AbstractObjective: In recent years bioabsorbable synthetic or biologic materials have been used to augment the pulmonary artery or the right ventricular outflow tract. However, each of these polymers has one or more shortcomings. None of these patch materials has been seeded with cells. Thus, we have tested a fast-absorbing biopolymer, poly-4-hydroxybutyric acid, with autologous cell seeding for patch augmentation of the pulmonary artery in a juvenile sheep model. Methods: Vascular cells were isolated from ovine peripheral veins (n = 6). Bioabsorbable porous poly-4-hydroxybutyric acid patches (porosity > 95%) were seeded on 3 consecutive days with a mixed vascular cell suspension (21.3 ± 1.3 × 106 cells). Forty-five (± 2) days after the ves...
ObjectiveCurrently available synthetic polymer vascular patches used in cardiovascular surgery have ...
BACKGROUND: Living autologous vascular grafts with the capacity for regeneration and growth may over...
ObjectiveProsthetic and bioprosthetic materials currently in use lack growth potential and therefore...
AbstractObjective: In recent years bioabsorbable synthetic or biologic materials have been used to a...
AbstractObjective: Bioprosthetic and mechanical valves and valved conduits are unable to grow, repai...
The Ross procedure has emerged as a popular choice for aortic valve replacement in infants and child...
AbstractObjectiveBiodegradable materials with autologous cell seeding have attracted much interest a...
AbstractBackground: “Repair” of many congenital cardiac defects requires the use of conduits to esta...
BackgroundTissue-engineered pulmonary arteries could overcome the drawbacks of homografts or prosthe...
ObjectivesThis study investigated the time-dependent remodeling and growth potential of porcine smal...
BACKGROUND AND AIM OF THE STUDY: Synthetic materials used for pulmonary autograft (PA) reinforcement...
AbstractObjectives: Nonbiodegradable synthetic materials have been widely used to repair cardiac def...
BACKGROUND AND AIM OF THE STUDY: Synthetic materials used for pulmonary autograft (PA) reinforcement...
Current materials for heart valve replacement and repair are limited by the inability to grow or rem...
© 2019 Lack of growth potential of available grafts represents a bottleneck in the correction of con...
ObjectiveCurrently available synthetic polymer vascular patches used in cardiovascular surgery have ...
BACKGROUND: Living autologous vascular grafts with the capacity for regeneration and growth may over...
ObjectiveProsthetic and bioprosthetic materials currently in use lack growth potential and therefore...
AbstractObjective: In recent years bioabsorbable synthetic or biologic materials have been used to a...
AbstractObjective: Bioprosthetic and mechanical valves and valved conduits are unable to grow, repai...
The Ross procedure has emerged as a popular choice for aortic valve replacement in infants and child...
AbstractObjectiveBiodegradable materials with autologous cell seeding have attracted much interest a...
AbstractBackground: “Repair” of many congenital cardiac defects requires the use of conduits to esta...
BackgroundTissue-engineered pulmonary arteries could overcome the drawbacks of homografts or prosthe...
ObjectivesThis study investigated the time-dependent remodeling and growth potential of porcine smal...
BACKGROUND AND AIM OF THE STUDY: Synthetic materials used for pulmonary autograft (PA) reinforcement...
AbstractObjectives: Nonbiodegradable synthetic materials have been widely used to repair cardiac def...
BACKGROUND AND AIM OF THE STUDY: Synthetic materials used for pulmonary autograft (PA) reinforcement...
Current materials for heart valve replacement and repair are limited by the inability to grow or rem...
© 2019 Lack of growth potential of available grafts represents a bottleneck in the correction of con...
ObjectiveCurrently available synthetic polymer vascular patches used in cardiovascular surgery have ...
BACKGROUND: Living autologous vascular grafts with the capacity for regeneration and growth may over...
ObjectiveProsthetic and bioprosthetic materials currently in use lack growth potential and therefore...