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Cryopreservation and Rapid Recovery of Differentiated Intestinal Epithelial Barrier Cells at Complex Transwell Interfaces Is Enabled by Chemically Induced Ice Nucleation.
Bissoyi, Akalabya; Gao, Yanan; Tomás, Ruben M F; Kinney, Nina L H; Whale, Thomas F; Guo, Qiongyu; Gibson, Matthew I.
Afiliação
  • Bissoyi A; Department of Chemistry, University of Manchester, Oxford Road, Manchester M13 9PL, U.K.
  • Gao Y; Manchester Institute of Biotechnology, University of Manchester, 131 Princess Street, Manchester M1 7DN, U.K.
  • Tomás RMF; Department of Chemistry, University of Warwick, Coventry CV4 7AL, U.K.
  • Kinney NLH; Department of Biomedical Engineering, Southern University of Science and Technology, Shenzhen, Guangdong 518055, China.
  • Whale TF; Cryologyx Ltd, Venture Centre, University of Warwick Science Park, Coventry CV4 7EZ, U.K.
  • Guo Q; Department of Chemistry, University of Warwick, Coventry CV4 7AL, U.K.
  • Gibson MI; Royal Botanic Gardens Kew, Ardingly, West Sussex RH17 6TN, U.K.
Article em En | MEDLINE | ID: mdl-38671549
ABSTRACT
Cell-based models, such as organ-on-chips, can replace and inform in vivo (animal) studies for drug discovery, toxicology, and biomedical science, but most cannot be banked "ready to use" as they do not survive conventional cryopreservation with DMSO alone. Here, we demonstrate how macromolecular ice nucleators enable the successful cryopreservation of epithelial intestinal models supported upon the interface of transwells, allowing recovery of function in just 7 days post-thaw directly from the freezer, compared to 21 days from conventional suspension cryopreservation. Caco-2 cells and Caco-2/HT29-MTX cocultures are cryopreserved on transwell inserts, with chemically induced ice nucleation at warmer temperatures resulting in increased cell viability but crucially retaining the complex cellular adhesion on the transwell insert interfaces, which other cryoprotectants do not. Trans-epithelial electrical resistance measurements, confocal microscopy, histology, and whole-cell proteomics demonstrated the rapid recovery of differentiated cell function, including the formation of tight junctions. Lucifer yellow permeability assays confirmed that the barrier functions of the cells were intact. This work will help solve the long-standing problem of transwell tissue barrier model storage, facilitating access to advanced predictive cellular models. This is underpinned by precise control of the nucleation temperature, addressing a crucial biophysical mode of damage.
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Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2024 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2024 Tipo de documento: Article