Production of Human Endothelial Cells Free from Soluble Xenogeneic Antigens for Bioartificial Small Diameter Vascular Graft Endothelization

Arterial bypass graft implantation remains the primary therapy for patients with advanced cardiovascular disease, but most lack adequate saphenous vein or other conduits for bypass procedures and would benefit from a bioartificial conduit. This study aimed to produce human endothelial cells (hECs) i...

Full description

Bibliographic Details
Main Authors: Juliana Lott de Carvalho, Alessandra Zonari, Ana Cláudia Chagas de Paula, Thaís Maria da Mata Martins, Dawidson Assis Gomes, Alfredo Miranda Goes
Format: Article
Language:English
Published: Hindawi Limited 2015-01-01
Series:BioMed Research International
Online Access:http://dx.doi.org/10.1155/2015/652474
id doaj-9b1f340b45884708bc0dc362093f6cdc
record_format Article
spelling doaj-9b1f340b45884708bc0dc362093f6cdc2020-11-24T22:35:43ZengHindawi LimitedBioMed Research International2314-61332314-61412015-01-01201510.1155/2015/652474652474Production of Human Endothelial Cells Free from Soluble Xenogeneic Antigens for Bioartificial Small Diameter Vascular Graft EndothelizationJuliana Lott de Carvalho0Alessandra Zonari1Ana Cláudia Chagas de Paula2Thaís Maria da Mata Martins3Dawidson Assis Gomes4Alfredo Miranda Goes5Laboratory of Cellular and Molecular Immunology, Department of Biochemistry and Immunology, Institute of Biological Sciences, Universidade Federal de Minas Gerais, 31270-901 Belo Horizonte, MG, BrazilLaboratory of Cellular and Molecular Immunology, Department of Biochemistry and Immunology, Institute of Biological Sciences, Universidade Federal de Minas Gerais, 31270-901 Belo Horizonte, MG, BrazilLaboratory of Cellular and Molecular Immunology, Department of Biochemistry and Immunology, Institute of Biological Sciences, Universidade Federal de Minas Gerais, 31270-901 Belo Horizonte, MG, BrazilLaboratory of Cellular and Molecular Immunology, Department of Biochemistry and Immunology, Institute of Biological Sciences, Universidade Federal de Minas Gerais, 31270-901 Belo Horizonte, MG, BrazilLaboratory of Cellular and Molecular Immunology, Department of Biochemistry and Immunology, Institute of Biological Sciences, Universidade Federal de Minas Gerais, 31270-901 Belo Horizonte, MG, BrazilLaboratory of Cellular and Molecular Immunology, Department of Biochemistry and Immunology, Institute of Biological Sciences, Universidade Federal de Minas Gerais, 31270-901 Belo Horizonte, MG, BrazilArterial bypass graft implantation remains the primary therapy for patients with advanced cardiovascular disease, but most lack adequate saphenous vein or other conduits for bypass procedures and would benefit from a bioartificial conduit. This study aimed to produce human endothelial cells (hECs) in large scale, free from xenogeneic antigens, to develop a small diameter, compatible vessel for potential use as a vascular graft. Human adipose-derived stromal cells (hASCs) were isolated, cultured, and differentiated in the presence of human serum and used for the reendothelization of a decellularized rat aorta. hASC derived ECs (hASC-ECs) expressed VEGFR2, vWf and CD31 endothelial cell markers, the latter in higher levels than hASCs and HUVECs, and were shown to be functional. Decellularization protocol yielded aortas devoid of cell nuclei, with preserved structure, including a preserved basement membrane. When seeded with hASC-ECs, the decellularized aorta was completely reendothelized, and the hASC-ECs maintained their phenotype in this new condition. hASCs can be differentiated into functional hECs without the use of animal supplements and are capable of reendothelizing a decellularized rat aorta while maintaining their phenotype. The preservation of the basement membrane following decellularization supported the complete reendothelization of the scaffold with no cell migration towards other layers. This approach is potentially useful for rapid obtention of compatible, xenogeneic-free conduit.http://dx.doi.org/10.1155/2015/652474
collection DOAJ
language English
format Article
sources DOAJ
author Juliana Lott de Carvalho
Alessandra Zonari
Ana Cláudia Chagas de Paula
Thaís Maria da Mata Martins
Dawidson Assis Gomes
Alfredo Miranda Goes
spellingShingle Juliana Lott de Carvalho
Alessandra Zonari
Ana Cláudia Chagas de Paula
Thaís Maria da Mata Martins
Dawidson Assis Gomes
Alfredo Miranda Goes
Production of Human Endothelial Cells Free from Soluble Xenogeneic Antigens for Bioartificial Small Diameter Vascular Graft Endothelization
BioMed Research International
author_facet Juliana Lott de Carvalho
Alessandra Zonari
Ana Cláudia Chagas de Paula
Thaís Maria da Mata Martins
Dawidson Assis Gomes
Alfredo Miranda Goes
author_sort Juliana Lott de Carvalho
title Production of Human Endothelial Cells Free from Soluble Xenogeneic Antigens for Bioartificial Small Diameter Vascular Graft Endothelization
title_short Production of Human Endothelial Cells Free from Soluble Xenogeneic Antigens for Bioartificial Small Diameter Vascular Graft Endothelization
title_full Production of Human Endothelial Cells Free from Soluble Xenogeneic Antigens for Bioartificial Small Diameter Vascular Graft Endothelization
title_fullStr Production of Human Endothelial Cells Free from Soluble Xenogeneic Antigens for Bioartificial Small Diameter Vascular Graft Endothelization
title_full_unstemmed Production of Human Endothelial Cells Free from Soluble Xenogeneic Antigens for Bioartificial Small Diameter Vascular Graft Endothelization
title_sort production of human endothelial cells free from soluble xenogeneic antigens for bioartificial small diameter vascular graft endothelization
publisher Hindawi Limited
series BioMed Research International
issn 2314-6133
2314-6141
publishDate 2015-01-01
description Arterial bypass graft implantation remains the primary therapy for patients with advanced cardiovascular disease, but most lack adequate saphenous vein or other conduits for bypass procedures and would benefit from a bioartificial conduit. This study aimed to produce human endothelial cells (hECs) in large scale, free from xenogeneic antigens, to develop a small diameter, compatible vessel for potential use as a vascular graft. Human adipose-derived stromal cells (hASCs) were isolated, cultured, and differentiated in the presence of human serum and used for the reendothelization of a decellularized rat aorta. hASC derived ECs (hASC-ECs) expressed VEGFR2, vWf and CD31 endothelial cell markers, the latter in higher levels than hASCs and HUVECs, and were shown to be functional. Decellularization protocol yielded aortas devoid of cell nuclei, with preserved structure, including a preserved basement membrane. When seeded with hASC-ECs, the decellularized aorta was completely reendothelized, and the hASC-ECs maintained their phenotype in this new condition. hASCs can be differentiated into functional hECs without the use of animal supplements and are capable of reendothelizing a decellularized rat aorta while maintaining their phenotype. The preservation of the basement membrane following decellularization supported the complete reendothelization of the scaffold with no cell migration towards other layers. This approach is potentially useful for rapid obtention of compatible, xenogeneic-free conduit.
url http://dx.doi.org/10.1155/2015/652474
work_keys_str_mv AT julianalottdecarvalho productionofhumanendothelialcellsfreefromsolublexenogeneicantigensforbioartificialsmalldiametervasculargraftendothelization
AT alessandrazonari productionofhumanendothelialcellsfreefromsolublexenogeneicantigensforbioartificialsmalldiametervasculargraftendothelization
AT anaclaudiachagasdepaula productionofhumanendothelialcellsfreefromsolublexenogeneicantigensforbioartificialsmalldiametervasculargraftendothelization
AT thaismariadamatamartins productionofhumanendothelialcellsfreefromsolublexenogeneicantigensforbioartificialsmalldiametervasculargraftendothelization
AT dawidsonassisgomes productionofhumanendothelialcellsfreefromsolublexenogeneicantigensforbioartificialsmalldiametervasculargraftendothelization
AT alfredomirandagoes productionofhumanendothelialcellsfreefromsolublexenogeneicantigensforbioartificialsmalldiametervasculargraftendothelization
_version_ 1725723067480539136