Microvascular guidance : a challenge to support the development of vascularised tissue engineering construct

The guidance of endothelial cell organization into a capillary network has been a long-standing challenge in tissue engineering. Some research efforts have been made to develop methods to promote capillary networks inside engineered tissue constructs. Capillary and vascular networks that would mimic...

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Main Author: Sukmana, Irza
Format: Article
Published: 2012
Subjects:
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author Sukmana, Irza
author_facet Sukmana, Irza
author_sort Sukmana, Irza
collection ePrints
description The guidance of endothelial cell organization into a capillary network has been a long-standing challenge in tissue engineering. Some research efforts have been made to develop methods to promote capillary networks inside engineered tissue constructs. Capillary and vascular networks that would mimic blood microvessel function can be used to subsequently facilitate oxygen and nutrient transfer as well as waste removal. Vascularization of engineering tissue construct is one of the most favorable strategies to overpass nutrient and oxygen supply limitation, which is often the major hurdle in developing thick and complex tissue and artificial organ. This paper addresses recent advances and future challenges in developing three-dimensional culture systems to promote tissue construct vascularization allowing mimicking blood microvessel development and function encountered in vivo. Bioreactors systems that have been used to create fully vascularized functional tissue constructs will also be outlined.
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spelling utm.eprints-472132019-03-31T08:34:52Z http://eprints.utm.my/47213/ Microvascular guidance : a challenge to support the development of vascularised tissue engineering construct Sukmana, Irza QM Human anatomy The guidance of endothelial cell organization into a capillary network has been a long-standing challenge in tissue engineering. Some research efforts have been made to develop methods to promote capillary networks inside engineered tissue constructs. Capillary and vascular networks that would mimic blood microvessel function can be used to subsequently facilitate oxygen and nutrient transfer as well as waste removal. Vascularization of engineering tissue construct is one of the most favorable strategies to overpass nutrient and oxygen supply limitation, which is often the major hurdle in developing thick and complex tissue and artificial organ. This paper addresses recent advances and future challenges in developing three-dimensional culture systems to promote tissue construct vascularization allowing mimicking blood microvessel development and function encountered in vivo. Bioreactors systems that have been used to create fully vascularized functional tissue constructs will also be outlined. 2012 Article PeerReviewed Sukmana, Irza (2012) Microvascular guidance : a challenge to support the development of vascularised tissue engineering construct. The Scientific World Journal, 12 . pp. 1301-1310. ISSN 1537-744X http://dx.doi.org/10.1100/2012/201352 DOI:10.1100/2012/201352
spellingShingle QM Human anatomy
Sukmana, Irza
Microvascular guidance : a challenge to support the development of vascularised tissue engineering construct
title Microvascular guidance : a challenge to support the development of vascularised tissue engineering construct
title_full Microvascular guidance : a challenge to support the development of vascularised tissue engineering construct
title_fullStr Microvascular guidance : a challenge to support the development of vascularised tissue engineering construct
title_full_unstemmed Microvascular guidance : a challenge to support the development of vascularised tissue engineering construct
title_short Microvascular guidance : a challenge to support the development of vascularised tissue engineering construct
title_sort microvascular guidance a challenge to support the development of vascularised tissue engineering construct
topic QM Human anatomy
work_keys_str_mv AT sukmanairza microvascularguidanceachallengetosupportthedevelopmentofvascularisedtissueengineeringconstruct