Publication: Engineering of living autologous human umbilical cord cell-based septal occluder membranes using composite PGA-P4HB matrices
Engineering of living autologous human umbilical cord cell-based septal occluder membranes using composite PGA-P4HB matrices
Date
Date
Date
Citations
Weber, B., Schoenauer, R., Papadopulos, F., Modregger, P., Peter, S., Stampanoni, M., Mauri, A., Mazza, E., Gorelik, J., Agarkova, I., Frese, L., Breymann, C., Kretschmar, O., & Hoerstrup, S. P. (2011). Engineering of living autologous human umbilical cord cell-based septal occluder membranes using composite PGA-P4HB matrices. Biomaterials, 32(36), 9630–9641. https://doi.org/10.1016/j.biomaterials.2011.07.070
Abstract
Abstract
Abstract
Interventional closure of intracardiac wall defects using occluder devices has evolved as a highly attractive treatment option. However, incomplete and delayed healing reactions often result in a major risk of residual defects, thromboembolism, or device fractures. Biodegradable living tissue engineered occluder membranes (TEOMs) could provide autologous thromboresistant implants with growth and remodeling capacities. PGA-P4HB composite matrices were seeded with human umbilical cord-derived cells or vascular-derived control cells and
Metrics
Views
Additional indexing
Creators (Authors)
Volume
Volume
Volume
Number
Number
Number
Page range/Item number
Page range/Item number
Page range/Item number
Page end
Page end
Page end
Item Type
Item Type
Item Type
Dewey Decimal Classifikation
Dewey Decimal Classifikation
Dewey Decimal Classifikation
Language
Language
Language
Publication date
Publication date
Publication date
Date available
Date available
Date available
ISSN or e-ISSN
ISSN or e-ISSN
ISSN or e-ISSN
OA Status
OA Status
OA Status
Publisher DOI
Metrics
Views
Citations
Weber, B., Schoenauer, R., Papadopulos, F., Modregger, P., Peter, S., Stampanoni, M., Mauri, A., Mazza, E., Gorelik, J., Agarkova, I., Frese, L., Breymann, C., Kretschmar, O., & Hoerstrup, S. P. (2011). Engineering of living autologous human umbilical cord cell-based septal occluder membranes using composite PGA-P4HB matrices. Biomaterials, 32(36), 9630–9641. https://doi.org/10.1016/j.biomaterials.2011.07.070