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January 1, 2015European Cardiology Review153 citationsOpen Access

Calcific Aortic Valve Disease: Molecular Mechanisms And Therapeutic Approaches

DLDaniel Alejandro LermanSPSai PrasadNANasri Alotti

Key Result

Denosumab at a concentration of 50 μg/mL inhibited induced calcium deposition to basal levels in an in vitro porcine valve interstitial cell model.

Structured PICO

Does denosumab prevent induced calcium deposition in an in vitro porcine valve interstitial cell model?

P
Population
In vitro porcine valve interstitial cell (VIC) model
I
Intervention
Denosumab 50 μg/mL
O
Outcome
Induced calcium depositionsurrogate

In an in vitro porcine model, denosumab inhibited calcium deposition in valve interstitial cells, suggesting a potential novel pharmacological target for calcific aortic valve disease.

Limitations

  • Extrapolation of results from an in vitro porcine model to humans should be cautious as species variations are likely to exist
  • Not possible to include all mechanisms involved in CAVD in a single model

Abstract

Calcification occurs in atherosclerotic vascular lesions and in the aortic valve. Calcific aortic valve disease (CAVD) is a slow, progressive disorder that ranges from mild valve thickening without obstruction of blood flow, termed aortic sclerosis, to severe calcification with impaired leaflet motion, termed aortic stenosis. In the past, this process was thought to be ‘degenerative’ because of time-dependent wear and tear of the leaflets, with passive calcium deposition. The presence of osteoblasts in atherosclerotic vascular lesions and in CAVD implies that calcification is an active, regulated process akin to atherosclerosis, with lipoprotein deposition and chronic inflammation. If calcification is active, via pro-osteogenic pathways, one might expect that development and progression of calcification could be inhibited. The overlap in the clinical factors associated with calcific valve disease and atherosclerosis provides further support for a shared disease mechanism. In our recent research we used an in vitro porcine valve interstitial cell model to study spontaneous calcification and potential promoters and inhibitors. Using this model, we found that denosumab, a human monoclonal antibody targeting the receptor activator of nuclear factor-κB ligand may, at a working concentration of 50 μg/mL, inhibit induced calcium deposition to basal levels.

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Cite This Study

Lerman et al. (2015) studied Calcific Aortic Valve Disease (CAVD). Denosumab was evaluated on Induced calcium deposition. Denosumab at a concentration of 50 μg/mL inhibited induced calcium deposition to basal levels in an in vitro porcine valve interstitial cell model.

synapsesocial.com/papers/6a0d6c6acae7912d2fa4fd84https://doi.org/10.15420/ecr.2015.10.2.108
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Also Consider

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