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Published on: June 28, 2019
Effect of Percutaneous Coronary Intervention on Diastolic Function in Coronary Artery Disease
Puneet Aggarwal1, Santosh Kumar Sinha2, Rishabh Marwah2
1Department of Cardiology, ABVIMS and Dr. RML Hospital, New Delhi, India.
Insights
Percutaneous coronary intervention (PCI) significantly improves left ventricle (LV) diastolic function in patients with coronary artery disease (CAD) within 48 hours. This suggests PCI is a viable treatment to enhance diastolic function and potentially prevent systolic dysfunction.
Area of Science:
- Cardiology
- Cardiovascular Research
- Medical Diagnostics
Background:
- Left ventricle (LV) diastolic dysfunction is common in coronary artery disease (CAD) patients, sometimes preceding systolic dysfunction.
- Diastolic dysfunction may serve as an early indicator of myocardial ischemia.
- Investigating diastolic function changes post-percutaneous coronary intervention (PCI) is crucial.
Purpose of the Study:
- To assess the impact of successful PCI on LV diastolic function in patients with stable or unstable angina.
- To determine if diastolic function improves shortly after PCI.
Main Methods:
- 309 patients with CAD and normal systolic function undergoing successful PCI were enrolled.
- Two-dimensional transthoracic echocardiography was performed before and 48 hours after PCI.
- Paired samples t-test was used to compare LV diastolic parameters pre- and post-PCI.
Main Results:
- Significant improvements were observed in mitral E-wave velocity, E/A ratio, and early diastolic mitral annular motion (e') post-PCI (P < 0.0001).
- Left atrial volume index, tricuspid jet velocity, and E/e' ratio significantly decreased post-PCI (P < 0.001).
- These echocardiographic changes indicate improved LV diastolic function.
Conclusions:
- Successful PCI significantly modifies LV diastolic filling patterns within 48 hours.
- The primary mechanism for improvement is likely enhanced diastolic relaxation.
- PCI represents a potential therapeutic strategy for improving diastolic function in CAD patients.
Background:
Left ventricle (LV) diastolic dysfunction is often present in patients with significant coronary artery disease (CAD), even in the absence of regional or global LV systolic dysfunction. It has been suggested that abnormalities in LV diastolic function may actually precede LV systolic dysfunction, and therefore, serve as an early and sensitive marker of ischemia. This study aims to find improvement of diastolic function after percutaneous coronary intervention (PCI) in patients with stable or unstable angina.
Methods:
In this single-center hospital-based study, we enrolled 309 patients with either stable or unstable CAD and with normal systolic function who underwent successful PCI. Two-dimensional transthoracic echocardiography was performed at baseline (before PCI) and repeated 48 h after PCI. LV diastolic parameters were compared before and after PCI using paired samples t-test results.
Results:
Mean age of study population was 56.65 ± 9.65 years. Majority of patients were male (63%). There was significant increase in mitral E-wave velocity (68.39 ± 17.52 cm/s vs. 71.64 ± 18.23 cm/s), E/A ratio (0.85 ± 0.29 vs. 0.89 ± 0.32), and early diastolic mitral annular motion (e') (7.02 ± 0.89 cm/s vs. 8.45 ± 0.86 cm/s) following PCI (P < 0.0001). Left atrial volume index (22.53 ± 4.43 vs. 20.81 ± 4.14), tricuspid jet velocity (0.91 ± 0.57 m/s vs. 0.76 ± 0.67 m/s), and E/e' ratio (10.03 ± 3.5 vs. 8.62 ± 2.61) decreased significantly following PCI (P < 0.001).
Conclusion:
This study suggests that LV diastolic filling pattern is modified significantly as early as 48 h after successful PCI. Improvement in impaired relaxation appears to be most likely explanation for these changes. PCI may be potential therapeutic target to improve diastolic function in patients with CAD.
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