Knockdown of CD44 expression decreases valve interstitial cell calcification in vitro

American Journal of Physiology. Heart and Circulatory Physiology
Lauren BaughLauren D Black

Abstract

The lack of pharmaceutical targets available to treat patients with calcific aortic valve disease (CAVD) necessitates further research into the specific mechanisms of the disease. The significant changes that occur to the aortic valves extracellular matrix (ECM) during the progression of CAVD suggests that these proteins may play an important role in calcification. Exploring the relationship between valve interstitial cells (VICs) and the ECM may lead to a better understand of CAVD mechanisms and potential pharmaceutical targets. In this study, we look at the effect of two ECM components, collagen and hyaluronic acid (HA), on the mineralization of VICs within the context of a two-dimensional, polyacrylamide (PAAM) model system. Using a novel, nondestructive imaging technique, we were able to track calcific nodule development in culture systems over a 3-wk time frame. We saw a significant increase in the size of the nodules grown on HA PAAM gels as compared with collagen PAAM gels, suggesting that HA has a direct effect on mineralization. Directly looking at the two known receptors of HA, CD44 and receptor for HA-mediated motility (RHAMM), and using siRNA knockdown revealed that a decrease in CD44 expression resulted in a reduct...Continue Reading

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Citations

Jan 23, 2021·International Journal of Molecular Sciences·Anna Di VitoGiuseppe Donato
Feb 3, 2021·Cardiovascular Engineering and Technology·Daniel P Howsmon, Michael S Sacks

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Methods Mentioned

BETA
atomic force microscopy
PCR
imaging technique
transfection

Software Mentioned

cellSens Dimension
ImageJ
MATLAB
CellProfiler

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