Deep eutectic solvents as cryoprotective agents for mammalian cells.


Journal

Journal of materials chemistry. B
ISSN: 2050-7518
Titre abrégé: J Mater Chem B
Pays: England
ID NLM: 101598493

Informations de publication

Date de publication:
22 06 2022
Historique:
pubmed: 8 6 2022
medline: 25 6 2022
entrez: 7 6 2022
Statut: epublish

Résumé

Cryopreservation has facilitated numerous breakthroughs including assisted reproductive technology, stem cell therapies, and species preservation. Successful cryopreservation requires the addition of cryoprotective agents to protect against freezing damage and dehydration. For decades, cryopreservation has largely relied on the same two primary agents: dimethylsulfoxide and glycerol. However, both of these are toxic which limits their use for cells destined for clinical applications. Furthermore, these two agents are ineffective for hundreds of cell types, and organ and tissue preservation has not been achieved. The research presented here shows that deep eutectic solvents can be used as cryoprotectants. Six deep eutectic solvents were explored for their cryoprotective capacity towards mammalian cells. The solvents were tested for their thermal properties, including glass transitions, toxicity, and permeability into mammalian cells. A deep eutectic solvent made from proline and glycerol was an effective cryoprotective agent for all four cell types tested, even with extended incubation prior to freezing. This deep eutectic solvent was more effective and less toxic than its individual components, highlighting the importance of multi-component systems. Cells were characterised post-thawing using atomic force microscopy and confocal microscopy. Molecular dynamics simulations support the biophysical parameters obtained by experimentation. This is one of the first times that this class of solvents has been systematically tested for cryopreservation of mammalian cells and as such this research opens the way for the development of potentially thousands of new cryoprotective agents that can be tailored to specific cell types. The demonstrated capacity of cells to be incubated with the deep eutectic solvent at 37 °C for hours prior to freezing without significant loss of viability is a major step toward the storage of organs and tissues.

Identifiants

pubmed: 35670530
doi: 10.1039/d2tb00573e
doi:

Substances chimiques

Cryoprotective Agents 0
Deep Eutectic Solvents 0
Solvents 0
Glycerol PDC6A3C0OX

Types de publication

Journal Article Research Support, Non-U.S. Gov't

Langues

eng

Sous-ensembles de citation

IM

Pagination

4546-4560

Auteurs

Saffron J Bryant (SJ)

School of Science, College of STEM, RMIT University, Melbourne, Australia.

Miyah N Awad (MN)

School of Science, College of STEM, RMIT University, Melbourne, Australia.

Aaron Elbourne (A)

School of Science, College of STEM, RMIT University, Melbourne, Australia.

Andrew J Christofferson (AJ)

School of Science, College of STEM, RMIT University, Melbourne, Australia.
ARC Centre of Excellence in Exciton Science, School of Science, College of STEM, RMIT University, Melbourne, Australia. saffron.bryant@rmit.edu.au.

Andrew V Martin (AV)

School of Science, College of STEM, RMIT University, Melbourne, Australia.

Nastaran Meftahi (N)

ARC Centre of Excellence in Exciton Science, School of Science, College of STEM, RMIT University, Melbourne, Australia. saffron.bryant@rmit.edu.au.

Calum J Drummond (CJ)

School of Science, College of STEM, RMIT University, Melbourne, Australia.

Tamar L Greaves (TL)

School of Science, College of STEM, RMIT University, Melbourne, Australia.

Gary Bryant (G)

School of Science, College of STEM, RMIT University, Melbourne, Australia.

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Classifications MeSH