Engineering Biomaterials to Model Immune‐Tumor Interactions In Vitro

Author:

Skirzynska Arianna12ORCID,Xue Chang23,Shoichet Molly S.1234ORCID

Affiliation:

1. Chemical Engineering and Applied Chemistry University of Toronto 200 College Street Toronto ON M5S 3E5 Canada

2. Terrence Donnelly Centre for Cellular & Biomolecular Research University of Toronto 160 College St Toronto ON M5S 3E1 Canada

3. Institute for Biomedical Engineering University of Toronto 164 College Street Toronto ON M5S 3G9 Canada

4. Department of Chemistry University of Toronto 80 College Street Toronto ON M5S 3H4 Canada

Abstract

AbstractEngineered biomaterial scaffolds are becoming more prominent in research laboratories to study drug efficacy for oncological applications in vitro, but do they have a place in pharmaceutical drug screening pipelines? The low efficacy of cancer drugs in phase II/III clinical trials suggests that there are critical mechanisms not properly accounted for in the pre‐clinical evaluation of drug candidates. Immune cells associated with the tumor may account for some of these failures given recent successes with cancer immunotherapies; however, there are few representative platforms to study immune cells in the context of cancer as traditional 2D culture is typically monocultures and humanized animal models have a weakened immune composition. Biomaterials that replicate tumor microenvironmental cues may provide a more relevant model with greater in vitro complexity. In this review, the authors explore the pertinent microenvironmental cues that drive tumor progression in the context of the immune system, discuss how these cues can be incorporated into hydrogel design to culture immune cells, and describe progress toward precision oncological drug screening with engineered tissues.

Publisher

Wiley

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