Advantage of Alginate Bioinks in Biofabrication for Various Tissue Engineering Applications

Bioprinting is fast emerging as a viable technique for organ fabrication. Though various types of bioprinting methods have been developed, the most commonly used bioprinting is extrusion-based bioprinting (EBB). Bioinks are extruded layer-by-layer forming a 3D multicellular construct and scaled up t...

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Main Author: Sudipto Datta
Format: Article
Language:English
Published: Wiley 2023-01-01
Series:International Journal of Polymer Science
Online Access:http://dx.doi.org/10.1155/2023/6661452
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author Sudipto Datta
author_facet Sudipto Datta
author_sort Sudipto Datta
collection DOAJ
description Bioprinting is fast emerging as a viable technique for organ fabrication. Though various types of bioprinting methods have been developed, the most commonly used bioprinting is extrusion-based bioprinting (EBB). Bioinks are extruded layer-by-layer forming a 3D multicellular construct and scaled up to dimensions depending upon the specific tissue to be regenerated. Among various bioinks, alginate, a natural polysaccharide, has been extensively used because of its good printability in physiologically amenable conditions. Though alginate possesses good printability properties, it promotes little cell–material interaction resulting in limited biofunctionality. Therefore, it becomes necessary to blend/modify alginate to improve the biological properties of bioink without compromising printability. This paper presents a review of the various approaches used to optimize bioprinting with alginate bioinks and their limitations.
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series International Journal of Polymer Science
spelling doaj-art-1199ecf58ae64b628f23d4fa7640d3062025-08-20T03:17:08ZengWileyInternational Journal of Polymer Science1687-94302023-01-01202310.1155/2023/6661452Advantage of Alginate Bioinks in Biofabrication for Various Tissue Engineering ApplicationsSudipto Datta0Indian Institute of Engineering Science and TechnologyBioprinting is fast emerging as a viable technique for organ fabrication. Though various types of bioprinting methods have been developed, the most commonly used bioprinting is extrusion-based bioprinting (EBB). Bioinks are extruded layer-by-layer forming a 3D multicellular construct and scaled up to dimensions depending upon the specific tissue to be regenerated. Among various bioinks, alginate, a natural polysaccharide, has been extensively used because of its good printability in physiologically amenable conditions. Though alginate possesses good printability properties, it promotes little cell–material interaction resulting in limited biofunctionality. Therefore, it becomes necessary to blend/modify alginate to improve the biological properties of bioink without compromising printability. This paper presents a review of the various approaches used to optimize bioprinting with alginate bioinks and their limitations.http://dx.doi.org/10.1155/2023/6661452
spellingShingle Sudipto Datta
Advantage of Alginate Bioinks in Biofabrication for Various Tissue Engineering Applications
International Journal of Polymer Science
title Advantage of Alginate Bioinks in Biofabrication for Various Tissue Engineering Applications
title_full Advantage of Alginate Bioinks in Biofabrication for Various Tissue Engineering Applications
title_fullStr Advantage of Alginate Bioinks in Biofabrication for Various Tissue Engineering Applications
title_full_unstemmed Advantage of Alginate Bioinks in Biofabrication for Various Tissue Engineering Applications
title_short Advantage of Alginate Bioinks in Biofabrication for Various Tissue Engineering Applications
title_sort advantage of alginate bioinks in biofabrication for various tissue engineering applications
url http://dx.doi.org/10.1155/2023/6661452
work_keys_str_mv AT sudiptodatta advantageofalginatebioinksinbiofabricationforvarioustissueengineeringapplications