作者
Cesar R Alcala-Orozco, Isha Mutreja, Xiaolin Cui, Dhiraj Kumar, Gary J Hooper, Khoon S Lim, Tim BF Woodfield
发表日期
2020/6/1
期刊
Bioprinting
卷号
18
页码范围
e00073
出版商
Elsevier
简介
3D bioprinting of constructs for tissue engineering and regenerative medicine has steadily gained attention due to its potential to fabricate anatomically-precise living constructs, localise specific cell types and enable the regeneration of functional tissues in a clinical setting. However, the limited availability of bioinks that can be successfully 3D bioprinted with high fidelity and simultaneously provide encapsulated cells with a tailored, low-stiffness microenvironment supporting functional tissue formation remains an unmet challenge. To address both the physical and biological limitations of available bioinks, this study aimed to develop a nanocomposite bioink (Sr-GelMA) comprising of strontium-carbonate (Sr) nanoparticles and low concentration (5 w/v%) gelatin-methacryloyl (GelMA) hydrogel for extrusion-based 3D bioprinting of low-stiffness cell-laden scaffolds with high shape fidelity and bone-specific cell …
引用总数
2020202120222023202491824129