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Updated: Jun 5, 2026

Investigating Aortic Valve Calcification via Isolation and Culture of T Lymphocytes using Feeder Cells from Irradiated Buffy Coat
Published on: February 4, 2021
Calcific aortic valve disease and aortic atherosclerosis--two faces of the same disease?
Carmen Ginghină1, Anca Florian, C Beladan
1Department of Cardiology, Carol Davila University of Medicine and Pharmacy, Bucharest, Romania. carmenginghina2001@yahoo.com
Insights
Calcific aortic valve disease is an active process, not just aging. It shares similarities with atherosclerosis, prompting research into new therapies beyond valve replacement.
Area of Science:
- Cardiovascular Medicine
- Pathology
- Biochemistry
Background:
- Calcific aortic valve disease (CAVD) is the primary cause of acquired aortic valve stenosis.
- Historically viewed as age-related degeneration, CAVD is now understood as an active disease.
- Early CAVD lesions resemble atherosclerotic plaques, suggesting shared pathways.
Purpose of the Study:
- To review current data on CAVD, focusing on its histological and pathogenic aspects.
- To characterize the relationship between CAVD and the atherosclerotic process.
- To explore potential therapeutic implications for CAVD.
Main Methods:
- Review of existing literature on CAVD.
- Histopathological analysis of aortic valve lesions.
- Examination of cellular and molecular pathways in CAVD progression.
Main Results:
- CAVD involves active disease processes with identifiable risk factors and pathways.
- Aortic valve sclerosis shares histopathological similarities with arterial atherosclerosis.
- Atherosclerotic risk factors are linked to aortic sclerosis, indicating an atherosclerosis-like process.
Conclusions:
- CAVD is an active, complex disease process, not merely age-related wear and tear.
- The link between CAVD and atherosclerosis suggests shared underlying mechanisms.
- Developing novel therapies targeting CAVD pathogenesis is a critical unmet need.
Abstract:
Calcific (degenerative) aortic valve disease is the most common etiology of acquired aortic valve stenosis. Historically, it was seen as a degenerative, "senile-like" process, resulting from aging--"wearing and tearing"--of the aortic valve. However, several lines of evidence suggest that calcific valve disease is not simply due to age-related degeneration but, rather, it is an active disease process with identifiable initiating factors, clinical and genetic risk factors, and cellular and molecular pathways that mediate disease progression. Histopathologically, the early lesions of aortic valve sclerosis resemble arterial atherosclerotic plaques. Furthermore, atherosclerotic risk factors and clinical atherosclerotic cardiovascular disease are independently associated with aortic sclerosis suggesting that it represents an atherosclerosis-like process involving the aortic valve. Until now, the only established treatment for symptomatic aortic valve stenosis has been valve replacement. Newer therapies that may modify or reduce the likelihood of developing aortic valve disease are highly desirable and are currently under investigation. In this article we tried to review the available data on calcific aortic valve disease, starting from histological and pathogenic aspects and finishing with therapeutic implications, in order to characterize its relationship with the atherosclerotic process.
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