Optimization of vascularisation in axially vascularised matrices in tissue engineering
[english] Nowadays, autologous tissue transplantation represents the gold standard for the reconstruction of large tissue defects. To minimize the resulting donor side morbidity and to overcome the limitations regarding shape and volume of bone grafts research has focused on tissue engineering of ax...
Main Authors: | , , |
---|---|
Format: | Article |
Language: | deu |
Published: |
German Medical Science GMS Publishing House
2014-03-01
|
Series: | GMS German Plastic, Reconstructive and Aesthetic Surgery – Burn and Hand Surgery |
Subjects: | |
Online Access: | http://www.egms.de/static/en/journals/gpras/2014-4/gpras000022.shtml |
id |
doaj-b5209a840f7042e49693b895ee2e4ebf |
---|---|
record_format |
Article |
spelling |
doaj-b5209a840f7042e49693b895ee2e4ebf2020-11-25T02:56:48ZdeuGerman Medical Science GMS Publishing HouseGMS German Plastic, Reconstructive and Aesthetic Surgery – Burn and Hand Surgery2193-70522014-03-014Doc0310.3205/gpras000022Optimization of vascularisation in axially vascularised matrices in tissue engineeringArkudas, Andreas0Kneser, Ulrich1Horch, Raymund E.2Department of Plastic and Hand Surgery, University Hospital of Erlangen, Friedrich-Alexander-University of Erlangen-Nuernberg, Erlangen, GermanyDepartment of Plastic and Hand Surgery, University Hospital of Erlangen, Friedrich-Alexander-University of Erlangen-Nuernberg, Erlangen, GermanyDepartment of Plastic and Hand Surgery, University Hospital of Erlangen, Friedrich-Alexander-University of Erlangen-Nuernberg, Erlangen, Germany[english] Nowadays, autologous tissue transplantation represents the gold standard for the reconstruction of large tissue defects. To minimize the resulting donor side morbidity and to overcome the limitations regarding shape and volume of bone grafts research has focused on tissue engineering of axially vascularised tissue constructs. We have evaluated different strategies to improve the vascularisation of bioartificial transplantable tissue volumes. First we used angiogenic growth factors such as VEGF and bFGF in the subcutaneous and arteriovenous loop model in the rat to increase vessel ingrowth. Afterwards we combined the intrinsic vascular pathway of the arteriovenous loop model with an additional extrinsic vessel ingrowth by using a porous titanium chamber. Transplanted cells also showed an increased survival in the AV loop model compared to subcutaneously implanted matrices. In this manuscript we show the evolution of different newly developed methods to improve vascularisation of axially vascularised matrices in tissue engineering.http://www.egms.de/static/en/journals/gpras/2014-4/gpras000022.shtmltissue engineeringvascularisationgrowth factorsVEGFbFGFAV loop model |
collection |
DOAJ |
language |
deu |
format |
Article |
sources |
DOAJ |
author |
Arkudas, Andreas Kneser, Ulrich Horch, Raymund E. |
spellingShingle |
Arkudas, Andreas Kneser, Ulrich Horch, Raymund E. Optimization of vascularisation in axially vascularised matrices in tissue engineering GMS German Plastic, Reconstructive and Aesthetic Surgery – Burn and Hand Surgery tissue engineering vascularisation growth factors VEGF bFGF AV loop model |
author_facet |
Arkudas, Andreas Kneser, Ulrich Horch, Raymund E. |
author_sort |
Arkudas, Andreas |
title |
Optimization of vascularisation in axially vascularised matrices in tissue engineering |
title_short |
Optimization of vascularisation in axially vascularised matrices in tissue engineering |
title_full |
Optimization of vascularisation in axially vascularised matrices in tissue engineering |
title_fullStr |
Optimization of vascularisation in axially vascularised matrices in tissue engineering |
title_full_unstemmed |
Optimization of vascularisation in axially vascularised matrices in tissue engineering |
title_sort |
optimization of vascularisation in axially vascularised matrices in tissue engineering |
publisher |
German Medical Science GMS Publishing House |
series |
GMS German Plastic, Reconstructive and Aesthetic Surgery – Burn and Hand Surgery |
issn |
2193-7052 |
publishDate |
2014-03-01 |
description |
[english] Nowadays, autologous tissue transplantation represents the gold standard for the reconstruction of large tissue defects. To minimize the resulting donor side morbidity and to overcome the limitations regarding shape and volume of bone grafts research has focused on tissue engineering of axially vascularised tissue constructs. We have evaluated different strategies to improve the vascularisation of bioartificial transplantable tissue volumes. First we used angiogenic growth factors such as VEGF and bFGF in the subcutaneous and arteriovenous loop model in the rat to increase vessel ingrowth. Afterwards we combined the intrinsic vascular pathway of the arteriovenous loop model with an additional extrinsic vessel ingrowth by using a porous titanium chamber. Transplanted cells also showed an increased survival in the AV loop model compared to subcutaneously implanted matrices. In this manuscript we show the evolution of different newly developed methods to improve vascularisation of axially vascularised matrices in tissue engineering. |
topic |
tissue engineering vascularisation growth factors VEGF bFGF AV loop model |
url |
http://www.egms.de/static/en/journals/gpras/2014-4/gpras000022.shtml |
work_keys_str_mv |
AT arkudasandreas optimizationofvascularisationinaxiallyvascularisedmatricesintissueengineering AT kneserulrich optimizationofvascularisationinaxiallyvascularisedmatricesintissueengineering AT horchraymunde optimizationofvascularisationinaxiallyvascularisedmatricesintissueengineering |
_version_ |
1724712184393498624 |