Three-dimensional bioprinting of stem-cell derived tissues for human regenerative medicine

Author:

Skeldon Gregor12,Lucendo-Villarin Baltasar3,Shu Wenmiao1ORCID

Affiliation:

1. Department of Biomedical Engineering, University of Strathclyde, Glasgow G4 0NW, UK

2. School of Engineering and Physical Sciences, Heriot–Watt University, Edinburgh EH14 4AS, UK

3. MRC Centre for Regenerative Medicine, University of Edinburgh, Edinburgh EH16 4UU, UK

Abstract

Stem cell technology in regenerative medicine has the potential to provide an unlimited supply of cells for drug testing, medical transplantation and academic research. In order to engineer a realistic tissue model using stem cells as an alternative to human tissue, it is essential to create artificial stem cell microenvironment or niches. Three-dimensional (3D) bioprinting is a promising tissue engineering field that offers new opportunities to precisely place stem cells within their niches layer-by-layer. This review covers bioprinting technologies, the current development of ‘bio-inks’ and how bioprinting has already been applied to stem-cell culture, as well as their applications for human regenerative medicine. The key considerations for bioink properties such as stiffness, stability and biodegradation, biocompatibility and printability are highlighted. Bioprinting of both adult and pluriopotent stem cells for various types of artificial tissues from liver to brain has been reviewed. 3D bioprinting of stem-cell derived tissues for human regenerative medicine is an exciting emerging area that represents opportunities for new research, industries and products as well as future challenges in clinical translation. This article is part of the theme issue ‘Designer human tissue: coming to a lab near you’.

Funder

Baillie Gifford & Co. and Heriot-Watt University

Publisher

The Royal Society

Subject

General Agricultural and Biological Sciences,General Biochemistry, Genetics and Molecular Biology

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