PubMed HealthSearch

Biomedical subjects

D A Kirby

Publications and source records attributed to D A Kirby.

At least 19 recordsLinked to original sources

Transient coronary stenosis associated with arrhythmia and ischemia 24 hours after reperfusion.

We examined the electrophysiologic sequelae of transient reductions in coronary blood flow (CBF) in conscious dogs. Animals were instrumented to measure arterial pressure, heart rate, repetitive extrasystole threshold (RET), and CBF before coronary stenosis, during 90 minutes of a 50% reduction in CBF, and at 1, 24, 48, and 72 hours after reperfusion. RET was decreased at 24 and 48 hours but returned to baseline by 72 hours after reperfusion. Frequent ventricular ectopic activity (VEA), absent during the control period, was noted during stenosis and at 1, 24, and 48 hours after reperfusion. beta-Adrenergic blockade (metoprolol) normalized the decreased RET at 24 hours. Addition of alpha 1-adrenergic blockade (prazosin) abolished VEA. Endocardial blood flow in the posterior papillary muscle of the left ventricle was reduced by 52 +/- 9% during stenosis, was similar to baseline levels by 1 hour after reperfusion, and decreased by 39 +/- 5% at 24 hours. We conclude that episodes of modest coronary artery stenosis may be followed by electrophysiologic changes indicative of increased vulnerability to malignant ventricular arrhythmias.

Animals

Catecholamines in cerebrospinal fluid are increased by behavioral arousal and myocardial ischemia.

To study the central neural mechanisms involved in malignant ventricular arrhythmia, concentrations of norepinephrine in the cerebrospinal fluid were measured during behavioral stimulation and during coronary artery occlusion. Pigs were instrumented via thoracotomy with catheters to measure mean arterial pressure and plasma catecholamines and with silk snares around the left anterior descending coronary artery for occlusion after recovery from surgery. Cannulas were placed in the lateral ventricle of the brain to sample cerebrospinal fluid. Behavioral arousal was induced by lifting the pig in a canvas sling for 5 min. Mean arterial pressure, heart rate, and both plasma and cerebrospinal fluid norepinephrine concentrations increased significantly after lifting stimulation. In a separate experiment, 5 min after coronary artery occlusion, both plasma catecholamines and norepinephrine in cerebrospinal fluid were significantly elevated. Furthermore, pigs in which ventricular fibrillation occurred after occlusion had significantly higher concentrations of norepinephrine in cerebrospinal fluid before coronary artery occlusion.

Animals

Control of ventricular fibrillation after coronary artery occlusion via intracerebroventricular injections.

The central nervous system (CNS) may play a larger role than previously thought in the development of ventricular fibrillation after coronary artery occlusion. The probability of ventricular fibrillation after complete, permanent occlusion of the left anterior descending coronary artery was 52% in conscious control pigs. After the administration into the lateral cerebral ventricle of tyrosine, the amino acid precursor of the catecholamine neurotransmitters, 100% of the animals developed ventricular fibrillation. After tyrosine plus propranolol, a beta-adrenoceptor antagonist, only 9% of pigs developed ventricular fibrillation. Treatment with propranolol alone did not affect the outcome. Catecholamine synthesis in the CNS may be associated with the development of ventricular fibrillation after coronary artery occlusion.

Animals

Diazepam administered prior to coronary artery occlusion increases latency to ventricular fibrillation.

Few studies have addressed the antiarrhythmic potential of pretreatment with diazepam in acute myocardial infarction. Thus, the effect of diazepam pretreatment prior to coronary artery occlusion was examined in conscious pigs. Animals were instrumented with aortic catheters to measure arterial pressure, a pulmonary artery catheter for drug administration, and a snare around the left anterior descending coronary artery for permanent occlusion one week later. Diazepam (1 mg/kg iv bolus) or vehicle was administered 10 minutes prior to occlusion. Eight of 14 animals receiving diazepam (57%) and 13 of 22 receiving vehicle animals (59%) developed ventricular fibrillation following coronary occlusion. However, the latency to ventricular fibrillation was significantly shorter (7 +/- 1 min) in animals receiving vehicle compared to animals receiving diazepam (11 +/- 1 min). Significant increases in heart rate were seen up to 5 hours after coronary occlusion only in animals receiving vehicle. The results indicate that diazepam pretreatment can increase ventricular fibrillation latency and prevent heart rate increases following acute myocardial infarction.

Animals

Decreases in repetitive extrasystole threshold in the conscious pig with myocardial infarct were reversed by tyrosine.

Reports indicate that the administration of tyrosine, the precursor amino acid for catecholaminergic neurotransmitters, may be beneficial under conditions of physiologic stress. We studied the effects of tyrosine on vulnerability to ventricular arrhythmia in conscious pigs with healing myocardial infarcts, and sham operated (intact) pigs. Mean arterial pressure and heart rate were measured via chronically implanted aortic catheters. The repetitive extrasystole threshold (defined as the energy in milliamperes (ma) needed to cause a spontaneous ventricular beat following a premature beat induced by an electrical impulse), was measured via a bipolar pacing catheter placed during instrumentation surgery in the apex of the right ventricle. One week after infarct, the myocardial infarct group was studied before and ninety minutes after the administration of tyrosine (8 mg/kg iv). Before tyrosine, the myocardial infarct group had a significantly lower repetitive extrasystole threshold (12 +/- 1 ma) compared to the intact group (19 +/- 2 ma). Ninety minutes after tyrosine, the repetitive extrasystole threshold in the myocardial infarct group was 17 +/- 1 ma. The availability of tyrosine did not alter the repetitive extrasystole threshold in the intact group. Thus, vulnerability to ventricular arrhythmia was enhanced in pigs with recent myocardial infarction. Tyrosine, which can be nutritionally manipulated, may reduce myocardial vulnerability to arrhythmia after infarct.

Animals

Decrease in repetitive extrasystole threshold during epinephrine infusion is enhanced in conscious dogs with perinephritic hypertension.

Hypertension is associated with myocardial hypertrophy as well as increased adrenergic responsiveness, both of which can predispose to malignant ventricular arrhythmias. This study was designed to test the effects of subpressor doses of epinephrine (0.15 and 0.3 micrograms/kg/min x 30 min) on vulnerability to ventricular arrhythmia in normotensive and perinephritic hypertensive dogs. Two groups of 6 dogs each were chronically instrumented with aortic catheters to measure mean arterial pressure and bipolar pacing catheters in the apex of the right ventricle to measure repetitive extrasystole threshold, an index of vulnerability to ventricular fibrillation. In the normotensive dogs, the low dose of epinephrine (0.15 micrograms/kg/min IV) had no significant effects on mean arterial pressure, heart rate of repetitive extrasystole threshold. However, in the hypertensive dogs, the same dose caused a significant 39% increase in heart rate (p less than 0.05) and 41% decrease in repetitive extrasystole threshold (p less than 0.05). These findings suggest that electrophysiological vulnerability of the myocardium caused by epinephrine infusion is enhanced in the hypertensive animal.

Animals

Behavioral arousal enhances inducibility and rate of ventricular tachycardia.

Behavioral arousal may trigger malignant cardiac arrhythmias. To study the effect of arousal on ventricular tachycardia, pigs were instrumented with catheters to measure mean arterial pressure and sample plasma catecholamines and left anterior descending coronary artery snares for occlusion 1 wk later. Bipolar pacing catheters were placed in the right ventricular apex to induce ventricular tachycardia. One week after occlusion, electrophysiological testing was repeated before and immediately after arousal caused either by restraining and lifting the pig in a canvas sling or by bringing a stall mate into the room. The number of stimuli needed to induce monomorphic ventricular tachycardia was reduced by both types of arousal (P less than 0.05) compared with control conditions. Ventricular tachycardia rate was increased 60 +/- 17 beats/min after lifting stimulation (P less than 0.05). When beta 1-receptor blockade was induced by metoprolol, inducibility of ventricular tachycardia and rate were not different from control. Thus, in pigs, arousal may facilitate arrhythmogenesis. This effect may be mediated by sympathetic neural activity in the heart because it was annulled by beta 1-adrenergic blockade.

Animals

Epinephrine-induced decrease in repetitive extrasystole threshold is reversed by tyrosine in conscious dogs.

Previous studies indicate that availability of L-tyrosine, the precursor for catecholaminergic neurotransmitters, reduced psychological and physiological effects of stressful situations including hypotension, cold and behavioral stress. The current study examined the effect of L-tyrosine administration on cardiac vulnerability to arrhythmia induced by an infusion of epinephrine in conscious dogs. Heart rate, mean arterial pressure and cardiac electrophysiologic parameters, i.e., effective refractory period and repetitive extrasystole threshold, were measured during infusion of epinephrine (0.3 micrograms/kg/min x 30 min), before and after L-tyrosine (B mg/kg iv bolus). Epinephrine administration significantly increased heart rate by 39% (p less than 0.05), and decreased repetitive extrasystole threshold by 33% (p less than 0.05). Mean arterial pressure and effective refractory period were unchanged. Following L-tyrosine, repetitive extrasystole threshold was restored to baseline levels. Tyrosine may thus ameliorate stress-induced increases in ventricular vulnerability to arrhythmias in conscious animals.

Animals

Inducible monomorphic sustained ventricular tachycardia in the conscious pig.

Sustained monomorphic ventricular tachycardia (VT) is of clinical importance but has not been readily modeled in conscious animals. Eleven pigs had myocardial infarction induced by pulling snares previously placed around the left anterior descending (LAD) coronary artery. Six days after occlusion, bipolar pacing catheters were inserted in the right ventricular apex for induction of VT. Testing was repeated in conscious pigs on 6 out of 8 to 19 days after infarction. Monomorphic VT was induced in each animal during each session, using three to four extrastimuli. VT was terminated by burst pacing in 74% of trials; average VT rate was 362 +/- 26 beats/min. VT was prevented in four of eight animals by procainamide and in five of eight animals by magnesium, but was not prevented by lidocaine or metoprolol. The model may be useful in the study of potentially malignant ventricular tachyarrhythmias, important prodromes for sudden death.

Animals

Changes in ventricular fibrillation threshold during the development of perinephritic hypertension.

Established hypertension is associated with enhanced susceptibility to life-threatening arrhythmias. However, little is known about the effects of the development of hypertension on the electro-physiological properties of the heart. To study this relationship, dogs were chronically instrumented for recording mean arterial pressure and conducting cardiac electrical testing during right ventricular pacing using an intracavitary bipolar catheter. In normotension, ventricular fibrillation threshold was determined under alpha-chloralose anesthesia, after which perinephritic hypertension was induced by wrapping one kidney in silk followed by contralateral nephrectomy. During serial testing of the same animals, ventricular fibrillation threshold was significantly increased early in the development of hypertension (2 to 3 weeks after renal wrapping), but found to be significantly reduced at 6 to 7 weeks after renal wrapping. The increase in ventricular fibrillation threshold was eliminated by cholinergic blockade.

Animals

Abolition of clonidine's effects on ventricular refractoriness by naloxone in the conscious dog.

The interaction between opiate and adrenergic receptors on cardiac electrophysiologic function in the conscious dog was addressed in our study. We examined the effects of opiate receptor blockade with naloxone on clonidine-induced changes in refractoriness of the cardiac ventricle. Nine dogs were chronically instrumented for recording mean arterial blood pressure, administration of drugs and for measurement of effective refractory period of the ventricle. Clonidine (10 micrograms/kg, i.v.) significantly (p less than 0.05) decreased heart rate to 72 +/- 5 beats/minute from 108 +/- 8 beats/minute; mean arterial pressure decreased significantly (p less than 0.05) to 83 +/- 3 mmHg from 91 +/- 4 mmHg. Ventricular refractoriness was increased significantly (p less than 0.05) at current levels of 7 and 10 mA and pacing rates 180 and 200 beats/minute. Naloxone (3-10 mg/kg, i.v.) abolished clonidine's effects on heart rate, mean arterial pressure and ventricular refractoriness. We conclude that ventricular refractoriness may be regulated in part by interactions between central adrenergic and opioidergic systems.

Animals

Differential effects of sleep stage on coronary hemodynamic function during stenosis.

We have demonstrated in a previous study that in the normal heart REM sleep induces surges in heart rate and coronary blood flow which are abolished by bilateral stellectomy. To study the effects of sleep in the stenosed coronary circulation, dogs were instrumented with Doppler flow probes and hydraulic occluders around the left circumflex coronary artery to measure coronary blood flow and to produce a 60% flow reduction. Catheters were placed in the aorta to measure mean arterial blood pressure. Electrodes were implanted via the frontal sinus to identify sleep stages. In the absence of stenosis, mean blood pressure was 95 +/- 3 mmHg, HR was 111 +/- 4 bpm, and coronary blood flow was 33 +/- 2 ml/min. During stenosis, REM induced episodic increases in heart rate which were accompanied by 38% decreases in coronary blood flow. We conclude that in the stenosed coronary circulation, REM sleep produces episodic sinus tachycardia and coronary blood flow reduction.

Animals

Differential effects of sleep stage on coronary hemodynamic function.

The sleep-wake cycle results in distinctive patterns of autonomic nervous system activity. The present study examined the effects of rapid eye movement and slow-wave sleep on coronary hemodynamic function in chronically instrumented dogs. Mean arterial blood pressure was measured via a catheter in the aorta, and coronary blood flow was determined with Doppler probes placed around the left circumflex and right coronary artery. Identification of sleep stages was accomplished by means of electrodes implanted via the frontal sinus to record electro-oculogram, electromyogram, and electroencephalogram. Results indicated that during slow-wave sleep there were moderate but significant reductions in heart rate, 9% decreases in left coronary blood flow, and increases in coronary vascular resistance. In rapid-eye-movement sleep, the circumflex coronary blood flow base line returned to awake levels, and there were pronounced, phasic 35% increases in heart rate and 35% increases in coronary blood flow lasting 15-20 s. These surges were eliminated by stellectomy, indicating that they were mediated by the sympathetic nervous system.

Animals

Attenuation by naloxone of the pressor effects of angiotensin II in conscious cynomolgus monkeys.

The effects of naloxone and morphine on mean arterial blood pressure (MBP) and heart rate (HR) responses to angiotensin II (AII) were studied in conscious cynomolgus monkeys. Graded doses of AII (0.3, 1 and 3 micrograms/min for 8-10 min) were infused i.v. 20 min apart, preceded by an i.v. injection of either naloxone (1, 3 or 10 mg/kg), morphine (0.3, 1 or 3 mg/kg) or saline. Pretreatment with naloxone (10 mg/kg) attenuated the pressor response to AII (0.3 or 1 microgram/min) by 25-50% but did not alter similar pressor responses to phenylephrine. Pretreatment with morphine had little or no effect on MBP or HR responses to AII.

Angiotensin II

Enhanced responsiveness to carotid baroreceptor unloading in conscious dogs during development of perinephritic hypertension.

The effects of unloading the carotid sinus baroreceptors before and during the development of perinephritic hypertension were studied in conscious dogs instrumented with aortic catheters to measure arterial pressure and heart rate, and electromagnetic flow probes to measure cardiac output and calculate total peripheral resistance. Prior to hypertension, bilateral carotid occlusion (BCO) increased mean arterial pressure by 38 +/- 2 from 101 +/- 2 mm Hg and total peripheral resistance by 19 +/- 2 from 46 +/- 3 mm Hg/l/min, while cardiac output and heart rate did not change from 2,299 +/- 128 ml/min and 84 +/- 4 beats/min, respectively. At 2 weeks after renal wrapping, there were significant increases in baseline mean arterial pressure, cardiac output, and total peripheral resistance and decreases in heart rate; BCO increased mean arterial pressure by 59 +/- 5 from 130 +/- 4 mm Hg, heart rate by 36 +/- 5 beats/min from 69 +/- 3 beats/min, and cardiac output by 458 +/- 103 from 2,711 +/- 239 ml/min. By 4 weeks after renal wrapping, heart rate and mean arterial pressure responses to BCO were approaching baseline levels. After beta-adrenergic receptor blockade, responses to BCO of mean arterial pressure, cardiac output, and heart rate were no longer significantly enhanced during the development of hypertension. Thus, in conscious dogs, reflex pressor responses to baroreceptor unloading via BCO were enhanced during the development of hypertension but no longer present 3 weeks later. The augmented mean arterial pressor responses to BCO were mediated by increases in cardiac output and heart rate, which in turn, appeared to be controlled by beta-adrenergic receptor mechanisms.

Animals

beta-Adrenergic and cholinergic receptors in hypertension-induced hypertrophy.

Perinephritic hypertension was produced in dogs by wrapping one kidney with silk and removing the contralateral kidney 1 week later. Mean arterial pressure rose from 104 +/- 3 to 156 +/- 11 mm Hg, while left ventricular free wall weight, normalized for body weight, was increased by 49%. Muscarinic, cholinergic receptor density measured with [3H]-quinuclidinyl benzilate, fell in hypertensive left ventricles (181 +/- 19 fmol/mg, n = 6; p less than 0.01) as compared with that found in normal left ventricles (272 +/- 16 fmol/mg, n = 8), while receptor affinity was not changed. The beta-adrenergic receptor density, measured by binding studies with [3H]-dihydroalprenolol, rose in the hypertensive left ventricles (108 +/- 10 fmol/mg, n = 7; p less than 0.01) as compared with that found in normal left ventricles (68.6 +/- 5.2 fmol/mg, n = 15), while beta-adrenergic receptor affinity decreased in the hypertensive left ventricles (10.4 +/- 1.2 nM) compared with that found in the normal left ventricles (5.0 +/- 0.7 nM). Plasma norepinephrine levels were similar in the two groups, but myocardial norepinephrine levels were depressed (p less than 0.05) in dogs with hypertension. Moderate left ventricular hypertrophy induced by long-term aortic banding in dogs resulted in elevations in beta-adrenergic receptor density (115 +/- 14 fmol/mg) and decreases in affinity (10.4 +/- 2.2 nM) similar to those observed in the dogs with left ventricular hypertrophy induced by hypertension. Thus, our results suggest that perinephritic hypertension in the dog induces divergent effects on cholinergic and beta-adrenergic receptor density. The increased beta-adrenergic receptor density and decreased affinity may be a characteristic of left ventricular hypertrophy rather than hypertension.

Animals