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Biomedical subjects

F Andreotti

Publications and source records attributed to F Andreotti.

At least 37 records · Page 2Linked to original sources

Comparison of insulin response to intravenous glucose in healed myocardial infarction, in "cooled-off" unstable and stable angina pectoris, and in healthy subjects.

Fasting and postglucose hyperinsulinemia are recognized risk factors for acute coronary events. The insulin reactivity of patients with acute coronary syndromes, however, has not been carefully compared with that of patients with chronic stable angina. We used Bergman's minimal model to analyze the insulin response to intravenous glucose in 21 subjects: 8 patients with previous (>3 months) acute coronary syndrome but no effort-related angina; 6 patients with stable effort angina but no prior acute event; and 7 healthy controls. Diabetes mellitus, systemic hypertension, dyslipidemias, and obesity were excluded. All patients underwent coronary angiography. Insulin sensitivity, glucose effectiveness, and glucose tolerance were determined from insulin and glucose concentrations measured frequently up to 3 hours after a 0.33 g/kg intravenous glucose bolus. Patients with previous unstable angina or acute myocardial infarction had less extensive disease at angiography than patients with stable angina (p = 0.007). Both patient groups had higher basal and 180-minute insulinemia than controls (p <0.0007). However, patients with stable angina did not differ significantly from controls with regard to early and late insulinemic response to glucose. In contrast, patients with previous acute onset of ischemia had significantly greater 180-minute integrated insulinemia (p = 0.04) and reduced insulin sensitivity (p = 0.05) after the glucose challenge than did the stable angina group. These data suggest that patients with acute presentation of coronary artery disease, compared with patients with uncomplicated chronic stable angina, have an impaired insulin response to glucose despite less extensive coronary disease at angiography.

Analysis of Variance↗

Increased proinflammatory cytokines in patients with chronic stable angina and their reduction by aspirin.

BACKGROUND: Proinflammatory cytokines released by injured endothelium facilitate interaction of endothelial cells with circulating leukocytes and thus may contribute to development and progression of atherosclerosis. We investigated whether cytokines and C-reactive protein (CRP) are indicative of myocardial ischemia or of diseased vessels and whether they are influenced by aspirin treatment in patients with chronic stable angina. METHODS AND RESULTS: Plasma macrophage colony stimulating factor (MCSF), IL-1b, IL-6, and CRP were measured in 60 stable patients after 48-hour Holter monitoring and in 24 matched controls. All patients had angiographic documentation of disease and positive exercise ECGs. Patients with ischemia on Holter monitoring (n=40) received aspirin or placebo in a 6-week, randomized, double blind, crossover trial. Blood sampling was repeated at the end of each treatment phase (3 weeks). Compared to controls, patients had more than twice median MCSF (800 versus 372 pg/mL), IL-6 (3.9 versus 1.7 pg/mL), and CRP (1.25 versus 0.23 mg/L) levels (P<0.01 for all comparisons). MCSF was related to ischemia on Holter monitoring (P<0.01), to low ischemic threshold during exercise (P<0.01), and together with IL-1b to number of diseased vessels (P<0.05). MCSF, IL-6, and CRP were all reduced after 6 weeks of aspirin treatment (P<0.05). CONCLUSIONS: These findings suggest that cytokines are associated with both ischemia and anatomic extent of disease in patients with stable angina. Reduced cytokine and CRP levels by aspirin may explain part of aspirin's therapeutic action.

Adult↗

Serum homocysteine, MTHFR gene polymorphism, and carotid intimal-medial thickness in NIDDM subjects.

We assessed the contribution of serum homocysteine levels, an independent risk factor for vascular disease, and of the methylenetetrahydrofolate reductase (MTHFR) C677T mutation to the variability of carotid intimal-medial thickness (IMT) in patients with non-insulin-dependent diabetes mellitus (NIDDM). Ninety-five patients (33 males and 62 females, mean age 53 +/- 10 years) without nephropathy or other vascular complications were enrolled. Fasting total serum homocysteine and other biochemical analytes were measured. The MTHFR polymorphism was determined by the polymerase chain reaction. Common carotid IMT and plaques or stenoses in the carotid district were measured by ultrasonography. Serum total homocysteine concentrations were higher in subjects with the mutant (Val/Val) genotype than in those with the Ala/Val plus Ala/Ala genotypes (P = 0.02). On univariate analysis, carotid IMT was significantly associated with age, body mass index (BMI), systolic blood pressure, and total cholesterolemia. No significant association was found between IMT and serum homocysteine or the MTHFR polymorphism, although a slightly greater IMT was observed in the homozygous Val genotypes. On multiple regression analysis, only age and BMI were independently associated with IMT and explained about 40% of IMT variability. The results did not change when the analysis was restricted to the subgroups with or without atherosclerotic plaques in the carotid district. In 95 Italian NIDDM patients without nephropathy, neither basal levels of serum total homocysteine nor the MTHFR C677T polymorphism predicted significant changes in common carotid intimal-medial thickness.

Arteriosclerosis↗

Homocysteine and arterial occlusive disease: a concise review.

Many cross-sectional and prospective studies have shown that raised serum/plasma levels of total homocysteine increase the risk of coronary, cerebral, and peripheral artery disease. The risk associated with hyperhomocysteinemia appears to be concentration-dependent and not attributable to traditional risk factors. The odds ratio for ischemic heart disease has been estimated to be 1.4 for every 5 mumol/l increase of total plasma homocysteine. Median fasting total plasma homocysteine in adult males is approximately 10 mumol/l. Mild hyperhomocysteinemia is estimated to occur in 5-10% of the general population. Plasma concentrations are increased as a result of age, male gender, impaired renal function, low vitamin B intake, and genetically-determined defects of the enzymes involved in homocysteine metabolism. Folate supplements can reduce total homocysteine levels by approximately 25%. Studies in vitro and in vivo indicate that homocysteine can impair endothelial function. Despite increasing recognition of hyperhomocysteinemia as a risk factor for arterial occlusive disease, irrefutable proof that mild hyperhomocysteinemia contributes directly to the pathogenesis of atherothrombosis will come if interventions to lower total homocysteine reduce cardiovascular events. Family studies may also provide evidence of causality if genetic causes of hyperhomocysteinemia are found to segregate with disease.

Arterial Occlusive Diseases↗

A simple assay for platelet-mediated hemostasis in flowing whole blood (PFA-100): reproducibility and effects of sex and age.

BACKGROUND: A simple assay for platelet-mediated hemostasis in flowing blood (PFA-100) has become available. Whole blood is aspirated through the central opening of a membrane coated with platelet agonists; the time required for a platelet thrombus to occlude the opening is defined as closure time; the shorter the closure time the greater the platelet aggregability. There are limited data on the normal range of values for this test, and the effects of sex and age are not known. The aim of this study was to determine the effects of sex and age on closure time in normal volunteers and to assess the reproducibility of the test in our laboratory. METHODS: Closure time using collagen/adenosine-5'-diphosphate was measured in 62 apparently healthy individuals 35 to 75 years of age (11 men and 17 women < 55 years and 22 men and 12 women > 55 years). RESULTS: Closure time was 96.6 +/- 24 s in men and 93.1 +/- 16 s in women (p = 0.20). In the entire group, closure time did not significantly correlate with age (r = -0.17, p = 0.18). However, men < 55 years tended to have a longer closure time than men > 55 years (109.7 +/- 23 vs 90.0 +/- 22 s, p = 0.08), whereas in women closure time was similar in those younger or older than 55 years (93.1 +/- 16 vs 93.3 +/- 18 s, respectively). In 20 samples tested in duplicate, the mean closure time was 80.9 +/- 10 s on the first determination and 81.5 +/- 12 s on the second (r = 0.89, p < 0.001). There was no significant correlation between closure time and hematocrit, platelet number, mean platelet volume, or leukocyte count. CONCLUSIONS: The platelet function analyzer PFA-100 showed a good reproducibility in apparently healthy subjects. No significant difference in closure time was found between men and women, nor between subjects younger or older than 55 years, although a tendency towards shorter values was found in older compared with younger men.

Adult↗

Allelic polymorphism of the interleukin-1 receptor antagonist gene in patients with acute or stable presentation of ischemic heart disease.

BACKGROUND: One of the most potent pro-inflammatory mediators is the early-acting cytokine interleukin (IL)-1, whose actions are regulated by the structurally related IL-1 receptor antagonist (IL-1 Ra). IL-1 Ra is a competitive IL-1 inhibitor and a powerful anti-inflammatory agent. Several autoimmune and inflammatory diseases have been associated with an allelic polymorphism of the IL-1 Ra gene. METHODS: We investigated the frequency of allele 2 of an intron 2 polymorphism of the IL-1 Ra gene in 115 consecutive patients with ischemic heart disease -74 of which had a previous myocardial infarction (48 +/- 11 years), 21 chronic stable angina (54 +/- 10 years), and 20 unstable angina (54 +/- 9 years)--and in 80 healthy controls, matched for age and sex to patients with myocardial infarction (47 +/- 10 years). An 86 base pair variable tandem repeat in intron 2 of the IL-1 Ra gene was determined by a polymerase chain reaction-based method. RESULTS: The frequency of allele 2 was 15% in controls (carriage rate 25%) and 17% in ischemic heart disease patients (carriage rate 28%; p = 0.70). The allele 2 frequency did not differ significantly among the three patient groups. Among patients with myocardial infarction, the allele 2 frequency tended to be higher in patients with myocardial infarction < 40 years compared to those > or = 40 years (20 vs 11%, p = 0.20, OR 1.85, 95% CI 0.70-4.90), and in patients with C-reactive protein levels > or = 3 mg/l compared to those with values < 3 mg/l (31 vs 16%, p = 0.15, OR 2.38, 95% CI 0.64-9.25). CONCLUSIONS: These data do not show a clear-cut association between the allele 2 of this IL-1 Ra gene polymorphism and ischemic heart disease. Among patients with myocardial infarction, the increased allele 2 frequency in those of younger age and with higher levels of C-reactive protein merits further investigation.

Adult↗

Preinfarction angina and improved reperfusion of the infarct-related artery.

Preinfarction angina and early reperfusion of the infarct-related artery are major determinants of reduced infarct-size in patients with acute myocardial infarction. The beneficial effects of preinfarction angina on infarct size have been attributed to the development of collateral vessels and/or to post-ischemic myocardial protection. However, recently, a relation has been found between prodromal angina, faster coronary recanalization, and smaller infarcts in patients treated with rt-PA: those with preinfarction angina showed earlier reperfusion (p = 0.006) and a 50% reduction of CKMB-estimated infarct-size (p = 0.009) compared to patients without preinfarction angina. This intriguing observation is consistent with a subsequent observation of higher coronary recanalization rates following thrombolysis in patients with prodromal preinfarction angina compared to patients without antecedent angina. Recent findings in dogs show an enhanced spontaneous lysis of platelet-rich coronary thrombi with ischemic preconditioning, which is prevented by adenosine blockade, suggesting an antithrombotic effect of ischemic metabolites. Understanding the mechanisms responsible for earlier and enhanced coronary recanalization in patients with preinfarction angina may open the way to new reperfusion strategies.

Angina Pectoris↗

Acute coronary syndromes in women: pathophysiology and therapeutic options.

Patients presenting with acute coronary syndromes disclose a number of gender-related differences. Women are more likely than men to have unstable angina and less likely to present with myocardial infarction. Women have a better prognosis than men among patients with unstable angina. Among patients with myocardial infarction without ST-segment elevation, men and women show similar outcomes. In contrast, among patients with myocardial infarction and ST-segment elevation, women consistently show a worse prognosis than men. This difference is not fully explained by age, comorbidities, extent of epicardial artery disease, or baseline left ventricular function, and may reflect gender differences in pathophysiological, functional and anatomical variables. Moreover, revascularization procedures and several anti-ischemic drugs appear underutilized in women.

Acute Disease↗

Circadianicity of hemostatic function and coronary vasomotion.

Acute myocardial infarction, sudden cardiac death and ischemic stroke show a circadian periodicity, occurring more frequently in the morning. Because arterial thrombosis is common to these disorders, a circadianicity of prothrombotic and antithrombotic processes may contribute to explain the 24 h rhythms of these acute events. Available data indeed indicate that coronary vasomotor tone, platelet aggregability, plasma inhibition of fibrinolysis, coagulant activity and blood viscosity are all greater in the morning than at other times of day, producting a relative prothrombotic state in the early morning.

Blood Coagulation↗

Platelet and Thrombin Activity Following Cardiac Catheterization Despite Treatment with Aspirin.

Thromboembolic complications are reported to occur in up to 0.5-2% of left cardiac catheterizations and angiographies. Activation of the hemostatic system may contribute to their onset. To prevent platelet and thrombin activity during catheterization, aspirin or systemic heparin are often used in addition to heparinized flush solutions. We investigated whether aspirin alone can prevent platelet and thrombin activity induced by catheterization in ten consecutive patients (nine males, mean 50 +/- 8 years) undergoing elective left cardiac catheterization after at least 5 days of oral aspirin (75-300 mg/d). Anticoagulant drugs were not given. Peripheral venous samples were drawn before, immediately after (time 0), and at 15, 60, and 180 minutes after the procedure for measurement of thrombin-antithrombin (TAT), prothrombin fragment 1.2 (F 1.2), fibrinopeptide A (FPA), and beta-thromboglobulin (beta-TG). TAT, F1.2, and FPA increased significantly at time 0 compared with both before and 180 minutes after the procedure (P < 0.04); beta-TG values were higher at time 0 compared with 180 minutes later (P = 0.01). TAT levels were related to those of FPA (r = 0.66; P = 0.0003), F1.2 (r = 0.35; P = 0.01), and beta-TG (r = 0.37; p = 0.04). Thus, routine left cardiac catheterization is associated with transient, systematically detectable, activation of coagulation and platelets, despite aspirin therapy. Newer antiplatelet agents may be more effective in preventing hemostatic activation induced by catheterization.

Journal Article↗

[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↗

The TIMI 9b and GUSTO IIb Trials and the "Thrombin Hypothesis"

The "thrombin hypothesis" proposes that the clinical outcome of patients with unstable angina or acute myocardial infarction (MI) is related to the degree of thrombin inhibition, with greater inhibition resulting in improved outcome. Two recent trials (TIMI 9b and GUSTO IIb) tried to test this hypothesis by randomizing 15,000 patients with MI or unstable angina to a 3-to-5 day intravenous administration of either the powerful thrombin inhibitor hirudin, or standard heparin. In both studies, after 30 days, there was no significant difference in the rates of death or nonfatal infarction between the 2 treatment arms. More than one reason may explain these findings. In both trials the anticoagulant regimens were carefully tailored to prevent excessive bleeding complications and to achieve a predetermined level of efficacy, as measure by aPTT. It is possible that similar aPTTs and similar bleeding rates will result in similar clinical outcomes, regardless of the anticoagulant agent used. It is also possible that patients already receiving fibrinolytic drugs and aspirin did not derive such additional thrombolytic benefit from anticoagulants to compensate for the increased bleeding risk associated with their use. Finally, thrombin may not always play the crucial role that has been attibuted to it: marked thrombin generation may occur only in subgroups of patients, or as a secondary response to a primary trigger that fails to be antagonized by antithrombin therapy or that re-emerges after stopping treatment. The true role played by anticoagulants in the management of acute coronary syndromes is not clear from TIMI 9b or GUSTO IIb because neither study included a control group not receiving anticoagulants. These trials, however, raise important issues that deserve further investigation: for example, the definition of what drives thrombin generation in patients with acute coronary syndromes and the identification of possible subgroups of patients deriving true clinical benefit from anticoagulant therapy.

Journal Article↗

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↗