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High-sensitive cardiac troponin: friend or foe?
Raphael Twerenbold1, Tpbias Reichlin, Miriam Reiter
1Department of Cardiology, University Hospital Basel, Petersgraben 4, Basel, Switzerland.
Insights
Cardiac troponin (cTn) tests are crucial for diagnosing acute myocardial infarction (AMI). High-sensitivity assays improve early detection by identifying lower cTn levels, aiding in differentiating cardiac conditions.
Area of Science:
- Biochemistry
- Cardiology
- Clinical Diagnostics
Background:
- Cardiac troponin I and T (cTn) are specific biomarkers for cardiomyocyte necrosis.
- Elevated cTn levels are integral to diagnosing acute myocardial infarction (AMI).
- Contemporary cTn assays have limitations in early AMI detection due to sensitivity deficits.
Purpose of the Study:
- To evaluate the impact of recent advancements in cardiac troponin assay technology on clinical practice.
- To highlight the advantages of high-sensitivity troponin (hs-cTn) assays in diagnosing AMI.
- To emphasize the quantitative interpretation of cTn levels for accurate diagnosis.
Main Methods:
- Review of recent multicentre studies on high-sensitivity cTn assays.
- Comparison of hs-cTn assays with contemporary cTn assays.
- Analysis of cTn levels as a quantitative variable for differentiating cardiac conditions.
Main Results:
- High-sensitivity cTn assays improve the early diagnosis of AMI.
- hs-cTn assays can detect cTn in healthy individuals, with "normal" defined by the 99th percentile.
- Interpreting cTn as a quantitative variable, with rising/falling levels, is key to differentiating acute from chronic cardiomyocyte necrosis.
Conclusions:
- High-sensitivity cTn assays represent a significant advancement in diagnosing AMI.
- Avoid the term "troponin-positive"; focus on "detectable" versus "elevated" levels.
- Quantitative cTn analysis aids in the differential diagnosis of cardiomyocyte necrosis, distinguishing AMI from other cardiac disorders.
Abstract:
Cardiac troponin I and T (cTn) are structural proteins unique to the heart. Detection of cTn in peripheral blood indicates cardiomyocyte necrosis. As acute myocardial infarction (AMI) is the most important cause of cardiomyocyte necrosis, cTns have become an integral part in the diagnosis of AMI. In this indication, cTns are superior to all other biomarkers indicating cardiomyocyte necrosis such as CK-MB and myoglobin, and are therefore considered the preferred marker in the diagnosis of AMI. It is important to highlight that cTn indicates and quantifies cardiomyocyte necrosis irrespective of its cause? The major limitation of contemporary cTn assays is a sensitivity deficit in the first few hours of AMI due to a delayed increase of circulating levels. Recent advances in assay technology have lead to a refinement in cardiac troponin (cTn) assays that have had a profound impact on clinical practice. High-sensitive cTn assays have two differentiating features from contemporary cTn assays: 1) detection of cTn in healthy persons and 2) a precise definition of what is "normal" (= the 99th percentile). Recent multicentre studies have shown that high-sensitive cTn assays improve the early diagnosis of AMI. To achieve the best clinical use, cTn has to be interpreted as a quantitative variable. Rising and/or falling levels differentiate acute from chronic cardiomyocyte necrosis. The term "troponin-positive" should therefore be avoided. "Detectable" levels will become the norm and have to be clearly differentiated from "elevated" levels. The differential diagnosis of a small amount of cardiomyocyte necrosis and therefore mild elevation of cTn is broad and includes acute and chronic cardiac disorders. The differential diagnosis of a large amount of cardiomyocyte necrosis and therefore substantial elevation of cTn is much smaller and largely restricted to AMI, myocarditis and tako-tsubo cardiomyopathy.
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