Age-related enhanced degeneration of bioprosthetic valves due to leaflet calcification, tissue crosslinking, and structural changes
Cardiovascular Research

Abstract
Bioprosthetic heart valves (BHVs), made from glutaraldehyde-fixed heterograft materials, are subject to more rapid structural valve degeneration (SVD) in paediatric and young adult patients. Differences in blood biochemistries and propensity for disease accelerate SVD in these patients, which results in multiple re-operations with compounding risks. The goal of this study is to investigate the mechanisms of BHV biomaterial degeneration and present models for studying SVD in young patients and juvenile animal models.
We studied SVD in clinical BHV explants from paediatric and young adult patients, juvenile sheep implantation model, rat subcutaneous implants, and an
There is an increased risk for accelerated SVD in younger subjects, both experimental animals and patients. Increased calcification, altered collagen microstructure with loss of alignment and increased crimp periods, and increased crosslinking are three main characteristics in BHV explants from young subjects leading to SVD. Together, our studies establish a basis for assessing the increased susceptibility of BHV biomaterials to accelerated SVD in young patients.
Contributors

Mariya Zyablitskaya
Author

David Paik
Author

David Kalfa
Author

Mila Della Barbera
Author

Yingfei Xue
Author

Gaetano Thiene
Author

Alexander P Kossar
Author

Alexey Abramov
Author

Satoshi Kozaki
Author

Takayuki Kawashima
Author

Antonio Frasca
Author

Joseph H Gorman
Author

Mingze Sun
Author

Robert C Gorman
Author

Matthew J Gillespie
Author

Chrystalle Katte Carreon
Author

Stephen P Sanders
Author

Robert J Levy
Author
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