bioprinting

Reproducible generation of human liver organoids (HLOs) on a pillar plate platform via microarray 3D bioprinting

Lab Chip, 2024, Accepted Manuscript
DOI: 10.1039/D4LC00149D, Paper
Sunil Shrestha, Vinod Kumar Reddy Lekkala, Prabha Acharya, Soo-Yeon Kang, Manav Goud Vanga, Moo-Yeal Lee
Human liver organoids (HLOs) hold significant potential for recapitulating the architecture and function of liver tissues in vivo. However, conventional culture methos of HLOs, forming Matrigel domes in 6-/24-well plates,...
The content of this RSS Feed (c) The Royal Society of Chemistry




bioprinting

Unlocking new possibilities: application of MXenes in 3D bioprinting for advanced therapy

Nanoscale, 2024, 16,20037-20047
DOI: 10.1039/D4NR02906B, Minireview
Yusuf Olatunji Waidi, Nipun Jain
This article presents MXenes' potential in 3D bioprinting, discussing their benefits for bio-printed scaffolds, 3D bioprinting techniques, bio-ink criteria, applications of MXene-incorporated constructs, current challenges, and future directions.
The content of this RSS Feed (c) The Royal Society of Chemistry




bioprinting

Microgels for bioprinting: recent advancements and challenges

Biomater. Sci., 2024, 12,1950-1964
DOI: 10.1039/D3BM01733H, Review Article
Mingjun Xie, Ji Wang, Sufan Wu, Sheng Yan, Yong He
This review introduces different methods used to generate microgels and the microgel-based bioink for bioprinting. Besides, the further tendency of microgel development in future is predicted.
The content of this RSS Feed (c) The Royal Society of Chemistry




bioprinting

Bioprinting station, assembly comprising such bioprinting station and bioprinting method

Bioprinting station (1) comprising:—a Bioprinting device (4) adapted to deposit a pattern of biological material (2) onto an area of interest (3a) of a substrate (3),—an imaging system (15) adapted to acquire an image of the substrate (3) and to reveal on the acquired image the area of interest (3a) with respect to a remaining part (3b) of the substrate (3), the acquired image of the substrate (3) being processed so as to detect the revealed area of interest (3a) on the acquired image and to determine the pattern corresponding to the area of interest (3a) detected on the acquired image.




bioprinting

MIT uses fine-scale 3D bioprinting to grow highly uniform cell cultures with desired properties

Researchers from the Massachusetts Institute of Technology (MIT) have used fine-scale 3D bioprinting to grow cells that are highly uniform in shape and size, and potentially with certain functions.



  • 3D Printing Technology

bioprinting

Poietis granted third European patent for laser-assisted 3D bioprinting technology

French biotechnology company Poietis has announced the granting of a third patent for its laser-assisted 3D bioprinting technology.



  • 3D Printing Company

bioprinting

3D bioprinting [Electronic book] : modeling in vitro tissues and organs using tissue-specific bioinks / Dong-Woo Cho, Byoung Soo Kim, Jinah Jang, Ge Gao, Wonil Han, Narendra K. Singh.

Cham : Springer, 2020.




bioprinting

[ASAP] Fundamentals and Applications of Photo-Cross-Linking in Bioprinting

Chemical Reviews
DOI: 10.1021/acs.chemrev.9b00812




bioprinting

Extrusion Bioprinting of Scaffolds for Tissue Engineering Applications

Online Resource




bioprinting

Study on microextrusion-based 3D bioprinting and bioink crosslinking mechanisms Liliang Ouyang

Online Resource




bioprinting

3D bioprinting: modeling in vitro tissues and organs using tissue-specific bioinks / Dong-Woo Cho, Byoung Soo Kim, Jinah Jang, Ge Gao, Wonil Han, Narendra K. Singh

Online Resource




bioprinting

3D bioprinting : fundamentals, principles and applications / Ibrahim T. Ozbolat

Ozbolat, Ibrahim Tarik, author