Beyond 2D cell cultures: how 3D models are changing the in vitro study of ovarian cancer and how to make the most of them

Author:

Cortesi Marilisa12,Warton Kristina1,Ford Caroline E.1

Affiliation:

1. School of Clinical Medicine, University of New South Wales, Sydney, New South Wales, Australia

2. Department of Electrical Electronic and Information Engineering “G. Marconi”, University of Bologna, Cesena, Italy

Abstract

3D cell cultures are a fundamental tool in ovarian cancer research that can enable more effective study of the main features of this lethal disease, including the high rates of recurrence and chemoresistance. A clearer, more comprehensive understanding of the biological underpinnings of these phenomena could aid the development of more effective treatments thus improving patient outcomes. Selecting the most appropriate model to investigate the different aspects of cell biology that are relevant to cancer is challenging, especially since the assays available for the study of 3D cultures are not fully established yet. To maximise the usefulness of 3D cell cultures of ovarian cancer, we undertook an in-depth review of the currently available models, taking into consideration the strengths and limitations of each approach and of the assay techniques used to evaluate the results. This integrated analysis provides insight into which model-assay pair is best suited to study different parameters of ovarian cancer biology such as cell proliferation, gene expression or treatment response. We also describe how the combined use of multiple models is likely to be the most effective strategy for the in vitro characterisation of complex behaviours.

Funder

European Union’s Horizon 2020 Research and Innovation Programme

Publisher

PeerJ

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