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Visible light-crosslinkable tyramine-conjugated alginate-based microgel bioink for multiple cell-laden 3D artificial organ

Title
Visible light-crosslinkable tyramine-conjugated alginate-based microgel bioink for multiple cell-laden 3D artificial organ
Authors
Lee S.Choi G.Yang Y.J.Joo K.I.Cha H.J.
Ewha Authors
주계일
SCOPUS Author ID
주계일scopus
Issue Date
2023
Journal Title
Carbohydrate Polymers
ISSN
1448-8617JCR Link
Citation
Carbohydrate Polymers vol. 313
Keywords
3D printing bioinkJammed microgelsMultiple cell-laden structuresPhotocrosslinkable alginateTyramine-conjugated alginate
Publisher
Elsevier Ltd
Indexed
SCIE; SCOPUS WOS scopus
Document Type
Article
Abstract
While the natural carbohydrate alginate has enabled effective three-dimensional (3D) extrusion bioprinting, it still suffers from some issues such as low printability and resolution and limited cellular function due to ionic crosslinking dependency. Here, we prepared a harmless visible light-based photocrosslinkable alginate by chemically bonding tyrosine-like residues onto alginate chains to propose a new microgel manufacturing system for the development of 3D-printed bioinks. The photocrosslinkable tyramine-conjugated alginate microgel achieved both higher cell viability and printing resolution compared to the bulk gel form. This alginate-based jammed granular microgel bioink showed excellent 3D bioprinting ability with maintained structural stability. As a biocompatible material, the developed multiple cell-loaded photocrosslinkable alginate-based microgel bioink provided excellent proliferation and migration abilities of laden living cells, providing an effective strategy to construct implantable functional artificial organ structures for 3D bioprinting-based tissue engineering. © 2023 Elsevier Ltd
DOI
10.1016/j.carbpol.2023.120895
Appears in Collections:
공과대학 > 화공신소재공학과 > Journal papers
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