventricular fibrillation. Clinical studies suggest an elimination half-life for amiodarone of about 30 days (range 15 to 100 days). Thus there is a pretherapeutic latency period that varies according to the type of arrhythmia and the doses employed. The maximal effects (as well as the most significant adverse effects) are not attained before 90 to 150 days of treatment, and the antiarrhythmic protection may persist for varying intervals, up to 150 days or more, after the drug has been discontinued. Side effects are not negligible but are generally dose dependent. Despite these side effects, many patients have been treated by us with amiodarone for as long as 5 to 8 years--and for up to 10 years in some cases. Amiodarone appears to be one of the most promising drugs for the possible prevention of ventricular fibrillation and sudden death.

Amiodarone

Supernormal excitability and conduction.

The authors examine circumstances in which supernormality causes specific electrocardiographic events. True supernormal conduction is much more common than previously thought. A complete scanning of the cardiac cycle in patients with phase 3 BBB or with second-degree or advanced infranodal AV block would reveal that a much larger number of cases of supernormal conduction would be uncovered.

Arrhythmias, Cardiac

Electrotonic modulation of the T wave and cardiac memory.

Alterations in the sequence of ventricular activation (left bundle branch block occurring spontaneously or induced by atrial pacing; right ventricular pacing) were studied and shown to induce two opposite changes in the order of ventricular repolarization. One, which causes classic secondary T wave changes, occurs and disappears instantaneously, and is proportional in magnitude to the QRS complex but of opposite direction. The other, which requires a long time to reach its maximal effect and to be dissipated, shows the same direction as the abnormal QRS forces but becomes apparent only when normal activation is restored. The former is a well known consequence of prolongation of the activation time, but the latter appears to be modulated by electrotonic interactions occurring during cardiac activation, in such a way that repolarization is delayed in sites where depolarization begins, and accelerated in sites where depolarization terminates. Our study suggests that electrotonically modulated T wave changes show accumulation and memory, and may persist for days or weeks after the provoking stimulus (the change in the activation sequence) is discontinued. The fact that any shift of the activation sequence may produce "pseudoprimary" T wave changes that may persist long after cessation of the triggering factor has wide clinical implications. Electrotonic modulation of ventricular repolarization is a basic electrophysiologic mechanism that may account for several features of normal and abnormal T waves, and for the possible existence of a heart memory.

Bundle-Branch Block

Electrocardiographic changes evoked by ajmaline in chronic Chagas' disease with manifest myocarditis.

Conversion from Chagas' infection to chagasic myocarditis occurs slowly and the earliest signs of myocardial involvement are hard to define. To obtain new information on this difficult clinical problem, ajmaline was administered (1 mg/kg body weight intravenously) to 101 patients with Chagas' infection and to 46 patients without such infection (control group). In 3 patients in the control group left anterior hemiblock alone occurred whereas in the group with Chagas' infection, ajmaline caused the occurrence of right bundle branch block, left anterior hemiblock, or both, in 32 patients (31.6 percent), ventricular extrasystoles in 8 (7.9 percent) and ischemic ST-T changes in 7 (6.9 percent). Ajmaline may thus evoke the most typical electrocardiographic changes of chronic chagasic myocarditis in patients without signs of myocardial involvement or only minor nonspecific signs. A positive ajmaline test, defined in the present context as the occurrence of a fascicular block, ventricular arrhythmias or ischemic ST-T changes, may indicate the existence of localized areas of injured myocardial tissue, not enough to alter the electrocardiogram by itself, but able to give rise to severe abnormalities after exposure to the drug. The test may therefore be used as a nonspecific detector of myocardial damage, and thus may have a much broader scope of clinical application. In chronic Chagas' infection, the ajmaline test is a relatively simple and apparently safe procedure that may serve to unveil the earliest signs of chagasic myocarditis.

Adolescent

Usefulness of the ajmaline test in patients with latent bundle branch block.

Twelve patients were studied with intermittent bundle branch block whose conduction disturbance disappeared completely and could no longer be recorded even after provoked changes in heart rate. Premature atrial stimulation and atrial pacing at rapid rates were performed in nine patients; in none of these nine were these procedures able to evoke the complete bundle branch block pattern that all patients exhibited before the spontaneous normalization of conduction. In marked contrast, the administration of ajmaline (1 mg/kg body weight, intravenously in 90 seconds) caused the bundle branch block pattern to reappear in 10 (83.3 percent) of the 12 patients 30 to 120 seconds after the end of the injection, and in 11 patients (91.6 percent) when additional atrial stimulation was performed in 1 of the 2 "failures." This pharmacologic test was much more rapid and simple than electrophysiologic testing and it was noninvasive. Results of this study suggest that some form of subclinical fascicular injury was present (or had persisted) at a time when intraventricular conduction was persistently normal even though no significant physiologic alteration could be demonstrated by the atrial stimulation techniques. The ajmaline test may become a valuable tool for uncovering cases of latent bundle branch block and furthering our knowledge of the early natural history of intraventricular block.

Adult