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Aortic stenosis

Aortic stenosis affects 2% of people over 65, and Lp(a) drives its progression through oxidised-phospholipid-triggered valve calcification, a review (Trends Cardiovasc Med 2021)

Original title: Lipoprotein(a): Expanding our knowledge of aortic valve narrowing

Trends Cardiovasc Med · · 6

Youssef A, Clark JR, Koschinsky ML, Boffa MB

This review by Youssef, Clark, Koschinsky and Boffa examines Lp(a) emerging role in calcific aortic valve disease (CAVD), which presents as aortic valve stenosis (AS) affecting 2% of people aged 65 and older, and for which surgical or transcatheter valve replacement remains the only effective treatment once advanced. Lp(a) is shown to exacerbate CAVD pathophysiology through endothelial dysfunction, foam cell formation, and a pro-inflammatory state, with its oxidised phospholipid content driving valve thickening and mineralisation through pro-osteogenic signalling and altered gene expression in valve interstitial cells. Incomplete molecular understanding and a lack of suitable animal models have hindered targeted interventions, but the authors note that newly available, dramatically Lp(a)-lowering therapies could provide the first medical treatment able to halt AS progression.

Read the paper (DOI)PubMed

Original abstract

Elevated levels of lipoprotein(a) [Lp(a)] have been identified as an independent and causal risk factor for atherosclerotic cardiovascular disease (ASCVD) and, more recently, calcific aortic valve disease (CAVD). CAVD is a slow, progressive disorder presenting as severe trileaflet calcification known as aortic valve stenosis (AS) that impairs valve motion and restricts ventricular outflow. AS afflicts 2% of the aging population (≥ 65 years) and tends to be quite advanced by the time it presents clinical symptoms of exertional angina, syncope, or heart failure. Currently, the only effective clinical therapy for AS patients is surgical or transcatheter aortic valve replacement. Evidence is accumulating that Lp(a) can exacerbate pathophysiological processes in CAVD, specifically, endothelial dysfunction, formation of foam cells, and promotion of a pro-inflammatory state. In the valve milieu, the pro-inflammatory effects of Lp(a) are manifested in valve thickening and mineralization through pro-osteogenic signaling and changes in gene expression in valve interstitial cells that is primarily facilitated by the oxidized phospholipid content of Lp(a). In AS pathogenesis, an incomplete understanding of the role of Lp(a) at the molecular level and the absence of appropriate animal models are barriers for the development of specific and effective clinical interventions designed to mitigate the role of Lp(a) in AS. However, the advent of effective therapies that dramatically lower Lp(a) provides the possibility of the first medical treatment to halt AS progression.

aortic stenosismechanisms

Summary written by lp-a.org from the published abstract; figures as published. Page updated 18 August 2026. Methods.