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Understanding pulmonary autograft remodeling after the Ross procedure: stick to the facts
- Source :
- Frontiers in Cardiovascular Medicine, Vol 9 (2022)
- Publication Year :
- 2022
- Publisher :
- Frontiers Media, 2022.
-
Abstract
- The Ross, or pulmonary autograft, procedure presents a fascinating mechanobiological scenario. Due to the common embryological origin of the aortic and pulmonary root, the conotruncus, several authors have hypothesized that a pulmonary autograft has the innate potential to remodel into an aortic phenotype once exposed to systemic conditions. Most of our understanding of pulmonary autograft mechanobiology stems from the remodeling observed in the arterial wall, rather than the valve, simply because there have been many opportunities to study the walls of dilated autografts explanted at reoperation. While previous histological studies provided important clues on autograft adaptation, a comprehensive understanding of its determinants and underlying mechanisms is needed so that the Ross procedure can become a widely accepted aortic valve substitute in select patients. It is clear that protecting the autograft during the early adaptation phase is crucial to avoid initiating a sequence of pathological remodeling. External support in the freestanding Ross procedure should aim to prevent dilatation while simultaneously promoting remodeling, rather than preventing dilatation at the cost of vascular atrophy. To define the optimal mechanical properties and geometry for external support, the ideal conditions for autograft remodeling and the timeline of mechanical adaptation must be determined. We aimed to rigorously review pulmonary autograft remodeling after the Ross procedure. Starting from the developmental, microstructural and biomechanical differences between the pulmonary artery and aorta, we review autograft mechanobiology in relation to distinct clinical failure mechanisms while aiming to identify unmet clinical needs, gaps in current knowledge and areas for further research. By correlating clinical and experimental observations of autograft remodeling with established principles in cardiovascular mechanobiology, we aim to present an up-to-date overview of all factors involved in extracellular matrix remodeling, their interactions and potential underlying molecular mechanisms. ispartof: Frontiers in Cardiovascular Medicine vol:9 pages:1-20 ispartof: location:Switzerland status: published
- Subjects :
- musculoskeletal diseases
BLOOD-FLOW
INTERSTITIAL-CELLS
DILATATION
Ross procedure
extracellular matrix
pulmonary autograft
MECHANICAL-PROPERTIES
WALL SHEAR-STRESS
mechanobiology
musculoskeletal system
VASCULAR SMOOTH-MUSCLE
surgical procedures, operative
RC666-701
BIOMECHANICAL PROPERTIES
ROOT REPLACEMENT
Diseases of the circulatory (Cardiovascular) system
BICUSPID AORTIC-VALVE
ASCENDING AORTA
external support
Cardiology and Cardiovascular Medicine
remodeling
Subjects
Details
- Database :
- OpenAIRE
- Journal :
- Frontiers in Cardiovascular Medicine, Vol 9 (2022)
- Accession number :
- edsair.doi.dedup.....b6a3dc748207448a227a7465b0e2f8e2