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Biomedical subjects

I Biaggioni

Publications and source records attributed to I Biaggioni.

107 records · Page 6Linked to original sources

Endogenous restoration of noradrenaline by precursor therapy in dopamine-beta-hydroxylase deficiency.

DL-dihydroxyphenylserine was given by mouth in a single-blind, placebo-controlled trial to two patients with orthostatic hypotension due to dopamine-beta-hydroxylase deficiency, in the hope of providing noradrenaline by endogenous decarboxylation. Dose-dependent increases in blood pressure were obtained over the range 150-600 mg. After 600 mg mean arterial pressure rose 33 and 19 mm Hg and these rises were tightly correlated with an increase in plasma noradrenaline (r = 0.995, p less than 0.001 and r = 0.88, p less than 0.05). Urinary noradrenaline increased from undetectable levels to 338 and 511 micrograms/24 h. Standing time (a correlate of functional capacity) also increased significantly in both patients. No side-effects were noted.

Adult↗

The potent pressor effect of phenylpropanolamine in patients with autonomic impairment.

We determined the pressor effect of phenylpropanolamine hydrochloride, a widely used sympathomimetic agent, in 14 patients with autonomic failure and orthostatic hypotension. Blood pressure was monitored every five minutes in the sitting position with an automated device. Oral administration of 25 mg of phenylpropanolamine hydrochloride in nine patients produced significant increases in systolic (32 mm Hg), diastolic (15 mm Hg), and mean (21 mm Hg) blood pressures. The pressor effect appeared within the first 60 minutes and was still present at 105 minutes. There was no change in heart rate. Blood pressure was also significantly raised by administration of 12.5 mg of oral phenylpropanolamine hydrochloride in five additional patients. We conclude that administration of 25 mg of phenylpropanolamine hydrochloride elicits a potent pressor response in patients with orthostatic hypotension and that significant hypertension may result.

Aged↗

Neck tumour with syncope due to paroxysmal sympathetic withdrawal.

A patient with recurrent squamous carcinoma metastatic to the neck after radical neck dissection and high dose radiation therapy developed paroxysmal hypotensive episodes that were severe, spontaneous and characterised by suppressed sympathetic but not enhanced parasympathetic activity. Intravenous pressors were successful in treating acute episodes but neither drug therapy nor surgical neck exploration reliably prevented syncopal attacks. Glossopharyngeal and/or vagal nerve infiltration by tumour with episodic activation of the afferent limb of the baroreflex arc producing vasodilatation primarily due to sympathetic withdrawal is the likely mechanism of life threatening syncope in this patient.

Adrenergic Fibers↗

Cardiovascular and respiratory effects of adenosine in conscious man. Evidence for chemoreceptor activation.

The cardiovascular and respiratory effects of intravenous adenosine were studied in conscious normal volunteers. Bolus injections of adenosine increased systolic and diastolic pressures initially (+15 and +13 mm Hg after 100 micrograms/kg) followed by a subsequent reduction in systolic and diastolic pressures (-12 and -16 mm Hg). Heart rate increased during trough blood pressure (R-R interval shortening of 298 msec after 100 micrograms/kg). Adenosine steady-state infusions increased heart rate (+30 beats/min during 140 micrograms/kg/min), systolic pressure (+16 mm Hg), and pulse pressure (+21 mm Hg) but decreased diastolic pressure slightly (-5 mm Hg), resulting in no significant change in mean arterial pressure. Adenosine stimulated respiration, resulting in decreased PaCO2 (41 to 31 mm Hg), increased PaCO2 (101 to 113 mm Hg), and increased pH (7.42 to 7.50). The increased ventilation was not explained by bronchoconstriction, hypotension, or hypoxia. The observed pressor and tachycardic effects are mediated through reflex autonomic mechanisms since they are completely abolished in patients with severe autonomic failure. These autonomic mechanisms probably involve chemoreceptor activation since adenosine is pressor when infused in the aortic arch proximal to the origin of the carotid arteries but depressor when infused in the descending aorta. It is concluded that the hemodynamic and respiratory effects of adenosine observed in normal volunteers are in part due to chemoreceptor stimulation. These findings raise the possibility that adenosine is an endogenous modulator of respiration in man.

Adenosine↗

Oral yohimbine in human autonomic failure.

Yohimbine is an alpha 2-adrenoreceptor antagonist that acts to enhance sympathetic nervous system discharge and potentiate sympathetically mediated cardiovascular reflex responses. We therefore assessed the ability of yohimbine to increase sympathoadrenal discharge and raise blood pressure (BP) in patients with autonomic failure characterized by profound orthostatic hypotension. Yohimbine 5 mg orally in eight seated patients significantly elevated mean systolic BP by 33 mm Hg from 136 +/- 15 (mean +/- SD) to a maximum of 169 +/- 23 mm Hg (p less than 0.01), mean diastolic BP by 16 mm Hg from 77 +/- 9 to a maximum of 93 +/- 15 mm Hg (p less than 0.01), and mean heart rate (HR) by 10 beats per minute (BPM) from 68 +/- 12 to a maximum of 78 +/- 17 BPM (p less than 0.01). Plasma norepinephrine (NE) increased from 104 +/- 71 to a maximum of 196 +/- 182 pg/ml (p less than 0.05), but plasma epinephrine (E) did not increase significantly (31 +/- 18 versus a maximum of 39 +/- 21 pg/ml). In five patients given yohimbine 2.5 mg orally, BP, HR, NE, and E tended to increase, but the changes were not significant. Plasma yohimbine levels correlated significantly with the changes in mean arterial pressure (r = 0.61, p less than 0.01). Yohimbine raises BP and HR in patients with autonomic failure. These effects are dose- and concentration-dependent and mediated through increased sympathetic discharge. Yohimbine may be useful in the treatment of orthostatic hypotension associated with autonomic failure. It is unique among current modes of therapy for this disorder in that it enhances discharge of the patient's own sympathetic system.

Administration, Oral↗

Postjunctional vascular smooth muscle alpha-2 adrenoreceptors in human autonomic failure.

Animal studies have suggested that vasoconstrictor alpha-2 adrenoreceptors exist on vascular smooth muscle cells. We tested this hypothesis in a patient with severe autonomic failure who demonstrated a pressor response to oral clonidine (a selective alpha-2 adrenoreceptor partial agonist). After clonidine 0.8 mg orally, mean arterial pressure rose by 54 mm Hg. After pretreatment with prazosin (a selective alpha-1 adrenoreceptor antagonist) and confirmation of alpha-1 blockade, clonidine 0.8 mg still raised mean arterial pressure by 43 mm Hg. After pretreatment with yohimbine (a selective alpha-2 adrenoreceptor antagonist), clonidine 0.8 mg elevated mean arterial pressure by 13 mm Hg. Since alpha-1 antagonism does not block, and alpha-2 antagonism does not block the pressor effect of clonidine, we conclude that clonidine raised blood pressure in this severely affected autonomic failure patient by vascular alpha-2 adrenoreceptor stimulation. Thus, this provides pharmacological evidence that postjunctional vascular smooth muscle alpha-2 adrenoreceptors exist in man and can modulate blood pressure.

Aged↗

Cardiovascular effects of adenosine infusion in man and their modulation by dipyridamole.

In man, intravenous infusion of adenosine has been useful in inducing sustained hypotension during anesthesia. Bolus injections terminate supraventricular tachyarrhythmias by delaying AV node conduction. It has been proposed that some of its cardiovascular effects are related to inhibition of noradrenergic neurotransmission. We assessed the cardiovascular and sympathoadrenal effects of intravenous infusion of adenosine (10 to 140 micrograms/kg/min) in 7 conscious normal subjects. At the highest infusion rate achieved, adenosine increased heart rate by 33 bpm (p less than 0.005), increased systolic blood pressure by 13 mm Hg (p less than 0.02) and decreased diastolic blood pressure by 8 mm Hg (p less than 0.02). Plasma norepinephrine and epinephrine increased 44% and 213% respectively. Basal plasma renin activity was 0.7 +/- 0.09 ng AI/ml/hr and remained unchanged. Higher doses were not given due to the appearance of subjective side effects (headache, nervousness, flushing and an urge to breathe deeply). During dipyridamole administration, 4-fold lower doses were required to produce equivalent cardiovascular effects. We conclude that in conscious man, intravenous infusion of adenosine is associated with activation rather than inhibition of the sympathoadrenal system. The possible mechanisms of this sympathetic activation are discussed.

Adenosine↗

Management of chronic orthostatic hypotension.

Chronic orthostatic hypotension is characterized by recurrent symptoms of cerebral hypoperfusion due to low upright blood pressure levels. The initial approach should be to identify and correct reversible causes. Persistence of orthostatic hypotension suggests autonomic failure. The goal of management is to minimize symptoms and maximize functional capacity; therefore the magnitude of blood pressure fall is not as important as the advent of symptoms. Therapy is based upon the underlying pathophysiology and the risk/benefit ratio of interventions. Patient education and nondrug measures form the cornerstone of management. Drug therapy is often limited by unacceptable supine hypertension. Rational drug use can be governed by individualized trials of therapy. Patients with moderate or severe orthostatic hypotension are difficult to treat, but can be helped toward resumption of a normal life.

Activities of Daily Living↗

Reduction of liver plasma flow by caffeine and theophylline.

Caffeine and theophylline block the vasodilating effects of adenosine and may act to enhance sympathoadrenal discharge and activate the renin-angiotensin system. To determine if these methylxanthines might thereby have effects on regional blood flow, we studied the influence of caffeine and theophylline on apparent liver plasma flow (LPF) in normal subjects as assessed by indocyanine green clearance. Oral caffeine, 250 mg, reduced LPF by 19% from 630 +/- 150 to 510 +/- 120 ml/min (P less than 0.001). Intravenous theophylline (4.3 mg/kg) reduced LPF by 15% from 550 +/- 50 to 470 +/- 90 ml/min (P less than 0.05). These methylxanthine-induced falls in LPF may alter the disposition of concomitantly administered drugs. Because of their widespread use in Western society, caffeine and theophylline may be major determinants of liver blood flow in the general population. They may therefore prolong the t1/2 and increase steady-state levels of hepatically eliminated drugs.

Adenosine↗

Hemodynamic effects of adenosine in conscious hypertensive and normotensive rats.

Mean arterial pressure and heart rate were measured during intra-aortic arch (i.a.a.), intravenous, and suprarenal artery (s.r.a.) infusions of adenosine in conscious, unrestrained normotensive Wistar-Kyoto rats (WKY) and spontaneously hypertensive rats (SHR) in the absence and presence of ganglionic blockade. In both groups, i.a.a. and i.v. infusions of adenosine induced comparatively larger dose-dependent reductions in mean arterial pressure than did s.r.a. infusions. In WKY, i.a.a. and i.v. infusions of adenosine were equipotent in reducing mean arterial pressure. In contrast, i.a.a. infusion of adenosine was approximately twice as potent as i.v. infusion in SHR. Also, SHR were approximately 6.5 and 2.6 times more sensitive to i.a.a. and i.v. infusions of adenosine, respectively, than were WKY. Further, i.a.a. and s.r.a. infusions of adenosine caused tachycardia in WKY, while i.v. infusions did not alter heart rate. In SHR, neither i.a.a. nor s.r.a. infusion of adenosine altered heart rate, but i.v. infusion induced a profound bradycardia. In ganglionic-blocked WKY that received a norepinephrine infusion to restore blood pressure and heart rate to pre-ganglionic blockade levels, depressor responses to i.a.a. infusion of adenosine were unchanged while the increase in heart rate was abolished. In SHR, ganglionic blockade markedly decreased the depressor response to i.a.a. and i.v. infusions of adenosine and abolished the bradycardic response to i.v. infusion. These results suggest that adenosine is an effective hypotensive agent in both WKY and SHR; however, marked between-strain differences exist in the cardiovascular response to adenosine. These differences most likely are due to changes in adenosine-pulmonary interactions and increases in the importance of adenosine-autonomic interactions in SHR.

Adenosine↗

Sodium loading and posture modulate human atrial natriuretic factor plasma levels.

Atrial natriuretic factor is postulated to act through atrial stretch receptors as a volume regulatory hormone that stimulates diuresis and natriuresis in response to increased atrial pressure. To characterize the stimuli associated with the release of atrial natriuretic factor in humans, we studied 14 normal subjects, both in the supine position and after 10 minutes in an upright posture, while they were on a regular diet (Day 0) and during 3 days of supplemental sodium chloride intake (8 g/day). Radioimmunoassay of plasma atrial natriuretic factor was performed with rabbit antibody to the human hormone amino acids (102-126). Urinary sodium excretion increased from 111 +/- 13 mEq/day (mean +/- SEM) on Day 0 to 275 +/- 15 mEq/day by the third day (Day 3) of high sodium intake. The level of atrial natriuretic factor in the supine position rose from 17 +/- 4 pg/ml (Day 0) to 76 +/- 13 pg/ml on Day 3 (p less than 0.001) and after 10 minutes in an upright posture on Day 3, the level fell to 32 +/- 10 (p less than 0.005). Plasma concentrations of atrial natriuretic factor correlated positively with spot and 24-hour urinary sodium excretion and weight gain, and correlated negatively with plasma aldosterone and renin activity. We conclude that the response of atrial natriuretic factor to sodium loading and posture change in humans is appropriate for a volume regulatory hormone.

Adult↗

Chronic caffeine administration exacerbates renovascular, but not genetic, hypertension in rats.

The purpose of this study was to determine whether or not caffeine would exacerbate renovascular hypertension. Therefore, we examined the effects of chronic caffeine administration on arterial blood pressure in rats subjected to either unilateral renal artery clipping (2K-1C rats) or sham-operation. Animals in each group were randomly assigned to receive either 0.1% caffeine in their drinking water or normal drinking water, and systolic blood pressure was monitored for 6 wk. Caffeine markedly exacerbated the severity of hypertension in 2K-1C rats and caused histological changes consistent with malignant hypertension. 6 wk after surgery, systolic blood pressure, plasma renin activity, and creatinine clearance in control 2K-1C rats were 169 +/- 5 mmHg (mean +/- SEM), 4.4 +/- 0.5 ng AI X ml-1 X h-1, and 2.9 +/- 0.2 ml/min, respectively; as compared with 219 +/- 4 mmHg, 31.8 +/- 7.8 ng AI X ml-1 X h-1, and 1.4 +/- 0.3 ml/min, respectively, in 2K-1C rats receiving caffeine (all values were significantly different compared with control 2K-1C). Chronic caffeine administration did not alter systolic blood pressure, plasma renin activity, or creatinine clearance in sham-operated rats or spontaneously hypertensive rats. Chronic treatment with enalapril (a converting enzyme inhibitor) prevented the development of hypertension in control 2K-1C rats and caffeine-treated 2K-1C rats; however, withdrawal of enalapril precipitated a rapid rise in systolic blood pressure in caffeine-treated 2K-1C rats, but not in control 2K-1C rats. These experiments indicate that caffeine specifically exacerbates experimental renovascular hypertension and might worsen the hypertensive process in patients with renovascular hypertension.

Animals↗

[Alpha 2-adrenoreceptor regulation in the human body].

The affinity of platelet alpha-2-adrenoreceptors for adrenaline is decreased in vivo and in vitro exposure of platelets to catecholamines at physiological concentrations in normal subjects. The direction of these alterations is consistent with the direction of the desensitization phenomena observed in the intact platelet. Hypertensive subjects display an abnormality characterized by an inability to reduce the affinity of their platelet alpha-2-adrenoreceptors in response to increased circulating levels of catecholamines. The potential importance of this defect in the etiology and clinical manifestations of essential hypertension remains to be ascertained.

Adenosine Diphosphate↗

Hemodynamic and humoral effects of caffeine in autonomic failure. Therapeutic implications for postprandial hypotension.

We examined the effects of caffeine and meals on blood pressure and heart rate in 12 patients with autonomic failure. The influence of caffeine on plasma norepinephrine, epinephrine, and renin activity was also studied. Caffeine 250 mg, raised blood pressure by 12/6 mm Hg, from 129 +/- 25/78 +/- 12 (mean +/- S.D.) to a maximum of 141 +/- 30/84 +/- 16 mm Hg at 45 minutes (P less than 0.01), but did not change heart rate, levels of norepinephrine, or epinephrine, or plasma renin activity. Blood pressure fell by 28/18 mm Hg after a standardized meal, from 133 +/- 32/80 +/- 15 to a minimum of 105 +/- 21/62 +/- 12 mm Hg at 60 minutes (P less than 0.01). After pretreatment with 250 mg of caffeine, the standardized meal induced a fall of only 11/10 mm Hg, from 140 +/- 33/79 +/- 7 to 129 +/- 31/69 +/- 13 mm Hg at 60 minutes (P less than 0.05 vs. values after the control per day for seven days) in five patients, postprandial blood pressures remained higher after caffeine than after placebo (P less than 0.05). We conclude that caffeine is a pressor agent and attenuates postprandial hypotension in autonomic failure, and that this effect is not primarily due to elevations in sympathoadrenal activity or activation of the renin-angiotensin system. Caffeine may be useful in the treatment of orthostatic hypotension due to autonomic failure, especially in the postprandial state.

Aged↗

Vestibular influences on autonomic cardiovascular control in humans.

There is substantial evidence that anatomical connections exist between vestibular and autonomic nuclei. Animal studies have shown functional interactions between the vestibular and autonomic systems. The nature of these interactions, however, is complex and has not been fully defined. Vestibular stimulation has been consistently found to reduce blood pressure in animals. Given the potential interaction between vestibular and autonomic pathways this finding could be explained by a reduction in sympathetic activity. However, rather than sympathetic inhibition, vestibular stimulation has consistently been shown to increase sympathetic outflow in cardiac and splanchnic vascular beds in most experimental models. Several clinical observations suggest that a link between vestibular and autonomic systems may also exist in humans. However, direct evidence for vestibular/autonomic interactions in humans is sparse. Motion sickness has been found to induce forearm vasodilation and reduce baroreflex gain, and head down neck flexion induces transient forearm and calf vasoconstriction. On the other hand, studies using optokinetic stimulation have found either very small, variable, or inconsistent changes in heart rate and blood pressure, despite substantial symptoms of motion sickness. Furthermore, caloric stimulation severe enough to produce nystagmus, dizziness, and nausea had no effect on sympathetic nerve activity measured directly with microneurography. No effect was observed on heart rate, blood pressure, or plasma norepinephrine. Several factors may explain the apparent discordance of these results, but more research is needed before we can define the potential importance of vestibular input to cardiovascular regulation and orthostatic tolerance in humans.

Animals↗