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F Andreotti

Publications and source records attributed to F Andreotti.

At least 19 recordsLinked to original sources

[The absence of a procoagulant effect after TNK-t-PA: a comparison with streptokinase and rt-PA].

A limitation of current fibrinolytic drugs is the procoagulant activity induced by their administration. TNK is a mutant of tissue plasminogen activator (t-PA) with high fibrin specificity, resistance to plasminogen activator inhibitor-1 and slow plasma clearance, which is administered in a single intravenous bolus. In this study we investigated the procoagulant effect of TNK-t-PA compared to streptokinase, rt-PA or no thrombolysis. Twenty-nine patients with acute myocardial infarction, treated within 6 hours of symptom onset with 1.5 MU streptokinase over 1 hour (n = 12), 100 mg rt-PA in 1.5 hours (n = 12) or 30-40 mg TNK-t-PA in 15 s (n = 5), were studied and compared to 7 patients with contraindications to thrombolysis (control group). All patients received a similar i.v. heparin regimen for at least 24 hours. Blood samples were drawn before the start of treatment (time 0) and after 2 hours. Thrombin formation was assessed as plasma concentrations of thrombin-antithrombin complex (TAT). The four patient groups did not differ significantly in age, sex, time to treatment, infarct location, and TAT values at time 0 (mean value +/- standard error of the mean 9 +/- 2 micrograms/l). Mean TAT levels at 2 hours were 26 +/- 6 micrograms/l in streptokinase treated patients (p = 0.005 vs time 0), 21 +/- 4 micrograms/l in rt-PA treated patients (p < 0.05 vs time 0), 5 +/- 0.6 micrograms/l in TNK treated patients, and 4 +/- 0.4 micrograms/l in controls (NS vs time 0 for TNK and controls). In conclusion, our data suggest that, in patients with acute myocardial infarction, bolus TNK-t-PA, unlike streptokinase or rt-PA infusions, is devoid of procoagulant effects, evaluated 2 hours after its administration.

Aged

Targeting new thrombolytic regimens at specific patient groups: implications for research and cost-containment.

Fibrinolytic drugs and aspirin, compared with placebo, have reduced the 35-day mortality of patients with acute myocardial infarction from approximately 12% to about 8%. The mortality reduction with active treatment is most evident in high risk groups of patients. Moreover, mortality with a fully patent infarct-related artery at 90 min from the start of thrombolytic treatment is half that found with an occluded artery. Yet more than 50% of acute infarct patients receiving thrombolysis fail to achieve complete early coronary patency or develop re-occlusion. Although thrombolytic strategies are continually evolving to try to further reduce early mortality and increase coronary reperfusion rates, new regimens, when tested in unselected patients against successful active treatments, such as streptokinase and aspirin, are likely to show no, or only small, average benefits, even when applied to tens of thousands of patients. In contrast, the effect of a new thrombolytic regimen is likely to be most evident is selected patients showing large areas of potentially salvageable ischaemic myocardium, as these patients have a higher absolute risk of premature death than patients with smaller infarcts and therefore should gain greater benefit from successful reperfusion. Since the effect of the new treatment, if present, would be greatest in this group, a smaller number of patients would be needed to show an effect; moreover, the risk of the new treatment would be justified against the larger potential benefit to be gained. We propose to target future thrombolytic regimens, in the first instance, at homogenous groups of high-risk patients; for example, those with large areas of potentially salvageable myocardium. This approach seems a rational and cost-effective way to invest limited amounts of medical resources and offers patients the greatest potential benefit of the new therapy, while restricting possible complications to a smaller number. Continued clinical research aimed at identifying possibly different causes of coronary occlusion and the reasons for worse outcomes is also essential to assign the most appropriate treatments to selected groups of patients.

Clinical Trials as Topic

Serum lipoprotein(a) level is related to thrombin generation and spontaneous intermittent coronary occlusion in patients with acute myocardial infarction.

BACKGROUND: Thrombotic occlusion of the infarct-related coronary artery is often intermittent in the early, evolving phase of acute myocardial infarction. To assess their relationship to this pattern of coronary occlusion, serum or plasma concentrations of cholesterol, triglyceride, lipoprotein(a), and coagulation and fibrinolytic factors were measured in venous blood before the initiation of thrombolytic therapy. METHODS AND RESULTS: Thirty-two patients (23 men, 9 women: age, 30 to 70 years) with acute myocardial infarction received intravenous recombinant tissue plasminogen activator (20 to 60 megaunits) within 6 hours of the onset of symptoms. Continuous ECG ST-segment recording demonstrated intermittent occlusion of the infarct-related coronary artery in 12 patients (group 1) before the start of thrombolytic treatment and persistent occlusion in 20 patients (group 2). Groups 1 and 2 were similar in age, sex, race, duration of symptoms, blood sample collection time, location of the infarct-related coronary artery, and extent of coronary artery disease. The serum level (median [interquartile range]) of lipoprotein(a) was 34 (13 to 47) mg/dL versus 11.5 (5 to 27) mg/dL (P = .02), and the plasma level (median [interquartile range]) of thrombin-antithrombin III complex was 10.85 (6.4 to 21.5) versus 6.8 (4.2 to 8.7) micrograms/L-1 (P < .04) in groups 1 and 2, respectively. The levels of the other factors were similar in both groups. CONCLUSIONS: The phenomenon of spontaneous intermittent closure and reopening of coronary arteries early during acute myocardial infarction in humans is associated with a higher level of lipoprotein(a) and of a marker of thrombin generation, suggesting that lipoprotein(a) and thrombin are closely related to coronary patency in these patients.

Acute Disease

Temporal relation between ischemic episodes and activation of the coagulation system in unstable angina.

BACKGROUND: Although a major role of coronary thrombosis in the pathogenesis of unstable angina has been demonstrated, the results of a series of studies have suggested that activation of the hemostatic system may not be confined to ischemic episodes. The purpose of this study was to investigate the temporal relation between ischemic episodes and activation of the coagulation system in unstable angina. METHODS AND RESULTS: Thrombin-antithrombin III (TAT) and prothrombin fragment 1 + 2 (F1 + 2) levels were measured in 13 patients during spontaneous ischemic episodes (time 0, 5, and 15 minutes and 1 hour) to evaluate the time course of the activation of the coagulation system associated with the development of ischemia (protocol A). TAT and F1 + 2 levels were also measured in 28 patients with unstable angina on admission to hospital (every 6 hours for 24 hours and daily for 3 days) to assess their temporal relation with ischemic episodes (protocol B). In protocol A, TAT and F1 + 2 levels were elevated in 10 of 13 patients (77%) in at least 1 sample. The median value of TAT showed a peak at 5 minutes and returned to baseline within 15 minutes (P < .05), consistent with its plasma half-life of 5 minutes, whereas the median value of F1 + 2 showed no significant changes, possibly because of its longer half-life, which tends to dampen sudden bursts of thrombin production. In protocol B, activation of the clotting system was found in 10 of 33 samples (30%) temporally related to ischemia and also in 23 of 150 (15%, P = .07) of those not temporally related to ischemia. CONCLUSIONS: Our study demonstrates that patients with active unstable angina develop frequent bursts of thrombin production not necessarily associated with ischemic episodes and that, conversely, some ischemic episodes are not associated with evidence of thrombin activation.

Adult

Preinfarction angina as a predictor of more rapid coronary thrombolysis in patients with acute myocardial infarction.

BACKGROUND: When a myocardial infarction is preceded by angina, the infarct tends to be smaller than when there is no preinfarction angina. Prompt recanalization of the occluded infarct-related artery is crucial in limiting the size of the infarct. We prospectively studied the relation among preinfarction unstable angina, the speed of coronary reperfusion, and the size of the infarct in patients with acute myocardial infarction receiving thrombolytic therapy. METHODS: We compared 14 patients who had unstable angina during the week before myocardial infarction with 9 patients who had no preinfarction angina. Coronary arteriograms were obtained at base line and 15, 35, 55, and 90 minutes and 24 hours after the start of thrombolytic therapy. The size of the infarct was estimated on the basis of creatine kinase and creatine kinase MB levels, which were measured every 4 hours during the first 24 hours. RESULTS: Complete reperfusion (a flow of grade 3 according to the Thrombolysis in Myocardial Infarction classification) was achieved at 35 minutes in 64 percent of the patients with preinfarction angina but in none of those without preinfarction angina (P = 0.006); at 55 minutes in 86 percent and 38 percent, respectively (P = 0.05); and at 90 minutes in 86 percent and 50 percent, respectively (P = 0.14). The mean (+/- SD) time to reperfusion was 27 +/- 16 minutes in the group with preinfarction angina and 48 +/- 17 minutes in the group without preinfarction angina (P = 0.04); the peak creatine kinase levels were 1118 +/- 783 and 2395 +/- 1615 U per liter, respectively (P = 0.03); the peak creatine kinase MB levels were 102 +/- 67 and 251 +/- 186 U per liter, respectively (P = 0.009); and the 24-hour integrated creatine kinase MB levels were 1716 +/- 1171 and 4267 +/- 3252 U.liter-1 x 24 hours, respectively (P = 0.009). The time to reperfusion was positively correlated with the indexes of infarct size (r > or = 0.53, P < or = 0.02). CONCLUSIONS: In patients with acute myocardial infarction preceded by unstable angina, as compared with those without preinfarction angina, thrombolytic therapy resulted in more rapid reperfusion and smaller infarcts. Earlier myocardial reperfusion may thus account for the smaller infarct size in patients with preinfarction angina.

Adult

Early spontaneous intermittent myocardial reperfusion during acute myocardial infarction is associated with augmented thrombogenic activity and less myocardial damage.

OBJECTIVES: This study investigated the influence of early spontaneous intermittent reperfusion on the extent of myocardial damage and its relation to endogenous hemostatic activity. BACKGROUND: In the early phase of acute myocardial infarction coronary occlusion is often intermittent, even before thrombolytic therapy is administered. The relation between this phenomenon, myocardial damage and hemostatic activity is unknown. METHODS: Holter ST segment recording and pretreatment plasma tissue-type plasminogen activator (t-PA) antigen, plasminogen activator inhibitor-1 (PAI-1) antigen, prothrombin fragment F1 + 2 and soluble fibrin levels were measured in 57 patients with acute evolving myocardial infarction. Spontaneous intermittent myocardial reperfusion, defined as two or more episodes of transient resolution of ST segment elevation to within 0.05 mV of baseline, lasting > or = 1 min, before the start of recombinant t-PA (rt-PA) treatment was present in 28 patients (group 1) and absent in 29 (group 2). Left ventriculography and coronary angiography were performed 90 min after intravenous rt-PA administration. Plasma creatine kinase-MB fraction (CK-MB) levels were measured every 6 h for 24 h, and C-reactive protein levels were measured daily for 3 days. RESULTS: Group 1 had lower peak plasma CK-MB (141.9 +/- 28.3 vs. 203.8 +/- 23.3 IU/liter [mean +/- SEM], p < 0.014) and C-reactive protein levels (16 +/- 4 vs. 28 +/- 4 mg/liter on day 1; 26.6 +/- 5.5 vs. 61.8 +/- 14.4 mg/liter on day 2; 19.6 +/- 4.2 vs. 40.6 +/- 6.5 mg/liter on day 3, p < 0.012) and a higher left ventricular ejection fraction (62.9 +/- 4% vs. 51.1 +/- 5%, p < 0.04) than group 2. Group 1 had lower plasma t-PA antigen levels (15.6 vs. 27 micrograms/liter, p < 0.006) but higher prothrombin fragment F1 + 2 (1.8 vs. 1.1 nmol/liter, p < 0.003) and soluble fibrin levels (66.8 vs. 31 nmol/liter, p < 0.01). Coronary patency at 90 min was similar. CONCLUSIONS: Early spontaneous intermittent reperfusion during acute myocardial infarction is associated with augmented thrombogenic activity and less subsequent myocardial damage. This finding is consistent with a protective effect of intermittency on the myocardium and a procoagulant effect of spontaneous lysis on blood. It may also reflect a different rate of evolution of coronary thrombosis and myocardial infarction in patients with and those without spontaneous intermittent myocardial reperfusion.

Analysis of Variance

Endothelium-derived haemostatic factors and the antiphospholipid syndrome.

The cause of thrombosis in the antiphospholipid syndrome (APS) is unknown. There have been reports of abnormalities in the antigenic levels or activity of endothelium-derived haemostatic factors, such as tissue-type plasminogen activator (t-PA) and plasminogen activator inhibitor type 1 (PAI-1); however the data from these studies are conflicting. We studied plasma from nine patients with APS; seven of them had a history of thrombosis, and three had systemic lupus erythematosus (SLE). We also studied nine matched control patients who had SLE without APS, and 14 healthy individuals. We measured t-PA, von Willebrand factor (vWF), anticardiolipin antibody (ACA) and anti-endothelial cell antibody (AECA) levels by enzyme-linked immunoassay (ELISA), PAI-1 activity by a parabolic-rate chromogenic assay, and lupus anticoagulant (LA) activity by a standard mixing test. For t-PA and PAI-1, measurements were made on morning and evening plasma samples. The two groups of patients did not differ significantly with respect to age, sex, plasma lipids or anti-inflammatory drugs. Most APS patients (7/9) but none of the controls were taking warfarin. Between the APS and the control patients no significant differences were detected in t-PA, PAI-1, vWF or AECA levels. When APS patients were considered alone, vWF levels correlated positively with IgG ACA levels (r = 0.81, P < 0.01) and negatively with platelet count (r = -0.68, P < 0.05). There was no correlation between levels of ACA or LA activity and t-PA, PAI-1 or AECA. Compared with healthy volunteers, the diurnal variation of t-PA and PAI-1 was blunted in the two patient groups.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult

Early remodelling of coronary stenoses after thrombolytic treatment in patients with acute myocardial infarction.

OBJECTIVE: To assess the frequency of early remodelling of coronary stenosis morphology after thrombolytic treatment in patients with acute myocardial infarction. DESIGN: Coronary angiograms were analysed by a computerised edge detection analysis system. Coronary stenosis severity was measured and morphology classified as smooth or complex. PATIENTS: Coronary arteriograms were obtained approximately 90 min and 24 h after thrombolytic treatment from 40 patients with acute myocardial infarction. MAIN RESULTS: Stenosis morphology was complex in 22 patients (65%) and smooth in 11 (32%) 90 min after thrombolysis. The morphology of 11 (50%) complex coronary stenoses and three (27%) smooth stenoses had changed at 24 h (P < 0.05). The transition from complex to smooth was associated with a reduction in stenosis severity from 65 (4)% to 51 (5)% (P < 0.05). The stenosis severity was 63 (4)% and 60 (5)% in those with persistently complex morphology, and 56 (7)% and 50 (5)% in those with persistently smooth morphology at 90 min and 24 h respectively (NS). CONCLUSIONS: Transition of morphology from complex to smooth within 24 h is common. This transition is associated with a reduction in stenosis severity of a degree greater than that found in persistently smooth stenoses over the same interval. 50% of stenoses are smooth at 24 h.

Adult

Relationship between hemostatic abnormalities and neuroendocrine activity in heart failure.

Thromboembolism is an important complication of heart failure. To test the hypothesis that heart failure may be associated with hemostatic dysfunction, we studied hemostatic function in 21 patients with stable chronic heart failure and related these measures to the severity of heart failure as assessed by clinical evaluation, neuroendocrine activation, radionuclide ventriculography, and cardiopulmonary exercise testing. Plasma and blood viscosity were elevated; all patients showed evidence of platelet activation, and many had elevated plasma concentrations of fibrinopeptide A, D-dimer, and von Willebrand factor. The plasma concentrations of these variables were poorly interrelated and related poorly to the severity of heart failure. Plasma concentrations of angiotensin II and endothelin were correlated, and the latter was also correlated with the plasma concentration of von Willebrand factor. Patients with chronic heart failure have hemostatic abnormalities that may predispose them to thromboembolic events and may be in part due to neuroendocrine activation.

Adult

Gall stone pulverisation strategy in patients treated with extracorporeal lithotripsy and follow up results of maintenance treatment with ursodeoxycholic acid.

Between November 1988 and July 1992 70 patients with radiolucent gall stones were treated with extracorporeal lithotripsy (ESL) and ursodeoxycholic acid (UDCA; mean (SD) dose 11.2 (1.9) mg/kg/day). Fifty three patients have been followed for one year. One week after lithotripsy, 30.6% had completely eliminated all stone fragments from the gall bladder and one year later 93.9% were free of stones. Three factors were considered important in achieving these results. 'Pulverisation' of the stone--that is, its fragmentation into echogenic dust (crystalline aggregates, some few hundred mu in size) or particles similar to grains of sand, smaller than 1 mm in diameter, or both, is required. Secondly, dust and particles were rapidly eliminated, strongly suggesting a mechanical elimination process by physiological gall bladder contractions. Thirdly, there must be chemical dissolution with biliary acids. This therapeutic approach gave excellent results without causing any clinically relevant side effects. The first 20 patients who became free of stones after ESL were given oral bile acid maintenance treatment--300 mg/day of UDCA at bedtime, for two years. All were asymptomatic and none had suffered a recurrence after two years. In four patients, crystalline aggregates, detected in gall bladder bile by ultrasound, were subsequently dissolved between one and three months after resuming a full dose regimen of UDCA.

Adult

Angiotensin II increases plasminogen activator inhibitor type 1 and tissue-type plasminogen activator messenger RNA in cultured rat aortic smooth muscle cells.

BACKGROUND: The role of angiotensin as a vasoconstrictor is well established. Lately, several other actions of this hormone on vascular smooth muscle (VSM) cells have been recognized including the induction of hypertrophy and/or DNA synthesis. Platelet-derived growth factor (PDGF), a mitogen recently shown to increase plasminogen activator inhibitor type 1 (PAI-1) synthesis in VSM cells, shares with angiotensin II (Ang II) several steps of its intracellular signaling pathway. METHODS AND RESULTS: The expression of PAI-1 and tissue-type plasminogen activator (TPA) mRNA in cultured rat VSM cells was studied. Northern blot analysis demonstrated a severalfold increase in the PAI-1 mRNA 3 to 8 hours after stimulation with 300 nmol/L Ang II. A similar response for TPA mRNA was observed. This induction did not require the synthesis of an intermediate protein or peptide because it was not affected by cycloheximide. In the cell-conditioned supernatant, the net result was an increase in PAI-1 activity from 4.18 +/- 1.8 to 13.2 +/- 6.8 IU/mL 6 hours after the addition of 300 nmol/L Ang II (mean +/- SD, P < or = .008, n = 6). The Ang II-induced increase in PAI activity was dose related, with a maximal effect at a concentration of 23 nmol/L (n = 3) and an ED50 of 3.3 +/- 1.5 nmol/L (n = 3). [Sar1-Ile8]angiotensin II, a specific competitive antagonist of Ang II, blocked 90 +/- 9% (n = 3) of the PAI activity induced by 10 nmol/L Ang II. In basal conditions, fibrin overlay zymography demonstrated the presence of free TPA. After stimulation with Ang II, lysis caused by the in situ dissociation of TPA was also present in the region of the TPA/PAI-1 complex. Angiotensin I (Ang I) elicited an increase in PAI activity similar to that obtained with equivalent doses of Ang II. Captopril (5 micrograms/mL), an inhibitor of the angiotensin-converting enzyme (ACE), completely prevented the Ang I effect, demonstrating that VSM cells display an ACE-like activity. CONCLUSIONS: Recent research has demonstrated the existence of a localized vascular renin-angiotensin system. The finding that Ang II can potentially modulate the plasminogen activation in the arterial wall has important biological and therapeutical implications for the evolution of arterial wall thrombi and the migration of cells through the vessel wall in the genesis of atherosclerotic lesions. We speculate that the reduction in thrombotic events observed in patients with a previous myocardial infarction and in high-renin, hypertensive patients treated with ACE inhibitors could be due at least in part to the decreased production of PAI-1 by VSM cells caused by these agents.

Amino Acids

[Interactions between atherosclerosis and ischemic stimuli in the pathogenesis of acute coronary syndromes].

Until a few years ago coronary atherosclerosis was thought to be a slowly progressive disease eventually leading to total coronary occlusion and myocardial infarction. Recent angiographic studies have shown, instead, that mild or moderate coronary stenoses have the highest risk of causing acute coronary syndromes when complicated by thrombus formation which, in turn, appears to be due to a complex interaction between the atherosclerotic background and acute ischemic stimuli. The tendency of the atherosclerotic background to develop thrombosis may be different in different patients, as indicated by the observation that the risk factor profile of patients who present with chronic coronary syndromes is different from that of patients who present with acute syndromes. The acute ischemic stimuli so far identified are: a sudden local thrombogenic stimulus; a transient systemic increase in systemic pro-coagulant activity; a transient increase in proximal and/or distal coronary tone. The recent observation of inflammatory cells activation, including T-lymphocytes, in patients with acute ischemic syndromes raises the intriguing possibility that a specific antigenic stimulus may play an important pathogenetic role.

Arteriosclerosis

[Antithrombin therapy in acute coronary syndromes].

Intracoronary thrombosis is fundamental in the pathogenesis of acute coronary syndromes, although the causes of thrombosis are still unclear. As thrombin generation is crucial for thrombus formation, the inhibition of thrombin is a primary aim to prevent the evolution of an initial repair process into a pathological thrombus. Thrombin inhibition can be achieved by several drugs. Heparin is the principal antithrombin drug currently used in acute syndromes; it acts mainly by binding to antithrombin III and increasing its inhibitory effect on thrombin and other coagulation factors. The heparin-antithrombin III complex, however, does not inhibit thrombus-bound thrombin; moreover, iv heparin requires frequent laboratory monitoring and dose adjustments. Despite these limitations, continuous infusion of i.v. heparin has been found to be effective in unstable angina and in myocardial infarction, especially when treated with accelerated rt-PA. New antithrombin drugs that selectively and directly inhibit thrombin are hirudin, its synthetic derivate hirulog, and argatroban. These drugs have several theoretical advantages over heparin: greater stability of the aPTT--with the need for less laboratory monitoring--and greater efficacy--associated mainly with its capacity to inhibit clot-bound thrombin. Clinical pilot studies seem to indicate a greater antithrombotic efficacy compared with heparin, but a greater number of hemorrhagic events in patients with acute myocardial infarction receiving thrombolysis. In conclusion, the use of heparin is certainly indicated in patients with unstable angina and persistent ischemia and in acute myocardial infarction treated with accelerated rt-PA. The use of new antithrombin drugs, although promising, requires further clinical evaluation.

Acute Disease