Vat polymerization-based bioprinting - process, materials, applications and regulatory challenges

Over the years, the field of bioprinting has attracted attention for its highly automated fabrication system that enables the precise patterning of living cells and biomaterials at pre-defined positions for enhanced cell-matrix and cell-cell interactions. Notably, vat polymerization (VP)-based biopr...

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Main Authors: Ng, Wei Long, Lee, Jia Min, Zhou, Miaomiao, Chen, Yi-Wen, Lee, Alvin Kai-Xing, Yeong, Wai Yee, Shen, Yu-Fang
Other Authors: School of Mechanical and Aerospace Engineering
Format: Article
Language:English
Published: 2020
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Online Access:https://hdl.handle.net/10356/140096
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-1400962023-11-03T07:32:45Z Vat polymerization-based bioprinting - process, materials, applications and regulatory challenges Ng, Wei Long Lee, Jia Min Zhou, Miaomiao Chen, Yi-Wen Lee, Alvin Kai-Xing Yeong, Wai Yee Shen, Yu-Fang School of Mechanical and Aerospace Engineering Singapore Centre for 3D Printing HP-NTU Digital Manufacturing Corporate Lab Engineering::Materials::Biomaterials 3D Bioprinting 3D Printing Over the years, the field of bioprinting has attracted attention for its highly automated fabrication system that enables the precise patterning of living cells and biomaterials at pre-defined positions for enhanced cell-matrix and cell-cell interactions. Notably, vat polymerization (VP)-based bioprinting is an emerging bioprinting technique for various tissue engineering applications due to its high fabrication accuracy. Particularly, different photo-initiators (PIs) are utilized during the bioprinting process to facilitate the crosslinking mechanism for fabrication of high-resolution complex tissue constructs. The advancements in VP-based printing have led to a paradigm shift in fabrication of tissue constructs from cell-seeding of tissue scaffolds (non-biocompatible fabrication process) to direct bioprinting of cell-laden tissue constructs (biocompatible fabrication process). This paper, presenting a first-time comprehensive review of the VP-based bioprinting process, provides an in-depth analysis and comparison of the various biocompatible PIs and highlights the important considerations and bioprinting requirements. This review paper reports a detailed analysis of its printing process and the influence of light-based curing modality and PIs on living cells. Lastly, this review also highlights the significance of VP-based bioprinting, the regulatory challenges and presents future directions to transform the VP-based printing technology into imperative tools in the field of tissue engineering and regenerative medicine. The readers will be informed on the current limitations and achievements of the VP-based bioprinting techniques. Notably, the readers will realize the importance and value of highly-automated platforms for tissue engineering applications and be able to develop objective viewpoints towards this field. Accepted version 2020-05-26T07:31:13Z 2020-05-26T07:31:13Z 2020 Journal Article Ng, W. L., Lee, J. M., Zhou, M., Chen, Y.-W., Lee, A. K.-X., Yeong, W. Y., & Shen, Y.-F. (2020). Vat polymerization-based bioprinting - process, materials, applications and regulatory challenges. Biofabrication, 12(2), 022001-. doi:10.1088/1758-5090/ab6034 1758-5082 https://hdl.handle.net/10356/140096 10.1088/1758-5090/ab6034 31822648 2-s2.0-85079092470 2 12 en Biofabrication © 2020 IOP Publishing Ltd. All rights reserved. This is an author-created, un-copyedited version of an article accepted for publication in Biofabrication. IOP Publishing Ltd is not responsible for any errors or omissions in this version of the manuscript or any version derived from it. The definitive publisher authenticated version is available online at https://doi.org/10.1088/1758-5090/ab6034 application/pdf
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic Engineering::Materials::Biomaterials
3D Bioprinting
3D Printing
spellingShingle Engineering::Materials::Biomaterials
3D Bioprinting
3D Printing
Ng, Wei Long
Lee, Jia Min
Zhou, Miaomiao
Chen, Yi-Wen
Lee, Alvin Kai-Xing
Yeong, Wai Yee
Shen, Yu-Fang
Vat polymerization-based bioprinting - process, materials, applications and regulatory challenges
description Over the years, the field of bioprinting has attracted attention for its highly automated fabrication system that enables the precise patterning of living cells and biomaterials at pre-defined positions for enhanced cell-matrix and cell-cell interactions. Notably, vat polymerization (VP)-based bioprinting is an emerging bioprinting technique for various tissue engineering applications due to its high fabrication accuracy. Particularly, different photo-initiators (PIs) are utilized during the bioprinting process to facilitate the crosslinking mechanism for fabrication of high-resolution complex tissue constructs. The advancements in VP-based printing have led to a paradigm shift in fabrication of tissue constructs from cell-seeding of tissue scaffolds (non-biocompatible fabrication process) to direct bioprinting of cell-laden tissue constructs (biocompatible fabrication process). This paper, presenting a first-time comprehensive review of the VP-based bioprinting process, provides an in-depth analysis and comparison of the various biocompatible PIs and highlights the important considerations and bioprinting requirements. This review paper reports a detailed analysis of its printing process and the influence of light-based curing modality and PIs on living cells. Lastly, this review also highlights the significance of VP-based bioprinting, the regulatory challenges and presents future directions to transform the VP-based printing technology into imperative tools in the field of tissue engineering and regenerative medicine. The readers will be informed on the current limitations and achievements of the VP-based bioprinting techniques. Notably, the readers will realize the importance and value of highly-automated platforms for tissue engineering applications and be able to develop objective viewpoints towards this field.
author2 School of Mechanical and Aerospace Engineering
author_facet School of Mechanical and Aerospace Engineering
Ng, Wei Long
Lee, Jia Min
Zhou, Miaomiao
Chen, Yi-Wen
Lee, Alvin Kai-Xing
Yeong, Wai Yee
Shen, Yu-Fang
format Article
author Ng, Wei Long
Lee, Jia Min
Zhou, Miaomiao
Chen, Yi-Wen
Lee, Alvin Kai-Xing
Yeong, Wai Yee
Shen, Yu-Fang
author_sort Ng, Wei Long
title Vat polymerization-based bioprinting - process, materials, applications and regulatory challenges
title_short Vat polymerization-based bioprinting - process, materials, applications and regulatory challenges
title_full Vat polymerization-based bioprinting - process, materials, applications and regulatory challenges
title_fullStr Vat polymerization-based bioprinting - process, materials, applications and regulatory challenges
title_full_unstemmed Vat polymerization-based bioprinting - process, materials, applications and regulatory challenges
title_sort vat polymerization-based bioprinting - process, materials, applications and regulatory challenges
publishDate 2020
url https://hdl.handle.net/10356/140096
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