4.7 Review

Bioprinting for cancer research

Journal

TRENDS IN BIOTECHNOLOGY
Volume 33, Issue 9, Pages 504-513

Publisher

ELSEVIER SCIENCE LONDON
DOI: 10.1016/j.tibtech.2015.06.007

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Funding

  1. UConn Research Excellence Program Award

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Bioprinting offers the ability to create highly complex 3D architectures with living cells. This cutting-edge technique has significantly gained popularity and applicability in several fields. Bioprinting methods have been developed to effectively and rapidly pattern living cells, biological macromolecules, and biomaterials. These technologies hold great potential for applications in cancer research. Bioprinted cancer models represent a significant improvement over previous 2D models by mimicking 3D complexity and facilitating physiologically relevant cell-cell and cell-matrix interactions. Here we review bioprinting methods based on inkjet, microextrusion, and laser technologies and compare 3D cancer models with 2D cancer models. We discuss bioprinted models that mimic the tumor microenvironment, providing a platform for deeper understanding of cancer pathology, anticancer drug screening, and cancer treatment development.

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