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Biomedical subjects

M Marzilli

Publications and source records attributed to M Marzilli.

At least 55 records · Page 3Linked to original sources

Immunologic detection of endothelial cells in human whole blood.

In this report we show that human endothelial cells (EC) can be detected in circulating blood by means of the EC-specific monoclonal antibody (MoAb) designated as CLB-HEC 19 and expressed quantitatively as number of cells per milliliter of whole blood. We first developed a method that was able to recover cultured human EC added to whole blood by Percoll density gradient centrifugation. The final recovery of the EC was 91.6% (SE = 0.65%). The EC were identified in the gradient subfractions by indirect immunofluorescence with the MoAb CLB-HEC 19. This method was then applied to the separation and characterization of EC or EC remnants from the whole arterial and venous blood taken from two groups of patients subjected to heart catheterization. Firstly, a preliminary blood screening of random samples was performed in a group of eight patients (group I) using a scoring evaluation for the presence of EC and the results were expressed as positivity index. Secondly, the complete blood screening of a group of ten patients (group II) was performed for the detection of immunofluorescent cells and the results were expressed as number of EC per milliliter of whole blood. Our results show in both group I and II a significant presence of EC in the blood after catheterization compared with their basal values. The minimal detectable concentration of EC was 0.06 cells/mL (SE = 0.057) of whole blood. We consider this technique as a suitable clinical test for the detection of EC injury in cardiovascular pathology.

Antibodies, Monoclonal↗

Coronary hemodynamics and myocardial metabolism in patients with syndrome X: response to pacing stress.

Coronary hemodynamics, myocardial metabolism and left ventricular function at rest and after incremental atrial pacing were evaluated in 12 patients with stress-induced angina and ST segment depression, angiographically normal coronary arteries and no evidence of spasm, generally labeled as syndrome X, and in 10 normal subjects. At baseline study, great cardiac vein flow was comparable in patients and control subjects. During pacing, an equivalent rate-pressure product was reached in the two groups, but the slope of the relation between rate-pressure product and great cardiac vein flow was significantly less steep in patients than in normal subjects (0.0027 vs. 0.0054 ml/mm Hg.beat, p less than 0.001). Nevertheless, the left ventricular ejection fraction was comparable in both groups at rest (66 +/- 6% vs. 71 +/- 7%, p = NS) and during pacing (71 +/- 7% vs. 66 +/- 5%, p = NS). At baseline study, myocardial glucose extraction was more efficient in patients with syndrome X (p less than 0.05), but net myocardial exchange of pyruvate and alanine was, respectively, smaller and greater than in control subjects. Lactate was extracted to a similar extent in the two groups and in no instance was net lactate release observed during pacing or recovery. During pacing and recovery, patients with syndrome X showed net pyruvate release, unlike the control subjects in whom net pyruvate exchange was positive. In addition, patients with syndrome X continued to show net myocardial extraction of alanine during spacing and recovery, whereas normal subjects produced alanine throughout the study. Myocardial carbohydrate oxidation increased significantly during maximal pacing in normal subjects but not in patients, in whom it always remained below (p less than 0.01) the concurrent rate of myocardial uptake of carbohydrate equivalents (glucose, lactate, pyruvate, alanine). Myocardial energy expenditure was significantly lower in patients than in control subjects at maximal rate-pressure product levels (p less than 0.01). The metabolic pattern in patients with syndrome X therefore is not consistent with classic ischemia, although differences in the net exchange of circulating substrates (glucose, pyruvate, alanine) can be demonstrated. Thus, in patients with syndrome X, the symptoms, electrocardiographic signs and impairment in the increase in great cardiac vein flow during pacing coexist with preserved global and regional left ventricular function and myocardial energy efficiency.

Angina Pectoris↗

[The diagnostic and prognostic value of echo-dipyridamole in patients with suspected coronary disease: a comparison with the stress test].

The aim of the study was to assess the relative diagnostic and prognostic accuracy of high-dose dipyridamole echocardiography test (DET: 2D-echo monitoring during dipyridamole infusion up to 0.84 mg/kg over 10') vs maximal symptom limited bicycle exercise electrocardiography test (EET) in patients with chest pain addressed to coronary angiography. We initially considered 477 consecutive patients, meeting the following inclusion criteria: 1) history of chest pain; 2) off antianginal therapy; 3) no previous myocardial infarction and/or obvious regional left ventricular dyssynergy of contraction. All patients were submitted to a DET and EET--on different days and in random order--within 1 week of coronary angiography (which was performed independently of test results). DET could not be performed in 32 patients for a poor acoustic window in resting conditions (n = 31) or for asthmatic disease requiring xanthine therapy (n = 1); EET could not be performed in 54 patients for inability to exercise, or resting electrocardiographic abnormalities making the EET interpretable. The overall feasibility was of 445/477 for DET and 423/477 for EET (93 vs 89%, p = ns). Criteria for positivity were: transient regional dyssynergy absent in the baseline examination for DET; ST segment shift greater than .15 m V from baseline for EET. Angiographically assessed coronary artery disease (CAD) was considered present when a luminal reduction greater than or equal to 50% occurred in at least 1 major coronary vessel. There were 135 pts with no significant CAD and 256 with CAD; 137 had single, 70 double, 49 triple and/or left main (15) vessel disease. The specificity was higher in DET vs EET (96 vs 59%, p less than .01). The overall sensitivity of DET was similar to EET (67 vs 69%, p = ns), with no significant differences in the subset with single (56 vs 63%, p = ns), double (74 vs 69%, p = ns) or triple (88 vs 86%, p = ns) vessel disease. Patients were followed-up for 26 +/- 22 (range 1 to 73) months considering only death and myocardial infarction as end-points. A Cox stepwise survival analysis identified the Wall Motion Score Index (an integrated semiquantitative measure of extent and severity of the dyssynergy) at peak dipyridamole as the most powerful prognostic predictor (X2 = 18.5, p less than 0001) of all invasive (number of stenotic coronary vessels, X2 = 5.8, p less than .05) and noninvasive (exercise electrocardiography positivity, p = ns) parameters.(ABSTRACT TRUNCATED AT 400 WORDS)

Coronary Angiography↗

Metabolic markers of stress-induced myocardial ischemia.

The human heart in the fasting state extracts free fatty acids (FFA), glucose, lactate, pyruvate, and ketones from circulating blood. The utilization of FFA accounts for most of the oxygen consumed and energy produced at rest. Patients with angiographically demonstrable coronary artery disease and stable angina pectoris have a resting myocardial metabolism similar to that of normal individuals. During atrial pacing in normal persons, there is a significant enhancement of glucose uptake but that of FFA is unchanged, and the oxidation of carbohydrates accounts for more than 60% of the energy produced. In patients with stable angina, myocardial perfusion becomes regionally inadequate during stress. Despite the increase of myocardial glucose utilization, carbohydrate oxidation is negligible. Pyruvate will not be oxidized but in the presence of increased amounts of reduced coenzymes will be reduced to lactate. In addition, a greater amount of alanine will be released by the myocardium through the transamination of pyruvate, with a concomitantly greater uptake of glutamate that serves as the NH2 donor. In addition, glutamate may be used as an anaerobic fuel through conversion to succinate coupled with GTP formation. Although coronary hemodynamics, including myocardial perfusion, return to baseline within a few minutes after stress, a longer time course is needed for myocardial metabolism to become normal. In particular, myocardial utilization of exogenous glucose remains higher well after the normalization of hemodynamic parameters. This is more pronounced in postischemic myocardium, but it also occurs in nonischemic muscle, and glucose is presumably used for rebuilding glycogen stores that were depleted during ischemia.

Biomarkers↗

Coronary occlusion: cause or consequence of acute myocardial infarction?

A 45-year-old man with unstable angina developed persistent ECG changes of myocardial ischemia during coronary angiography. Occlusion of the left anterior descending branch (LAD) was documented 20 minutes after these changes. Intracoronary nitrate, Ca antagonist, urokinase, removal by percutaneous transluminal coronary angioplasty (PTCA) of atherosclerotic obstructions, and emergency bypass surgery failed to restore myocardial perfusion. Only short periods of reflow were obtained by urokinase and PTCA. The repeated coronary injections demonstrated a progressive disappearance of the left anterior descending artery (LAD) starting from the distal portion and progressing retrogradely up to the origin of the vessel. The patient developed a transmural anterolateral myocardial infarction and 12 months later underwent cardiac transplantation for untractable failure. His heart was examined and the infarct confirmed. Analysis of this case suggests that coronary occlusion in acute myocardial infarction can be an event secondary to increased intramyocardial resistance rather than the cause of reduced coronary blood flow in subepicardial coronary arteries.

Angioplasty, Balloon, Coronary↗

In vivo quantitative ultrasonic evaluation of myocardial fibrosis in humans.

The aim of this study was to assess in vivo whether the regional ultrasonic reflectivity, evaluated by a real-time integrated backscatter analysis, was related to the local content of connective tissue in human myocardium as estimated by quantitative histology of endomyocardial biopsies. Sixteen patients with presumptive diagnosis of cardiomyopathy were ultrasonically studied by means of an M-mode-based echocardiographic system with quantitative integrated backscatter analysis capabilities. A 2.25-MHz transducer was used. The integrated value of the rectified radiofrequency signal of the interventricular septum was taken as integrated backscatter index and expressed in percent normalized for the pericardial interface (assumed to be 100%). All patients also underwent multiple left ventricular endomyocardial biopsies, which were stained with Masson's trichrome and studied with the use of a computer-assisted image analysis system. The percent integrated backscatter index was significantly higher in the presence of connective tissue area greater than 20% (eight patients) versus less than 20% (eight patients): 51 +/- 25% versus 26 +/- 11%, p less than 0.05. A significant correlation (p less than 0.05, R = 0.55) was found between percent integrated backscatter index and percent connective tissue area. In vivo on-line quantitative ultrasound analysis is feasible in man and reliably identifies variations in the regional extent of fibrosis in human myocardium.

Adolescent↗

Regional and global biventricular function during dipyridamole stress testing.

This study assesses the relation between regional ventricular performance (using 2-dimensional echocardiography) and global systolic and diastolic indexes of biventricular myocardial function (using hemodynamic monitoring) during dipyridamole stress testing. Simultaneous 2-dimensional echocardiographic and biventricular hemodynamic monitoring during dipyridamole infusion (0.56 mg/kg over 4 minutes) was performed in 19 patients. All patients had a normal resting function. Eleven of the 19 patients had a positive echocardiography test (new wall motion dyssynergy with dipyridamole) and they formed group 1. Eight patients had a negative echocardiography test (group 2). During baseline conditions, no significant differences were found in the 2 groups: rate pressure product (107 +/- 16 vs 108 +/- 13 mm Hg x beats/min x 1/100), positive left ventricular (LV) dP/dt (1,950 +/- 473 vs 2,262 +/- 430 mm Hg/s), negative LV dP/dt (-2,069 +/- 620 vs -2,205 +/- 245), LV end-diastolic pressure (8.2 +/- 4.4 vs 9.6 +/- 4.0 mm Hg), right ventricular positive dP/dt (368 +/- 133 vs 400 +/- 190 mm Hg/s) and negative dP/dt (-281 +/- 89 vs -383 +/- 147). At peak dipyridamole, the 2 groups were different for LV end-diastolic pressure (20 +/- 10 vs 8 +/- 5 mm Hg, p less than 0.01), LV positive dP/dt (2,100 +/- 688 vs 3,013 +/- 851 mm Hg/s, p less than 0.01) and negative dP/dt (-1,868 +/- 518 vs -2,564 +/- 272, p less than 0.01). At peak ischemia, LV positive dP/dt increased slightly, but not significantly, while negative dP/dt decreased significantly (p less than 0.01) in comparison with resting values.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Dose- and time-related vasodilator response of conduit coronary arteries to intracoronary isosorbide dinitrate in human beings.

The time course of the vasodilation of different segments of the epicardial coronary vasculature after three different doses of intracoronary isosorbide dinitrate (ISDN) was investigated in angiographically normal coronary arteries in 10 patients with quantitative coronary angiography. In five patients, 0.1 mg and 0.3 mg ISDN were injected intracoronary 30 minutes apart, and the effect of each dose was assessed at 1, 5, 10, and 15 minutes after the administration by serial angiograms. In five additional patients, a single dose of 3 mg was injected and coronary vasodilation was assessed at 1, 5, 10, 15, and 20 minutes. After each dose, dilation of epicardial coronary arteries occurred within 1 minute, peaked at 5 minutes and progressively decreased thereafter. Relative to control, peak percent diameter increase was (mean +/- SEM) 10% +/- 0.9% (p less than 0.01), 18.5% +/- 1.5% (p less than 0.01), and 26% +/- 2.1% (p less than 0.01) after 0.1, 0.3, and 3.0 mg, respectively. When small (1 to 2 mm), medium (2 to 3 mm), and large (greater than 3 mm) vessels were separately analyzed, peak response was respectively 12% +/- 1.3% (p less than 0.01), 9% +/- 1.9% (p less than 0.01), and 7% +/- 1% (p less than 0.05) after 0.1 mg ISDN; 22% +/- 1.8% (p less than 0.01), 16% +/- 1.3% (p less than 0.01), and 12% +/- 0.8% (p less than 0.01) after 0.3 mg; and 38% +/- 2.4% (p less than 0.01), 22% +/- 2.1% (p less than 0.01), and 17% +/- 2% (p less than 0.01) after 3.0 mg. The duration of the response increased with the dose, but was inversely related to the size of the vessel.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Coronary effects of adenosine in conscious man.

Adenosine has been reported to play an important role in several cardiac functions, including the regulation of total and regional myocardial perfusion. This hypothesis is based on extensive investigations in animal models, but very limited information is available on the cardiovascular actions of adenosine in conscious man and the effects of the intracoronary administration of adenosine are unknown. The purpose of this study was to measure total and regional coronary blood flow after bolus injections of 0.1, 0.5, 1.0, and 2.5 mg of adenosine into the left anterior descending coronary branch. A three-thermistor thermodilution catheter was advanced into the coronary sinus to measure simultaneously the great cardiac vein flow and the coronary sinus flow. Six patients with normal coronary angiograms and normal ventricular function completed the study. Intracoronary injections of adenosine were free from significant adverse effect and caused a dose-related increase of great cardiac vein flow. A linear relation was found between flow increment and the log of adenosine dose (y = 18.929x + 74.84, r2 = 0.951). The highest flow, measured after the maximal dose, was almost three times greater than control flow (155 +/- 2 vs 58 +/- 3 ml min-1, P less than 0.001). We also observed a flow response in the territory not directly exposed to adenosine, as indicated by a marked increase of coronary sinus blood flow that was linearly related to the adenosine dose (y = 29.113x = 112.635, r2 = 0.98). These preliminary observations suggest: (1) Intracoronary injections of adenosine in conscious man can be performed without significant adverse effects.(ABSTRACT TRUNCATED AT 250 WORDS)

Adenosine↗

Coronary hemodynamics and myocardial metabolism during and after pacing stress in normal humans.

We investigated coronary hemodynamics, myocardial utilization of circulating substrates (by coronary sinus catheterization), and overall use of oxidative fuels (by regional indirect calorimetry) in healthy adults during incremental atrial pacing (up to 159 +/- 9 beats/min), and during 25 min of recovery. Great cardiac vein flow (thermodilution) increased from 52 +/- 9 to 115 +/- 15 ml/min (P less than 0.001) with pacing; myocardial O2 uptake (301 +/- 53 to 593 +/- 71 mumol/min, P less than 0.001) and CO2 production (225 +/- 37 to 518 +/- 66 mumol/min, P less than 0.005) paralleled the pacing-induced rise in rate-pressure product (9.4 +/- 0.9 to 21.1 +/- 1.1 mmHg.beat. min-1.10(-3), P less than 0.001). During recovery, all the above variables returned to base line within 5 min, but myocardial O2 extraction remained depressed (67 +/- 2 vs. 71 +/- 3%, P less than 0.05). Circulating glucose uptake rose linearly with pacing (P less than 0.05) and remained above base line throughout recovery. By contrast, free fatty acid (FFA) uptake (10 mumol/min) did not increase with pacing and fell during recovery (P less than 0.01). Calorimetry, however, showed that net lipid oxidation exceeded FFA uptake throughout the study, whereas net carbohydrate oxidation was small at base line, rose significantly at maximal pacing (62% of myocardial energy output), and remained above base line during recovery (32% of energy output). In the basal state as well as during recovery, myocardial uptake of glucose equivalents (lactate plus glucose plus pyruvate) was in excess of carbohydrate oxidation, indicating nonoxidative disposal of these substrates.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Nonuniformity of the transmural distribution of coronary blood flow during the cardiac cycle. In vivo documentation by contrast echocardiography.

This study was performed to examine the transmural (endocardial vs. epicardial) heterogeneity of myocardial blood flow during the cardiac cycle (systole vs. diastole). Twenty-four contrast echocardiographic injections were performed in seven open-chest anesthetized dogs either into left anterior descending or circumflex coronary artery or into the aortic root. Two-dimensional echocardiography in short-axis view was performed and was digitized off-line into a 256 x 256 pixel matrix with 256 gray levels/pixel. All end-diastolic and end-systolic frames before and to peak contrast were analyzed. A region of interest corresponding to the most intensely opacified myocardial segment was traced, the mean videodensity measured, and the frame of initial contrast appearance detected. The region of interest was divided into three equal parallel layers corresponding to the endocardial, midcardial, and epicardial myocardium. When the echocardiographic contrast effect initially appeared in diastole, the increment in videodensity was greater for the endocardium (131 +/- 48%) than for the epicardium (71 +/- 37% of the increment in videodensity of the entire wall) (p less than 0.05). This inhomogeneity subsequently disappeared in the following end-systolic frame. When the initial echocardiographic contrast effect appeared in systole, intensity was higher in epicardium (136 +/- 83%) than in endocardium (60 +/- 60%) (p less than 0.05). However, in the following diastole, intensity was not significantly different for the two layers. Thus, myocardial contrast echocardiography demonstrates that coronary blood flow is primarily subendocardial in distribution during diastole and subepicardial during systole.

Animals↗

Usefulness of high-dose dipyridamole echocardiography test in coronary angioplasty.

Seventy-four consecutive patients with angina undergoing single-lesion percutaneous transluminal coronary angioplasty were evaluated with high-dose (up to 0.84 mg/kg during 10 minutes) dipyridamole echocardiography test (DET) before angioplasty and when possible, afterward. Angioplasty was clinically or angiographically successful in 63 patients and unsuccessful in 11. Before the procedure, 69 patients had a positive DET. Of these 69 patients, six with clinicall unsuccessful angioplasty had a dipyridamole time (i.e., the time from the onset of dipyridamole infusion to development of asynergy) lower than the 63 patients with clinically successfully angioplasty (4.2 +/- 2.9 vs. 7.0 +/- 2.9 minutes, mean +/- SD, p less than 0.01). In the five patients with angiographically unsuccessful angioplasty (residual stenosis diameter, greater than 50%), coronary stenosis decreased from 89 +/- 10 to 69 +/- 22 (p = NS); DET was positive in all five before and in four of the five after the procedure (100% vs. 80%, p = NS). In the 63 patients with angiographically successful angioplasty, coronary stenosis diameter was reduced from 85 +/- 9% to 30 +/- 10% (p less than 0.01). DET was positive in 58 patients before and in only 16 after the procedure (92% vs. 25%, p less than 0.01). In the 16 patients with positive DET, before and after angioplasty, dipyridamole time increased from 5.6 +/- 2.2 before to 7.3 +/- 2.4 minutes immediately after the procedure (p less than 0.05). After an average follow-up time of 10.8 +/- 5.9 months, angina recurred in eight of 47 patients with negative DET after angioplasty and in 11 of 16 patients with positive DET (17% vs. 69%, p less than 0.01).(ABSTRACT TRUNCATED AT 250 WORDS)

Angioplasty, Balloon↗

Persistence of subendocardial perfusion after subtotal coronary embolisation.

The effects of acute subtotal embolisation of small coronary arteries on regional coronary flow and vasodilator reserve were investigated in seven open chest dogs. Unlabelled plastic microspheres (26(2) micron in diameter) were injected as boluses of 200,000-400,000 microspheres into the circumflex artery. Embolisation was repeated until reactive hyperaemia was totally abolished, which occurred after the injection of 62,000(4000) microspheres per gram. Intracoronary adenosine was then infused for 20 min at 1.2 mg.min-1. Regional myocardial blood flow was measured by radioactive microspheres under control conditions, after coronary embolisation, and during adenosine infusion. Coronary blood flow (0.98(0.07) ml.min-1.g-1) was reduced to 0.66(0.08) ml.min-1.g-1 after embolisation (p less than 0.005) when reactive hyperaemia was practically abolished. Embolisation reduced epicardial flow from 0.93(0.08) to 0.40(0.09) ml.min-1.g-1 (p less than 0.001), whereas endocardial flow was unchanged (1.03(0.11) vs 0.92(0.14) ml.min-1.g-1; NS); as a consequence, the endocardial to epicardial flow ratio increased from the control value of 1.11(0.06) to 2.31(0.35) (p less than 0.005). Adenosine infusion increased coronary blood flow from 0.66(0.08) to 1.66(0.41) ml.min-1.g-1 (p less than 0.05). Endocardial blood flow increased more than epicardial blood flow, leading to a further increase in the endocardial to epicardial flow ratio (3.79(0.13); p less than 0.05). Thus it is concluded that (a) embolisation of small arteries abolishes the reactive hyperaemic response to transient coronary occlusion; (b) microembolisation predominantly reduces subepicardial perfusion; and (c) adenosine administration may increase total and regional flow after subtotal occlusion of coronary small arteries.

Adenosine↗

Systolic and diastolic alterations of left ventricular function: prevalence in ischaemic heart disease and importance in the management of individual patients.

Myocardial perfusion and contractile performance are strictly interrelated. Conclusive experimental data show that changes in perfusion cause immediate changes in function, and conversely, that changes in contraction affect both total and regional myocardial blood flow. In ischaemic heart disease, both transient and permanent changes in global and/or regional left ventricular (LV) function have been described. In myocardial ischaemia, an impairment of LV relaxation, as indicated by a reduction of negative dP/dt, is the first appreciable haemodynamic event. When ischaemia is sustained, impairment of LV contraction follows, as indicated by a drop of positive dP/dt, reduction of systolic LV pressure, rise of end-diastolic LV pressure. Unrestricted reperfusion, as in experimental coronary occlusion and in Prinz-Metal angina, is associated with a transient rebound in regional systolic function. Spontaneous and/or induced changes of regional ventricular function provide relevant information for the management of the individual patient. In PTCA candidates monitoring regional contractile performance by mono and two-dimensional echocardiography during dypiridamole infusion has proven to be a sensitive and specific test for (1) assessing the haemodynamic significance of a coronary stenosis in patients with single-vessel disease, (2) identifying the 'culprit' lesion in patients with multiple-vessel disease. During PTCA, right and left ventricular function assessed by radionuclide angiography both at rest and during atrial pacing appears to be a sensitive method for the immediate evaluation of the efficacy of the procedure.

Angioplasty, Balloon↗

Platelet activation in angina at rest. Evidence by paired measurement of plasma beta-thromboglobulin and platelet factor 4.

Indexes of in vivo platelet activation, beta-thromboglobulin and platelet factor 4 were measured in triplicate in plasma from venous blood of 69 patients with proven ischaemic heart disease (IHD), discarding samples with a ratio of the plasma concentrations of the two proteins less than 2.6, in order to rule out sampling artifacts. Compared with 60 control volunteers, differences were not significant [for beta-thromboglobulin controls (ng ml-1, mean +/- SD) 27.8-8.6, ischaemic patients 32.3 +/- 17.1; for platelet factor 4 controls 4.3 +/- 1.4, ischaemic patients 5.9 +/- 5.7]. However, when patients were stratified according to disease activity (Group I--patients without spontaneous ischaemic episodes at rest during 4 days of continuous electrocardiographic monitoring; Group II--patients with less than 1 ischaemic episode/day; Group III--patients with greater than 1 episode/day), these indexes were increased in 'active' patients (for beta-thromboglobulin, in Group II--32.4 +/- 10.5 ng ml-1, P less than 0.05 vs. Group I; in Group III--42.6 +/- 14.6 ng ml-1, P less than 0.01 vs. Group I, P less than 0.05 vs. control. Platelet factor 4 was increased only in Group III--8.9 +/- 7.2 ng ml-1, P less than 0.05 vs. control). Beta-thromboglobulin and platelet factor 4 were 25.0 +/- 6.7 ng ml-1 and 4.9 +/- 4.8 ng ml-1, respectively, in Group I (P = NS vs. control). A relationship with the number of spontaneous ischaemic episodes at rest was confirmed by linear regression analysis (in Group III patients for beta-thromboglobulin: r = 0.76, P less than 0.01, and for platelet factor 4 r = 0.62, P less than 0.01). Levels were not elevated in patients with previous myocardial infarction without ischaemia at rest and/or patients with stable angina, and were not influenced by the occurrence of a positive exercise stress test. Coronary angiograms of ischaemic patients were analyzed to assess the extent and severity of atherosclerotic involvement: for both extent and severity, involvement was similar in the three groups. These data support the hypothesis of the occurrence of platelet activation in patients with spontaneous angina at rest, but not in other subsets of IHD patients, and establish the possibility of detecting in vivo platelet activation in IHD by means of such circulating markers.

Adult↗