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Biomedical subjects

R Nadeau

Publications and source records attributed to R Nadeau.

At least 145 records · Page 8Linked to original sources

Effects of yohimbine and desipramine on cardiac noradrenaline release and ventricular arrhythmias during acute coronary artery occlusion and reperfusion in anesthetized dogs.

Effects of yohimbine (YHMB, an alpha 2-antagonist) and desipramine (DMI, a neuronal uptake inhibitor) were compared on cardiac noradrenaline (NA) release either upon left ansa subclavia nerve stimulation during acute occlusion of the left anterior descending coronary artery (LAD) or upon subsequent LAD reperfusion without stimulation in anesthetized dogs. In control dogs, before LAD occlusion, coronary sinus (CS) NA output increased from 5.4 +/- 1.0 to 26.8 +/- 4.0 ng/min (p less than 0.05) upon stimulation (2 Hz, 30 s). The response to stimulation remained unchanged 25 min after LAD occlusion. During reperfusion 60 min after occlusion, the output of CS-NA and lactate increased from 6.1 +/- 0.8 to 51.3 +/- 19.4 ng/min (p less than 0.05) and from 2.7 +/- 0.5 to 6.7 +/- 1.3 mg/min (p less than 0.05), respectively. In dogs treated with YHMB, the stimulation-induced increase in NA output was potentiated at least fourfold (p less than 0.05) either before or during LAD occlusion, but not during reperfusion. In dogs receiving DMI, stimulation-induced CS-NA output was enhanced to a similar extent (approximately twofold, p less than 0.05) either before or during occlusion, while reperfusion-induced NA output was markedly potentiated by approximately ninefold (p less than 0.05). Maximum dP/dt of left ventricular pressure remained unchanged upon reperfusion in all groups. The total arrhythmic ratio in the drug-treated groups did not significantly differ from the ratio in control dogs upon either stimulation or reperfusion. The data suggest that an abrupt increase in NA output upon reperfusion may result from a washout of NA locally accumulated in the ischemic and (or) peri-ischemic region during the preceding occlusion period, and that NA thus released does not have substantial hemodynamic effects. The results indicate that in the presence of YHMB or DMI, the potentiated increase in NA release in response to either nerve stimulation during LAD occlusion or to reperfusion without stimulation did not aggravate ventricular arrhythmia, most probably owing to the antiarrhythmic properties of these substances.

Anesthesia↗

Abnormalities in the regulation of sympathetic activity in human hypertension.

Various biochemical, pharmacologic, and physiologic techniques were used to evaluate the sympathetic tone and reactivity in labile and sustained hypertension in humans. The results of these studies suggest the existence of an important subgroup of hypertensive patients characterized by increased basal sympathetic tone and reactivity to standing. Such abnormalities could be the result of various dysfunctions, involving the activity of central and peripheral cardiovascular sympathetic fibers, the presynaptic modulation of sympathetic fibers (including the interaction with the parasympathetic system), the inactivation of circulating norepinephrine, and the sensitivity of the efferent cells. The increase in circulating norepinephrine in a group of hypertensive patients seems to reflect a functional increase in the sympathetic tone as shown by the presence of hyperkinetic cardiac functions in hyperadrenergic patients (elevated catecholamine levels), while cardiac functions are normal in normoadrenergic patients (catecholamine levels within normal range). Moreover, the better hypotensive response, combined with normalization of the basal and reactive circulating norepinephrine levels following beta-blockade in hyperadrenergic hypertensive patients, strongly supports the participation of the sympathetic system in the maintenance of hypertension in those patients. The identification and characterization of this subpopulation of patients may be helpful in the development of more rational therapeutic approaches and could eventually permit us to devise better predictors of outcome in hypertension.

Blood Pressure↗

Depressant effect on the retrograde atrioventricular nodal conduction of beta-adrenergic blockade by propranolol in humans.

Propranolol is known to have a depressant effect on anterograde atrioventricular (AV) nodal conduction in normal subjects and in those with AV nodal reentrant tachycardia. Using His bundle recording and programmed ventricular stimulation, the effect of propranolol-induced beta-adrenergic blockade (1 mg/kg intravenously) on retrograde AV nodal conduction was studied in 17 patients without (group I) and nine with (group II) AV nodal reentrant tachycardia. During baseline studies the ventricular pacing cycle length that induced ventriculoatrial block was 338 +/- 60 ms (range 260 to 450 ms) in group I and 305 +/- 39 ms (range 260 to 375 ms) in group II patients (not significant). After injection of propranolol, the ventricular pacing cycle length that induced ventriculoatrial block in group I patients was 416 +/- 97 ms (range 300 to 550 ms) (P less than 0.001, compared to baseline state) in 15 patients, and complete block occurred in two patients. In group II patients ventriculoatrial block occurred at a ventricular pacing cycle length of 375 +/- 97 ms (range 260 to 510 ms) (P less than 0.02 compared to baseline value) in eight patients, and complete block occurred in one patient. Retrograde AV nodal conduction expressed as the H2A2 interval was 75 +/- 33 ms (range 35 to 150 ms) in group I and 49 +/- 16 ms (range 20 to 80 ms) in group II patients (P less than 0.05). Following the administration of propranolol, the H2A2 interval was prolonged in group I patients by 10 to 45 ms in 11 patients, no retrograde AV nodal conduction was observed in three patients, and there was no effect in two patients.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Lack of relation between the ventricular refractory period prolongation by amiodarone and the thyroid state in rats.

We investigated the possibility that the prolongation of the ventricular effective refractory period (VERP) by amiodarone might be mediated, at least in part, by inhibition of thyroid influence on the heart. VERP values were measured in vitro in isolated septal preparations obtained from control, thyroidectomized and thyroxine (tetraiodothyronine; T4)- or triiodothyronine (T3)-treated rats. Differences in thyroid influence on the heart between these groups were assessed by changes in the myosin isozyme (V1, V2, V3) pattern. VERP measurements were also done in similar groups treated with amiodarone for 7 days (50 mg/kg/day i.p.). VERP tended to be increased by thyroidectomy and was significantly reduced by T4 or T3 treatment when compared with the control group. Amiodarone treatment significantly prolonged VERP in control (33.4 +/- 1.9 to 45.0 +/- 4.5 msec), thyroidectomized (39.9 +/- 1.7 to 48.3 +/- 2.8 msec), T4-treated (26.2 +/- 1.0 to 37.4 +/- 1.3 msec) and T3-treated rats (25.6 +/- 1.1 to 34.3 +/- 1.3 msec). However, the magnitudes of the VERP prolongation by amiodarone were not significantly different among the four groups. The action of amiodarone on action potential duration was similar to its action on VERP. The myocardial concentrations of amiodarone and desethylamiodarone were not significantly different among the four groups. Amiodarone treatment produced a significant reduction of serum T3 levels in the control and in the T4-treated groups and an increase in reverse T3 levels. Thus, the class III action of amiodarone was not affected, in the present model, by experimental modification of thyroid influence on the heart.

Action Potentials↗

Effects of sotalol, (-)-propranolol and prazosin on reperfusion-induced arrhythmias and increased cardiac norepinephrine release.

The pharmacological actions of sotalol, (-)-propranolol and prazosin on norepinephrine (NE) concentration and creatine kinase (CK) activity in the coronary sinus blood of the ischemic heart were studied in open-chest dogs. A 60 min occlusion of the left anterior descending coronary artery was followed by a reperfusion period of 30 min. In saline-treated dogs, a significant increase in coronary sinus NE concentration occurring 30 s after the onset of reperfusion was followed by a rapid decrease to the initial value within 15 min. CK activity increased gradually and continuously starting 5 min after the beginning of reperfusion. A good correlation (r = 0.9, n = 8, P less than 0.05) was obtained in saline-treated dogs when the calculated slope of the time-activity curves for CK release was plotted against the corresponding peak concentration of NE. The increase in coronary sinus NE concentration upon reperfusion was accompanied by an increased arrhythmic ratio. Sotalol (5 mg/kg i.v.) diminished the increase in coronary sinus NE concentration along with a significant decrease in the arrhythmic ratio. The administration of either (-)-propranolol (0.1 mg/kg i.v.) or prazosin (1 mg/kg i.v.) did not significantly affect the increase in coronary sinus NE concentration. The arrhythmic ratio was significantly reduced by prazosin but not by (-)-propranolol. The rise in coronary sinus CK activity was significantly diminished in the presence of either sotalol, (-)-propranolol or prazosin. These results suggest that the occurrence of severe ventricular arrhythmias upon reperfusion may be related to the action of the increased myocardial NE on the cardiac alpha-adrenoceptors. The increased coronary sinus CK activity suggests that increased cardiac sympathetic activation may accelerate or aggravate the myocardial damage. We conclude that the antiarrythmic effect of sotalol may be due at least in part to its inhibitory action on the release of cardiac NE upon reperfusion.

Adrenergic beta-Antagonists↗

Wolff-Parkinson-White VCG patterns that mimic other cardiac pathologies: a correlative study with the preexcitation pathway localization.

Vectorcardiograms (VCGs) of 44 patients with a Wolff-Parkinson-White (WPW) syndrome have been analyzed with the aim to correlate the QRS loop patterns with specific preexcitation sites. The VCG QRS loops were analyzed to determine whether conduction abnormalities and myocardial infarction (MI)-like patterns observed in the WPW syndrome could be related to specific preexcitation sites identified by surgery as well as by body surface potential mapping (BSPM). Left bundle branch block pattern was observed with anteroseptal (AS) preexcitation, anterior MI pattern was seen with lateral right ventricle (LRV) preexcitation, left anterior fascicular block was observed with posterior right ventricle (PRV) preexcitation, inferoposterior and strictly posterior MI pattern was found with posteroseptal (PS) and posterior left ventricle (PLV) preexcitation, right bundle branch block was seen in lateral left ventricle (LLV) preexcitation, and right bundle branch block was observed with left posterior fascicular block in anterior left ventricle (ALV) preexcitation. These VCG criteria seem to identify accurately the preexcitation sites as observed by delta wave BSPM and at surgery investigations. Consequently, they could be useful in localizing the preexcitation site in cases of ambiguous delta vector orientation.

Adult↗

Mapping of ventricular tachycardia induced by thoracic neural stimulation in dogs.

To investigate ventricular tachycardias produced in healthy canine myocardium by stimulation of sympathetic ganglia or cardiac nerves, we simultaneously recorded a surface ECG and 63 ventricular electrograms in anesthetized open-chest dogs. Isochronal and isopotential maps were generated off-line by computer. Ventricular tachycardia with uniform beat-to-beat morphology was induced in 13 or 22 dogs by electrical stimulation of the left stellate ganglion (five experiments), the left middle cervical ganglion (four experiments), the left caudal pole cardiopulmonary nerve (two experiments), or the ventrolateral cardiac nerve (eight experiments). It was not inducible by stimulation of the right-sided major cardiopulmonary nerves or ganglia. In most instances the earliest measured electrical excitation occurred on the posterior aspect of the ventricles. Isochronal maps demonstrated a radial spread of the impulse away from the area of earliest excitation. Changes in the region of earliest excitation and (or) activation pattern were accompanied by changes in QRS morphology. The potential gradients measured between areas displaying positive and negative T waves on the anterior and left lateral aspects of the ventricles were significantly increased by ventrolateral cardiac nerve stimulation. However, the ventricular regions where these potential gradients existed differed from the regions of earliest excitation during ventricular tachycardia. These results demonstrate that the thoracic autonomic nervous system can induce repetitive ventricular excitation originating from consistent loci.

Animals↗

Presynaptic inhibitory effects of sotalol, propranolol, and acebutolol on noradrenaline release upon cardiac sympathetic nerve stimulation in anesthetized dogs.

Effect of sotalol (STL) was compared with that of (+/-)-propranolol, (+)-propranolol (PPL), and acebutolol (ABL) on noradrenaline (NA) release as measured in coronary sinus (CS) blood during postganglionic stimulation (2 Hz, 30 s) of the left cardiac sympathetic nerves in anesthetized dogs. In control dogs receiving saline, increasing responses of CS-NA concentration, mean CS blood flow, and CS-NA output to repetitive stimulation were relatively stable throughout a given experimental period. Both STL (1,2.5, and 5 mg/kg, i.v.) and (+/-)-PPL (0.5 and 2.5 mg/kg, i.v.) diminished the increased CS-NA concentration by approximately 35 (P less than 0.05) to 60% (P less than 0.01) in a dose-dependent fashion. However, (+)-PPL (0.02-2.5 mg/kg, i.v.) and ABL (0.5-5 mg/kg, i.v.) did not significantly alter the increasing response of CS-NA concentration upon stimulation. STL, (+/-)-PPL, and ABL markedly inhibited the CS blood flow response to stimulation at all doses tested, while (+)-PPL did not significantly diminish the flow response even at the highest dose tested. Consequently, CS-NA output decreased significantly (p less than 0.01) in the presence of STL, (+/-)-PPL, and ABL at all doses tested but not with (+)-PPL at any dose tested. The inhibitory effect of STL and (+/-)-PPL on the increasing response of CS-NA concentration upon stimulation could be related to their beta-blocking effect, which exerts presumably on postulated presynaptic beta-adrenoceptors, as (+)-PPL did not at all diminish the response.(ABSTRACT TRUNCATED AT 250 WORDS)

Acebutolol↗

Systemic and regional blood flows during graded treadmill exercise in dogs.

The purpose of the study was to describe hemodynamic response and regional blood flows through various organs and tissues (microsphere technique) in dogs (n = 8), at rest and during mild (4 km/h, 13% slope; heart rate = 154 bpm), moderate (4 km/h, 26% slope; heart rate = 201 bpm), and severe (4 km/h, 39% slope; heart rate = 266 bpm) exercise on treadmill. Cardiac output (rest: 3.2 +/- 0.3; 39% slope: 10.2 +/- 1.3 l/min; mean +/- SE), systolic aortic pressure (rest: 122 +/- 4; 39% slope: 158 +/- 9 mm Hg), and left atrial pressure (rest: 5 +/- 0.7; 39% slope: 11.0 +/- 0.6 mm Hg) increased linearly with workload. On the contrary stroke volume increased from rest (35 +/- 2 ml) to mild (38 +/- 2 ml) and moderate (42 +/- 3 ml) exercise but decreased in response to the severe workload (38 +/- 5 ml). Regional blood flows across the brain, femoral bone, adrenal glands and temporalis muscle were not modified during exercise. On the contrary, a marked increase in regional blood flow was observed through the flexor and extensor muscles of the limb (X 5 to X 15), the muscles of the back (X 4) and the diaphragm (X 2.5). The small inconsistent increase in nutritional tongue blood flow probably underestimated the increased perfusion through arteriovenous shunts in the mucosa for heat-loss purposes. Myocardial blood flow increased in a linear fashion with work load in both ventricles.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Effect of the induction of amiodarone biotransformation on ventricular refractory periods in rats.

Amiodarone is a potent class III antiarrhythmic agent that has a slow onset of action in patients (ca. 20 days). To determine if myocardial accumulation of desethylamiodarone (DEA), its main metabolite, influences its antiarrhythmic activity, three groups of six Wistar rats were given amiodarone, 50 mg/kg/day i.p. (A groups), and three groups received the same dose of amiodarone in combination with 80 mg/kg/day of phenobarbital to induce hepatic biotransformation (AP groups). After 3, 7 or 21 days, the rats were sacrificed and the ventricular effective refractory period (VERP) was determined by the extrastimulus technique in endocardial preparations superfused in the tissue bath. Control measurements of VERP were done in untreated rats. Myocardial concentrations of DEA measured by high-performance liquid chromatography were significantly higher in the AP groups than in the A groups (7.5 +/- 0.83 vs. 2.27 +/- 0.11 micrograms/g at 3 days, 6.09 +/- 0.70 vs. 2.82 +/- 0.30 micrograms/g at 7 days and 11.93 +/- 1.22 vs. 4.79 +/- 1.84 micrograms/g at 21 days: mean +/- S.E.). Control VERP value was 33.4 +/- 1.2 msec and was increased by 9, 35 and 42% after 3, 7 and 21 days in the A groups, and by 9, 38 and 39% in the AP groups. After 7 days of DEA administration yielding myocardial concentrations similar to those obtained after amiodarone treatment, there was a slight but nonsignificant prolongation of the VERP (12%). Thus, the prolongation of VERP after amiodarone administration did not appear to depend on myocardial DEA accumulation, suggesting that the slow onset of amiodarone class III action may not be related to DEA disposition.

Action Potentials↗

Sinus node responses to perfusion pressure changes, ischaemia and hypothermia in the isolated blood-perfused dog atrium.

Sinus node responses to perfusion pressure changes, ischaemia and hypothermia were evaluated in 22 isolated blood-perfused dog atria. Sinus cycle length (SCL) was measured and sinoatrial conduction time (SACT) was estimated using the premature atrial stimulation technique (PAS) and the constant atrial pacing method (CAP). There was a good correlation between the results obtained with both techniques (r = 0.8297) but CAP had less depressing action on sinus node automaticity. Increasing the perfusion pressure from 100 to 200 mmHg did not influence estimated SACT nor SCL. However, a reduction in perfusion pressure (from 100 to 50 mmHg) markedly shortened SCL without significantly decreasing estimated SACT. Lowering temperature from 37 to 25 degrees C caused a linear increase in estimated SACT and SCL. Occlusion of the sinus node artery induced a sinus tachycardia which was not blocked by sotalol. Estimated SACT was significantly shorter 1 min after occlusion and longer 3 min after occlusion; this increase was significantly inhibited by atropine infusion. Thus, the increase in estimated SACT seen after occlusion might be related to cholinergic activity. However, the sinus tachycardia following a decrease in perfusion pressure might be due to activation of the stretch-receptors while the one seen after reduction in blood flow and occlusion of the sinus node artery seems more likely to be a consequence of ischaemia.

Animals↗

Vagal effects on sinoatrial and atrial conduction studied with epicardial mapping in dogs: the influence of pacemaker shifts on the measurement of sinoatrial conduction time.

The influence of pacemaker shifts on sinoatrial conduction time (SACT) was studied by investigating the effects of vagal stimulation on SACT and atrial conduction in anesthetized open-chest dogs. Isochronal maps were drawn from unipolar electrograms simultaneously recorded at 60 epicardial sites on the right atrial free wall and the inferior and superior vena cava. Vagal stimulation caused atrial conduction velocity to increase from 0.99 +/- 0.10 m/s (mean +/- SD) to 1.23 +/- 0.23 m/s (p less than 0.01), and the pacemaker to shift to lower positions along the superior vena cava - right atrial junction. As a result of the changes, the distances and the atrial conduction times from the stimulating and recording electrodes to the pacemaker site varied, and hence, the SACT values obtained indirectly by premature atrial stimulation varied. The isochronal maps were used to measure the atrial conduction times from stimulating to recording electrodes (a), from stimulating electrode to pacemaker site (b), and from pacemaker site to recording electrode (c). Indirect SACT was lengthened by vagal stimulation from 43 +/- 16 to 64 +/- 22 ms (p less than 0.02). After correcting by subtracting the atrial conduction time (b + c - a), these values became 26 +/- 6 ms (control) and 40 +/- 11 ms (vagal stimulation) (p less than 0.01). SACT values measured directly from the electrograms were 27 +/- 7 ms (control) and 42 +/- 10 ms (vagal stimulation) (p less than 0.01). Corrected indirect SACTs were closer to direct SACTs than were the uncorrected indirect SACTs.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Catecholamine release and ventricular arrhythmias during coronary occlusion and reperfusion in the dog.

In anesthetized dogs, 60-min occlusions of either the proximal (n = 14), distal (n = 8) left circumflex (LCX), or left anterior descending (LAD, n = 10) arteries were followed by reperfusion. Coronary sinus and aortic norepinephrine and epinephrine plasma concentrations were measured. The ventricular arrhythmias were ventricular premature depolarizations (VPDs), unsustained ventricular tachycardia (VT) (greater than or equal to 3 and less than 20 VPDs), sustained VT (greater than or equal to 20 VPDs), and ventricular fibrillation (VF). A gradual twofold increase (p less than 0.05) in myocardial norepinephrine overflow followed occlusion in all three groups. The increases in the amounts of norepinephrine released in the coronary sinus blood during reperfusion were significant and proportional to the size of the occluded area: proximal LCX, from 0.236 +/- 0.038 to 1.528 +/- 0.490 ng/mL of plasma (p less than 0.001); LAD, from 0.180 +/- 0.027 to 0.795 +/- 0.286 ng/mL (p less than 0.05); distal LCX, from 0.215 +/- 0.039 to 0.404 +/- 0.110 ng/mL (p less than 0.05). Aortic epinephrine concentrations were significantly increased only by LAD occlusion; at 15 min, the value had increased to 0.187 +/- 0.053 ng/mL from an initial value of 0.069 +/- 0.029 ng/mL (p less than 0.001). Two phases of ventricular arrhythmias followed both occlusion and reperfusion. Phase 1 postocclusion was characterized by VPDs and phase 2 by VPDs and unsustained VT. Sustained VT was seen only in phase 1 postreperfusion, whereas unsustained VT was seen in phase 2. VF was seen in 50, 35, and 25% of the dogs with proximal LCX, LAD, and distal LCX occlusion and reperfusion.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Myocardial infarction diagnosis with body surface potential mapping, electrocardiography, vectorcardiography and thallium-201 scintigraphy: a correlative study with left ventriculography.

In 35 subjects with typical or atypical angina and/or documented myocardial infarction (MI), body surface potential maps (BSPMs), ECG, VCG and rest Thallium-201 (T1-201) have been compared to left ventriculography (LVG). BSPMs were recorded with 26 ECGs, and BSPM abnormalities for MI cases were considered to be areas of normally positive potentials that have become negative. Subjects with MI were classified according to the segmental localization and degree of asynergy on LVG. Moderate anterolateral and apical asynergy were found to correlate with BSPM diagnosis of anterolateral MI and ischemia, severe anterolateral and apical asynergy with BSPM diagnosis of anterolateral MI and ischemia, and moderate diaphragmatic and/or posterobasal asynergy with BSPM diagnosis of posterior MI. Simultaneous anterior and posterior asynergy were found for BSPM diagnosis of anterior with posterior MI. Subjects with no LVG asynergy had normal BSPMs. BSPM diagnosis had the highest correlation coefficient with the LVG diagnosis (r = 0.88). ECG and VCG showed similar results with r = 0.65 and 0.71 respectively, while T1-201 had r = 0.55. The examination of our BSPMs, as well as the ECG, VCG and T1-201, did not permit to detect apical damage in presence of anterior MI, and posterobasal damage in the presence of inferoposterior MI. It is concluded that BSPMs are slightly superior to ECG and VCG for diagnosis of MI.

Adult↗

Intracardiac electrophysiological study of S-2395 in intact and chemically sympathectomized dogs.

S-2395 is a new, long-acting, non-selective beta-receptor blocking agent without apparent intrinsic cardiodepressive action and no receptor selectivity. Its electrophysiological actions were studied in intact and chemically sympathectomized dogs. In normal dogs, S-2395 very slightly increased atrial monophasic action potential (MAPa) duration, atrioventricular functional (FRP) and ventricular effective (ERP) refractory periods. The onset of the atrial supernormal conduction phenomenon (SNCP) was delayed and the ventricular SNCP was abolished. These results are consistent with the action of low concentrations of beta-blocking agents. In contrast S-2395 reduced the ventricular MAPv and increased the ERP/MAPv ratio of sympathectomized animals. Such modifications are usually seen with concentrations higher than necessary for simple beta-receptor blockade. In conclusion S-2395, like several others beta-blockers, had minor effects on the classical electrophysiological parameters of normal dogs. However, it suppressed ventricular SNCP and had a more pronounced action in sympathectomized dogs who are known to have higher levels of circulating catecholamines and who present post-synaptic supersensitivity. The SNCP has been linked with re-entrant arrhythmias. Considering that beta-blockers prevent arrhythmias specially in hyperadrenergic states, the suppression of the ventricular SNCP by S-2395 could thus be the mechanism by which this drug and possibly other beta-blockers might exert their antiarrhythmic action.

Adrenergic beta-Antagonists↗

Electrophysiological effects of ouabain in 6-hydroxydopamine pretreated dogs.

Chemical sympathectomy and bilateral vagotomy were used to evaluate the contribution of each division of the autonomic nervous system in the electrophysiological actions of ouabain. Intact and chemically sympathectomized dogs were given successive and cumulative doses of ouabain until toxicity became manifest (ventricular extrasystoles and (or) ventricular tachycardia). An additional group of normal and sympathectomized animals was also submitted to bilateral vagotomy in the presence of a therapeutic dose of ouabain. Sinus cycle length, AH interval of the His bundle electrogram, atrioventricular junctional effective and functional refractory periods were increased by ouabain at therapeutic doses. These effects were no different in sympathectomized dogs than in intact dogs, indicating the absence of any significant contribution of efferent sympathetic neural activity. However, our results suggested that vagal enhancement was the main mechanism whereby ouabain produced sinus bradycardia and depression of atrioventricular conduction. Sympathectomy with 6-OHDA did not modify nor abolish ouabain toxicity. However, toxic doses were significantly higher in sympathectomized animals than in normal animals. Considering that increasing heart rate by cardiac pacing or vagotomy significantly lowered toxic doses of ouabain in both intact and sympathectomized dogs, it is possible that sympathectomy could influence ouabain toxicity by altering heart rate alone.

Animals↗

Acute effects of amiodarone in the isolated dog heart.

Direct injection of amiodarone (10-1000 micrograms) into the sinus node artery of the isolated blood-perfused dog atrium produced dose-dependent negative inotropic and chronotropic responses that were unaffected by atropine. Intraarterial amiodarone also had a negative inotropic action on isolated left ventricular muscle preparations electrically paced at 1.5 to 2.0 Hz. A continuous infusion of 100 micrograms/min of amiodarone significantly suppressed the positive chronotropic effect of norepinephrine whether expressed in percent change or in absolute values; its positive inotropic effect expressed in percent change was not suppressed but rather enhanced by amiodarone. Calcium chloride induced positive chronotropic and inotropic effects expressed in percent change were, respectively, slightly suppressed and enhanced by amiodarone. Intravenous injection of amiodarone (5 mg/kg) decreased the heart rate and blood pressure of the support dog and produced a negative inotropic response in the isolated left ventricular muscle preparation perfused with arterial blood from the support dog. These results suggest first, that amiodarone has direct negative inotropic and chronotropic effects that are not mediated by cholinergic mechanisms and second, that it has a depressive action on norepinephrine and calcium-induced positive chronotropic effects and an enhancing action on their positive inotropic effects.

Amiodarone↗

Left ventricular dimensions following training in young and middle-aged men.

To document the effects of endurance training upon left ventricular dimensions, an echocardiographic examination was performed on 11 young (19 +/- 1 years) and 13 middle-aged (40 +/- 3 years) subjects before and after a 20-week endurance training program. The maximal working capacity was increased by 28% and 27% in young and in middle-aged subjects, respectively. Following training, the left ventricular posterior wall and septal thickness in diastole were unchanged both in young (10.1 +/- 0.2 mm and 9.0 +/- 0.2 mm, pre-; 10.1 +/- 0.2 mm and 9.3 +/- 0.3 mm, post-) and in middle-aged subjects (10.0 +/- 0.3 mm and 10.2 +/- 0.3 mm, pre-; 9.7 +/- 0.2 mm and 10.1 +/- 0.2 mm, post-); the left ventricular end-diastolic internal diameter was unchanged in middle-aged subjects (47.8 +/- 0.9 mm, pre-; 48.1 +/- 1.0 mm, post-) but was significantly increased in young subjects (47.8 +/- 1.0 mm, pre-; 49.9 +/- 1.0 mm, post-) (P less than 0.05). These data could suggest that the left ventricular adaptation to training decreases with age. However, the decrease in resting heart rate observed in young subjects (68 +/- 3 to 60 +/- 2 beats X min-1) (P less than 0.05) but not in middle-aged subjects (63 +/- 3 and 65 +/- 3 beats X min-1) could also increase diastolic filling time and explain the small left ventricular end-diastolic enlargement found in the young subjects.

Adult↗