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A Covalently Crosslinked Ink for Multimaterials Drop-on-Demand 3D Bioprinting of 3D Cell Cultures

Macromol Biosci. 2021-06; 
Robert H Utama, Vincent T G Tan, Kristel C Tjandra, Andrew Sexton, Duyen H T Nguyen, Aidan P O'Mahony, Eric Y Du, Peilin Tian, Julio C C Ribeiro, Maria Kavallaris, J Justin Gooding
Products/Services Used Details Operation
Proteins, Expression, Isolation and Analysis … FCS, Bovogen), AlamarBlue (ThermoFisher Scientific), LIVE/DEAD cell viability kit (ThermoFisher Scientific), phalloidin conju- gated to Alexa Fluor 568 (ThermoFisher Scientific), Hoechst 33342 (Ther- moFisher Scientific), CRGDS (>90% purity, Genscript), and GCIPVSLRS … Get A Quote

摘要

In vitro 3D cell models have been accepted to better recapitulate aspects of in vivo organ environment than 2D cell culture. Currently, the production of these complex in vitro 3D cell models with multiple cell types and microenvironments remains challenging and prone to human error. Here, a versatile ink comprising a 4-arm poly(ethylene glycol) (PEG)-based polymer with distal maleimide derivatives as the main ink component and a bis-thiol species as the activator that crosslinks the polymer to form the hydrogel in less than a second is reported. The rapid gelation makes the polymer system compatible with 3D bioprinting. The ink is combined with a novel drop-on-demand 3D bioprinting platform, designed specifica... More

关键词

3D bioprinting, 3D cell culture, drop-on-demand, hydrogel, poly(ethylene glycol)
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