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Updated: May 6, 2026

Isolation of Human Primary Valve Cells for In vitro Disease Modeling
Published on: April 16, 2021
Aortic valvular interstitial cells apoptosis and calcification are mediated by TNF-related apoptosis-inducing ligand
Antonella Galeone1, Giacomina Brunetti, Angela Oranger
1Department of Emergencies and Organ Transplantation (DETO), Division of Cardiac Surgery, University "Aldo Moro" of Bari, Italy; Department of Basic Medical Sciences, Neurosciences and Sense Organs, Section of Human Anatomy and Histology, University "Aldo Moro" of Bari, Italy.
Background/Objectives:
Calcific aortic valvular disease (CAVD) is an actively regulated process characterized by the activation of specific osteogenic signaling pathways and apoptosis. We evaluated the involvement in CAVD of the TNF-related apoptosis-inducing ligand (TRAIL), an apoptotic molecule which induces apoptosis by interacting with the death receptor (DR)-4 and DR5, and whose activity is modulated by the decoy receptor (DcR)-1 and DcR2.
Methods:
Sections of calcific and normal aortic valves, obtained at surgery time, were subjected to immunohistochemistry and confocal microscopy for TRAIL immunostaining. Valvular interstitial cells (VICs) isolated from calcific (C-VICs) and normal (N-VICs) aortic valves were investigated for the gene and protein expression of TRAIL receptors. Cell viability was assayed by MTT. Von Kossa staining was performed to verify C-VIC ability to produce mineralized nodules. TRAIL serum levels were detected by ELISA.
Results:
Higher levels of TRAIL were detected in calcific aortic valves and in sera from the same patients respect to controls. C-VICs express significantly higher mRNA and protein levels of DR4, DR5, DcR1, DcR2 and Runx2 compared to N-VICs. C-VICs and N-VICs, cultured in osteogenic medium, express significantly higher mRNA levels of DR4, Runx2 and Osteocalcin compared to baseline. C-VICs and N-VICs were sensitive to TRAIL-apoptotic effect at baseline and after osteogenic differentiation, as demonstrated by MTT assay and caspase-3 activation. TRAIL enhanced mineralized matrix nodule synthesis by C-VICs cultured in osteogenic medium.
Conclusions:
TRAIL is characteristically present within calcific aortic valves, and mediates the calcification of aortic valve interstitial cells in culture through mechanism involving apoptosis.
Insights
TNF-related apoptosis-inducing ligand (TRAIL) is present in calcific aortic valves and promotes calcification. TRAIL mediates aortic valve interstitial cell calcification through apoptosis.
Area of Science:
- Cardiovascular Biology
- Cellular Biology
- Molecular Medicine
Background:
- Calcific aortic valvular disease (CAVD) involves osteogenic signaling and apoptosis.
- TNF-related apoptosis-inducing ligand (TRAIL) is an apoptotic molecule with known receptors and decoy receptors.
Purpose of the Study:
- To evaluate the role of TRAIL in CAVD.
- To investigate TRAIL's interaction with its receptors (DR4, DR5, DcR1, DcR2) in aortic valve interstitial cells (VICs).
Main Methods:
- Immunohistochemistry and confocal microscopy of aortic valve sections.
- Gene and protein expression analysis of TRAIL receptors in VICs.
- ELISA for serum TRAIL levels and MTT assays for cell viability.
Main Results:
- Elevated TRAIL levels in calcific aortic valves and patient sera.
- Increased expression of TRAIL receptors and Runx2 in calcific VICs (C-VICs).
- TRAIL induced apoptosis and enhanced matrix mineralization in C-VICs.
Conclusions:
- TRAIL is a key factor in calcific aortic valves.
- TRAIL mediates VIC calcification via apoptosis.
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