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Mario Plebani

Publications and source records attributed to Mario Plebani.

114 records · Page 7Linked to original sources

[Acute coronary syndrome without ST-segment elevation. Current guidelines].

Coronary-artery disease is the leading cause of death in western countries. Unstable angina and myocardial infarction without ST-segment elevation are now recognized as among the most frequent and important clinical manifestations of coronary-artery disease. The European and American professional societies have released guidelines on diagnosis, risk stratification and treatment of these disorders. These guidelines summarise current evidences and translate them in clinical practice. Most important changes relate to the inclusion of troponins into the risk stratification algorithm. In addition, some guidelines released by scientific committees of the laboratory area further define the quality specifications for cardiac troponin assays. Powerful tests, such as cardiac troponins, on which critical decisions will rest need highly reliable methods, quality control and external quality assurance schemes.

Acute Disease↗

The new definition of myocardial infarction: analysis of the ESC/ACC Consensus Document and reflections on its applicability to the Italian Health System.

The recent document of the ESC/ACC Committee for the redefinition of myocardial infarction (MI) has introduced the measurement of cardiac troponin as the biochemical standard for the diagnosis of MI. This change has been mainly driven by the demonstration that any amount of myocardial damage, as detected by cardiac troponins, implies a worse long-term outcome of the patient. The results of several studies consistently show that there is a continuous relationship between the degree of troponin elevation and the patient's prognosis. The new definition has important consequences on the diagnostic and therapeutic approaches to patients with acute coronary syndromes; in fact, patients with increased troponins, i.e. patients with MI, necessitate more aggressive treatment than those without troponin elevations, i.e. patients with unstable angina. The application of the new definition is expected to increase the number of cases of MI by about 30% and to decrease mortality. We believe that several aspects of the new definition need to be discussed before the new criteria for MI are used in clinical practice in Italy. The most relevant issues are the following: 1) the definition of troponin elevation should meet the analytical performance of the available assays, the diagnostic cutoff of which is frequently too imprecise. We propose that troponin elevations be defined as values exceeding the concentration corresponding to a total analytical imprecision of 10%. We disclose such a concentration for the currently available assays and suggest its use in clinical practice to mitigate the possibility of false-positive values; 2) the number of samples required for the diagnosis should be sufficient for the assessment of the changes in concentration over time. When only one sample is available, or when the temporal pattern of the changes in marker concentration is not consistent with the time elapsed from the onset of symptoms, we suggest that objective evidence that myocardial ischemia is the likely cause of myocardial damage should be obtained; 3) the diagnosis of MI after a percutaneous coronary intervention represents a unique situation. In contrast with myocardial damage occurring during spontaneous ischemia, available data do not support the concept that any troponin elevation is associated with an adverse prognosis. In the absence of conclusive studies, we suggest that the diagnosis of MI after a percutaneous coronary intervention be based on conventional criteria. Finally, we propose this summary with the aim of overcoming some of the more controversial aspects of the ESC/ACC redefinition of MI: Criteria for acute, evolving or recent MI. Either one of the following criteria satisfies the diagnosis for an acute, evolving or recent MI: 1) elevation of biochemical markers of myocardial necrosis (preferably troponin) with at least one of the following: a) ischemic symptoms; b) development of pathologic Q waves on the ECG; c) ECG changes indicative of ischemia (ST segment elevation or depression); d) coronary artery intervention (e.g., coronary angioplasty). Marker elevations should be accompanied by objective evidence that myocardial ischemia is the likely cause of myocardial damage when: a) only one blood sample is available; b) marker changes over time are not consistent with the onset of symptoms; 2) pathologic findings of an acute MI. Criteria for established MI. Anyone of the following criteria satisfies the diagnosis for established MI: 1) development of new pathologic Q waves on serial ECGs. The patient may or may not remember previous symptoms. Biochemical markers of myocardial necrosis may have normalized, depending on the length of time that has passed since the infarct developed; 2) pathologic findings of a healed or healing MI.

Angioplasty, Balloon, Coronary↗

[Markers of myocardial damage in the diagnosis of acute myocardial infarction: the Italian reality in the year 2000].

BACKGROUND: The Joint European Society of Cardiology and the American College of Cardiology Committee has recently reviewed the criteria to diagnose myocardial infarction, focusing on the central role of biochemical criterium and indicating the cardiac troponins as the reference marker. However, at present, little is known upon how "old" and "new" biochemical markers of myocardial damage are utilized in daily clinical practice. METHODS: We performed a survey across the whole set of Italian coronary care units (CCUs) to evaluate the actual behavior of the clinicians in detecting myocardial necrosis with the biomarkers. A simple and brief questionnaire was used to pursue such purpose. RESULTS: The feedback from CCUs was positive in 87.6% (303/346). The creatine kinase-MB is the most frequently used biomarker, however the "mass concentration" method was utilized in a minority of centers (38%). More than 60% of the CCUs are still measuring obsolete biomarkers as lactic dehydrogenase or aspartate transaminase. Cardiac troponins are measured only in 70% of the centers, and almost always in conjunction with the "old" biomarkers. Additionally, 14.5% of the Italian CCUs had written guidelines upon how to use the biomarkers to pose diagnosis of myocardial infarction. Biochemical criteria widely differed from center to center, regardless of the biomarker selected as reference standard. CONCLUSIONS: The results of our survey show a high degree of difference in the choice as well as in the application criteria of biochemical markers for diagnosing myocardial infarction among the Italian CCUs. A great deal of confusion has been accumulating over the years among Italian cardiologists, and this situation was antecedent to the recently released revised criteria for detecting myocardial necrosis.

Biomarkers↗

[New definition of myocardial infarction: analysis of the consensus document ESC/ACC and thoughts about applicability to the Italian health situation].

The recent document of the ESC/ACC Committee for the redefinition of myocardial infarction (MI) has introduced the measurement of cardiac troponin as the biochemical standard for the diagnosis of MI. This change has been mainly driven by the demonstration that any amount of myocardial damage, as detected by cardiac troponins, implies a worse long-term outcome of the patient. The results of several studies consistently show that there is a continuous relationship between the degree of troponin elevation and the patient's prognosis. The new definition has important consequences on the diagnostic and therapeutic approaches to patients with acute coronary syndromes; in fact, patients with increased troponins, i.e. patients with MI, necessitate more aggressive treatment than those without troponin elevations, i.e. patients with unstable angina. The application of the new definition is expected to increase the number of cases of MI by about 30% and to decrease mortality. We believe that several aspects of the new definition need to be discussed before the new criteria for MI are used in clinical practice in Italy. The most relevant issues are the following: 1) the definition of troponin elevation should meet the analytical performance of the available assays, the diagnostic cut-off of which is frequently too imprecise. We propose that troponin elevations be defined as values exceeding the concentration corresponding to a total analytical imprecision of 10%. We disclose such a concentration for the currently available assays and suggest its use in clinical practice to mitigate the possibility of false-positive values; 2) the number of samples required for the diagnosis should be sufficient for the assessment of the changes in concentration over time. When only one sample is available, or when the temporal pattern of the changes in marker concentration is not consistent with the time elapsed from the onset of symptoms, we suggest that objective evidence that myocardial ischemia is the likely cause of myocardial damage should be obtained; 3) the diagnosis of MI after a percutaneous coronary intervention represents a unique situation. In contrast with myocardial damage occurring during spontaneous ischemia, available data do not support the concept that any troponin elevation is associated with an adverse prognosis. In the absence of conclusive studies, we suggest that the diagnosis of MI after a percutaneous coronary intervention be based on conventional criteria. Finally, we propose this summary with the aim of overcoming some of the more controversial aspects of the ESC/ACC redefinition of MI: Criteria for acute, evolving or recent MI. Either one of the following criteria satisfies the diagnosis for an acute, evolving or recent MI: 1) elevation of biochemical markers of myocardial necrosis (preferably troponin) with at least one of the following: a) ischemic symptoms; b) development of pathologic Q waves on the ECG; c) ECG changes indicative of ischemia (ST segment elevation or depression); d) coronary artery intervention (e.g., coronary angioplasty). Marker elevations should be accompanied by objective evidence that myocardial ischemia is the likely cause of myocardial damage when: a) only one blood sample is available; b) marker changes over time are not consistent with the onset of symptoms; 2) pathologic findings of an acute MI. Criteria for established MI. Anyone of the following criteria satisfies the diagnosis for established MI: 1) development of new pathologic Q waves on serial ECGs. The patient may or may not remember previous symptoms. Biochemical markers of myocardial necrosis may have normalized, depending on the length of time that has passed since the infarct developed; 2) pathologic findings of a healed or healing MI.

Humans↗

Development of a new bioartificial liver using a porcine autologous biomatrix as hepatocyte support.

Long-term maintenance of hepatocyte viability and differentiated function expression is crucial for bioartificial liver support. The maintenance of hepatocyte function in a bioreactor is still a problem. A major advance was the recognition that hepatocytes in attachment cultures can maintain their differentiation longer. To restore hepatocyte polarity and prolong their function, we developed a new bioreactor with a cross-flow geometry configuration and an original hepatocyte extracellular autologous biomatrix (Porcine Bio-Matrix) support. To test this new bioreactor, we compared it with a standard bioartificial liver cartridge in a suitable surgical model of acute liver failure in pigs. In our model, we performed a total hepatectomy, followed by partial liver transplantation after an 18 hour anhepatic phase. The results showed that the bioreactor containing the biomatrix was able to bridge the animal to transplantation and to sustain the transplanted liver until all function recovered (80% of animals survived, p = 0.0027). No animal survived more than 24 hours after liver transplantation in the group treated with the traditional bioartificial liver, whereas hepatocyte viability on the Porcine Bio-Matrix was 65% after 12 hours of treatment. The results suggest that our biomatrix is a suitable cell support and guarantees long-term maintenance of metabolic activity of hepatocytes. Further studies are needed, but the results obtained with this new three-dimensional bioreactor are promising, and its potential is attractive.

Animals↗