Cation-crosslinked κ-carrageenan sub-microgel medium for high-quality embedded bioprinting

H Zhang, Y Luo, Z Hu, M Chen, S Chen, Y Yao… - …, 2024 - iopscience.iop.org
Abstract Three-dimensional (3D) bioprinting embedded within a microgel bath has emerged
as a promising strategy for creating intricate biomimetic scaffolds. However, it remains a …

Characterization and optimization of a biomaterial ink aided by machine learning-assisted parameter suggestion

A Hashemi, M Ezati, I Zumberg, T Vicar… - Materials Today …, 2024 - Elsevier
Bio-inks and biomaterial inks are crucial to the success of 3D bioprinting, as they form the
foundation of almost every 3D bio-printed structure. Despite the use of various biomaterial …

3D bioprinting of an intervertebral disc tissue analogue with a highly aligned annulus fibrosus via suspended layer additive manufacture

SR Moxon, Z McMurran, MJ Kibble, M Domingos… - …, 2024 - iopscience.iop.org
Intervertebral disc (IVD) function is achieved through integration of its two component
regions: the nucleus pulposus (NP) and the annulus fibrosus (AF). The NP is soft (0.3–5 …

Microgels and Granular Gels: From Injectable Scaffolds and Bioinks to 3D Printing Supports

J Kajtez - JoVE (Journal of Visualized Experiments), 2023 - jove.com
ARTICLES DISCUSSED: Muir, VG, Prendergast, ME, Burdick, JA Fragmenting bulk
hydrogels and processing into granular hydrogels for biomedical applications. Journal of …

Author Spotlight: Development of Homogeneous Kappa-Carrageenan Sub-Microgel Baths for High-Resolution 3D Bioprinting

H Zhang, T Zhu, Y Luo, R Xu, G Li, Z Hu, X Cao… - JoVE (Journal of …, 2024 - jove.com
Embedded three-dimensional (3D) bioprinting utilizing a granular hydrogel supporting bath
has emerged as a critical technique for creating biomimetic scaffolds. However, engineering …