Litcius/Paper detail

A rapid high throughput bioprinted colorectal cancer spheroid platform for in vitro drug- and radiation-response

Peter Johnson, Sara Menegatti, A Chambers, Dominic Alibhai, T J Collard, Ann C. Williams, Hagan Bayley, Adam W. Perriman

2022Biofabrication15 citationsDOIOpen Access PDF

Abstract

We describe the development of a high-throughput bioprinted colorectal cancer (CRC) spheroid platform with high levels of automation, information content, and low cell number requirement. This is achieved via the formulation of a hydrogel bioink with a compressive Young's modulus that is commensurate with that of colonic tissue (1-3 kPa), which supports exponential growth of spheroids from a wide range of CRC cell lines. The resulting spheroids display tight cell-cell junctions, bioink matrix-cell interactions and necrotic hypoxic cores. By combining high content light microscopy imaging and processing with rapid multiwell plate bioprinting, dose-response profiles are generated from CRC spheroids challenged with oxaliplatin (OX) and fluorouracil (5FU), as well as radiotherapy. Bioprinted CRC spheroids are shown to exhibit high levels of chemoresistance relative to cell monolayers, and OX was found to be significantly less effective against tumour spheroids than in monolayer culture, when compared to 5FU.

Topics & Concepts

SpheroidColorectal cancer3D cell cultureBiomedical engineeringCellMaterials scienceIn vitroCancer researchChemistryCancerBiologyMedicineBiochemistryGenetics3D Printing in Biomedical ResearchCancer Cells and MetastasisCell Image Analysis Techniques