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Published on: April 8, 2013
High-dose rosuvastatin in chronic heart failure promotes vasculogenesis, corrects endothelial function, and improves
Sandra Erbs1, Ephraim B Beck, Axel Linke
1University of Leipzig, Heart Center, Department of Internal Medicine/Cardiology, Struempellstrasse 39, 04289 Leipzig, Germany. Sandra.Erbs@medizin.uni-leipzig.de
Insights
Rosuvastatin significantly improves heart function in chronic heart failure (CHF) patients by enhancing endothelial function and promoting tissue regeneration through activating circulating endothelial progenitor cells (CPCs). This study highlights non-lipid benefits for CHF treatment.
Area of Science:
- Cardiology
- Vascular Biology
- Regenerative Medicine
Background:
- The impact of statins on chronic heart failure (CHF) patients remains unclear.
- Investigating rosuvastatin's pleiotropic effects on vascular and tissue regeneration in CHF is crucial.
Purpose of the Study:
- To evaluate rosuvastatin's impact on endothelial function and hemodynamics in CHF patients.
- To assess rosuvastatin's role in vascular and tissue regeneration in the context of CHF.
Main Methods:
- Randomized controlled trial of 42 CHF patients treated with rosuvastatin or placebo for 12 weeks.
- Assessed vascular endothelial growth factor (VEGF), oxidized LDL (oxLDL), circulating endothelial progenitor cells (CPCs), and skeletal muscle capillary density.
- Measured flow-mediated dilatation (FMD) and left ventricular (LV) function via ultrasound.
Main Results:
- Rosuvastatin increased VEGF and CPC count/function, while decreasing oxLDL.
- Significant improvements observed in capillary density, CD34(+) stem cell homing, and FMD.
- Enhanced LV ejection fraction by 27% in the rosuvastatin group compared to placebo.
Conclusions:
- Rosuvastatin activates CPCs, promoting neovascularization and improving endothelial function in CHF.
- Correction of vascular abnormalities contributes to improved LV function.
- Non-lipid effects of rosuvastatin show potential for endogenous tissue regeneration and enhanced LV performance in CHF.
Background:
The full impact of statins on patients with chronic heart failure (CHF) is unknown. Therefore, we aimed to evaluate the pleiotropic effects of rosuvastatin on vascular and tissue regeneration, its impact on endothelial function and hemodynamics in CHF.
Methods:
Forty-two patients with CHF (LVEF 30±1%) were randomized to 12 weeks of oral rosuvastatin (40 mg/d) or placebo. At baseline and at 12 weeks, VEGF and oxidized LDL (oxLDL) were assessed by ELISA. Circulating endothelial progenitor cells (CPCs) were quantified using FACS. CPC function was determined by matrigel assay. Number of CD34(+) stem cells and capillary density were measured in skeletal muscle (SM). Flow-mediated dilatation (FMD) and left ventricular (LV) function were determined by ultrasound.
Results:
Rosuvastatin increased VEGF by +43% (p=0.004 vs. placebo) and decreased oxLDL by -27% (p=0.04 vs. placebo). This was associated with an elevation in CPC count by +224% (p=0.04 vs. placebo) and an augmentation of CPC integrative capacity by +91% (p=0.03 vs. placebo). Capillary density increased by +14% (p<0.001 vs. placebo), which was associated with an enhanced homing of CD34(+) stem cells. Rosuvastatin improved FMD by +163% (p<0.001 vs. placebo) and enhanced ejection fraction by +27% (p<0.001 vs. placebo).
Conclusion:
In CHF, rosuvastatin activates CPCs that contribute to neovascularisation and to the enhancement of endothelial function. Correction of vascular abnormalities leads in part to an increase in LV function. Therefore, rosuvastatin's non-lipid effects may have the potential to promote endogenous tissue regeneration and improve LV performance in CHF.
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