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Biomedical subjects

B Villari

Publications and source records attributed to B Villari.

At least 37 records · Page 2Linked to original sources

Effect of aortic valve stenosis (pressure overload) and regurgitation (volume overload) on left ventricular systolic and diastolic function.

In secondary hypertrophy from chronic pressure or volume overload, or both, systolic as well as diastolic abnormalities of left ventricular (LV) function have been described, but their relation has not been defined. In 58 patients with aortic valve disease (28 with aortic valve stenosis, and 30 with aortic regurgitation) and in 11 control subjects, LV biplane cineangiography was performed simultaneously with LV high-fidelity pressure measurements. LV ejection performance was assessed by ejection fraction, and diastolic function by the time constant of LV pressure decay, the early and late peak filling rates, and the constants of chamber (pressure-volume relation) and myocardial stiffness (stress-strain relation). In the entire cohort (n = 69), ejection fraction was inversely related to the time constant of LV relaxation (r = -0.58, p less than 0.001) and to the constant of myocardial stiffness (r = -0.62, p less than 0.001). Despite preserved systolic contractile function (as evaluated from the ejection fraction-mean systolic stress relation), abnormalities in LV diastolic function were present in 9 of 18 patients with pressure overload and 20 of 22 with volume overload. None of the 58 patients with aortic valve disease had a reduced early peak filling rate, whereas a reduction in late peak filling rate was observed in 3 with aortic stenosis, but in none with aortic regurgitation. This, it appears that abnormalities of relaxation and passive diastolic myocardial stiffness precede alterations in myocardial contractility. Assessment of peak filling rates is not helpful to detect diastolic dysfunction in patients with aortic valve disease.

Adolescent↗

Regression of coronary artery dimensions after successful aortic valve replacement.

BACKGROUND: The effect of regression of myocardial hypertrophy on coronary artery dimensions was evaluated in patients with aortic valve disease who underwent valve replacement. METHODS AND RESULTS: Cross-sectional area (CSA) of the three major coronary arteries (left anterior descending [LAD], left circumflex [LCx], and right coronary artery) was determined by quantitative coronary arteriography in 15 patients with aortic valve disease before and 38 months (range, 14-113 months) after successful aortic valve replacement. Twelve normal subjects served as controls. Left ventricular (LV) angiographic mass was calculated according to the method of Rackley. CSA of the left coronary artery was larger in aortic valve disease than in controls (LAD, 15 versus 8 mm2, p less than 0.001; LCx, 14 versus 6 mm2, p less than 0.001). After valve replacement, CSA of the left coronary artery decreased (LAD, 12 mm2, p less than 0.05 versus before surgery; LCx, 11 mm2, p less than 0.05 versus before surgery) but remained significantly larger than in controls. CSA of the right coronary artery in patients with aortic valve disease was not different from controls. LV muscle mass was significantly increased in aortic valve disease patients before (364 g) and after (250 g) valve replacement compared with controls (135 g). The appropriateness of coronary artery size with respect to muscle mass was evaluated by normalizing CSA of the left coronary artery (LAD + LCx) per 100 g of LV muscle mass (mm2/100 g). This index amounted to 11 mm2/100 g in controls, to 8 mm2/100 g in preoperative patients (p less than 0.05 versus controls), and to 10 mm2/100 g in postoperative patients with aortic valve disease (p = NS versus controls). CONCLUSIONS: In patients with aortic valve disease, CSA of the proximal LAD and LCx is increased, but this increase is not sufficient to keep CSA per 100 g of LV mass within normal limits. The postoperative decrease in muscle mass is associated with a decrease in the size of LAD and LCx, whereas the size of the right coronary artery remains unchanged. In contrast to the preoperative state, the residually hypertrophied LV myocardium after aortic valve replacement is supplied by an enlarged but adequately sized LAD and LCx.

Aortic Valve↗

Role of alpha 2-adrenoceptors in normal and atherosclerotic human coronary circulation.

BACKGROUND: Experimental studies on the effects of alpha 2-adrenoceptors on regional coronary blood flow in normal and ischemic myocardium are highly controversial. A beneficial effect on regional ischemic myocardium has been demonstrated in different animal preparations with either alpha 2-adrenoceptor blockade or stimulation. Animal studies also demonstrated that postsynaptic alpha 2-adrenoceptors mediate vasoconstriction in coronary and femoral vascular beds. The aims of the study were 1) to investigate the effects of regional alpha 2-adrenoceptor stimulation on regional coronary blood flow in subjects with angiographically normal coronary arteries, 2) to assess the effect of alpha 2-adrenoceptor blockade on coronary circulation in control subjects, and 3) to examine the influence of atherosclerosis on coronary blood flow response to alpha 2-adrenoceptor blockade. METHODS AND RESULTS: The effect of regional administration of BHT 933 (a selective alpha 2-adrenoceptor agonist) was studied in eight subjects with angiographically normal coronary arteries. The coronary blood flow velocity was measured using a subselective intracoronary 3F Doppler catheter and coronary diameter by quantitative coronary angiography. BHT 933 induced a reduction in coronary artery diameter from 2.5 +/- 0.6 mm to 1.8 +/- 0.4 mm (p less than 0.05) as well as in coronary blood flow velocity (from 6.4 +/- 0.9 cm/sec to 4.6 +/- 1.9 cm/sec, p less than 0.01). In some subjects, ST segment abnormalities occurred. In patients with angiographically normal coronary arteries (n = 6), the regional infusion of a selective alpha 2-adrenoceptor blocking agent after beta-blockade did not change coronary diameter or coronary blood flow velocity. In contrast, in patients with significant coronary stenoses (n = 6), regional infusion of an alpha 2-adrenoceptor blocking agent reduced regional coronary artery diameter (from 2.3 +/- 0.5 mm to 2.1 +/- 0.6 mm, p less than 0.01) as well as coronary blood flow velocity (from 5.8 +/- 0.8 cm/sec to 3.7 +/- 0.6 cm/sec, p less than 0.05); in addition, alpha 2-adrenoceptor blockade significantly increased coronary sinus plasma norepinephrine levels (from 300 +/- 144 pg/ml to 429 +/- 207 pg/ml, p less than 0.01). CONCLUSIONS: The selective in vivo stimulation of alpha 2-adrenoceptors produces a reduction in coronary blood flow and diameter in humans with angiographically normal coronary arteries. alpha 2-Adrenergic blockade does not change coronary blood flow in subjects with angiographically normal coronary arteries (suggesting no resting alpha 2-adrenergic vasoconstrictor tone), whereas in patients with coronary artery stenosis, regional coronary blood flow decreases after alpha 2-receptor blockade. Finally, our data also suggest that alpha 2-adrenoceptors participate in the modulation of sympathetic neuronal norepinephrine release in the human heart.

Adrenergic alpha-Agonists↗

Calcium antagonists and experimental myocardial ischemia reperfusion injury.

A number of previous studies have reported that administration of calcium antagonists reduces acute ischemic injury in a variety of experimental models. More recently, however, it has been suggested that the beneficial effects of reperfusing the ischemic myocardium might be blunted by the paradoxical occurrence of a specific form of reperfusion-mediated injury. Although the ultimate mechanisms responsible for this phenomenon have not been completely elucidated, it has been suggested that oxygen radical generation, neutrophil activation, and calcium overload, may all contribute to the development of myocardial damage in postischemic hearts. Several experimental studies suggest that, in addition to their well-known effects on ischemic injury, calcium antagonists may variably affect these mechanisms of reperfusion-mediated cell damage. In particular, evidence has been provided that suggests these drugs may inhibit oxygen radical-mediated peroxidation of membrane lipids and may also reduce activation of stimulated neutrophils. Furthermore, calcium-channel blockers might also prevent calcium overload in reperfused hearts, and they might interfere with reperfusion injury indirectly, secondary to a reduction in the severity of ischemia. From the experimental data available it can be speculated that calcium antagonists might contribute to reducing oxygen radical damage following reflow. At the same time, these drugs may allow the extension of the time window of reperfusion therapy, thus further expanding the benefits of thrombolysis.

Animals↗

Digoxin-induced vasoconstriction of normal and atherosclerotic epicardial coronary arteries.

This study evaluated the effect of bolus infusion of digoxin (0.014 mg/kg in 10 minutes, intravenously) on large coronary arteries measured by quantitative digital angiography. Twenty-two patients (mean age +/- standard deviation 47 +/- 12 years) divided into 3 groups were studied. The effects of digoxin infusion (after 10 and 20 minutes) and sublingual administration of isosorbide dinitrate were investigated in group I (patients with angiographically normal coronary arteries, n = 9) and in group II (patients with atherosclerotic coronary arteries, n = 8). To determine whether the effects of digoxin were mediated by activation of alpha-adrenergic receptors, coronary angiography was performed in group III after alpha-adrenoceptor blockade (phentolamine 0.11 mg/kg, intravenously) (n = 5). Ten minutes after the end of digoxin infusion, the cross-sectional area decreased from 7.7 +/- 4.1 to 6.0 +/- 2.2 mm2, and after 20 minutes to 5.6 +/- 2.6 mm2 (p less than 0.05) in group I. Isosorbide dinitrate reverted digoxin-induced vasoconstriction as cross-sectional area increased to 8.5 +/- 3.4 mm2 (p = not significant versus baseline). Twenty minutes after digoxin infusion, heart rate significantly decreased from 79 +/- 16 to 74 +/- 13 beats/min (p less than 0.01). Ten minutes after digoxin infusion, peripheral vascular resistance increased significantly from 1,396 +/- 693 to 1,693 +/- 984 dynes.s.cm-5 (p less than 0.05), whereas cardiac output did not change. Twenty minutes after digoxin infusion, minimal stenosis diameter decreased significantly from 1.6 +/- 0.5 to 1.4 +/- 0.5 mm (p less than 0.05) in group II.(ABSTRACT TRUNCATED AT 250 WORDS)

Angiography, Digital Subtraction↗

Divergent effects of serotonin on coronary-artery dimensions and blood flow in patients with coronary atherosclerosis and control patients.

BACKGROUND: Studies in animals have shown that serotonin constricts coronary arteries if the endothelium is damaged, but in vitro studies have revealed a vasodilating effect on isolated coronary segments with an intact endothelium. To investigate the effect of serotonin in humans, we studied coronary-artery cross-sectional area and blood flow before and after the infusion of serotonin in seven patients with angiographically normal coronary arteries and in seven with coronary artery disease. METHODS: We measured the cross-sectional area of the coronary artery by quantitative angiography and coronary blood flow with an intracoronary Doppler catheter. Measurements were obtained at base line and during intracoronary infusions of serotonin (0.1, 1, and 10 micrograms per kilogram of body weight per minute, for two minutes). We repeated the measurements after an infusion of ketanserin, an antagonist of serotonin receptors that is thought to block the effect of serotonin on receptors in the arterial wall but not in the endothelium. RESULTS: In patients with normal coronary arteries, the highest dose of serotonin increased cross-sectional area by 52 percent (P less than 0.001) and blood flow by 58 percent (P less than 0.01). The effect was significantly potentiated by administration of ketanserin. In patients with coronary-artery atherosclerosis, serotonin reduced cross-sectional area by 64 percent (P less than 0.001) and blood flow by 59 percent (P less than 0.001). Ketanserin prevented this effect. CONCLUSIONS: Serotonin has a vasodilating effect on normal human coronary arteries; when the endothelium is damaged, as in coronary artery disease, serotonin has a direct, unopposed vasoconstricting effect. When considered with other evidence, these data suggest that platelet-derived factors such as serotonin may have a role in certain acute coronary ischemic syndromes.

Adult↗

Assessment of left ventricular diastolic function: comparison of contrast ventriculography and equilibrium radionuclide angiography.

Twenty-two patients with coronary artery disease were studied first by radionuclide angiography (RNA) and then by contrast ventriculography. Cardiac medications were discontinued at least 72 hr before study. The patients were studied during atrial pacing at heart rates close to their spontaneous sinus rhythm. Contrast ventriculography was performed at 50 frames/sec in the 30 degrees right anterior oblique projection using 40 ml of a nonionic contrast medium (iopamidol) at a flow rate of 10-12 ml/sec. The contours of the left ventricular silhouette at contrast ventriculography were traced, frame by frame, on a graphic table with a digitizing penlight. Equilibrium 99mTc RNA was performed in the best septal 45 degrees left anterior oblique projection, acquiring 150,000 cts/frame, at 50 frames/sec and with a 5% gate tolerance. Time-activity curves from both end-diastolic and end-systolic ROIs were built and interpolated. Both RNA and contrast ventriculography volume curves were filtered with Fourier five harmonics. A close relationship was found between RNA and contrast ventriculography measurements of peak filling rate normalized to end-diastolic cps (r = 0.87, p less than 0.001) and stroke count (r = 0.87, p less than 0.001), ejection fraction (r = 0.94, p less than 0.001). Thus, in patients with coronary artery disease, LV filling can be accurately assessed using RNA.

Algorithms↗

[Late thrombolysis in the therapy of acute myocardial infarct: the prospects for its wide-spread clinical use].

Animal experiments and clinical observation in humans have established a window of opportunity during which reperfusion after acute myocardial infarction may salvage myocardium. This time window was initially thought to be 3 to 4 hours from the onset of coronary occlusion, but it has been recently recognized in humans to be longer, at least 6 hours and possibly even longer. The longer time span for effective intervention was determined in several studies showing an increased survival rate as a consequence of the improvement in left ventricular function and the reduction of infarct sequels with late thrombolysis. Main mechanism by which late thrombolysis may lead to survival benefit seems to be infarct-related artery patency. However, other mechanisms have been postulated such as the positive influence on remodeling, electric stability and different effects due to the breakdown of systemic fibrinogen and the anticoagulant effect that this can produce. Regardless of which of these proposed mechanisms is responsible for reducing mortality in patients treated with late thrombolysis after myocardial infarction, the limitation of treating patients only within the 4- to 6-hour time window must be seriously reconsidered.

Anistreplase↗

Usefulness of late coronary thrombolysis (recombinant tissue-type plasminogen activator) in preserving left ventricular function in acute myocardial infarction.

This study assesses whether administration of recombinant tissue-type plasminogen activator (rt-PA) up to 8 hours after onset of symptoms of acute myocardial infarction (AMI) may result in a significant improvement in left ventricular function. Sixty patients were classified into 3 groups: group A (n = 21) received rt-PA within 4 hours from symptom onset; the remaining 39 patients, admitted between 4 and 8 hours, were randomized into 2 groups--group B (n = 19) received rt-PA, and group C (n = 21) was treated with conventional therapy. Coronary and left ventricular angiograms were recorded 8 to 10 days after rt-PA administration. The patency rate of the infarct-related artery was 76% in group A, and 63 and 35% in group B and C, respectively. The Thrombolysis in Myocardial Infarction trial perfusion grade was higher in group A and B than in group C (A vs C: p less than 0.005; B vs C: p less than 0.01). Left ventricular ejection fraction was significantly higher in group A (60.2 +/- 10%) and B (54.7 +/- 12%) compared with group C (44.2 +/- 12%) (A vs C: p less than 0.01; B vs C: p less than 0.05). Regional wall motion of the entire ischemic zone was better in group A and B than in group C (A vs C: p less than 0.001; B vs C: p less than 0.01). In contrast, the kinesis of the central ischemic zone was significantly better in group A than in both group B and C (A vs B: p less than 0.05; A vs C: p less than 0.001).(ABSTRACT TRUNCATED AT 250 WORDS)

Coronary Angiography↗

Are ioxaglate and iopamidol equally safe and well tolerated in cardiac angiography? A randomized, double-blind clinical study.

A randomized, double-blind, parallel-group study was performed in 50 patients undergoing left ventriculography and coronary arteriography to evaluate ECG changes and the effects on left ventricular function of a low-osmolar ionic contrast agent, ioxaglate, as compared with a low-osmolar nonionic contrast medium, iopamidol. Twenty-five patients received ioxaglate (group 1) and 25 patients received iopamidol (group 2). All patients underwent 48 hours of continuous ECG recording beginning 24 hours before the cardiac catheterization. Left ventricular systolic and end-diastolic pressure, peak positive dp/dt, and dp/dt/P ratio were measured immediately before and after left ventriculography and 3 minutes later. Left ventricular systolic pressure did not change after injection of either contrast medium. Left ventricular end-diastolic pressure increased by 30% in group 1 (p less than 0.01) and by 22% in group 2 (p less than 0.01) immediately after left ventriculography. A further increase by 45% in group 1 (p less than 0.01) and by 24% in group 2 (p less than 0.01) was observed 3 minutes later. No differences were observed between values obtained in the two groups. Peak positive dp/dt did not change immediately after injection of either contrast medium but decreased by 5% (not significant) in group 1 and by 7% (p less than 0.02) in group 2 three minutes after left ventriculography. There were no significant differences between the two groups. Analysis of continuous 48-hour ECGs showed that both ioxaglate and iopamidol induced a slight increase (by 8% and 7%, respectively; p less than 0.05) in heart rate during injection with early and complete recovery.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Effects of late administration of tissue-type plasminogen activator on left ventricular remodeling and function after myocardial infarction.

To evaluate the effects of late thrombolysis on left ventricular volume and function in acute myocardial infarction, two-dimensional echocardiography and radionuclide angiography were performed before discharge and after 1 year of follow-up study in 34 patients with acute anterior myocardial infarction. Of these, 10 admitted to the coronary care unit within 4 h from the onset of symptoms were treated with recombinant tissue-type plasminogen activator (rt-PA) (Group A) and 24 admitted between 4 and 8 h after onset were randomly assigned to receive either rt-PA (Group B, n = 12) or conventional therapy (Group C, n = 12). Seven to 10 days after admission, all patients underwent cardiac catheterization and coronary angiography. Patency of the infarct-related vessel was 70% in Group A, 66% in Group B and 33% in Group C and the average Thrombolysis in Myocardial Infarction (TIMI) coronary perfusion grade was 1.9 +/- 0.8 for Group A, 1.6 +/- 1.0 for Group B and 0.84 +/- 0.95 for Group C (Group A versus Group C p less than 0.01; Group B versus Group C p less than 0.05). At predischarge evaluation, mean left ventricular end-systolic and end-diastolic volumes were higher in Group C than in Group B (p less than 0.001 and 0.05, respectively) and Group A (p less than 0.005 for both); mean left ventricular ejection fraction at rest was lower in Group C than in Group B and Group A (p less than 0.05 for both). At 1 year follow-up study, end-systolic and end-diastolic volumes remained higher in Group C than in Group B (p less than 0.05 for both) and Group A (p less than 0.005 for end-systolic volume and p less than 0.001 for end-diastolic volume); ejection fraction at rest was lower in Group C than in Groups A and B (p less than 0.05 for both); during exercise, it increased more in Group A than in Group C (p less than 0.01). Comparison of data obtained before discharge and at the 1 year follow-up study revealed a significant differences in end-systolic volume (p less than 0.05) in Group C patients and in end-diastolic volume in patients in Groups B (p less than 0.05) and C (p less than 0.001). The beneficial effect of late thrombolysis with rt-PA may be related to a reduction in myocardial expansion and thus to a favorable influence on postinfarction left ventricular remodeling.

Coronary Vessels↗

[Percutaneous brachial approach in left heart catheterization with 5 French catheters. Preliminary experience].

This describes our preliminary experience with percutaneous brachial approach for cardiac catheterization, by using 5 French (F) preformed catheters. Thirty patients (pts) were studied from the left arm (Group A) with a 5F sheath and 5F Judkins catheters and 30 from the right arm (Group B) with 5F sheath and 5F Amplatz catheters. Pigtail catheters (5F) were used for the left ventricular angiograms in all patients. In 10 patients arterial velocity signals and radial and ulnar artery blood pressures were monitored with the Doppler ultrasonic velocity detector before and immediately after each procedure, and 24 hours later. Arterial puncture was carried out successfully in each patient by using a 18-gauge Potts-Cournand needle. The puncture site was as close as possible to the ante cubital fossa where the artery is less mobile. Both coronary arteries were selectively opacified and the left ventricular angiography was done on every patient. The diagnostic quality of the angiograms was evaluated by the visual analogue scale and the results were not different from those obtained with the femoral approach in our catheterization laboratory. In 3 out of 30 pts in group B it was impossible to obtain a good left coronary opacification with Amplatz catheters for anatomical reasons, thus the right femoral approach was preferred. Brachial artery occlusion occurred in 1 patient from group B and needed surgical thrombectomy carried out to restore normal radial and ulnar pulses.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Nitrendipine and atenolol: comparison and combination in the treatment of arterial hypertension.

The effectiveness and tolerability of nitrendipine (Bay e 5009) and atenolol in the treatment of mild or moderate arterial hypertension in monotherapy and in association were evaluated in a randomized double-blind study. The drugs were administered once daily at the dose of 20 mg for nitrendipine and 100 mg for atenolol. The trial consisted in two phases of monotherapy and of a combined regimen phase, whose sequence was randomly established; tablets were administered according to a double-dummy design. The results were evaluated according to the criteria of the Hypertension Detection and Follow-up Program Cooperative Group. 5/20 patients were considered "responders" after atenolol treatment, 4/20 after nitrendipine alone, and 14/20 after combined therapy. Side effects resulted mild in severity, and their incidence was lower during the association phase. The combination of atenolol and nitrendipine appears to improve the effectiveness and acceptability of both drugs.

Adult↗