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  5. Cryopreservation and Rapid Recovery of Differentiated Intestinal Epithelial Barrier Cells at Complex Transwell Interfaces Is Enabled by Chemically Induced Ice Nucleation.

Cryopreservation and Rapid Recovery of Differentiated Intestinal Epithelial Barrier Cells at Complex Transwell Interfaces Is Enabled by Chemically Induced Ice Nucleation.

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Resource type
Journal article
Creator (person)
Bissoyi, Akalabya
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Gao, Yanan
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Tomás, Ruben M. F.
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Kinney, Nina L. H.
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Whale, Thomas F.
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Guo, Qiongyu
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Gibson, Matthew I.
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Date published
April 26, 2024
Funder
Funder nameAwards
Royal Society, United Kingdom / Cytivia, United Kingdom
Industry Fellowship (191037)
Leverhulme Trust, United Kingdom
Early Career Fellowship (ECF-2018-127)
Innovate UK, United Kingdom / CryoLogyx Ltd.
(10004515)
Natural Environment Research Council, United Kingdom
CENTA Doctoral Training Partnership for a PhD studentship (NE/S007350/1)
Southern University of Science and Technology, China / University of Warwick, United Kingdom
PhD Scholarship
National Natural Science Foundation of China, China
(81971764)
H2020 European Research Council, European Union
Research and innovation program grant agreement no. 866056 - Research and innovation program grant agreement no. 899872
Biotechnology and Biological Sciences Research Council, United Kingdom / University of Warwick, United Kingdom
University of Warwick 2021 Flexible Talent Mobility Account (BB/W510907/1)
Journal title
ACS Applied Materials & Interfaces
Publisher
American Chemical Society (ACS)
Place of publication
Washington, D.C., U.S.
ISSN
1944-8244
eISSN
1944-8252
Date accepted
April 18, 2024
Official URL
https://doi.org/10.1021/acsami.4c03931
Rights statement
In Copyright
Licence
https://creativecommons.org/licenses/by/4.0/
DOI
10.1021/acsami.4c03931
Keywords
Ice
Ice nucleation
Nucleation
Toxicology
Cryopreservation
Caco-2 cells
Additional information
IF = 9.5 (2023-2024)
Managed by the British Library and supported by the AHRC

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