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Precisely printable and biocompatible silk fibroin bioink for digital light processing 3D printing
by
Lee, Sang Jin
, Kim, Soon Hee
, Yoo, James J.
, Hong, In-Sun
, Lee, Jung Min
, Yoon, Sung-il
, Khang, Gilson
, Lee, Young Jin
, Seo, Ye Been
, Chao, Janet Ren
, Sultan, Md. Tipu
, Lee, Ok Joo
, Yeon, Yeung Kyu
, Lee, Ji Seung
, Park, Chan Hum
in
13/106
/ 13/107
/ 13/51
/ 14/34
/ 140/131
/ 142/126
/ 3-D printers
/ 631/61/2035
/ 631/61/54/2295
/ Biocompatibility
/ Biomechanical Phenomena
/ Bioprinting - instrumentation
/ Bioprinting - methods
/ Blood vessels
/ Brain
/ Cell Line
/ Cell Proliferation
/ Cell Survival
/ Chondrocytes - cytology
/ Fabrication
/ Fibroins - chemistry
/ Humanities and Social Sciences
/ Humans
/ Hydrogels
/ Hydrogels - chemistry
/ Ink
/ Light
/ multidisciplinary
/ Printing
/ Printing, Three-Dimensional
/ Rheological properties
/ Rheology
/ Science
/ Science (multidisciplinary)
/ Silk
/ Silk fibroin
/ Structural stability
/ Three dimensional printing
/ Tissue Engineering
/ Tissue Scaffolds - chemistry
/ Trachea
2018
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Precisely printable and biocompatible silk fibroin bioink for digital light processing 3D printing
by
Lee, Sang Jin
, Kim, Soon Hee
, Yoo, James J.
, Hong, In-Sun
, Lee, Jung Min
, Yoon, Sung-il
, Khang, Gilson
, Lee, Young Jin
, Seo, Ye Been
, Chao, Janet Ren
, Sultan, Md. Tipu
, Lee, Ok Joo
, Yeon, Yeung Kyu
, Lee, Ji Seung
, Park, Chan Hum
in
13/106
/ 13/107
/ 13/51
/ 14/34
/ 140/131
/ 142/126
/ 3-D printers
/ 631/61/2035
/ 631/61/54/2295
/ Biocompatibility
/ Biomechanical Phenomena
/ Bioprinting - instrumentation
/ Bioprinting - methods
/ Blood vessels
/ Brain
/ Cell Line
/ Cell Proliferation
/ Cell Survival
/ Chondrocytes - cytology
/ Fabrication
/ Fibroins - chemistry
/ Humanities and Social Sciences
/ Humans
/ Hydrogels
/ Hydrogels - chemistry
/ Ink
/ Light
/ multidisciplinary
/ Printing
/ Printing, Three-Dimensional
/ Rheological properties
/ Rheology
/ Science
/ Science (multidisciplinary)
/ Silk
/ Silk fibroin
/ Structural stability
/ Three dimensional printing
/ Tissue Engineering
/ Tissue Scaffolds - chemistry
/ Trachea
2018
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Precisely printable and biocompatible silk fibroin bioink for digital light processing 3D printing
by
Lee, Sang Jin
, Kim, Soon Hee
, Yoo, James J.
, Hong, In-Sun
, Lee, Jung Min
, Yoon, Sung-il
, Khang, Gilson
, Lee, Young Jin
, Seo, Ye Been
, Chao, Janet Ren
, Sultan, Md. Tipu
, Lee, Ok Joo
, Yeon, Yeung Kyu
, Lee, Ji Seung
, Park, Chan Hum
in
13/106
/ 13/107
/ 13/51
/ 14/34
/ 140/131
/ 142/126
/ 3-D printers
/ 631/61/2035
/ 631/61/54/2295
/ Biocompatibility
/ Biomechanical Phenomena
/ Bioprinting - instrumentation
/ Bioprinting - methods
/ Blood vessels
/ Brain
/ Cell Line
/ Cell Proliferation
/ Cell Survival
/ Chondrocytes - cytology
/ Fabrication
/ Fibroins - chemistry
/ Humanities and Social Sciences
/ Humans
/ Hydrogels
/ Hydrogels - chemistry
/ Ink
/ Light
/ multidisciplinary
/ Printing
/ Printing, Three-Dimensional
/ Rheological properties
/ Rheology
/ Science
/ Science (multidisciplinary)
/ Silk
/ Silk fibroin
/ Structural stability
/ Three dimensional printing
/ Tissue Engineering
/ Tissue Scaffolds - chemistry
/ Trachea
2018
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Precisely printable and biocompatible silk fibroin bioink for digital light processing 3D printing
Journal Article
Precisely printable and biocompatible silk fibroin bioink for digital light processing 3D printing
2018
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Overview
Although three-dimensional (3D) bioprinting technology has gained much attention in the field of tissue engineering, there are still several significant engineering challenges to overcome, including lack of bioink with biocompatibility and printability. Here, we show a bioink created from silk fibroin (SF) for digital light processing (DLP) 3D bioprinting in tissue engineering applications. The SF-based bioink (Sil-MA) was produced by a methacrylation process using glycidyl methacrylate (GMA) during the fabrication of SF solution. The mechanical and rheological properties of Sil-MA hydrogel proved to be outstanding in experimental testing and can be modulated by varying the Sil-MA contents. This Sil-MA bioink allowed us to build highly complex organ structures, including the heart, vessel, brain, trachea and ear with excellent structural stability and reliable biocompatibility. Sil-MA bioink is well-suited for use in DLP printing process and could be applied to tissue and organ engineering depending on the specific biological requirements.
Although 3D bioprinting technology has gained much attention in the field of tissue engineering, there are still several significant challenges that need to be overcome. Here, the authors present silk fibroin bioink with printability and biocompatibility suited for digital light processing 3D printing.
Publisher
Nature Publishing Group UK,Nature Publishing Group,Nature Portfolio
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