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Biomedical subjects

G Bolla

Publications and source records attributed to G Bolla.

At least 127 records · Page 7Linked to original sources

Metabolic aspects and sympathetic effects in the obese subject undergoing exercise testing.

An impaired plasma Epinephrine (E) and Norepinephrine (NE) response has been described in obese patients during physical exercise. Serum potassium level is influenced either by physical exercise or by the adrenergic system. We studied 12 young obese patients and 12 young controls, all without any cardio-respiratory disorders, who underwent a cycloergometric test with steps of 20 watts every four minutes until exhaustion. During the test we recorded serum potassium levels, E and NE, insulin, glucose and RQ to confirm or not the observation of the reduced adrenergic response in obese patients. During exercise, although both groups reached a not significantly different mean peak value of maximal activity, E and NE increased, more in the controls than in the obese subjects (at peak of exercise 221 +/- 44.1 vs 71 +/- 21.5 pg/ml respectively for E; 2035 +/- 164.8 vs 1141 +/- 313.7 pg/ml respectively for NE). RQ was constantly lower in the obese patients than in the normals both during and after the stress. In both groups potassium increased significantly, but the obese patients had a significantly lower increment at peak of activity when compared to the controls (delta K+: 0.52 +/- 0.11 vs 1.007 +/- 0.17 meq/l respectively, p < 0.05). Insulin and glucose had a behaviour in line with literature in both groups. The behaviour of potassium could be an index of a higher effect of beta-adrenergic system in obese patients than in normals despite the different increases of catecholamines in the two groups. This hypothesis may agree with the preferential metabolic use of fatty acids in our obese patients as indicated by RQ values.

Adolescent↗

Sympathomoderating influence of benazepril in essential hypertension.

OBJECTIVE: In essential hypertension, captopril attenuates forearm vasoconstriction reflexly induced by deactivation of cardiopulmonary and arterial baroreceptors, thus exerting a sympathomoderating effect. We investigated whether this is a common effect of angiotensin converting enzyme (ACE) inhibitors. METHODS AND DESIGN: Cardiopulmonary and arterial baroreceptors were deactivated by progressively reducing central venous pressure (CVP) through progressively greater lower body negative pressures in eight untreated mild essential hypertensives on a moderately low-sodium diet (50 mmol/l per day). This deactivation was performed after oral administration of the non-sulphidrylic ACE inhibitor benazepril (10 mg) and placebo according to a double-blind randomized crossover experimental design. RESULTS: After placebo, the reduction in CVP increased forearm vascular resistance (FVR; mean arterial pressure: plethysmographic forearm blood flow ratio). After benazepril, baseline blood pressure (beat-to-beat finger pressure) and FVR were significantly reduced whilst plasma angiotensin II was suppressed and PRA increased (both measured by radioimmunoassay). The FVR increases induced by progressive CVP reduction were less than after placebo administration, and the overall difference was statistically significant. Benazepril did not affect the reflex FVR reduction observed by increasing CVP through leg raising, nor the reflex changes in plasma norepinephrine measured by high-performance liquid chromatography accompanying the changes in FVR. CONCLUSIONS: Benazepril attenuates sympathetic vasoconstriction as does captopril. This effect (which is mainly operative during an increased sympathetic drive and exerted through a reduction of adrenoceptor responsiveness) is thus likely to be a class- rather than a compound-related feature.

Angiotensin-Converting Enzyme Inhibitors↗

Cigarette smoking and the adrenergic nervous system.

The acute increase in blood pressure and heart rate that accompanies cigarette smoking is associated with a rise in plasma catecholamines and it is thus believed to result from stimulation of the adrenergic nervous system. We have employed direct recording of efferent post-ganglionic sympathetic nerve activity by the microneurographic technique from the peroneal nerve to determine whether this stimulation occurs centrally or peripherally. It was shown that during cigarette smoking blood pressure, heart rate, plasma norepinephrine and epinephrine do increase markedly. Sympathetic nerve activity, however, shows a concomitant specular reduction. Thus peripheral (adrenal gland stimulation, reduction in norepinephrine reuptake, reduction in catecholamine clearance, etc.) rather than central mechanisms explain the adrenergic involvement in the acute hemodynamic effect of smoking, the central sympathetic drive being inhibited rather than excited probably as a result of arterial baroreceptor stimulation.

Blood Pressure↗

[Ventricular-infundibular morphology in visceral heterotaxia with left isomerism. An echocardiographic-angiocardiographic study].

We report 2D-echocardiographic and angiocardiographic assessment of 28 cases of visceral heterotaxia with left atrial isomerism, with particular emphasis on infundibular ventricular morphology. Ventricular D-loop was present in 15 cases (52.6%), and ventricular L-loop in 13 (46.4%); 25/48 patients had concordant ventricular loop and cardiac position (89.3%). In 18 patients (64.3%) there were 2 balanced ventricles; of the other 10 patients, 9 (32.1%) presented right and 1 (3.6%) left ventricular dominance. Ventricular septal defect was present in 12 cases (42.8%). Ventriculo-arterial connections were concordant, with "normally related" great arteries in 9/15 cases with ventricular D-loop (60%). In these cases, ventricular morphology, connections and relations of the great arteries were typical of situs solitus. In the remaining 6 patients there was double-outlet right ventricle, also with normally related great arteries. In 12/13 cases (92.3%) with ventricular L-loop ventriculo-arterial connections were concordant with "mirror image normally related" great arteries. In these cases, ventricular morphology, connections and relations of the great arteries were typical of situs inversus. In one patient there was double-outlet right ventricle, also with mirror image normally related great arteries. Twelve patients (42.8%) had pulmonary stenosis and 5 had a systemic outflow obstruction (17.8%). From these observations we conclude that ventriculo-infundibular morphology, either of situs solitus-type or of situs inversus-type, is a typical anatomical feature of left atrial isomerism. These results may have important implications in the diagnosis and in the surgical management of patients with left atrial isomerism.

Adult↗

Cardiac hypertrophy impairs cardiac receptor control of circulation in man.

The cardiopulmonary reflex control of circulation (which, in man, depends largely on cardiac receptors) is impaired in hypertensive subjects who have left ventricular hypertrophy. To determine whether hypertension or cardiac hypertrophy per se is responsible for this, we studied nine sedentary normotensive subjects aged 23 +/- 1 years and nine age-matched normotensive weight-lifters with echocardiographic signs of left ventricular hypertrophy (left ventricular mass index for the weight-lifters: 134 +/- 7; for the sedentary subjects: 99 +/- 7 g/m2; P less than 0.01). Cardiac receptors were manipulated by increasing and decreasing the left ventricular end-diastolic diameter (LVEDD) by raising the leg and by reducing the lower-body negative pressure, respectively, and the reflex responses were assessed from the changes in forearm vascular resistance and plasma noradrenaline (high performance liquid chromatography assay). Forearm vascular resistance and the noradrenaline concentration were reduced by increasing the LVEDD, and were increased when the LVEDD was reduced. For a given change in the LVEDD, the responses were markedly less in the weight-lifters than in the non-athletes. In contrast, the haemodynamic effects of a cold pressor test were similar in both groups. Thus, the cardiopulmonary reflex is impaired in normotensive subjects in whom intense physiological training has led to an increase in left ventricular hypertrophy. This suggests that structural alteration of the heart per se is responsible for the phenomenon.

Adult↗

Effect of angiotensin converting enzyme inhibition on cardiovascular regulation during reflex sympathetic activation in sodium-replete patients with essential hypertension.

In order to investigate whether angiotensin II (Ang II) may contribute to cardiovascular regulation through facilitation of the adrenergic function, we examined the haemodynamic and humoral effects of the application of lower-body negative pressure (LBNP) in sodium-replete patients with essential hypertension before and after acute and chronic angiotensin converting enzyme (ACE) inhibition. We measured the changes in blood pressure, heart rate, central venous pressure, forearm blood flow, plasma noradrenaline, renin activity and Ang II induced by LBNP of two different magnitudes: a milder one deactivating predominantly the cardiopulmonary receptors (mild LBNP), and a greater one deactivating both the cardiopulmonary and the arterial baroreceptors (strong LBNP). We found that during mild LBNP systemic blood pressure was maintained after acute and chronic ACE inhibition, as in control studies; however, the decrements in forearm blood flow and the increments in forearm vascular resistance caused by LBNP were diminished after ACE inhibition (the latter by 69 and 67%, respectively, in acute and chronic studies), in spite of the fact that the falls in central venous pressure and the increases in noradrenaline (NA) were similar to those observed in control conditions. During strong LBNP, the fall in systemic blood pressure was greater after acute and chronic ACE inhibition than in control conditions and was associated with a reduction in the response of forearm vascular resistance similar to that observed during mild LBNP, while the increments in NA were again superimposable to those seen before ACE inhibition. These alterations in the haemodynamic responses to LBNP induced by ACE inhibition were associated with significant increments in basal plasma renin activity and with marked reductions in Ang II. These findings suggest that even in the sodium-replete state, Ang II exerts a facilitatory action on adrenergic function that is physiologically relevant for the regulation of forearm blood flow and the maintenance of blood pressure during the application of gravitational stresses.

Adult↗

Decreased cardiopulmonary reflexes with aging in normotensive humans.

Arterial baroreflex is impaired in the normotensive elderly. However, no information is available on the effects of aging on another major reflex mechanism of cardiovascular control, i.e., cardiopulmonary reflex. Three groups of normotensive subjects divided according to age were evaluated during leg raising, which increased central venous pressure, and during lower body negative pressures, which reduced central venous pressure without altering blood pressure and heart rate. These maneuvers stimulated and deactivated cardiopulmonary receptors with only little involvement of arterial baroreceptors. During lower body negative pressures, central venous pressure decreased similarly in three groups, but reflex increases in forearm vascular resistance, plasma norepinephrine, and plasma renin activity were smaller in elderly than in middle-aged and young subjects. Furthermore, during leg raising, comparable increases in central venous pressure caused reflex vascular and humoral responses that were smaller in elderly than in middle-aged and young subjects. Elderly subjects had smaller changes in left ventricular diameter in response to changes in central venous pressure. Blood pressure and vascular responses to cold pressor test were similar in the three groups, excluding a hyporeactivity of older subjects to neural stimuli. Thus aging is associated with an impairment of the cardiopulmonary reflex. This may originate from an impaired ability of cardiac receptors to sense alterations in central blood volume because of an age-dependent reduction in cardiac compliance.

Adult↗

Effects of ageing on the cardiopulmonary receptor reflex in normotensive humans.

This study examined the effects of ageing on the cardiopulmonary receptor regulation of vasomotor tone in skeletal muscle and renin release by the kidney. To this end, the changes in forearm vascular resistance (mean arterial pressure divided by plethysmographically measured forearm blood flow), plasma noradrenaline concentration and plasma renin activity were measured in eight young (23 +/- 2 years, mean +/- s.e.m.) and seven elderly healthy subjects (69 +/- 2 years) during manoeuvres which altered cardiopulmonary receptor activity. The cardiopulmonary receptors were stimulated by increasing central venous pressure through passive leg-raising and deactivated by reducing central venous pressure through non-hypotensive (-15 mmHg) and hypotensive (-40 mmHg) levels of lower body negative pressure. During either manoeuvre, central venous pressure changed by the same amount in both groups, but the reflex changes in forearm vascular resistance, plasma noradrenaline and plasma renin activity were significantly less in elderly subjects. Since the increase in forearm vascular resistance induced by a cold pressor test was comparable in young and elderly subjects, a non-specific depression of cardiovascular responsiveness to neural stimuli can be excluded. Thus, healthy normotensive elderly subjects show an impairment of both vascular and neurohumoral influences exerted by cardiopulmonary receptors. This may be involved in the decreased ability of the elderly to cope with gravity challenges.

Adult↗

Effects of different sodium intakes on the antihypertensive and renal effects of single oral doses of nifedipine in hypertensive patients.

The aim of this study was to investigate whether the antihypertensive and renal effects of Ca2+ antagonists are related to the sodium state of the patients. For this purpose, in a group of 11 patients with essential hypertension we have compared the blood pressure lowering effects of a single oral dose of nifedipine before (100 mmol Na+/day and 40 mmol K+/day) and after sodium depletion (20 mmol Na+/day and 40 mmol K+/day: each period was of 6-8 day duration). During the normal sodium diet nifedipine significantly lowered supine blood pressure (from 185 +/- 13/107 +/- 7 to 161 +/- 13/100 +/- 7 mm Hg, p less than 0.001) and induced a significant rise in Na+ excretion (from 52 +/- 10 to 94 +/- 13 mmol/6 h) and in urine volume (from 520 +/- 80 to 947 +/- 120 ml/6 h; p less than 0.01). Sodium depletion significantly lowered supine blood pressure (152 +/- 12/95 +/- 9 mm Hg, p less than 0.001); nifedipine caused a further and significant blood pressure reduction (142 +/- 11/90 +/- 8 mm Hg, p less than 0.01), but only a minor and not significant increase in sodium excretion (from 10 +/- 2 to 22 +/- 5 mmol/6 h) and urine volume (from 338 +/- 76 to 463 +/- 94 ml/6 h). Our data suggest that the natriuretic action of calcium antagonists is not relevant to their antihypertensive effect.

Administration, Oral↗

Effects of celiprolol on reflex control of the cardiovascular system in essential hypertension.

We have previously shown that baroreceptor control of the cardiovascular system and the cardiopulmonary receptor control of peripheral circulation are preserved or only moderately reduced during antihypertensive treatment with acebutolol or nadolol, which indicates that treatment with beta blockers with or without intrinsic sympathomimetic activity does not impair fundamental neural mechanisms involved in circulatory homeostasis. In the present study we have investigated the reflex control of circulation before and during antihypertensive treatment with celiprolol, which, in addition to its beta-blocking action, has vasodilator properties that may stem from interference with neural cardiovascular control. In six essential hypertensive subjects we measured blood pressure (intraarterial catheter), heart rate (ECG recording), central venous pressure (right atrial catheter), and forearm blood flow and resistance (plethysmography) before and during alterations in the activity of the arterial baroreceptors obtained by means of lower body suction and passive leg raising. The study was performed before and after 5-7 days of oral administration of celiprolol at 200-400 mg once a day. Compared to the values obtained in the control, condition celiprolol caused a reduction in blood pressure, a slight change in heart rate, and an increase in forearm blood flow, which indicated the occurrence of a clear-cut forearm vasodilatation. The heart rate responses to arterial baroreceptor manipulation were unchanged by celiprolol which reset the carotid baroreflex so that its tonic restraint on blood pressure increased despite the hypotension induced by the drug. The inhibitory restraint tonically exerted by the cardiopulmonary receptors on peripheral circulation was also increased by celiprolol.(ABSTRACT TRUNCATED AT 250 WORDS)

Acebutolol↗

Antihypertensive and water and sodium balance effects of felodipine, a new vasodilating calcium antagonist, in hypertensive patients.

Felodipine, a new dihydropyridine derivative with a selective action on vascular smooth muscle, was investigated in 2 short term studies in hypertensive patients. In the first study, oral administration of felodipine 12.5 mg three times daily in a preliminary tablet formulation for 3 days significantly reduced supine and upright blood pressure with only a slight increase in heart rate and no clinically relevant signs of sodium and water retention. By increasing each dose to 25 and 50 mg three times daily, there was a further, but quite moderate, decrease in blood pressure; however, this was accompanied by an increase in heart rate and a tendency towards a reduction of creatinine clearance and urinary sodium output. In the second study, a new oral formulation containing 10 mg felodipine, administered twice daily for 7 days, was effective in lowering blood pressure without a clinically relevant tachycardia. Following the first dose of felodipine, urinary sodium excretion was slightly increased while potassium excretion showed only minor changes. The new calcium antagonist, felodipine, lowers blood pressure without the clinically relevant adverse reactions commonly related to other direct vasodilator antihypertensive drugs.

Adult↗

Acute and chronic converting enzyme inhibition reduces the vasomotor response to reflex sympathetic activation in man.

Several lines of evidence indicate that angiotensin II (ANG II) may potentiate the vascular response to sympathetic stimulation. However, there are no clear signs that this action of ANG II is physiologically relevant in man. To investigate this problem, we used the lower body negative pressure technique (LBNP, -15 mmHg) to deactivate cardiopulmonary receptors and reflexly stimulate the sympathetic nervous system. The haemodynamic (changes in blood pressure, heart rate, central venous pressure, forearm blood flow) and humoral effects [changes in plasma noradrenaline (PNA) and plasma renin activity (PRA)] of this manoeuvre were examined before and after blockade of angiotensin formation achieved by the administration of the converting enzyme inhibitor, captopril. Studies were performed in patients with essential hypertension in control conditions and after acute and chronic captopril treatment. We found that the reduction in forearm blood flow induced by LBNP was significantly diminished after acute and chronic captopril in spite of the fact that the fall in central venous pressure and the increases in PNA were similar to those observed in control conditions. In contrast, the response of renin to LBNP was enhanced, at least after acute captopril administration. These findings suggest that efficiency of the reflexes originating from the cardiopulmonary receptors is impaired after captopril. Angiotensin II contributes to the vasoconstrictive ability of the sympathetic nervous system, either through a direct vascular action or by enhancing the vascular responsiveness to noradrenaline stimulation. However, this sympathetic facilitatory action of ANG II does not appear to be extended on the adrenergic mechanisms which regulate renin release.

Adult↗