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Updated: Sep 15, 2025

Isolation of Mouse Interstitial Valve Cells to Study the Calcification of the Aortic Valve In Vitro
Published on: May 10, 2021
Vitamin K-Dependent Inhibition Mechanisms in Human Aortic Valve Calcification
Symeon-Evangelos Mavroudeas1, Anastasios Apostolos1, Despoina Spyropoulou2
11st Department of Cardiology, "Hippokration" General Hospital, National and Kapodistrian University, Athens, Greece.
Abstract:
Introduction: Stenosis of the aortic valve is a leading cause of severe cardiovascular lesions. Progressive calcification, rheumatic modifications and also congenital events are the main etiopathogenetic factors. Extended fibrotic changes and aberrant ectopic calcification of the specific aortic valve interstitial cells are the most recognizable histopathological features. In fact, the previously referred cells are transformed from their initial myofibroblast phenotype to an osteoblast-like cell formation mediated by an inflammatory process. Concerning the potentially effective anti-calcification, inhibition strategies, some molecules are under investigation. Among them, vitamins seem to be involved in this process by preventing aortic wall extensive calcification. Objective: The purpose of the current review was to explore the involvement of Vitamin K complex in the inhibition mechanisms of the human aortic valve calcification process. Material and method: A systematic retrospective review of the literature was carried out based on PubMed international medical database. The following keywords were used: vitamin, calcification, cardiovascular, stenosis, aorta. Results: A broad spectrum of seventy (n=70) significant articles - focused on the vitamin K complex structural and functional aspects and its implication in anti-calcification mechanisms - were selected for the current review study. The majority of medical data referred to after 2015 published articles, whereas specific references of great importance and value were also included. Conclusions: Specific vitamin K members play a crucial role by regulating the activity of proteins such as osteocalcin that induces endothelial calcification. Interestingly, vitamin K also modifies the function of the matrix-Gla proteins that are implicated in this process. In fact, vitamin K-related molecular and biochemical mechanisms in the human aortic valve calcification inhibition are crucial and represent an interesting field for research.
Insights
Vitamin K complex plays a crucial role in inhibiting aortic valve calcification by regulating key proteins. This review highlights vitamin K
Area of Science:
- Biochemistry and Molecular Biology
- Cardiovascular Medicine
- Nutritional Science
Background:
- Aortic valve stenosis is a significant cardiovascular condition linked to progressive calcification.
- Histopathological features include fibrotic changes and ectopic calcification of aortic valve interstitial cells.
- Vitamins are being investigated for their potential anti-calcification properties in the aortic wall.
Purpose of the Study:
- To review the role of the Vitamin K complex in inhibiting human aortic valve calcification.
Main Methods:
- A systematic retrospective literature review was conducted using the PubMed database.
- Keywords included: vitamin, calcification, cardiovascular, stenosis, aorta.
- Seventy relevant articles focusing on Vitamin K and anti-calcification mechanisms were selected.
Main Results:
- Vitamin K complex members regulate proteins like osteocalcin, which is involved in endothelial calcification.
- Vitamin K influences the function of matrix-Gla proteins, crucial in preventing calcification.
- The majority of reviewed data were published after 2015, with inclusion of seminal works.
Conclusions:
- Specific Vitamin K members are vital for inhibiting aortic valve calcification.
- Molecular and biochemical mechanisms involving Vitamin K offer a promising research avenue for calcification inhibition.
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