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Published on: August 17, 2022
Single lipoprotein apheresis session improves cardiac microvascular function in patients with elevated
Steffen Bohl1, Ursula Kassner, Rahel Eckardt
1Department of Cardiology, HELIOS-Clinic Berlin Buch Charité University Medical School, Berlin, Germany. steffen.bohl@charite.de
Insights
A single session of lipoprotein apheresis improved myocardial perfusion and ejection fraction in patients with high lipoprotein(a) and coronary artery disease. These subtle cardiac magnetic resonance imaging changes were temporary, highlighting apheresis
Area of Science:
- Cardiovascular Medicine
- Medical Imaging
- Lipidology
Background:
- Elevated lipoprotein(a) (Lp(a)) is a risk factor for coronary artery disease (CAD).
- Lipoprotein apheresis effectively reduces Lp(a) and other atherogenic lipoproteins.
- The impact of apheresis on myocardial perfusion in CAD patients with high Lp(a) requires further investigation.
Purpose of the Study:
- To evaluate the effects of a single lipoprotein apheresis session on myocardial stress/rest (S/R) perfusion.
- To assess changes in left ventricular function and myocardial viability using cardiac magnetic resonance imaging (CMR).
- To investigate the short-term hemodynamic and rheological consequences of apheresis in this patient cohort.
Main Methods:
- Twenty patients with Lp(a) > 60 mg/dL and CAD were randomized to a control or apheresis group.
- Cardiac magnetic resonance imaging (CMR) assessed left ventricular function, perfusion (endo-epi ratio [EER]), and viability.
- The apheresis group underwent treatment immediately after baseline CMR; repeat CMR at 24h and 96h.
Main Results:
- Apheresis significantly reduced Lp(a), LDL, cholesterol, and rheological parameters (plasma viscosity, fibrinogen) at 24h.
- A transient decrease in the EER-S/R (myocardial perfusion gradient) was observed at 24h post-apheresis (P < 0.03).
- Ejection fraction showed a slight improvement at 24h (P < 0.05) but returned to baseline by 96h.
Conclusions:
- A single lipoprotein apheresis session induces subtle, transient changes in regional myocardial perfusion and left ventricular function.
- Cardiac magnetic resonance imaging is sensitive to these treatment-related hemodynamic alterations.
- Further research is needed to determine the long-term clinical significance of these findings in managing CAD with elevated Lp(a).
Abstract:
The aim of this study was to explore the effects of a single lipoprotein apheresis session on myocardial stress/rest (S/R) perfusion in patients with elevated lipoprotein(a) (Lp(a)) and coronary artery disease using cardiac magnetic resonance imaging. Twenty patients with Lp(a) > 60 mg/dL and coronary artery disease were randomized into a control or a treatment group. Both groups underwent cardiac magnetic resonance imaging with assessment of left ventricular function, perfusion and viability, and the treatment group underwent lipoprotein apheresis immediately afterwards. Repeat magnetic resonance imaging was performed at 24 h for both groups and at 96 h for just the treatment group. The transmyocardial perfusion gradient (i.e. endo-epi ratio [EER]) was determined and a comprehensive parameter of resting and adenosine-induced stress perfusion was derived (EER-S/R). While the hematocrit remained unchanged, apheresis reduced lipoproteins and rheological parameters: Lp(a) - 55.1%, total cholesterol - 34.5%, low density lipoprotein (LDL) - 54.6%, Lp(a)-corrected LDL - 54.3%, high density lipoprotein - 17.4%, apolipoprotein B - 39.2%, plasma viscosity - 10.7%, and fibrinogen - 30.6% at 24 h (P < 0.05 for all). At 96 h these parameters, except for plasma viscosity, apolipoprotein B and Lp(a)-corrected LDL, recovered but did not reach baseline values (P < 0.05 for all). The EER-S/R at 24 h was lowered by therapy (DeltaEER-S/R 5%; P < 0.03), whereas this effect disappeared at 96 h. The ejection fraction (EF) was slightly improved at 24 h (67.07 +/- 6.28% vs. 64.89 +/- 6.39%; DeltaEF 2.2%, P < 0.05) and returned to baseline at 96 h. In the control group no corresponding changes were detected. In conclusion, cardiac magnetic resonance imaging detects subtle treatment-related changes in regional myocardial perfusion in patients with elevated Lp(a) and coronary artery disease undergoing lipoprotein apheresis.
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