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Published on: January 6, 2023
Factors underlying elevated troponin I levels following pacemaker primo-implantation
Tomas Hnatek1,2, Milos Taborsky2, Martin Maly1
1Department of Internal Medicine - Cardiology, 1st Faculty of Medicine, Charles University in Prague and Military University Hospital, Prague, Czech Republic.
Insights
Pacemaker implantation with active fixation electrodes can cause slight elevations in cardiac troponin I levels. Myocardial damage and procedure complexity, indicated by electrode penetrations and fluoroscopy time, correlate with these troponin increases.
Area of Science:
- Cardiology
- Biomarkers
- Medical Devices
Background:
- Cardiac troponins are standard myocardial damage markers, primarily for acute coronary syndromes.
- Elevated troponin levels can occur in conditions beyond ischemia, indicating cardiomyocyte damage.
- Cardiac troponins exhibit absolute specificity for the myocardium.
Purpose of the Study:
- To investigate if pacemaker primo-implantation with active fixation electrodes elevates troponin I levels.
- To determine if troponin I elevation post-implantation correlates with procedure complexity.
Main Methods:
- 219 patients undergoing pacemaker primo-implantation were studied.
- Cardiac markers (troponin I, CKMB, myoglobin) were measured pre-procedure and at 6 and 18 hours post-procedure.
- Procedure complexity was assessed by fluoroscopy time, electrode placement attempts, and pacing type.
Main Results:
- Troponin I levels significantly increased from baseline post-pacemaker implantation (P < 0.001).
- Elevated troponin I correlated with longer fluoroscopy times (P < 0.001).
- Increased troponin I at 6 hours correlated with more electrode placement attempts (P < 0.001).
Conclusions:
- Pacemaker primo-implantation with active fixation electrodes causes minor troponin I elevations.
- Myocardial damage from electrode penetration and procedure complexity are linked to troponin I rise.
- These troponin elevations may impair early diagnosis of myocardial injury in patients with chest pain post-procedure.
Background:
Cardiac troponins are routinely used as markers of myocardial damage. Originally, they were only intended for use in diagnosing acute coronary syndromes; however, we now know that raised serum troponin levels are not always caused by ischemia. There are many other clinical conditions that cause damage to cardiomyocytes, leading to raised levels of troponin. However, the specificity of cardiac troponins towards the myocardium is absolute. Our work focuses on mechanical damage to the myocardium and on monitoring the factors that raise the levels of cardiospecific markers after primo-implantation of a pacemaker with an actively fixed electrode.
Aims:
(i) To determine whether the use of a primo-implanted pacemaker with an electrode system with active fixation will raise troponin levels over baseline. (ii) To assess whether troponin I elevation is dependent on procedure complexity.
Methods:
We enrolled 219 consecutive patients indicated for pacemaker primo-implantation; cardiospecific marker values (troponin I, CKMB, myoglobin) were determined before the implantation procedure and again at 6- and 18-h intervals after the procedure. We monitored duration of cardiac skiascopy, number of attempts to place the electrode (active penetration into the tissue) and intervention range (single-chamber versus dual-chamber pacing), and we assessed the clinical data.
Results:
The average age of the enrolled patients was 78.2 ± 8.0 years (median age, 80 years); women constituted 45% of the group. We implanted 128 dual-chamber and 91 single-chamber devices with an average skiascopic time of 38.6 ± 22.0 s (median, 33.5 s). Troponin I serum levels increased from an initial 0.03 ± 0.07 μg/L (median, 0.01) to 0.18 ± 0.17 μg/L (median, 0.13) and 0.09 ± 0.18 μg/L (median, 0.04) at 6 and 18 h, respectively. The differences were statistically significant (P < 0.001 or P < 0.001). We confirmed a correlation between troponin increase and duration of skiascopy (P < 0.001). We also demonstrated a correlation between increased troponin I and number of attempts to place a pacemaker electrode (penetration into the tissue) at 6 h (P < 0.001) post-implantation.
Conclusion:
We detected slightly elevated troponin I levels in patients with primo-implanted pacemakers using electrodes with active fixation. We demonstrated a direct correlation between myocardial damage (number of electrode penetrations into the myocardium) and troponin I elevation, as well as between complexity (severity) of the implantation procedure (indicated by prolonged skiascopy) and raised troponin I. The described phenomenon demonstrates the loss of the diagnostic role of troponin I early after pacemaker primo-implantation in patients with concomitant chest pain.
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