Progress in 3D bioprinting technology for tissue/organ regenerative engineering

I Matai, G Kaur, A Seyedsalehi, A McClinton… - Biomaterials, 2020 - Elsevier
Escalating cases of organ shortage and donor scarcity worldwide are alarming reminders of
the need for alternatives to allograft tissues. Within the last three decades, research efforts in …

Natural hydrogel-based bio-inks for 3D bioprinting in tissue engineering: a review

A Fatimi, OV Okoro, D Podstawczyk, J Siminska-Stanny… - Gels, 2022 - mdpi.com
Three-dimensional (3D) printing is well acknowledged to constitute an important technology
in tissue engineering, largely due to the increasing global demand for organ replacement …

Opportunities and challenges of translational 3D bioprinting

SV Murphy, P De Coppi, A Atala - Nature biomedical engineering, 2020 - nature.com
Abstract 3D-printed orthopaedic devices and surgical tools, printed maxillofacial implants
and other printed acellular devices have been used in patients. By contrast, bioprinted living …

Bioinks for 3D bioprinting: an overview

PS Gungor-Ozkerim, I Inci, YS Zhang… - Biomaterials …, 2018 - pubs.rsc.org
Bioprinting is an emerging technology with various applications in making functional tissue
constructs to replace injured or diseased tissues. It is a relatively new approach that …

[HTML][HTML] Bioinks and bioprinting technologies to make heterogeneous and biomimetic tissue constructs

N Ashammakhi, S Ahadian, C Xu, H Montazerian… - Materials Today Bio, 2019 - Elsevier
The native tissues are complex structures consisting of different cell types, extracellular
matrix materials, and biomolecules. Traditional tissue engineering strategies have not been …

3-D bioprinting technologies in tissue engineering and regenerative medicine: Current and future trends

ES Bishop, S Mostafa, M Pakvasa, HH Luu, MJ Lee… - Genes & diseases, 2017 - Elsevier
Advances in three-dimensional (3D) printing have increased feasibility towards the
synthesis of living tissues. Known as 3D bioprinting, this technology involves the precise …

The bioink: A comprehensive review on bioprintable materials

M Hospodiuk, M Dey, D Sosnoski, IT Ozbolat - Biotechnology advances, 2017 - Elsevier
This paper discusses “bioink”, bioprintable materials used in three dimensional (3D)
bioprinting processes, where cells and other biologics are deposited in a spatially controlled …

3D bioprinting of low-concentration cell-laden gelatin methacrylate (GelMA) bioinks with a two-step cross-linking strategy

J Yin, M Yan, Y Wang, J Fu, H Suo - ACS applied materials & …, 2018 - ACS Publications
Methacrylated gelatin (GelMA) has been widely used as a tissue-engineered scaffold
material, but only low-concentration GelMA hydrogels were found to be promising cell-laden …

Responsive biomaterials for 3D bioprinting: A review

Z Fu, L Ouyang, R Xu, Y Yang, W Sun - Materials Today, 2022 - Elsevier
Abstract Three-dimensional (3D) bioprinting enables a controlled deposition of cells,
biomaterials, and biological compounds (ie, bioinks) to build complex 3D biological models …

Bioink properties before, during and after 3D bioprinting

K Hölzl, S Lin, L Tytgat, S Van Vlierberghe, L Gu… - …, 2016 - iopscience.iop.org
Bioprinting is a process based on additive manufacturing from materials containing living
cells. These materials, often referred to as bioink, are based on cytocompatible hydrogel …