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Biomedical subjects

S Favilla

Publications and source records attributed to S Favilla.

At least 19 recordsLinked to original sources

Vascular renin-angiotensin system and sympathetic nervous system activity in human hypertension.

Experimental data indicate the existence of a vascular tissue renin-angiotensin system in several different vessels from various animal models. Active renin can be locally synthesized into the vessel wall or taken up from circulating plasma to produce vascular angiotensin II. Using the human forearm technique, we produced evidence indicating the release of active and inactive renin and of angiotensin II from the vessels of hypertensive patients. Moreover, the production of vascular angiotensin II seems to be strictly correlated to the circulating renin profile, suggesting the possibility that vascular renin might be at least partially taken up from plasma. To investigate a possible function of the vascular renin-angiotensin system, we studied its interaction with sympathetic neurotransmission in essential hypertensive patients. In line with animal studies, vascular angiotensin II increases the vasoconstriction induced by the stimulation of the sympathetic nervous system through the potentiation of noradrenaline release at a presynaptic level, and this effect seems to be mediated by beta-adrenoceptor activation. This facilitating effect on sympathetic neurotransmission exerted by vascular angiotensin II can be antagonized by both angiotensin II antagonists and angiotensin-converting enzyme inhibitors.

Blood Vessels

Atrial natriuretic factor in essential hypertension: echocardiographic and humoral correlates.

Aim of this study was to assess the relationship between plasma concentration of atrial natriuretic factor (ANF) and its two-dimensional echocardiographic (left ventricular mass, left atrium diameter) and humoral (plasma renin and aldosterone) variables in essential hypertension (EH). We evaluated 32 patients with uncomplicated mild to moderate EH and 10 controls. They were studied in the supine position after 7 days of constant dietary sodium intake and were off therapy since at least 3 weeks. ANF values overlapped between EH patients and controls (27.8 +/- 11.5 vs. 19.5 +/- 7.4 pg/ml, p = NS). In EH, no significant correlation was found between ANF values and left ventricular mass (r = 0.29), left atrial diameter (r = 0.04), mean arterial blood pressure (r = 0.26), plasma renin activity (r = 0.00), and aldosterone (r = 0.26). In EH, ANF values overlapped between the 15 patients with hypertrophy and the 17 patients with normal ventricular mass: 30.3 +/- 17 vs. 25.6 +/- 10.6 pg/ms (p = NS). We conclude that there is a substantial overlap in plasma ANF values between mild to moderate uncomplicated EH and controls, and left ventricular hypertrophy is not a major independent stimulus to ANF release in EH.

Adult

Doxorubicin cardiotoxicity is associated with alterations of plasma levels of atrial natriuretic factor.

In order to determine the involvement of the atrial natriuretic factor (ANF) in a model of drug-induced cardiomyopathy, the effects of a single or repeated doses of doxorubicin on plasma ANF levels were examined. Female Wistar rats were treated with doxorubicin at two different schedules: a single 10 mg/kg iv dose or multiple 3 mg/kg iv doses once a week for 3 weeks; control groups were given vehicle (isotonic saline, 0.9% NaCl) intravenously. ANF was assayed in plasma by a specific and sensitive radioimmunoassay method and cardiac function was evaluated by monitoring of ECG and hemodynamic parameters. In the doxorubicin single-dose study plasma ANF values were measured during a period of 6 hours after dosing and were found to be significantly decreased at the 180th (12.5 +/- 2.9 pg/ml) and 360th minute (19.4 +/- 1.2 pg/ml) after dosing, compared to vehicle-treated animals (35.1 +/- 5.7 and 37.9 +/- 4.1 pg/ml, 180 and 360th minute, respectively). Rats treated with multiple doses of doxorubicin showed a significant increase in plasma ANF levels at the 21st (88.3 +/- 7.7 pg/ml) and 31st day (61.0 +/- 14.3 pg/ml) of the study compared to vehicle-treated animals at the same time points (41.8 +/- 8.0 and 26.5 +/- 7.2 pg/ml, respectively). At the 42nd day plasma ANF concentration in doxorubicin-treated rats was not significantly different from vehicle-treated rats. In both studies ANF level changes occurred in the setting of acute or chronic doxorubicin-induced cardiac damage, as evidenced by alterations of hemodynamic and ECG parameters.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Adenosine activates a vascular renin-angiotensin system in hypertensive subjects.

In vitro data indicate that the activation of A2 adenosine receptors increases renin release by the accumulation of cyclic AMP. Because in human forearm vessels beta-adrenergic receptor stimulation causes the local release of renin and angiotensin II through the increase of cyclic AMP, we evaluated in six essential hypertensive subjects whether adenosine can release vascular angiotensin II. Adenosine was infused into the brachial artery at cumulatively increasing doses (0.5, 1.5, and 5 micrograms/100 ml forearm tissue per minute for 5 minutes each) during saline infusion and in the presence of the adenosine antagonist theophylline (100 micrograms/100 ml forearm tissue per minute for 15 minutes), while venous (ipsilateral deep forearm vein) and arterial (brachial artery) angiotensin II (picograms per milliliter) were measured at the end of each infusion period, and forearm angiotensin II net balance (picograms per minute) was calculated by venous-arterial differences corrected for forearm blood flow (strain-gauge venous plethysmography) and hematocrit. In control conditions, adenosine, at higher doses, caused a dose-dependent vasodilation and increased venous angiotensin II without affecting arterial values; therefore, the calculated angiotensin II net balance showed an adenosine-mediated dose-dependent release. Theophylline pretreatment blunted adenosine-mediated forearm blood flow increments and angiotensin II release. The local origin of angiotensin II was further confirmed in another group of six hypertensive subjects in whom the angiotensin converting enzyme inhibitor captopril, locally infused at the rate of 2.5 micrograms/100 ml forearm tissue per minute for 15 minutes, abolished the adenosine-mediated venous angiotensin II increments. Our data indicate that exogenous adenosine can stimulate the production of angiotensin II in the forearm vessels of hypertensive patients.

Adenosine

Activation of sympathetic tone during dipyridamole test.

Cardiac imaging with dipyridamole infusion has been proposed as an exercise-independent tool for the diagnosis of coronary artery disease. Dipyridamole acts through the accumulation of adenosine, which reduces sympathetic tone in vasomotor nuclei of the brainstem and inhibits norepinephrine release in noradrenergic neurons but also activates arterial chemoreceptors. The aim of this study was to assess whether dipyridamole administration (up to 0.84 mg/kg over 10 minutes, a dosage commonly employed for diagnostic testing) may modulate sympathetic activity either directly or indirectly through blood pressure reduction or myocardial ischemia, which may be evoked by dipyridamole infusion and represent two recognized sympathetic stimuli. Twenty patients were studied with infusion combined with two-dimensional echocardiography and 12-lead ECG monitoring. Blood pressure was recorded each minute by a cuff sphygmomanometer. In all patients, we obtained venous blood samples for epinephrine (an index of adrenomedullary catecholamine release) and norepinephrine (an index of neuronal activity) both in resting conditions and at peak dipyridamole, ie, at the first minute after termination of dipyridamole infusion in negative cases or in the presence of obvious ischemia in positive cases (ie, as soon as a regional ventricular dyssynergy or an ST segment depression greater than 0.1 mV appeared). Epinephrine and norepinephrine determinations were made by a high performance liquid chromatography (HPLC) method. After dipyridamole, there was a significant rise in norepinephrine, while epinephrine did not change significantly. Dipyridamole-induced percentage variations of norepinephrine from baseline were not significantly correlated with mean blood pressure changes (r = .1, p = ns) and were of a similar extent in patients with (n = 10) and without (n = 10) dipyridamole-induced ischemia (+68 vs +73 percent, p = ns). Dipyridamole administration provokes an activation of sympathetic tone which can be detected even in the absence of myocardial ischemia and is not related to blood pressure changes. The increased catecholamine release appears to be of neuronal rather than adrenomedullary origin.

Adult

An atrial natriuretic factor analogue at low doses attenuates forearm reflex vasoconstriction to cardiopulmonary receptor deactivation in patients with hypertension.

Contrasting data exist about a possible modulation of the autonomic function by atrial natriuretic factor (ANF) in human beings, particularly at low, biologically, significant concentrations. We have evaluated that possibility by increasing plasma ANF levels through the infusion of a synthetic analogue (WY-47,663, anaritide) in five male patients with mild to moderate uncomplicated hypertension. Nonhypotensive lower body negative pressure (-10 mm Hg x 5 min) was used to selectively deactivate cardiopulmonary receptors and to stimulate sympathetic efferent tone reflexogenically. ANF was given at either a low rate (0.005 micrograms/kg/min x 60 min, which was previously shown to increase plasma ANF in a range compatible with physiologic stimuli) or at a high rate (0.05 micrograms/kg/min x 60 min, each). Administration of ANF was preceded and followed by vehicle infusion (Haemacell x 30 min). Forearm blood flow (venous plethysmography), intraarterial blood pressure, and heart rate were monitored continuously, and venous immunoreactive ANF, plasma renin activity, aldosterone level, and venous hematocrit were measured at the end of both control and infusion periods. Arterial norepinephrine values, an indirect index of sympathetic discharge, were measured at rest and during lower body negative pressure conditions. Graded systemic ANF infusion increased immunoreactive ANF and venous hematocrit, decreased aldosterone level and plasma renin activity, whereas resting norepinephrine levels, blood pressure, and heart rate did not change. Lower body negative pressure decreased forearm blood flow during vehicle infusion, but it lost its vasoconstrictor effect during infusion of ANF. To identify the site of that inhibitory action, ANF was also infused into the brachial artery at rates that raised local but not systemic levels of immunoreactive ANF.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult

Active and inactive renin in human forearm of hypertensive patients.

Although many in vitro and animal studies indicate the existence of a local renin--angiotensin system, data regarding its physiological role are quite controversial, and moreover, evidence suggesting inactive and active renin release from vascular tissue in vivo is lacking both in animal and humans. The aim of our study was to evaluate whether beta-adrenoceptor stimulation, a well-known stimulus to renin production, through isoproterenol might cause local renin production from vessels of the forearm of hypertensive patients. Drugs were infused into the brachial artery at systemically ineffective rates, while forearm blood flow (FBF, venous plethysmography), mean intra-arterial pressure, and heart rate were monitored throughout. Active and inactive vessel renin production was measured by calculating venous-arterial (V-A) differences by simultaneous sampling from brachial artery and an ipsilateral deep vein. Active renin (PRA) and total renin (Sepharose bound trypsin activation) were measured by radioimmunoassay while inactive renin was calculated as the difference between total and active renin. V-A differences were corrected for FBF to calculate renin extraction or production. In a group of 10 patients, isoproterenol, which was infused at increasing cumulative rates (0.03, 0.1, 0.3 micrograms.100 mL-1 forearm tissue.min-1 for 5 min each), caused a dose-dependent increment in FBF that was blunted by intra-arterial propranolol (n = 5) pretreatment (10 micrograms.100 mL-1 forearm tissue.min-1 for 10 min). beta-Adrenoceptor stimulation caused a dose-dependent outflow of both active and inactive renin, an effect antagonized by propranolol. In conclusion, our data represent the first evidence in humans of tissue active and inactive renin production in the forearm vascular bed.

Female

Vascular renin-angiotensin system and neurotransmission in hypertensive persons.

The existence of a vascular renin-angiotensin system and its role in modulating sympathetic activity were evaluated in forearm arterioles of hypertensive individuals. Isoproterenol (0.03, 0.01, 0.3 microgram/100 ml/min for 5 minutes each; n = 5) was infused into the brachial artery, and active and inactive renin, angiotensin II, and norepinephrine forearm balance (venous-arterial differences corrected for forearm blood flow by strain-gauge plethysmography) were measured. Isoproterenol caused vasodilation and a dose-dependent active and inactive renin, angiotensin II, and norepinephrine outflow, an effect blunted by propranolol (10 micrograms/100 ml/min). To evaluate the role of local angiotensin II on beta-mediated norepinephrine overflow, the experiment was repeated with captopril (2.5 micrograms/100 ml/min for 10 minutes; n = 5), which abolished angiotensin II release and significantly reduced norepinephrine overflow. To test whether angiotensin II facilitates both prejunctional norepinephrine release and its postjunctional action, we evaluated the effect of exogenous angiotensin II, infused into the brachial artery at low concentrations (0.001 microgram/100 ml/min), on forearm vasoconstriction and norepinephrine release induced by endogenous sympathetic activation (application of a lower body negative pressure: -10 and -20 mm Hg for 5 minutes, n = 10) and on the vasoconstrictor effect of local norepinephrine (0.0015, 0.005, 0.015, 0.05, 0.15 micrograms/100 ml/min for 3 minutes each; n = 6). Although angiotensin II increased the vasoconstricting effect and the norepinephrine release induced by lower body negative pressure, it failed to affect norepinephrine-mediated vasoconstriction. Our data indicate the existence in hypertensive individuals of a vascular renin-angiotensin system that seems to modulate sympathetic activity through the presynaptic facilitation of norepinephrine release.

Adult

Hemodynamic and humoral interactions between perindopril and indomethacin in essential hypertensive subjects.

To evaluate whether perindopril, a carboxyl-containing new angiotensin-converting enzyme (ACE) inhibitor, exerts its antihypertensive action through the stimulation of prostaglandin synthesis, 10 uncomplicated essential hypertensive patients randomly received indomethacin (50 mg b.i.d.) or the corresponding placebo for 1 week and the reverse treatment after 2 weeks. Perindopril alone tended to reduce serum and urinary thromboxane B2 (TxB2) and to raise urinary 6-ketoPGF1 alpha and PGE2 and inhibited serum ACE activity 24 h post dosing by about 85%. Indomethacin, which significantly inhibited serum TxB2 and urinary TxB2, 6-ketoPGF1 alpha, and PGE2 without interfering with the inhibitory effect of perindopril on ACE, significantly reduced the antihypertensive action of perindopril alone by about 30%, but decreased though not significantly that of perindopril plus placebo. Although the size of the study limits the interpretation, these findings suggest that the stimulation of prostaglandin synthesis plays only a minor role in the antihypertensive action of perindopril.

Adult

Dipyridamole-induced myocardial ischaemia increases ANF release in man.

Atrial natriuretic factor (ANF) release is modulated by several haemodynamic factors, including ventricular and atrial wall stretch. Dipyridamole infusion, which is commonly used as a pharmacological stressor in patients with coronary artery disease, can acutely increase ventricular and atrial pressure via myocardial ischaemia. The aim of this study was to assess whether dipyridamole infusion (up to 0.84 mg kg-1 over 10') can affect ANF release in man. Nineteen patients (13 men, 6 women) with a history of chest pain were studied. Their drug regimen was interrupted and instead they were administered a dipyridamole infusion, combined with two-dimensional echocardiography and 12-lead ECG monitoring. Plasma ANF was measured by RIA while the patients rested, and after dipyridamole infusion. Eight patients had no evidence of myocardial ischaemia, as measured by electrocardiographic and/or echocardiographic criteria, during dipyridamole infusion: among them, ANF values were similar while they were at rest and at peak dipyridamole administration (23.9 +/- 9.5 vs 23.4 +/- 6.9 pg ml-1, P = ns). Eleven patients had dipyridamole-induced transient ischaemia (regional ventricular dyssynergy and/or ST segment depression): among them, ANF values rose significantly at peak dipyridamole administration (31.8 +/- 13.8 vs 65.5 +/- 36.4, P less than 0.01). We conclude that dipyridamole infusion does not increase ANF release in man in the absence of ischaemia. The induction of myocardial ischaemia acutely increases ANF release, probably through a rise in ventricular and atrial wall stress.

Atrial Natriuretic Factor

Atrial natriuretic factor as a vasodilator agent in hypertensive patients.

To investigate the role of Atrial Natriuretic Factor (ANF) in modulating arteriolar tone in hypertension, a synthetic 25 AA human ANF-analogue (anaritide) was infused intraarterially in the forearm vascular bed of five patients with mild hypertension. A dose-dependent increase in blood flow (plethysmographic technique) was seen at rates covering a thousand-fold range (0.008, 0.08, 0.8, 8.0 micrograms/dl tissue/min x 15 minutes each). At the lowest infusion rate, the forearm blood flow increment was associated with changes in local venous ANF concentrations comparable with those reported during biological stimuli in hypertensive man and consistent with an ANF physiologic role in forearm arterioles of hypertensive patients. However, at local venous concentrations greater than 1000 pg/ml, ANF did not relax forearm vessels by more than about one-fourth of the total forearm vasodilator capacity (as assessed through a maximally active ischemic stimulus). These data confirm the low potency of ANF as an endogenous vasodilator, although vasodilator potency is not a necessary requirement for physiologic systems involved in the regulation of muscular vascular tone. Systemic arterial pressure, heart rate, and contralateral flow did not change during the study in spite of the markedly increased peripheral ANF levels recirculating from the local forearm administration. This behavior indicates that arteriolar vasodilation is apparently not the main mechanism of action of ANF on systemic hemodynamics in hypertensive patients.

Adult

The influence of dopamine-1 receptor blockade on the humoral and renal effects of low-dose atrial natriuretic factor in human hypertensives.

To test whether dopaminergic mechanisms can modulate the humoral and renal effects of atrial natriuretic factor (ANF), seven untreated, mildly hypertensive patients without complications were given a placebo (saline for 60 min) followed by a low dose of ANF (0.005 microgram/kg per min), or D-sulpiride (0.05 mg/kg per min), a specific dopamine-1 antagonist, or ANF + D-sulpiride at the same doses, for 60 min. The sequence of the three treatments was random, with a 72-h interval between treatments. The ANF infusion, which increased plasma ANF within the physiological range, significantly increased urinary sodium excretion, fractional sodium excretion and haematocrit; it reduced plasma aldosterone and tended to reduce plasma renin activity without changing blood pressure, the heart rate, renal plasma flow or the glomerular filtration rate. D-Sulpiride, when given alone, significantly increased mean blood pressure and reduced absolute and fractional sodium excretion without changing the heart rate, glomerular filtration rate, renal plasma flow, haematocrit, plasma renin activity or plasma aldosterone. When infused with D-sulpiride, ANF did not change absolute or fractional sodium excretion or haematocrit. This study provides evidence that dopaminergic mechanisms play a role in the natriuretic and plasma volume effects of a synthetic human ANF analogue infused at a low dose in patients with essential hypertension.

Adult

Low dose atrial natriuretic factor in primary aldosteronism: renal, hemodynamic, and vascular effects.

Whether atrial natriuretic factor (ANF) plays a physiological role in primary aldosteronism has yet to be determined. In the present study, the renal, hemodynamic, humoral, and vascular effects of a synthetic (WY-47663) human analogue were studied in five water-loaded (15 ml H2O/kg) patients with adenomatous primary aldosteronism, a salt-sensitive, low renin, volume-expanded syndrome. ANF was infused for 3 hours at a low rate (0.005 micrograms/kg/min), which approximately doubled circulating immunoreactive ANF. Glomerular filtration rate and renal blood flow (inulin and para-aminohippurate clearance) remained stable, but sodium excretion increased significantly suggesting a dissociation between renal hemodynamics and natriuresis as well as a direct inhibitory effect on tubular sodium reabsorption by ANF. Intra-arterial diastolic blood pressure, heart rate, forearm blood flow (plethysmographic method), and arterial plasma norepinephrine did not change, but systolic blood pressure declined and hematocrit rose suggesting plasma volume contraction by ANF. Plasma aldosterone levels were unchanged indicating a loss of ANF-mediated aldosterone inhibition, possibly related to qualitative or quantitative alterations of ANF receptors in tumoral adrenal tissue. Infusion of the analogue into the brachial artery was at a rate of 0.005 micrograms/dl forearm tissue/min x 30 minutes, which also doubled local immunoreactive venous ANF concentrations and vasodilated forearm arterioles. These data suggest a physiological role for ANF in modulating body fluid volume even in human primary aldosteronism.

Adult

Increased protein C and fibrinopeptide A concentration in patients with angina.

Protein C and fibrinopeptide A (FpA) levels in plasma were measured in 30 controls and in two groups of patients with angina. The first group was formed by 27 patients suffering from spontaneous ischemic attacks (active angina). The second one was formed by patients who had previously suffered from angina, but were free from myocardial ischemic attacks for at least one month (inactive angina). Protein C (measured by electroimmunoassay) and FpA (radioimmunoassay) were higher than controls in both groups but were significantly higher in patients with active angina than in patients with inactive angina. A clear trend toward a linear correlation existed between protein C and FpA levels, though it did not reach the statistical significance. These results confirm a significant involvement of blood clotting system in ischemic heart disease and specially in active angina.

Adult

Platelet synthesis of cyclooxygenase and lipoxygenase products in type I and type II diabetes.

In 24 type I and 22 type II diabetic patients without vascular complications and in 25 controls platelet thromboxane A2 (TxA2) and prostaglandin E2 (PGE2) production (by radioimmunoassay-RIA) and 1-14C arachidonic acid (AA) metabolism (by high pressure liquid chromatography-HPLC) after thrombin stimulation were studied. Platelets both from type I and type II diabetics generated larger amounts of TxB2 (p less than 0.001) and PGE2 (p less than 0.005) than controls, independently of the presence of retinopathy. No significant differences in platelet AA uptake or metabolism via the cyclooxygenase (CO) route, after thrombin stimulation (5 NIH U/ml), were observed in diabetic patients: lipoxygenase metabolites were found to be slightly, but significantly decreased. A positive linear relationship (r = 0.64, p less than 0.001) was found between HbA-1c and TxB2 production, but not with fasting plasma glucose. These results indicate that metabolic alterations can affect platelet function independently of vascular complications. The absence of alterations in intraplatelet 1-14C AA metabolism via CO, in the presence of increased TxB2 and PGE2 production from endogenous AA, suggests that the activation of CO is not the only possible mechanism of platelet activation and that probably an increased availability of platelet AA plays an important role in the enhanced platelet aggregation commonly found in diabetics.

Adult

Altered intraplatelet arachidonic acid metabolism during the acute state of unstable angina.

Thromboxane A2 (TxA2) generation and 1-14C arachidonic acid (AA) metabolism by platelets (stimulated with thrombin) were studied in vitro in 16 patients with unstable angina both during the acute and chronic inactive phase of the angina. Eight patients with stable effort angina and 21 controls were also investigated. In acute unstable angina 1-14C AA metabolism was significantly increased through cyclooxygenase pathway resulting in a higher selective TxA2 generation than in stable effort angina and in controls (p less than 0.01). No differences were found between patients with stable effort angina and controls. The alterations in AA metabolism were no longer found when patients reverted to the inactive phase of angina. TxA2 generation by platelets was independent of the number of the daily ischemic attacks (r = 0.17, ns) in patients with unstable angina. Present results indicate that an altered intraplatelet AA metabolism leading to the increased TxA2 synthesis occurs simultaneously with the conversion of angina from the chronic to the acute phase.

Acute Disease