Cryopreservation and Rapid Recovery of Differentiated Intestinal Epithelial Barrier Cells at Complex Transwell Interfaces Is Enabled by Chemically Induced Ice Nucleation.
Name
bissoyi-et-al-2024-cryopreservation-and-rapid-recovery-of-differentiated-intestinal-epithelial-barrier-cells-at-complex.pdf
Description
visibility:open
Size
6.09 MB
Format
Adobe PDF
Checksum (CRC64NVME)
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Resource type
Journal article
Date published
April 26, 2024
Funder
| Funder name | Awards |
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
Rights statement
In Copyright
Additional information
IF = 9.5 (2023-2024)