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3D tumor spheroids as in vitro models to mimic in vivo human solid tumors resistance to therapeutic drugs

Biotechnology and Bioengineering · 2018 · Vol. 116(1) · pp. 206–226
Ana S. NunesAndreia S. BarrosElisabete C. CostaAndré F. MoreiraIlídio J. Correia

Abstract

Three-dimensional cell culture models, such as spheroids, can be used in the process of the development of new anticancer agents because they are able to closely mimic the main features of human solid tumors, namely their structural organization, cellular layered assembling, hypoxia, and nutrient gradients. These properties imprint to the spheroids an anticancer therapeutics resistance profile, which is similar to that displayed by human solid tumors. In this review, an overview of the drug resistance mechanisms observed in 3D tumor spheroids is provided. Furthermore, comparisons between the therapeutics resistance profile exhibited by spheroids, and 2D cell cultures are presented. Finally, examples of the therapeutic approaches that have been developed to surpass the drug resistance mechanisms exhibited by spheroids are described.

Cancer Cells and Metastasis3D Printing in Biomedical ResearchCancer, Hypoxia, and MetabolismSpheroidIn vivoIn vitroCell cultureDrug resistanceCellBiologyCancer researchCell biologyBiotechnology

MeSH terms

Antineoplastic AgentsHumansModels, TheoreticalSpheroids, CellularDrug Resistance, NeoplasmCell Line, Tumor

Funding

  • Fundação para a Ciência e a Tecnologia
  • European Regional Development Fund
Citations
676
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214
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