Key result
Reinforcement of the pulmonary autograft with a semi-absorbable armored prosthesis prevented aneurysmal dilation and induced progressive arterial-like tissue remodeling in an experimental animal model.
Why the study?
Translational research aimed to address complications related to SVD and describe the relationship between stress-strain, growth, and remodelling in an experimental model of Ross operation.
Does external reinforcement with a semiresorbable device improve the biomechanical properties of the pulmonary autograft in the Ross operation?
Does external reinforcement with a semiresorbable device improve the biomechanical properties of the pulmonary autograft in the Ross operation?
External reinforcement of the pulmonary autograft with a semiresorbable device may improve biomechanical properties and durability in the Ross operation, particularly for growing patients.
May support device refinement for pediatric Ross autografts; leaves open translation of biomechanical benefits to human outcomes.
It has been few years since the preliminary translational research study on mechanics performance of autologous pulmonary tissue were published to circumvent complication relies to SVD. Several studies reported the modification of pulmonary native autograft root subjected to dynamic stress strain in long-term outcomes of aortic valve replacement. Our multidisciplinary research team firstly describe the weave relationship between stress-strain, growth and remodelling in an experimental model of Ross Operation. From a biomechanical point of view, the rapid absorption of polydioxanone constituting the internal part of the device may limit the potential negative effect of excessive stretching and improvement of steeper curve in the circumferential response. Improvement of longitudinal stretching of pulmonary autograft by external component of device are indicative of auxetic effect of e-PTFE. Successful reinforcement with semiresorbable device can also be favourable to pulmonary autograft function in growing patients needing to match somatic growth. The attendant decrease in PA expansion and the preserved features of the valve leaflets enhances durability of Ross operation. Strengthening of the distal pulmonary root anastomosis using external reinforcement, modifying the ascending phase of the circumferential stress curve, might be advisable as previously described. PA is an ideal substitute for aortic valve replacement not only in Mr. Ross's dreams but also from the biomechanical point of view.
No takes yet. Share an insight, caveat, or question.
Nappi et al. (2020) conducted a review in Aortic valve disease (Ross operation). Semi-absorbable armored prosthesis reinforcement (PDS and ePTFE) vs. Non-reinforced pulmonary autograft was evaluated on Aneurysmal dilation and intimal rupture. Reinforcement of the pulmonary autograft with a semi-absorbable armored prosthesis prevented aneurysmal dilation and induced progressive arterial-like tissue remodeling in an experimental animal model.
Synapse has enriched 4 closely related papers on similar clinical questions. Consider them for comparative context: