Key result
Fast-progressive aortic stenosis is linked to ~45% higher plasma MIF levels.
Why the study?
Do MIF-associated biomarkers predict an accelerated course of aortic stenosis?
Cohort (n=475)
Do MIF-associated biomarkers predict an accelerated course of aortic stenosis?
Absolute Event Rate: 9959% vs 6877%
p-value: p=<0.001
Elevated macrophage migration inhibitory factor (MIF) plasma levels and associated platelet activation predict a fast-progressive course of aortic stenosis.
BACKGROUND: Aortic stenosis (AS) is driven by progressive inflammatory and fibrocalcific processes regulated by circulating inflammatory and valve resident endothelial and interstitial cells. The impact of platelets, platelet-derived mediators, and platelet-monocyte interactions on the acceleration of local valvular inflammation and mineralization is presently unknown. METHODS: We prospectively enrolled 475 consecutive patients with severe symptomatic AS undergoing aortic valve replacement. Clinical workup included repetitive echocardiography, analysis of platelets, monocytes, chemokine profiling, aortic valve tissue samples for immunohistochemistry, and gene expression analysis. RESULTS: The patients were classified as fast-progressive AS by the median ∆Vmax of 0.45 m/s per year determined by echocardiography. Immunohistological aortic valve analysis revealed enhanced cellularity in fast-progressive AS (slow- versus fast-progressive AS; median [interquartile range], 247 [142.3–504] versus 717.5 [360.5–1234]; P <0.001) with less calcification (calcification area, mm 2 : 33.74 [27.82–41.86] versus 20.54 [13.52–33.41]; P <0.001). MIF (macrophage migration inhibitory factor)-associated gene expression was significantly enhanced in fast-progressive AS accompanied by significantly elevated MIF plasma levels (mean±SEM; 6877±379.1 versus 9959±749.1; P <0.001), increased platelet activation, and decreased intracellular MIF expression indicating enhanced MIF release upon platelet activation (CD62P, %: median [interquartile range], 16.8 [11.58–23.8] versus 20.55 [12.48–32.28], P =0.005; MIF, %: 4.85 [1.48–9.75] versus 2.3 [0.78–5.9], P <0.001). Regression analysis confirmed that MIF-associated biomarkers are strongly associated with an accelerated course of AS. CONCLUSIONS: Our findings suggest a key role for platelet-derived MIF and its interplay with circulating and valve resident monocytes/macrophages in local and systemic thromboinflammation during accelerated AS. MIF-based biomarkers predict an accelerated course of AS and represent a novel pharmacological target to attenuate progression of AS.
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Mueller et al. (2024) conducted a cohort in severe symptomatic aortic stenosis (n=475). Fast-progressive aortic stenosis (median ∆Vmax ≥0.45 m/s per year) vs. Slow-progressive aortic stenosis was evaluated on MIF plasma levels (p=<0.001). Fast-progressive aortic stenosis was associated with significantly elevated MIF plasma levels compared to slow-progressive disease (9959 vs 6877; P<0.001).
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