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A non-traditional approach to cryopreservation by ultra-rapid cooling for human mesenchymal stem cells

Cryopreservation is the most common method for long-term cell storage. Successful cryopreservation of cells depends on optimal freezing conditions, freezer storage and a proper thawing technique to minimize the cellular damage that can occur during the cryopreservation process. These factors are esp...

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Autores principales: Irdani, Tiziana, Mazzanti, Benedetta, Ballerini, Lara, Saccardi, Riccardo, Torre, Renato
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6645672/
https://www.ncbi.nlm.nih.gov/pubmed/31329628
http://dx.doi.org/10.1371/journal.pone.0220055
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author Irdani, Tiziana
Mazzanti, Benedetta
Ballerini, Lara
Saccardi, Riccardo
Torre, Renato
author_facet Irdani, Tiziana
Mazzanti, Benedetta
Ballerini, Lara
Saccardi, Riccardo
Torre, Renato
author_sort Irdani, Tiziana
collection PubMed
description Cryopreservation is the most common method for long-term cell storage. Successful cryopreservation of cells depends on optimal freezing conditions, freezer storage and a proper thawing technique to minimize the cellular damage that can occur during the cryopreservation process. These factors are especially critical for sensitive stem cells with a consequential and significant impact on viability and functionality. Until now, slow-freezing has been the routine method of cryopreservation but, more recently rapid-cooling techniques have also been proposed. In this study, an ultra-rapid cooling technique [1] was performed for the first time on human mesenchymal stem cells and the effectiveness evaluated in comparison with the conventional slow-freezing procedure. A thin nylon-membrane carrier was used combined with different cryoprotective agents: dimethyl sulfoxide, ethylene glycol and/or trehalose. Various aspects of the low cryoprotective doses and the ultra-rapid cooling procedure of the human mesenchymal stem cells were examined including: the physical properties of the nylon-support, cells encumbrance, viability, proliferation and differentiation. The expression of cell surface markers and apoptosis were also investigated. The study used an ultra-rapid cooling/warming method and showed an overall cell integrity preservation (83–99%), with no significant differences between dimethyl sulfoxide or ethylene glycol treatment (83–87%) and a substantial cell viability of 68% and 51%, respectively. We confirmed a discrepancy also observed by other authors in cell viability and integrity, which implies that caution is necessary when assessing and reporting cell viability data.
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spelling pubmed-66456722019-07-25 A non-traditional approach to cryopreservation by ultra-rapid cooling for human mesenchymal stem cells Irdani, Tiziana Mazzanti, Benedetta Ballerini, Lara Saccardi, Riccardo Torre, Renato PLoS One Research Article Cryopreservation is the most common method for long-term cell storage. Successful cryopreservation of cells depends on optimal freezing conditions, freezer storage and a proper thawing technique to minimize the cellular damage that can occur during the cryopreservation process. These factors are especially critical for sensitive stem cells with a consequential and significant impact on viability and functionality. Until now, slow-freezing has been the routine method of cryopreservation but, more recently rapid-cooling techniques have also been proposed. In this study, an ultra-rapid cooling technique [1] was performed for the first time on human mesenchymal stem cells and the effectiveness evaluated in comparison with the conventional slow-freezing procedure. A thin nylon-membrane carrier was used combined with different cryoprotective agents: dimethyl sulfoxide, ethylene glycol and/or trehalose. Various aspects of the low cryoprotective doses and the ultra-rapid cooling procedure of the human mesenchymal stem cells were examined including: the physical properties of the nylon-support, cells encumbrance, viability, proliferation and differentiation. The expression of cell surface markers and apoptosis were also investigated. The study used an ultra-rapid cooling/warming method and showed an overall cell integrity preservation (83–99%), with no significant differences between dimethyl sulfoxide or ethylene glycol treatment (83–87%) and a substantial cell viability of 68% and 51%, respectively. We confirmed a discrepancy also observed by other authors in cell viability and integrity, which implies that caution is necessary when assessing and reporting cell viability data. Public Library of Science 2019-07-22 /pmc/articles/PMC6645672/ /pubmed/31329628 http://dx.doi.org/10.1371/journal.pone.0220055 Text en © 2019 Irdani et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Irdani, Tiziana
Mazzanti, Benedetta
Ballerini, Lara
Saccardi, Riccardo
Torre, Renato
A non-traditional approach to cryopreservation by ultra-rapid cooling for human mesenchymal stem cells
title A non-traditional approach to cryopreservation by ultra-rapid cooling for human mesenchymal stem cells
title_full A non-traditional approach to cryopreservation by ultra-rapid cooling for human mesenchymal stem cells
title_fullStr A non-traditional approach to cryopreservation by ultra-rapid cooling for human mesenchymal stem cells
title_full_unstemmed A non-traditional approach to cryopreservation by ultra-rapid cooling for human mesenchymal stem cells
title_short A non-traditional approach to cryopreservation by ultra-rapid cooling for human mesenchymal stem cells
title_sort non-traditional approach to cryopreservation by ultra-rapid cooling for human mesenchymal stem cells
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6645672/
https://www.ncbi.nlm.nih.gov/pubmed/31329628
http://dx.doi.org/10.1371/journal.pone.0220055
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