Key result
Early high-dose rosuvastatin reduces 24-hour platelet-monocyte interactions by ~21% in ACS versus placebo.
Why the study?
Early high-dose statin therapy may reduce short-term adverse outcomes in ACS, but the mechanisms involving thromboinflammation are not well understood.
Does early high-dose rosuvastatin reduce biomarkers of thromboinflammation and myocardial necrosis in patients presenting with acute coronary syndrome?
RCT (n=54)
Double-blind
Randomized
No
Does early high-dose rosuvastatin reduce biomarkers of thromboinflammation and myocardial necrosis in patients presenting with acute coronary syndrome?
Absolute Event Rate: 40.7% vs 51.6%
p-value: p=0.009
Early administration of high-dose rosuvastatin in patients with ACS rapidly reduces biomarkers of thromboinflammation, specifically platelet-leukocyte interactions, within 24 hours.
Early high-dose statins may reduce short-term ACS events; leaves open whether platelet-leukocyte interactions mediate benefit.
In patients with acute coronary syndromes (ACS), early therapy with high-dose statins may reduce short-term adverse clinical outcomes. The mechanisms responsible are not known but could involve anti-inflammatory or anti-thrombotic effects. Compelling evidence from experimental models and clinical studies suggests that the interplay between inflammatory and thrombotic systems, typified by platelet-monocyte and platelet-neutrophil interactions, might be a key regulator of ischemic vascular events. The study sought to determine if early, high-dose administration of the HMG-CoA reductase inhibitor rosuvastatin in the setting of ACS exerts beneficial vascular effects by reducing, and inhibiting biomarkers of thromboinflammation, such as platelet-monocyte and platelet-neutrophil interactions, and biomarkers of myocardial necrosis. A total of 54 patients presenting with ACS within 8 h of symptom onset were randomized to rosuvastatin 40 mg or placebo. Rosuvastatin significantly reduced interactions between platelets and circulating neutrophils (P = 0.015) and monocytes (P = 0.009) within 24 h. No significant effects were observed on platelet aggregation or plasma levels of PF4, sP-selectin, or sCD40L, whereas significant reductions of RANTES occurred over time in both treatment groups. Plasma levels of myeloperoxidase (MPO) declined more rapidly with rosuvastatin therapy than placebo. In a subset of patients with normal cardiac necrosis biomarkers at randomization, rosuvastatin therapy was associated with less myocardial damage as measured by troponin-I or CK-MB. Early administration of high-dose statin therapy in patients with ACS appears to improve biomarkers of inflammation within 8 h, which may translate into fewer ischemic events.
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Sexton et al. (2014) conducted an RCT in Acute coronary syndrome (n=54). Rosuvastatin vs. Placebo was evaluated on Platelet-monocyte interactions at 24 hours (%) (p=0.009). Early administration of high-dose rosuvastatin in patients with acute coronary syndrome significantly reduced interactions between platelets and circulating monocytes (P=0.009) and neutrophils (P=0.015) within 24 hours compared to placebo.
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