Bioprinting: Inkjet–Spray Hybrid Printing for 3D Freeform Fabrication of Multilayered Hydrogel Structures (Adv. Healthcare Mater. 14/2018)

In article 1800050, Sungjune Jung and co‐workers present a new bioprinting process by combining drop‐on‐demand inkjet printing with a spray‐coating technique. Successfully fabricated hydrogel structures with various shapes, sizes and materials, including alginate, cellulose nanofiber, fibrinogen, an...

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Veröffentlicht in:Advanced healthcare materials 2018-07, Vol.7 (14), p.n/a
Hauptverfasser: Yoon, Sejeong, Park, Ju An, Lee, Hwa‐Rim, Yoon, Woong Hee, Hwang, Dong Soo, Jung, Sungjune
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container_end_page n/a
container_issue 14
container_start_page
container_title Advanced healthcare materials
container_volume 7
creator Yoon, Sejeong
Park, Ju An
Lee, Hwa‐Rim
Yoon, Woong Hee
Hwang, Dong Soo
Jung, Sungjune
description In article 1800050, Sungjune Jung and co‐workers present a new bioprinting process by combining drop‐on‐demand inkjet printing with a spray‐coating technique. Successfully fabricated hydrogel structures with various shapes, sizes and materials, including alginate, cellulose nanofiber, fibrinogen, and gelatine methacryloyl‐based bioinks that are inkjet‐printable are presented. The proposed printing technique and the bioinks can be used to produce large‐scale, 3D laminated structures that potentially include the functions of native tissues such as skin and epithelium.
doi_str_mv 10.1002/adhm.201870055
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source Wiley Online Library Journals Frontfile Complete
subjects Alginates
Alginic acid
Bioengineering
Cellulose
Cellulose fibers
Epithelium
Fabrication
Fibrinogen
Freeform fabrication
gelatine methacryloyl
Hydrogels
Ink jet printers
Inkjet printing
Nanofibers
Printing
saponification
Skin
sprays
Three dimensional printing
Workers
title Bioprinting: Inkjet–Spray Hybrid Printing for 3D Freeform Fabrication of Multilayered Hydrogel Structures (Adv. Healthcare Mater. 14/2018)
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