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Biomedical subjects

A Salvetti

Publications and source records attributed to A Salvetti.

At least 163 records · Page 9Linked to original sources

Lack of correlation between cardiac mass and arteriolar structural changes in mild-to-moderate hypertension.

A morphological restructuring of cardiac and arteriolar tissue is common in hypertension. The parallel evolution of these two processes as a compensatory response to pressure overload is a frequently assumed but unsubstantiated hypothesis. To evaluate this possibility, we have concomitantly measured left ventricular mass (LVM; two-dimensional echo) and minimal forearm vascular resistance (FVR; derived from the ratio of intra-arterial blood pressure: forearm blood flow by venous plethysmography) at maximal postischemic (13 min ischemia + 1 min hand exercise) reactive hyperemia. The study was performed on 29 essential hypertensive patients (15 males, 14 females, aged 50 +/- 10 years) who had not been undergoing treatment for hypertension for at least 15 days at the time of study. Minimum FVR was taken as a hemodynamic index of the integrated arteriolar lumen at the forearm level. LVM index and minimum FVR ranged from normal to clearly altered values. In spite of a wide spread of values, no correlation existed between the individual values of the two variables. Systemic mean blood pressure correlated with minimum FVR and tended to correlate with LVMI. Thus, morphological restructing of cardiac and arteriolar tissue does not seem to evolve in parallel in human hypertension. Pressure overload may contribute to cardiovascular hypertrophy, but other unrelated mechanisms may also underlie the development of cardiac and arteriolar abnormalities of human hypertension.

Arterioles↗

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 echocardiography stress testing in hypertensive patients. Targets and tools.

Arterial hypertension can provoke a reduction in coronary flow reserve through several mechanisms that are not mutually exclusive, namely, coronary artery disease, left ventricular hypertrophy, and microvascular disease. These different targets of arterial hypertension should be explored with different diagnostic markers. The transient dyssynergy detected by two-dimensional echocardiography and evoked during dipyridamole infusion is a marker of coronary disease that is equally reliable in normotensive and hypertensive individuals. On the contrary, dipyridamole-induced ST segment depression is frequently elicited in hypertensive patients when angiographically assessed coronary disease is absent. This ischemiclike electrocardiographic response can be found in echocardiographically assessed left ventricular hypertrophy. However, even when left ventricular mass is normal, dipyridamole-induced ST segment depression is associated with an impaired coronary flow response to pacing, which is consistent with microvascular disease. Whether echocardiographically silent electrocardiographic changes are simply diagnostic noises transmitting a misleading false positive response or a potentially important clinical marker of early myocardial damage remains a pivotal though still unanswered question.

Cardiomegaly↗

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↗

Long-term effects of indapamide: final results of a two-year Italian multicenter study in systemic hypertension.

To evaluate the antihypertensive efficacy and tolerability of a low-dose diuretic, indapamide, 2.5 mg once daily, was given to 248 patients with uncomplicated, mild to moderate hypertension for a period of 24 months. Blood pressure during sitting was 165 +/- 1/105 +/- 1 mmHg (mean +/- standard error of the mean) at the end of the placebo run-in period and 143 +/- 1/88 +/- 1 and 140 +/- 1/85 +/- 1 mmHg after 2 and 24 months, respectively; heart rate was clinically unmodified (from 77 +/- 1 to 75 +/- 1 beats/min). Total cholesterol, high-density cholesterol and serum triglycerides were unchanged, and uric acid increased significantly (from 292.0 +/- 6.5 to 377.7 +/- 56.5 mumols/liter). A mild reduction in serum potassium (-0.36 +/- 0.03 mmol/liter) was observed after 2 and 6 months of therapy; however, the degree of reduction appeared to be lower than that from reported studies with other thiazide diuretics. The incidence of hypokalemia (serum potassium less than 3.5 mmol/liter) was highest in northern Italy (17%), intermediate in the central region (14%) and lowest in southern Italy (2%), although the absolute reduction in serum potassium was similar in all the geographic areas. Blood glucose tolerance was unchanged despite the changes in serum potassium. The tolerability was good on the whole, with a tendency toward an improvement in the well-being of patients, most of whom were already asymptomatic before starting the study.

Adult↗

Ketanserin and captopril interaction in the treatment of essential hypertensives.

The aim of the study was to evaluate whether the combination of ketanserin with captopril exerts an additive antihypertensive effect, as compared with single drug treatment. Twelve patients with uncomplicated moderate essential hypertension received, according to a randomized, double-blind, crossover design, ketanserin (40 mg twice daily), captopril (50 mg twice daily), the combination of the two drugs at these dosages, and the corresponding placebo, each treatment being given for 1 month. Both ketanserin and captopril as monotherapy similarly and significantly reduced blood pressure as compared with placebo (p less than 0.001). The combination treatment of ketanserin plus captopril further and significantly reduced blood pressure when compared with single drug treatment (p less than 0.001). Moreover, the percentage of responders and patients whose blood pressure was normalized were significantly greater under the combined treatment than under ketanserin or captopril monotherapy (p less than 0.001). These data indicate that the combination of ketanserin plus captopril exerts a clear additive antihypertensive effect when compared with each treatment as monotherapy, a finding that suggests this combination can be usefully employed in the treatment of hypertensive patients.

Adult↗

Nifedipine interactions in hypertensive patients.

Nifedipine interactions in hypertensive patients have been evaluated, taking into account both the possibility that the inhibition of prostaglandin (PG) synthesis induced by non-steroidal antiinflammatory drugs (NSAIDs) can reduce the antihypertensive effect of nifedipine and the interactions of nifedipine with other antihypertensive drugs. While the inhibition of systemic and renal PG synthesis induced by indomethacin reduces the hypertensive effect of many drugs, it does not change the antihypertensive effect of nifedipine. The combination of two antihypertensive drugs with different mechanisms of action is often needed in the treatment of hypertensives, since it is well known that monotherapy is able to normalize BP in no more than 50% of mild to moderate hypertensives, and the rationale to combine two antihypertensive agents is based on the knowledge that their combination exerts an additive antihypertensive effect when compared with single-drug treatment. While it is well established that nifedipine can be usefully combined with beta blockers, ACE inhibitors, and clonidine, it is still controversial whether the combination of nifedipine with a thiazide diuretic exerts an additional antihypertensive effect. We have previously shown that the acute hypotensive effect of nifedipine in patients with chronic renal failure is greater during sodium repletion than during sodium depletion, and that chlorthalidone, compared with placebo, does not increase the hypotensive effect of nifedipine in essential hypertensives.(ABSTRACT TRUNCATED AT 250 WORDS)

Anti-Inflammatory Agents, Non-Steroidal↗

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↗

Reactive hyperemia during short-term blood flow and pressure changes in the hypertensive forearm.

The aim of the present study was to further validate our method for the determination of minimal forearm vascular resistance after ischemia (13 min arterial occlusion and 1 min hand exercise) in patients with hypertension. This parameter, calculated as the ratio of mean blood pressure (intra-arterial recordings on the experimental side) to forearm blood flow (strain-gauge venous plethysmography), was measured basally and after either increasing (through unrelated vasodilators such as sodium nitroprusside or the calcium antagonist nicardipine in six mild-to-moderate uncomplicated hypertensives) or decreasing (norepinephrine, n = 4) flow without changes in systemic pressure. In spite of the divergent starting flow values, minimal postischemic forearm vascular resistance was unchanged, indicating a lack of relationship with functional arteriolar tone and the achievement of maximal dilatation. In two additional groups of patients, systemic arterial pressure was decreased by approximately equipotent oral doses of either nifedipine, a calcium antagonist (n = 6), or captopril, an angiotension converting enzyme inhibitor (n = 5). Under these conditions, minimal forearm vascular resistance was unchanged from pretreatment values, suggesting that local autoregulatory mechanisms were overridden during the reactive hyperemia, and that the vessel lumen was dependent on the distending pressure. Overall, the data show that our experimental conditions are suitable for measuring minimal forearm vascular resistance as a functional correlate of the morphological status of systemic arterioles in arterial hypertension.

Adult↗

Sympathetic nervous system-dependent vasoconstriction in humans. Evidence for mechanistic role of endogenous purine compounds.

Purine compounds modulate sympathetic neurotransmission; this modulation decreases nervous discharge by stimulating presynaptic inhibitory adenosine receptors, an effect antagonized by theophylline, and causes vasoconstriction through the stimulation of postsynaptic ATP receptors. In humans we evaluated the effect of local theophylline, which was infused into the brachial artery at the rate of 100 micrograms/100 cc/min, on the arteriolar sympathetic vasoconstriction induced by applying a lower-body negative pressure. Forearm blood flow changes were measured by strain-gauge venous plethysmography. Theophylline, which at this dosage blunted the vasodilator effect of adenosine (the physiological agonist for the P1 purinoceptor), significantly increased lower-body negative pressure-mediated vasoconstriction. To evaluate whether neurotransmitters different from norepinephrine participate in the vasoconstrictor effect of theophylline, we repeated the previous experiment in the presence of phenoxybenzamine, which was infused at a dose (60 micrograms/100 cc/min) that abolished the vasoconstrictor effect of norepinephrine. Also, after alpha-adrenoceptor blockade, theophylline continued to increase sympathetic vasoconstriction. Our data confirm that purinergic receptors and neurotransmitters also participate in endogenous sympathetic vasoconstriction in humans.

Adenosine↗

ST segment depression elicited by dipyridamole infusion in asymptomatic hypertensive patients.

In asymptomatic patients with essential hypertension, electrocardiographic changes suggestive of myocardial ischemia can be elicited by rapid pressure lowering or by pronounced coronary arteriolar dilation. The aim of this study was to assess whether dipyridamole infusion might induce ischemic-like electrocardiographic changes in asymptomatic essential hypertensive patients and to describe the clinical and echocardiographic correlates possibly associated with this response. We therefore studied a control group of 20 normotensive individuals and a group of 28 asymptomatic patients with mild-to-moderate essential hypertension. All underwent dipyridamole-echocardiography testing (12-lead electrocardiogram and two-dimensional echocardiographic monitoring with dipyridamole infusion, 0.84 mg/kg over 10'). No patient showed transient regional dyssynergy during dipyridamole infusion. None of the normotensive and 10 of 28 of the hypertensive participants had horizontal or downsloping ST segment depression more than 0.1 mV during dipyridamole (0% versus 36%, p less than 0.01). Hypertensive patients with ("responders") (n = 10) and without ("nonresponders") (n = 18) ST segment depression showed similar values of percent fractional shortening in baseline conditions (32 +/- 5 versus 33 +/- 6, p = NS) and at peak dipyridamole infusion (45 +/- 8 versus 43 +/- 5, p = NS). The peak early to peak late velocity ratio values (evaluated from transmitral flow tracings by Doppler technique) were also similar in baseline conditions (0.86 +/- 0.14 versus 0.94 +/- 0.30, p = NS) and at peak dipyridamole (0.72 +/- 0.15 versus 0.78 +/- 0.32, p = NS).(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Newer ACE inhibitors. A look at the future.

Available information indicates that about 78 new molecules belonging to the class of angiotensin converting enzyme (ACE) inhibitors are under investigation, and that at least 11 or 12 of the newer ACE inhibitors will be available for clinical use. The newer ACE inhibitors can be classified, according to the zinc ion ligand of ACE, into 3 main chemical classes: sulfhydryl-, carboxyl- and phosphoryl-containing ACE inhibitors. All the newer sulfhydryl-containing ACE inhibitors differ from captopril since they are prodrugs, and among them alacepril and probably moveltipril (altiopril, MC 838) are converted in vivo to captopril. When compared with captopril, they show a slower onset and a longer duration of action, and obviously the same route of elimination. Zofenopril, a prodrug that is converted in vivo to the active diacid, shows a greater potency, a similar peak time and a longer duration of action than captopril and, unlike captopril, partial elimination through the liver. The newer carboxyl-containing ACE inhibitors are prodrugs which are converted in vivo to active diacids. Like enalaprilat, they are excreted via the kidney; the exception is spirapril, which is totally eliminated by the liver. Compared to enalapril, benazepril shows an earlier peak time and a slightly shorter terminal half-life, cilazapril and ramipril have an earlier peak time and even longer terminal half-life, perindopril shows similar peak time and terminal half-life, while delapril, quinapril and spirapril show an earlier peak time and a shorter half-life. The phosphoryl-containing ACE inhibitors belong to a new chemical class. Fosinopril is a prodrug which is converted to the active diacid in vivo, shows a relatively late peak time, a long terminal half-life, and is eliminated partially by the liver. SQ 29852, the only newly developed ACE inhibitor which is not a prodrug, seems to be more effective than captopril, with a much longer lasting effect and elimination through the kidney. When the differences in potency between these drugs are compensated by dosage adjustment, all the newer ACE inhibitors are expected to exert a similar amount of inhibition of circulating ACE, and therefore to inhibit to a similar extent the generation of circulating angiotensin II and the breakdown of bradykinin. Obviously they may differ in timing and the duration of circulating ACE inhibition according to their pharmacokinetic properties. With regard to the possibility that they may stimulate prostaglandin synthesis, it is suggested that this action, which does not seem to be specific to this drug class, plays only a minor role in their antihypertensive action; the hypothesis that the sulfhydryl group exerts an additional stimulating action remains to be proved.(ABSTRACT TRUNCATED AT 400 WORDS)

Angiotensin-Converting Enzyme Inhibitors↗

Calcium entry blockade and agonist-mediated vasoconstriction in hypertensive patients.

The effects of two chemically unrelated calcium channel blockers--nicardipine and verapamil--on vascular responses to exogenous norepinephrine were evaluated in uncomplicated hypertensive patients. Each drug was infused into the brachial artery at rates that did not affect systemic blood pressure or heart rate, and forearm blood flow was measured using strain gauge venous plethysmography. Nicardipine 1 microgram/100 ml forearm tissue/min dilated the forearm arterioles and antagonized the vasoconstrictor effect of norepinephrine, whereas verapamil 1 microgram/100 ml tissue/min was ineffective, even though both drugs relaxed basal tone to the same extent. The difference between nicardipine and verapamil was also evident when reflex forearm vasoconstriction was elicited by the application of a lower body negative pressure and the drugs were infused intra-arterially at 1 and 3 micrograms/100 ml tissue/min, respectively. To evaluate whether a comparable behavior might also hold for nonsympathomimetic agents, increasing doses of angiotensin II were administered to the forearm vascular bed after pretreatment with either nicardipine or verapamil. Both drugs increased forearm blood flow, but only nicardipine antagonized the effect of angiotensin II in the forearm, showing that the impairment of vasoconstrictor mechanisms was not dependent on a specific receptor. Important differences seem to exist between nicardipine and verapamil with regard to agonist-mediated vasoconstriction in hypertensive patients, which is consistent with the heterogeneity of calcium channel blockers as a pharmacological class. Preferential antagonism of a series of vasoconstrictor stimuli may characterize the vasodilatory and, possibly, the antihypertensive effect of nicardipine.

Adrenergic alpha-Agonists↗