Recent advances in 3D printing for in vitro cancer models

Author:

Zhang Bin12ORCID,Morgan Meagan3ORCID,Teoh Xin Yi4ORCID,Mackay Ruth12ORCID,Ermler Sibylle25ORCID,Narayan Roger3ORCID

Affiliation:

1. Department of Mechanical and Aerospace Engineering, Brunel University London 1 , London, United Kingdom

2. Centre for Genome Engineering and Maintenance, Brunel University 2 , London, United Kingdom

3. Joint Department of Biomedical Engineering, University of North Carolina and North Carolina State University 3 , Raleigh, North Carolina 27606, USA

4. School of Pharmacy, University College London 4 , London, United Kingdom

5. Department of Life Sciences, Brunel University London 5 , London, United Kingdom

Abstract

3D printing techniques allow for the precise placement of living cells, biological substances, and biochemical components, establishing themselves as a promising approach in bioengineering. Recently, 3D printing has been applied to develop human-relevant in vitro cancer models with highly controlled complexity and as a potential method for drug screening and disease modeling. Compared to 2D culture, 3D-printed in vitro cancer models more closely replicate the in vivo microenvironment. Additionally, they offer a reduction in the complexity and ethical issues associated with using in vivo animal models. This focused review discusses the relevance of 3D printing technologies and the applied cells and materials used in cutting-edge in vitro cancer models and microfluidic device systems. Future prospective solutions were discussed to establish 3D-printed in vitro models as reliable tools for drug screening and understanding cancer disease mechanisms.

Funder

Brunel University London

Publisher

AIP Publishing

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