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Biomedical subjects

L M Biasucci

Publications and source records attributed to L M Biasucci.

At least 19 recordsLinked to original sources

[Inflammation, atherosclerosis and acute coronary syndromes].

Inflammatory mechanisms play a pivotal role in the atherosclerotic process. At the base of atherogenesis there are complex interactions between macrophages, T lymphocytes and smooth muscle cells. A growing body of experimental evidences suggest that inflammation is involved in the pathogenesis of acute coronary syndromes (ACS) and influences their clinical evolution. In fact, in patients with ACS, coronary atherosclerotic plaques are characterized by an abundant inflammatory infiltrate. Moreover, in these patients systemic signs of inflammatory reaction can be observed: activated circulating inflammatory cells (neutrophil, monocytes and lymphocytes) and increased concentrations of pro-inflammatory cytokines, such as interleukin (IL)-1 and 6, and of acute phase reactants, in particular C-reactive protein (CRP). Recent data demonstrate that CRP is a strong independent predictor of adverse cardiac events and death in patients with ACS, but also in patients with stable ischemic heart disease and in apparently healthy men and women. Furthermore, CRP is an important prognostic index, for early and late outcome, in patients undergoing percutaneous coronary interventions, and may be useful in choosing the therapeutic management of the patient. Although the causes of inflammation in patients with ACS are not yet clear, this new line of research may open the way to a different clinical approach for these patients.

Acute Disease↗

C-Reactive Protein and secondary prevention of coronary events.

Accumulating data suggest that in ischemic syndromes, the activation of the inflammatory process plays a critical role. C-Reactive Protein (CRP) is a useful marker of inflammation in patients with ischemic heart diseases, particularly unstable angina (UA) and acute myocardial infarction. CRP may separate patients into two groups, one with low CRP levels and low in-hospital risk and one with high CRP levels and high in-hospital risk of major coronary events. When considering risk stratification of patients with acute coronary syndromes, the measurement of CRP seems to add further information to cardiac troponins. The seronegativity of both markers is associated with very low risk of myocardial infarction, while 15% of patients with MI have elevated CRP with negative troponins.

Biomarkers↗

Enhanced response of blood monocytes to in vitro lipopolysaccharide-challenge in patients with recurrent unstable angina.

BACKGROUND: C-reactive protein (CRP) plasma levels have been associated with short- and long-term occurrence of coronary events. We investigated whether circulating inflammatory cell responsiveness to low-grade stimuli could contribute to the reported association between CRP and coronary events. METHODS AND RESULTS: We studied 32 patients with unstable angina who were followed for 24 months and were free of symptoms for 6 months (group 1): 19 patients had persistently high CRP levels (>0.3 mg/dL) (group 1A); 13 patients had normal CRP levels (group 1B). During the follow-up, 12 (63%) group 1A but no group 1B patients developed an infarction or recurrence of unstable angina (P<0.001). Eighteen patients with chronic stable angina (group 2) and 18 healthy subjects (group 3) were studied as controls. Interleukin (IL)-6 production (median, range) by peripheral blood mononuclear cells after 4 hours of in vitro stimulation with 1 ng/mL lipopolysaccharide (LPS) was significantly higher in group 1A (4526 pg/mL, 3042 to 10 583 pg/mL) than in group 1B (1752 pg/mL, 75 to 3981 pg/mL), group 2 (707 pg/mL, 41 to 3275 pg/mL), and group 3 (488 pg/mL, 92 to 3503 pg/mL) (all P<0.001). No significant differences were observed among the other groups. IL-6 production after LPS-challenge was correlated with baseline CRP levels (r=0.42, P=0.005). CONCLUSIONS: Mononuclear cells of patients with recurrent phases of instability exhibit an enhanced production of IL-6 in response to low-dose of LPS, correlated with baseline CRP levels, 6 months after the last acute event. This persisting enhanced acute-phase responsiveness may help explain the association between CRP and acute coronary events.

Angina, Unstable↗

Markers of the acute phase response in cardiovascular disease: an update.

There is now widespread agreement that inflammation is a key component in the progression of atheromatous lesions. Inflammatory cells are present at all stages in the development of the atheromatous plaque, and gene knockout experiments in mice show that atheroma is largely prevented in the absence of the normal inflammatory mediators. In humans reduction of inflammation accompanies successful treatment strategies for atheroma. An increasing number of studies suggest that the acute phase protein, C-reactive protein, provides increased prognostic information over and above existing markers of atheroma severity or progression in healthy individuals and in the acute coronary syndromes. Recent advances in our knowledge of the normal variability of C-reactive protein levels and in precise and sensitive measurements strengthen the arguments for adding this marker to the repertoire of the routine laboratory assessment of cardiovascular disease.

Acute-Phase Reaction↗

Clinical use of C-reactive protein for the prognostic stratification of patients with ischemic heart disease.

C-reactive protein (CRP), the prototypic acute phase reactant and a sensitive marker of inflammation, consistently predicts new coronary events, including myocardial infarction and death, in patients with ischemic heart disease. The data are very consistent with regard to the long-term outcome, but in many studies are also significant for in-hospital events. The predictive value of CRP is, in the majority of the studies, independent of and additive to that of the troponins. Moreover recent data suggest that CRP may be a reliable marker of the risk of restenosis after percutaneous coronary interventions and that its levels can be modulated by statins. Taken together, all these data suggest that CRP, probably with different cut-offs, should be used as a marker of risk and as a guide to therapy in patients hospitalized for acute coronary syndromes and in outpatients suffering from ischemic heart disease.

Acute Disease↗

Large, sustained cardiac lipid peroxidation and reduced antioxidant capacity in the coronary circulation after brief episodes of myocardial ischemia.

OBJECTIVES: We sought to investigate whether a brief episode of myocardial ischemia produces a detectable cardiac oxidative stress in patients undergoing elective coronary angioplasty (PTCA). BACKGROUND: Although cardiac oxidative stress has been clearly demonstrated in experimental models of ischemia-reperfusion, its presence in patients after transient myocardial ischemia is still unclear. METHODS: In order to evaluate oxidative stress in ischemic cardiac regions, plasma conjugated dienes (CD), lipid hydroperoxides (ROOHs) and total antioxidant capacity (TRAP), independent indexes of oxidative stress, were measured in the aorta and great cardiac vein (GCV) before (t0), 1, (t1), 5 (t5) and 15 min (t15) after first balloon inflation in 15 patients undergoing PTCA on left anterior descending coronary artery (Group 1); six patients with right coronary artery stenosis (Group 2), which is not drained by the GCV, were studied as controls. RESULTS: In Group 1 at baseline, CD and ROOHs levels were higher in GCV than in aorta (p < 0.01 for both), and TRAP levels were lower (p < 0.01). Aortic levels of CD, ROOHs and TRAP did not change at any time after to; venous levels of CD and ROOHs levels markedly increased at t1, at t5 and remained elevated at t15 (p < 0.01 for all comparisons vs. to); venous levels of TRAP decreased at t1 and t5 (p < 0.01 vs. t0) and returned to normal at t15. In Group 2, CD, ROOHs and TRAP levels were similar in the aorta and GCV and did not change throughout the study. CONCLUSIONS: Short episodes of myocardial ischemia during PTCA induce a sustained oxidative stress, which is detectable in the venous effluent of reperfused myocardium.

Angioplasty, Balloon, Coronary↗

Inflammation and acute coronary syndromes.

The presence of inflammatory infiltrates in unstable coronary plaques suggests that inflammatory processes may contribute to the pathogenesis of these syndromes. In patients with unstable angina, coronary atherosclerotic plaques are characterized by the presence of macrophages, and to a lesser extent, T-lymphocytes, at the immediate site of either plaque rupture or superficial erosion; moreover, the rupture-related inflammatory cells are activated, indicating ongoing inflammation at the site of plaque disruption. These observations are confirmed by clinical studies demonstrating activated circulating neutrophils, lymphocytes and monocytes, and increased concentrations of pro-inflammatory cytokines, such as interleukin (IL) 1 and 6, and of acute phase reactants in patients with unstable angina and myocardial infarction. In particular elevated levels of C-reactive protein are associated with an increased risk of in-hospital and 1 to 2 years new coronary events in patients with unstable angina, but are also associated with an increased long-term risk of death and myocardial infarction in apparently normal subjects. Thus, accumulating evidence suggests that inflammation may cause local endothelial activation and, possibly, plaque fissure, leading to unstable angina and infarction. Although no information is yet available on the causes of inflammation and on its localization, these novel lines of research may open the way to a different approach to the patient with acute coronary syndromes.

Acute Disease↗

Enhanced inflammatory response in patients with preinfarction unstable angina.

OBJECTIVES: We assessed the extent and the time course of the acute phase response following myocardial cell necrosis and its relationship with the presence of preinfarction unstable angina (UA). BACKGROUND: Elevated levels of acute phase proteins have been reported in patients with UA and in patients with acute myocardial infarction (MI). METHODS: C-Reactive Protein (CRP), serum amyloid A protein (SAA) and interleukin-6 (IL-6) were measured in 36 patients with MI admitted within 3 h from symptoms onset. All patients had normal levels of creatine kinase and of troponin T on admission, rising above diagnostic levels within 6 to 12 h. Blood samples for CRP, SAA and IL-6 measurements were taken on admission, at 6, 24, 48, 72 h and at discharge. RESULTS: Twenty of the 36 patients studied presented an unheralded MI (Group 1); the remaining 16 patients had symptoms of unstable angina in the preceding 7 days (Group 2). Group 2 patients have much higher levels of CRP and SAA on admission (median values 8.8 vs. 3 mg/L and 28 vs. 3.4 mg/L, respectively, all p<0.001). Following the necrotic insult, despite similar infarct size and clinical signs of reperfusion, Group 2 patients had strikingly higher peaks of IL-6 (median values 85.2 vs. 19 pg/ml, p<0.05), CRP (50 vs. 31.4 mg/L, p<0.05) and SAA (228 vs. 45 mg/L, p<0.001). CONCLUSIONS: Our data demonstrated that the acute phase response is greatly enhanced in patients with preinfarction UA compared with those presenting with an unheralded MI. The significant differences in acute phase response observed in these two clinical presentations of MI indicate a major difference in their underlying pathogenetic components.

Acute-Phase Reaction↗

Preprocedural serum levels of C-reactive protein predict early complications and late restenosis after coronary angioplasty.

OBJECTIVES: We sought to investigate whether early and late outcome after percutaneous transluminal coronary angioplasty (PTCA) could be predicted by baseline levels of acute-phase reactants. BACKGROUND: Although some risk factors for acute complications and restenosis have been identified, an accurate preprocedural risk stratification of patients undergoing PTCA is still lacking. METHODS: Levels of C-reactive protein (CRP), serum amyloid A protein (SAA) and fibrinogen were measured in 52 stable angina and 69 unstable angina patients undergoing single vessel PTCA. RESULTS: Tertiles of CRP levels (relative risk [RR] = 12.2, p < 0.001), systemic hypertension (RR = 4.3, p = 0.046) and female gender (RR = 4.1, p = 0.033) were the only independent predictors of early adverse events. Intraprocedural and in-hospital complications were observed in 22% of 69 patients with high serum levels (>0.3 mg/dl) of CRP and in none of 52 patients with normal CRP levels (p < 0.001). Tertiles of CRP levels (RR = 6.2, p = 0.001), SAA levels (RR = 6.0, p = 0.011), residual stenosis (RR = 3.2, p = 0.007) and acute gain (RR = 0.3, p = 0.01) were the only independent predictors of clinical restenosis. At one-year follow-up, clinical restenosis developed in 63% of patients with high CRP levels and in 27% of those with normal CRP levels (p < 0.001). CONCLUSIONS: Preprocedural CRP level, an easily measurable marker of acute phase response, is a powerful predictor of both early and late outcome in patients undergoing single vessel PTCA, suggesting that early complications and clinical restenosis are markedly influenced by the preprocedural degree of inflammatory cell activation.

Aged↗

Increasing levels of interleukin (IL)-1Ra and IL-6 during the first 2 days of hospitalization in unstable angina are associated with increased risk of in-hospital coronary events.

BACKGROUND: A growing body of evidence suggests a role for inflammation in acute coronary syndromes. The aim of this study was to assess the role of proinflammatory cytokines, their time course, and their association with prognosis in unstable angina. METHODS AND RESULTS: We studied 43 patients aged 62+/-8 years admitted to our coronary care unit for Braunwald class IIIB unstable angina. In each patient, serum levels of interleukin-1 receptor antagonist (IL-1Ra), interleukin-6 (IL-6) (which represent sensitive markers of biologically active IL-1beta and tumor necrosis factor-alpha levels, respectively), and troponin T were measured at entry and 48 hours after admission. Troponin T-positive patients were excluded. Patients were divided a posteriori into 2 groups according to their in-hospital outcome: group 1 comprised 17 patients with an uneventful course, and group 2 comprised 26 patients with a complicated in-hospital course. In group 1, mean IL-1Ra decreased at 48 hours by 12%, and IL-6 diminished at 48 hours by 13%. In group 2, IL-1Ra and IL-6 entry levels were higher than in group 1 and increased respectively by 37% and 57% at 48 hours (P<0.01). CONCLUSIONS: These findings indicate that although they receive the same medical therapy as patients who do not experience an in-hospital event, patients with unstable angina and with complicated in-hospital courses have higher cytokine levels on admission. A fall in IL-1Ra and IL-6 48 hours after admission was associated with an uneventful course and their increase with a complicated hospital course. These findings may suggest novel therapeutic approaches to patients with unstable angina.

Angina, Unstable↗

Elevated levels of C-reactive protein at discharge in patients with unstable angina predict recurrent instability.

BACKGROUND: In a group of patients admitted for unstable angina, we investigated whether C-reactive protein (CRP) plasma levels remain elevated at discharge and whether persistent elevation is associated with recurrence of instability. METHODS AND RESULTS: We measured plasma levels of CRP, serum amyloid A protein (SAA), fibrinogen, total cholesterol, and Helicobacter pylori and Chlamydia pneumoniae antibody titers in 53 patients admitted to our coronary care unit for Braunwald class IIIB unstable angina. Blood samples were taken on admission, at discharge, and after 3 months. Patients were followed for 1 year. At discharge, CRP was elevated (>3 mg/L) in 49% of patients; of these, 42% had elevated levels on admission and at 3 months. Only 15% of patients with discharge levels of CRP <3 mg/L but 69% of those with elevated CRP (P<0.001) were readmitted because of recurrence of instability or new myocardial infarction. New phases of instability occurred in 13% of patients in the lower tertile of CRP (</=2.5 mg/L), in 42% of those in the intermediate tertile (2.6 to 8.6 mg/L), and in 67% of those in the upper tertile (>/=8.7 mg/L, P<0.001). The prognostic value of SAA was similar to that of CRP; that of fibrinogen was not significant. Chlamydia pneumoniae but not Helicobacter pylori antibody titers significantly correlated with CRP plasma levels. CONCLUSIONS: In unstable angina, CRP may remain elevated for at >/=3 months after the waning of symptoms and is associated with recurrent instability. Elevation of acute-phase reactants in unstable angina could represent a hallmark of subclinical persistent instability or of susceptibility to recurrent instability and, at least in some patients, could be related to chronic Chlamydia pneumoniae infection.

Aged↗

The variable role of inflammation in acute coronary syndromes and in restenosis.

Inflammation has recently been shown to be an important pathogenetic component of atherosclerosis in general and of acute coronary syndromes in particular. Not only activated inflammatory cells have been found in the plaques, but, more interestingly, also activated circulating inflammatory cells as well as elevated levels of systemic markers of inflammation have been described. Among these, C-reactive protein is of clinical value, as its levels are associated with the outcome. Inflammation is important also in triggering the mechanisms of restenosis and CRP has been recently described as a useful pre-procedure marker of risk of restenosis. The cause of inflammation, what triggers the shift from an indolent disease to the acute coronary syndromes and the more appropriate therapies are still a matter of debate.

Angioplasty, Balloon, Coronary↗