Revisiting the Biological Variability of Cardiac Troponin: Implications for Clinical Practice
Nick S R Lan1,2, Damon A Bell2,3,4,5
1Department of Cardiology, Fiona Stanley Hospital, Perth, WA.
Insights
Diagnosing myocardial injury needs tracking cardiac troponin (cTn) levels. Understanding normal biological variations in cTn is crucial for defining significant changes, especially with high-sensitivity assays.
Area of Science:
- Cardiology
- Clinical Biochemistry
Background:
- The Fourth Universal Definition of Myocardial Infarction requires serial cardiac troponin (cTn) testing for diagnosing acute myocardial injury.
- Current guidelines lack specific thresholds for significant cTn changes, hindering precise diagnosis.
- High-sensitivity cardiac troponin (hs-cTn) assays offer improved precision and lower detection limits, revealing biological variability in healthy individuals.
Purpose of the Study:
- To revisit the biological variability of cardiac troponin (cTn) in light of the updated myocardial infarction definition.
- To outline concepts for determining significant cTn change values.
- To review existing studies on cTn biological variation and discuss clinical implications.
Main Methods:
- Literature review of studies investigating cardiac troponin (cTn) biological variability.
- Analysis of studies conducted in healthy individuals and those with chronic cardiac or renal conditions.
- Synthesis of findings to address the definition of significant cTn change.
Main Results:
- Studies on cTn biological variability have yielded diverse results regarding significant change values.
- High-sensitivity assays can detect normal biological variations in cTn.
- Quantifying these variations is key to defining significant diagnostic changes.
Conclusions:
- Accurate definition of significant cTn changes requires a thorough understanding of its biological variability.
- Further research is needed to establish standardized methods for assessing cTn variability in clinical practice.
- This review provides a foundation for defining significant cTn changes, aiding in myocardial injury diagnosis.
Abstract:
The diagnosis of acute myocardial injury requires a rise and/or fall of cardiac troponin (cTn) on serial testing, with at least one concentration above the 99th percentile value of a normal reference population according to the recently published Fourth Universal Definition of Myocardial Infarction.1 However, the magnitude of change in cTn that constitutes a significant rise and/or fall was again not specified in detail. High-sensitivity cardiac troponin (hs-cTn) assays can measure ten-fold lower concentrations of cTn with more precision than older assays, and can accurately quantify cTn in more than 50% of healthy individuals with a coefficient of variation of less than 10% at the 99th percentile. These hs-cTn assays are also able to detect the normal variations in cTn results that are due to biological variability. Understanding and quantifying the normal variations in cTn is important as this would allow significant changes to be better defined. Numerous studies have sought to investigate the biological variability of cTn over the last ten years. Such studies are usually conducted in healthy individuals, however individuals with chronic cardiac disease or chronic renal failure have also been examined. These studies have yielded varying results in regards to significant change values for cTn. In light of the recent redefinition for myocardial infarction, the purpose of this mini-review is to revisit the biological variability of cTn. In particular, we outline concepts for determining a significant change value, review the results of previous studies on the biological variation of cTn and discuss potential considerations for clinical practice.
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