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Biomedical subjects

R Nadeau

Publications and source records attributed to R Nadeau.

At least 55 records · Page 3Linked to original sources

Reduced capacity of cardiac efferent sympathetic neurons to release noradrenaline and modify cardiac function in tachycardia-induced canine heart failure.

To investigate the capacity of efferent sympathetic neurons to modulate the failing heart, stellate ganglion stimulation was performed in dogs with biventricular heart failure induced by rapid ventricular pacing (240 beats/min) for 4-6 weeks. Less noradrenaline was released from cardiac myoneural junctions into coronary sinus blood in response to left stellate ganglion stimulation in anesthetized failing heart preparations (582 pg/mL, lower and upper 95% confidence intervals of 288 and 1174 pg/mL, n = 19) compared with healthy heart preparations (6391 pg/mL, 95% confidence intervals of 4180 and 9770 pg/mL, n = 14; p < 0.001). There was substantial adrenaline extraction by failing hearts (49 +/- 6%), although it was slightly lower than in healthy heart preparations (65 +/- 9%, p = 0.055). In contrast with healthy heart preparations, no net release of adrenaline occurred during stellate ganglion stimulation in any of the failing heart preparations, and ventricular tissue levels of adrenaline fell below the sensitivity limit of the HPLC technique. In failing heart preparations, maximal electrical stimulation of right or left stellate ganglia resulted in minimal augmentation of left ventricular intramyocardial (17%) and chamber (12%) systolic pressures. These indices were augmented by 145 and 97%, respectively, following exogenous noradrenaline administration. Thus, the cardiac efferent sympathetic neurons' reduced capacity to release noradrenaline and modify cardiac function can contribute to reduction of sympathetic support to the failing heart.

Animals↗

Brief repetitive ischemia: effect on norepinephrine release, arrhythmias, and functional recovery in isolated perfused rat heart.

The objective of the present study was to determine norepinephrine release, functional recovery, and incidence of arrhythmias following multiple episodes of brief (5 min) ischemia and to compare these variables with those obtained after continuous ischemia (30 min) in isolated rat hearts perfused with modified Krebs-Henseleit solution. Left ventricular developed pressure (LVDP), left ventricular end-diastolic pressure (LVEDP), and cardiac rhythm were continuously recorded. The amount of norepinephrine in perfusate was measured by high-performance liquid chromatography. The data showed no increases in LVEDP during the six successive 5-min periods of ischemia interrupted by 5-min reperfusion. The six repetitive periods of reperfusion after repetitive 5-min periods of ischemia were associated with a restoration of left ventricular diastolic function and preservation of reactive hyperemia (23.3 +/- 1.5 mL/min vs. baseline 16.5 +/- 1.3 mL/min; p < 0.05). The incidences of ventricular fibrillation (VF) (10/10) and ventricular tachycardia (VT) (10/10) upon reperfusion in the continuous ischemia group were higher than those in the repetitive ischemia group (VF, 2/10; VT, 3/10; p < 0.05). Norepinephrine washout upon reperfusion after 30-min continuous ischemia was 58.2 +/- 17.4 ng/g of heart, but no increase in norepinephrine washout was observed after brief repetitive ischemic episodes (11.2 +/- 2.4 ng/g of heart) (p < 0.05). Our results show a substantial release of norepinephrine only after 30 min of continuous ischemia, in the isolated rat heart.

Animals↗

Body surface potential distributions during idiopathic ventricular tachycardia.

BACKGROUND: The purpose of this report is to describe the body surface potential maps (BSPMs) during idiopathic ventricular tachycardia (VT) and to determine what differences exist between different idiopathic VT morphologies. METHODS AND RESULTS: We performed BSPMs during VT on 12 consecutive patients (3 women and 9 men; mean age, 42 +/- 13 years) presenting symptomatic idiopathic VT referred to our institution for electrophysiological study. Basal ECG, chest radiograph, and echocardiogram were normal in all patients. Clinical tachycardia showed left bundle branch block pattern (LBBB) in 9 patients, with sustained VT in 5 and nonsustained VT in 4, and right bundle branch block pattern (RBBB) in 3 with sustained VT. We found a unique pattern of BSPMs in each of the 9 patients during idiopathic LBBB VT configuration, whether sustained or nonsustained VT. This pattern appeared at the onset of the QRS and remained stable during the whole QRS complex. The area of minimal potential located in the upper anterior part of the torso was compatible with an origin of VT in the right ventricular outflow tract, as confirmed in 5 patients by successful radiofrequency ablation. We found an evolving pattern with two phases in each of the three RBBB VTs. The electrical axis during the initial part of the QRS could correspond to an endocardial-epicardial vector. The second phase, with a high voltage and area of minimal potential located in the inferior and anterior part of the torso, was compatible with a left ventricular apical origin that was confirmed by epicardial and endocardial mapping during cryosurgery in 1 patient. For all the VTs, the QRS isoarea maps showed the same pattern as the second phase of the QRS. CONCLUSIONS: Two different BSPM patterns were found. All LBBB VTs had the same stable pattern corresponding to an infundibular origin. All RBBB VTs had an evolving pattern that stabilized in the second part of the QRS complex corresponding to an apical origin.

Adult↗

Three distinct patterns of ventricular activation in infarcted human hearts. An intraoperative cardiac mapping study during sinus rhythm.

BACKGROUND: Comprehensive data based on single-beat analysis of the ventricular activation sequence during sinus rhythm in infarcted hearts are currently not available. It was the aim of our study (1) to measure and analyze these activation sequences on the epicardial surface of the right and left ventricles and on the left ventricular endocardial surface, and (2) to correlate specific activation patterns with the surface ECG. METHODS AND RESULTS: Isochronal maps were computed from 127 endocardial and epicardial unipolar electrograms recorded simultaneously during sinus rhythm in 45 post-myocardial infarction patients operated on for recurrent ventricular tachycardia (age, 57 +/- 10 years [mean +/- SD], left ventricular ejection fraction, 29 +/- 9%). Patients with bundle-branch block, but not with intraventricular conduction defects, were excluded. Data such as the timing of initial and terminal activation, the number of breakthroughs, the total activation time, and the number of ventricular segments without activation were measured and analyzed according to location of the myocardial infarction. The global epicardial activation was characterized in all patients by a widespread initial breakthrough on the anterior right ventricle (16 +/- 8 milliseconds after QRS onset), which was followed by one or two other breakthroughs in 65% of patients. Subsequently, three characteristic epicardial patterns of the activation spread were found: (1) radial, from the right to the left ventricle, found in all patients with inferoposterior myocardial infarction; (2) counterclockwise rotation, in which posteroseptal crossing preceded the anteroseptal crossing, found in 38% of patients with anterior myocardial infarction; and (3) pincerlike encirclement, in which both septal crossings and/or breakthroughs occurred nearly simultaneously and merged at the left ventricular free wall (typical for apical involvement in anterior and combined myocardial infarction). The simultaneous presence of multiple major activation wave fronts typically found in patients with the pincerlike activation pattern was reflected on the surface ECG by multiphasic, notched QRS complexes. Activation delay was observed in 89% of patients, and terminal activation was topographically related to myocardial infarction in 94% of patients. Delayed activation exceeding the surface QRS was observed in 11% and 31% of cases on the endocardium and epicardium, respectively. CONCLUSIONS: These results offer a solid basis for a more precise interpretation of a wide range of electrophysiological data and provide a framework for future investigations of surface ECG reflections of endocardial and epicardial activation patterns recorded in patients with chronic myocardial infarction.

Electrocardiography↗

Ceruloplasmin: an endogenous depolarizing factor in neurons?

The biological effects of ceruloplasmin have been exclusively ascribed to its roles as a copper carrier and an antioxidant. Although neuronal involvement of ceruloplasmin is closely related to aging and certain neuronal disorders, neuronal effects of ceruloplasmin are unknown and the possible modulation of membrane potential and ion channels by ceruloplasmin has not been investigated. In the present study, the membrane electrical properties of neuroblastoma cells in the presence of ceruloplasmin were studied using the patch-clamp technique. Ceruloplasmin induced a rapid and sustained membrane depolarization. This capacity of ceruloplasmin was abolished either when the copper was removed from ceruloplasmin or when ceruloplasmin was heat-inactivated. The depolarizing effect of ceruloplasmin was not due to an enhanced Ca2+ or Na+ influx but it seemed to result from a reduced K+ efflux since ceruloplasmin significantly inhibited a TEA-sensitive delayed rectifier K+ channel. To our knowledge, this is the first report which indicates that ceruloplasmin is an endogenous neuronal depolarizing factor.

Calcium↗

Clinical applications of BSM.

Body surface mapping (BSM) has now become a feasible clinical technique, providing useful information applicable to the diagnosis of cardiac arrhythmias and their treatment by surgical and endocardial catheter ablation. In WPW patients, validation of preexcitation patterns has been obtained by computer simulation and by direct epicardial mapping at surgery. BSM pacemapping has subsequently been developed to be used during radiofrequency catheter ablation. This method has been evaluated prospectively and its predictive accuracy assessed. The recognition of two distinct BSM patterns in idiopathic ventricular tachycardia, has led to the application of successful pacemapping for radiofrequency catheter ablation. The use of a realistic tri-dimensional heart-torso computer model has shown that specific sites of endocardial stimulation are related to distinct thoracic map patterns.

Body Surface Potential Mapping↗

Regional distribution of atrial electrical changes induced by stimulation of extracardiac and intracardiac neural elements.

UNLABELLED: Autonomic nerves and intrinsic cardiac neural elements are known to influence the electrophysiologic and dynamic properties of the heart. This study describes the regional distribution in the canine atria of electrophysiologic effects induced by stimulation of the right and left cervical vagosympathetic complexes, the right atrial ganglionated plexus, and the right and left stellate ganglia. Local atrial effects were determined from changes in QRST area of unipolar electrograms recorded from multiple sites with plaque electrodes sewn onto the atria in 16 anesthetized dogs. RESULTS: (1) Although being very consistent in any given preparation, atrial changes varied between animals when similar neural structures were stimulated. (2) Among the common features identified between preparations, consistent effects were induced by neural stimulation in the region of the sinus node, indicating that this atrial region is the most richly innervated. (3) All other regions of the atria could be affected by stimulation of either right-sided or left-sided efferent nerves. (4) Responses to right atrial ganglionated plexus stimulation after atropine administration indicated that the corresponding fat pad contains both sympathetic and parasympathetic neural elements. CONCLUSION: This study demonstrates that there is considerable overlapping of atrial innervation affecting all regions of the atria, as well as the sinus node region.

Animals↗

Effect of enalaprilat on bradykinin and des-Arg9-bradykinin release following reperfusion of the ischaemic rat heart.

1. The release of bradykinin (BK) and its metabolite, des-Arg9-bradykinin (des-Arg9-BK), was studied following reperfusion of a globally ischaemic rat heart. 2. BK-like immunoreactivity increased from 13 +/- 3 (preischaemic value) to 48 +/- 12 fmol min-1 g-1 (P < 0.05, n = 14) 30 s after reperfusion. No difference in BK release was found between control hearts and hearts pretreated with the angiotensin converting enzyme (ACE or kininase II) inhibitor, enalaprilat (50 ng ml-1). 3. No significant change in des-Arg9-BK-like immunoreactivity during reperfusion was observed in control hearts. In contrast, des-Arg9-BK-like immunoreactivity rose from 44 +/- 15 to 177 +/- 61 fmol min-1 g-1 (P < 0.05, n = 7) 30 s after reperfusion in enalaprilat-treated hearts. 4. In conclusion, BK is released upon reperfusion of the globally ischaemic rat heart. ACE inhibitors, through the inhibition of kininase II, increase the formation of the active metabolite, des-Arg9-BK.

Angiotensin-Converting Enzyme Inhibitors↗

Antiarrhythmic effects of ceruloplasmin during reperfusion in the ischemic isolated rat heart.

The ability of ceruloplasmin, an important serum antioxidant, to reduce the vulnerability of the isolated rat heart to reperfusion arrhythmias has been investigated. Bovine plasma ceruloplasmin was purified by chromatography on aminoethyl-agarose. Isolated rat hearts were submitted to 15 min of regional ischemia and 10 min of reperfusion. The dose-effect relationship and the role of ceruloplasmin conformational integrity in cardioprotection were established by treatment of ischemic hearts with ceruloplasmin at various concentrations (0.25, 0.5, 1, and 2 microM) and at different degrees of conformational integrity (A610/A280 = 0.02, 0.04, and 0.06), 5 min before reperfusion. Deferoxamine (20-500 microM) was used as a positive control. As negative controls we used chemically inactivated ceruloplasmin (1 microM), heat-denatured ceruloplasmin (1 microM), and albumin (1-4 microM). In the control group during the first 5 min of reperfusion, the incidence of total ventricular fibrillation was 100% and of irreversible ventricular fibrillation was 83%. The incidence of reversible and irreversible ventricular fibrillation was significantly decreased in the ceruloplasmin-treated groups in both a dose and molecular integrity dependent manner. Ceruloplasmin had no effect on the incidence of ventricular tachycardia. Deferoxamine reduced the incidence of ventricular fibrillation to the same degree as ceruloplasmin but at concentrations much higher than those of ceruloplasmin. Chemically inactivated ceruloplasmin, heat-denatured ceruloplasmin, and albumin had no protective effects on reperfusion-induced arrhythmias.

Animals↗

Hypoxia-induced release of prostaglandins: mechanisms and sources of production in coronary resistance vessels of the isolated rabbit heart.

The mechanism of hypoxia-induced prostacyclin (PGI2) release was studied in isolated, modified Krebs-Henseleit buffer perfused rabbit hearts under constant-flow conditions. The contribution of vascular endothelium and the role of catecholamines and calcium influx through L-type calcium (Ca2+) channels in hypoxic release of PGI2 were investigated. Reduction in the perfusion solution PO2 (from 476 +/- 13 to 127 +/- 24 mmHg; 1 mmHg = 133.3 Pa) in the presence of glucose (5 mM) and pyruvate (2 mM) caused a significant release of 6-keto-PGF1 alpha, the stable metabolite of PGI2 (from 3.0 +/- 0.4 to 7.3 +/- 2.0 pmol.min-1.g-1, p < 0.05, n = 12), whereas no variation in washout of catecholamines in the perfusate was observed. Electrolysis of the perfusion buffer solution was used to destroy the endothelium. Endothelium impairment by electrolysis almost completely abolished the vasodilation induced by serotonin (5HT) and acetylcholine (ACh), without affecting that caused by papaverine. The basal release of 6-keto-PGF1 alpha was significantly enhanced after electrolysis. However, its release during hypoxia was completely abolished. In a separate group of normal hearts, verapamil (10(-7) M) completely blocked the release of 6-keto-PGF1 alpha during hypoxia. Similar results were obtained in 15 mM KCl arrested hearts challenged with hypoxia. Under normoxic conditions, isoproterenol (10(-7) M) induced a significant release of 6-keto-PGF1 alpha (from 2.9 +/- 0.5 to 5.3 +/- 0.8 pmol.min-1.g-1, p < 0.05, n = 9). To stimulate endogenous catecholamine release, hearts perfused with glucose-free buffer (pyruvate 14.8 mM) were submitted to hypoxia. Under these conditions, hypoxia was accompanied by an enhanced release of noradrenaline (from 1.3 +/- 0.5 to 19.7 +/- 7.8 pmol.min-1.g-1). Despite the increased noradrenaline washout in effluent, the hypoxia-induced release of 6-keto-PGF1 alpha in glucose-free perfused hearts was not enhanced. Our results suggest that endothelial cells are the major site of PGI2 synthesis during hypoxia and that myocardial contractility is a prime factor involved in this process. Verapamil reduction of PGI2 release is most probably through its negative inotropic effect. Although exogenous beta-adrenergic stimulation can induce PGI2 release, endogenous catecholamines do not appear to contribute to the hypoxia-induced release of PGI2.

Animals↗

Transfer function analysis of vagal control of heart rate during synchronized vagal stimulation.

Synchronized electrical stimulation was used to study the heart rate (HR) response to fluctuations in parasympathetic input to the sinus node in anesthetized dogs. This was obtained by varying the time interval (interpulse interval) between stimulatory vagal pulses. Spectral methods were used to estimate transfer functions between the excitatory signal and the resulting HR response for different intensities of vagal stimulation. The intensity of vagal stimulation was proportional to the number of pulses delivered in each cardiac cycle. From the estimated transfer functions, and based on a mathematical model of the time course of ACh concentration at the sinus node, filter models were derived by using a system identification approach. HR response was characterized by a combination of two different filter behaviors: a low-pass filter behavior of mean cut-off frequency of 0.065 Hz and an all-pass filter behavior. The magnitude of the low-pass filter gain decreased with increasing intensity of vagal stimulation. The magnitude of the all-pass filter gain increased and then decreased with increasing intensity of vagal stimulation. The all-pass filter characteristics of HR response during synchronized stimulation of the vagus nerves are specific to this mode of stimulation, because they were not observed in nonsynchronized modes of vagal stimulation. We can conclude that, during synchronized vagal stimulation, the HR response exhibits both a slow dynamic component and a fast component related to beat-to-beat variations.

Animals↗

Comparison of the diagnostic yield of Holter versus transtelephonic monitoring.

OBJECTIVE: To compare the diagnostic yield of transtelephonic monitoring (TTM) with Holter monitoring in patients presenting possibly arrhythmogenic symptoms. DESIGN: A prospective comparison of Holter monitoring with TTM performed sequentially in all subjects. SETTING: Tertiary arrhythmia clinic at Hôpital du Sacré-Coeur de Montréal, Montréal, Québec. PATIENTS: One hundred consecutive patients (34 men and 66 women, mean +/- SD age 55 +/- 16 years) presenting over a two-year period for diagnosis of intermittent palpitations and/or syncope/dizziness. INTERVENTIONS: Subjects first underwent 24 h Holter monitoring and then were provided with TTM for 25 +/- 13 days, with instructions to record during symptomatic episodes and subsequently to transmit the recording at their convenience. MAIN RESULTS: Holter monitoring documented arrhythmia in 30 patients whereas TTM identified arrhythmia in 21. TTM was most useful in excluding arrhythmia during symptoms (34 patients) versus Holter (two patients). Neither method was useful in diagnosing syncope. Frequency of occurrence of palpitations did not predict which method would most likely yield a diagnosis but palpitations lasting longer than 2 mins were likely to be diagnosed by TTM. CONCLUSIONS: Holter and TTM are complementary studies whose combined use increases the diagnostic yield of arrhythmia. Further, TTM is of greatest use in excluding arrhythmia during intermittent symptoms.

Arrhythmias, Cardiac↗

Protection of myocardial tissue against deleterious effects of oxygen free radicals by ceruloplasmin.

This study describes the carioprotective effect of ceruloplasmin (CAS 9031-37-2) against oxygen free radical injury, as indicated by several biochemical indicators and some cardiodynamic variables. Isolated rat hearts (n = 4-8, p < 0.05, for each experimental point) in Langendorff preparation were exposed to oxygen free radicals generated by electrolysis (10 mA) in the absence and the presence of 0.25 mumol/l purified ceruloplasmin and denaturated ceruloplasmin, in Krebs-Henseleit perfusion solutions. Biochemical indicators (noradrenaline, malondialdehyde, creatine-kinase, lactate dehydrogenase, aspartate aminotransferase, Ca2+ and Mg2+) as well as the electrocardiogram and the left ventricular pressure (LVP), were altered by oxygen free radicals formation, denoting major cellular and tissular damages in the nontreated hearts. Ceruloplasmin exhibited a cardioprotective effect and prevented the oxygen free radical-induced release of noradrenaline, indicating that it can also protect the sympathetic nerve endings from oxygen free-radical injury. Purified ceruloplasmin, a circulating extracellular antioxidant and oxygen free radical scavenger, seems to be an effective heart protective agent against myocardial and neuronal injuries generated by oxygen free radicals.

Animals↗

Slow cardiovascular rhythms in tilt and syncope.

The cardiovascular oscillations during orthostasis were analyzed by time-frequency mapping in 23 patients with history of vasodepressor (VD) syncope and in 10 control subjects. Syncope was induced by head-up tilt (80 degrees, 25 min) alone in 11 patients (VD-1). Twelve patients remained asymptomatic (VD-2) during this tilt, but presented VD syncope or presyncope during tilt with an isoproterenol infusion. Data from the first tilt without isoproterenol infusion are presented here. Amplitude of sympathetically-mediated nonrespiratory fluctuations [0.01 Hz-respiratory frequency (Rf)] in blood pressure was greater at the beginning of the tilt in both (VD-1 and VD-2) groups compared to controls. Nonrespiratory oscillations were present throughout the tilt and their amplitude increased toward its end (p < 0.001) in VD-2 and control groups. In contrast, in the VD-1 group, the amplitude of 0.01-0.05 Hz rhythm in blood pressure diminished shortly after the beginning of tilt and continued to decline toward the syncope. Nonrespiratory fluctuations in R-R intervals were greatest in VD-1 group. The slow blood pressure rhythms reflect an integrity of feedback loops, and their disappearance is an early sign of an impending syncope.

Adult↗

[Identification of deep septal ventricular tachycardia substrates from epicardial breakthrough characteristics].

This study aimed to elucidate the relationship between the epicardial activation pattern and the site of origin of the ventricular tachycardia (VT) occurring from the interventricular septum, and to find epicardial breakthrough characteristics identifying VT substrates. Seven patients undergoing intraoperative mapping including right ventricular endocardial mapping were studied. Thirteen septal VTs, which were defined as VTs in which both right and left ventricular endocardial breakthroughs were on the septal aspect, were induced. The VT site of origin was identified from the site and timing of right and left septal endocardial breakthroughs. All VTs were classified into three groups according to the site of epicardial breakthrough: type A, epicardial breakthrough in the anterior interventricular area; type F, epicardial breakthrough in the right ventricular free wall; type P, epicardial breakthrough in the posterior interventricular area. All type F VTs had a right ventricular endocardial breakthrough in the anterior septum and preceded the left ventricular endocardial breakthrough, thereby indicating right anterior septal origin. In the types A and P, both the right and left endocardial breakthroughs were localized in consistent (anterior and posterior, respectively) halves of the septum, but their relative timing was inconstant. This result suggests that epicardial mapping, and even noninvasive methods like body surface mapping, can identify the site of origin of the septal VTs, especially when the epicardial breakthrough occurs in the right ventricular free wall.

Aged↗

[Comparison of the infusion of acetylcholine into the artery of the sinoatrial node with the electric stimulation of cardiac parasympathetic nerves].

Atrial fibrillation occurring after open heart surgery largely depends on heterogeneous dispersion of refractoriness. To investigate the contribution of the autonomic nervous system in this phenomenon, we studied the regional distribution of neurally induced atrial electrophysiological events. Electrical stimulation of the right atrial fat pad, acetylcholine injection into the sinus node artery, and stimulation of the right and left vagosympathetic trunks were compared with respect to detailed atrial mapping. Unipolar electrograms were recorded from 127 atrial sites before and after neural stimulation or acetylcholine injection (10(-7) mol) in 8 anesthetized dogs. Regional changes in atrial repolarization were estimated by epicardial isointegral maps generated from computed values of the area under each electrogram and plotted on an atrial grid. The anatomical distribution of the sinus node artery was assessed by intra-arterial injection of microspheres. The effects of right and left vagal and right atrial fat pad stimulation extended contralaterally. Acetylcholine injected into the sinus node artery affected the lower left atrium whereas no microspheres could be found in this region upon microscopic examination. Therefore, this effect was possibly related to cholinergic activation of neuronal cell bodies located in the right atrial wall and projecting to the lower left atrium, supporting the hypothesis that local circuit neurons were involved in the activation of the intrinsic nervous system of the heart.

Acetylcholine↗

Effects of trandolapril on the sympathetic tone and reactivity in systemic hypertension.

Hemodynamic and autonomic evaluations were carried out after 2-3 weeks of treatment with placebo and at the end of 4 weeks of treatment with an angiotensin converting enzyme (ACE) inhibitor, trandolapril, 2 mg/day in 18 hypertensive patients (average age, 48 +/- 2 years) of either sex. This treatment lowered the mean arterial pressure in the whole group from 112 to 105 mm Hg (p < 0.05) without significant changes in basal heart rate or norepinephrine (NE) and epinephrine plasma levels. Based on daytime ambulatory blood pressure monitoring, the patients were separated into 2 equal groups of 9 patients: the better responders (R), with an average decrease in mean arterial pressure of 12 mm Hg, and the lesser responders (NR), with an average fall of mean arterial pressure of 2 mm Hg. Before treatment, the R group had a higher resting heart rate, a lower cardiac output (-16%), and a higher peripheral resistance (+22%) than the NR group (difference not significant). Moreover, the R group was also observed to have a 33% higher plasma NE level (p < 0.05) in the supine position, associated with a 52% higher NE response to standing (p < 0.05), and a 40% lower number of beta-adrenergic receptors on lymphocytes, suggesting a higher sympathetic tone and reactivity in that group. Following treatment with the ACE inhibitor, heart rate and plasma NE levels were not altered significantly in either group, suggesting a blunting of the baroreflex response concomitant with the lowered blood pressure, especially in the R group.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Markedly different effects on ventricular remodeling result in a decrease in inducibility of ventricular arrhythmias.

OBJECTIVES: The purpose of this study was to determine whether the type and extent of ventricular remodeling after infarction influence inducibility of ventricular arrhythmias after infarction. BACKGROUND: Although serious ventricular arrhythmias after infarction are related to ventricular dysfunction, the relation between inducibility of ventricular arrhythmias and ventricular remodeling remains incompletely understood. METHODS: Rats that survived ligation of the left anterior descending coronary artery (n = 218) were randomized to receive placebo (saline solution) or captopril or propranolol therapy and were followed up for 5 weeks. Hemodynamic and neurohumoral blood measurements were obtained, and therapy was stopped. Two days later, susceptibility to ventricular arrhythmias was assessed by programmed electrical stimulation, and hearts were prepared for pathologic studies. RESULTS: Placebo-treated rats with a large myocardial infarction had ventricular dysfunction, marked neurohumoral activation, ventricular enlargement (endocardial circumference 16 +/- 3 [mean +/- SD] to 20 +/- 4 mm, p < 0.05) and increased cardiac fibrosis (volume density of collagen 2.3 +/- 0.8% to 5.6 +/- 2.4%, p < 0.05). In many rats this resulted in easily inducible ventricular arrhythmias (inducibility quotient 4.9 +/- 2.2). Captopril attenuated the development of ventricular dysfunction, neurohumoral activation, ventricular hypertrophy and dilation (endocardial circumference 18 +/- 3 mm) and cardiac fibrosis (3.1 +/- 0.8%, p < 0.05). These modifications were accompanied by decreased inducibility of ventricular arrhythmias (inducibility quotient 1.1 +/- 2.0, p < 0.05). Propranolol did not prevent ventricular dysfunction, had variable effects on neurohumoral activation and led to increased ventricular dilation (endocardial circumference 25 +/- 4 mm, p < 0.05) and cardiac fibrosis (7.7 +/- 1.2%, p < 0.05). Nevertheless, these morphologic changes led to decreased inducibility of ventricular arrhythmias (inducibility quotient 2.2 +/- 2.5%, p < 0.05). CONCLUSIONS: This study indicates that the inducibility of ventricular arrhythmias can be reduced as a result of markedly different effects on ventricular remodeling, indicating that the relation between ventricular remodeling, arrhythmias and survival is more complex than previously thought.

Animals↗