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Measurement of Myocardial Lactate Production for Diagnosis of Coronary Microvascular Spasm
Published on: September 17, 2021
High myocardial lactate concentration is associated with poor myocardial function prior to cardiopulmonary bypass
M Heringlake1, L Bahlmann, M Misfeld
1Department of Anesthesiology, University of Luebeck, Lübeck, Germany. Heringlake@t-online.de
Insights
High myocardial lactate levels detected by microdialysis during coronary artery bypass grafting (CABG) are linked to perioperative myocardial dysfunction. This suggests microdialysis can monitor heart metabolism during cardiac surgery.
Area of Science:
- Cardiology
- Cardiac Surgery
- Biomedical Engineering
Background:
- Coronary artery bypass grafting (CABG) with cardiopulmonary bypass (CPB) is a major cardiac surgery.
- Monitoring myocardial metabolism during CABG is crucial for patient outcomes.
- Subtle myocardial ischemia can lead to perioperative myocardial dysfunction.
Purpose of the Study:
- To analyze the relationship between myocardial lactate levels and hemodynamics during CABG with CPB.
- To investigate the utility of microdialysis for assessing myocardial metabolism in cardiac surgery patients.
Main Methods:
- Prospective, observational study of 20 coronary artery disease patients undergoing CABG.
- Myocardial lactate measured by microdialysis in the apical region.
- Hemodynamics and plasma lactate concentrations recorded before, during, and after CPB.
Main Results:
- A correlation was found between baseline myocardial lactate and right ventricular ejection fraction.
- Patients with high baseline myocardial lactate showed impaired hemodynamics and required more inotropic support post-CPB.
- No correlation was observed between myocardial and plasma lactate levels.
Conclusions:
- Microdialysis can detect subtle myocardial ischemia during CABG.
- Elevated myocardial lactate is associated with perioperative myocardial dysfunction.
- Microdialysis is a valuable tool for monitoring myocardial metabolism in cardiac surgery.
Aim:
This study was designed to analyse the relationship between myocardial lactate--determined by microdialysis--and hemodynamics during coronary artery bypass grafting (CABG) with cardiopulmonary bypass (CPB).
Methods:
Twenty consecutive patients with coronary artery disease were enrolled for this prospective, observational study. Microdialysis measurements were performed in the apical region of the heart during periods of 15 to 20 min before, during, and after CPB; hemodynamics and plasma lactate concentrations were determined correspondingly. Correlation analysis revealed a relationship between myocardial lactate concentration and right ventricular ejection fraction at baseline (Spearman's r: 0.6; P=0.02). Patients were thus grouped according to the myocardial lactate concentration at baseline into a high-lactate group (2.5+/-0.7 mmol.l(-1), n=10) and low-lactate group (0.9+/-0.5 mmol.l(-1), n=10).
Results:
Preoperative left ventricular ejection fraction was not different between the groups (high-lactate group: 53+/-16%; low-lactate group: 57+/-15%; P=n.s.) Patients in the high-lactate-group had a lower stroke volume index (P=0.005) and right ventricular ejection fraction (P=0.04) before, and higher central venous and pulmonary artery pressures (P<0.01) after CPB. Plasma lactate was significantly higher during CPB in the high-lactate-group (P<0.05). No correlation was observed between myocardial and plasma lactate. Six patients in the high-lactate but none in the low-lactate-group needed inotropic support after weaning from CPB (P=0.01).
Conclusions:
These data are suggestive of an association between subtle myocardial ischemia--detected by microdialysis--and perioperative myocardial dysfunction in patients undergoing CABG. The microdialysis technique may be a valuable adjunct for monitoring myocardial metabolism during cardiac surgery.
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