Cryoprotection and banking of living cells in a 3D multiple emulsion-based carrier.

The ability to preserve stem cells/cells with minimal damage for short and long periods of time is essential for advancements in biomedical therapies and biotechnology. New methods of cell banking are continuously needed to provide effective damage prevention to cells. This paper puts forward a solu...

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Main Authors: Dluska, E, Cui, Z, Markowska-Radomska, A, Metera, A, Kosicki, K
Format: Journal article
Language:English
Published: Wiley 2017
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author Dluska, E
Cui, Z
Markowska-Radomska, A
Metera, A
Kosicki, K
author_facet Dluska, E
Cui, Z
Markowska-Radomska, A
Metera, A
Kosicki, K
author_sort Dluska, E
collection OXFORD
description The ability to preserve stem cells/cells with minimal damage for short and long periods of time is essential for advancements in biomedical therapies and biotechnology. New methods of cell banking are continuously needed to provide effective damage prevention to cells. This paper puts forward a solution to the problem of the low viability of cells during cryopreservation in a traditional suspension and storage by developing innovative multiple emulsion‐based carriers for the encapsulation and cryopreservation of cells. During freezing‐thawing processes, irreversible damage to cells occurs as a result of the formation of ice crystals, cell dehydration, and the toxicity of cryoprotectant. The proposed method was effective due to the “flexible” protective structure of multiple emulsions, which was proven by a high cell survival rate, above 90%. Results make new contributions in the fields of cell engineering and biotechnology and contribute to the development of methods for banking biological material.
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spelling oxford-uuid:f40e2d70-36ad-4628-be42-651f2eadf2862022-03-27T12:16:56ZCryoprotection and banking of living cells in a 3D multiple emulsion-based carrier.Journal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:f40e2d70-36ad-4628-be42-651f2eadf286EnglishSymplectic ElementsWiley2017Dluska, ECui, ZMarkowska-Radomska, AMetera, AKosicki, KThe ability to preserve stem cells/cells with minimal damage for short and long periods of time is essential for advancements in biomedical therapies and biotechnology. New methods of cell banking are continuously needed to provide effective damage prevention to cells. This paper puts forward a solution to the problem of the low viability of cells during cryopreservation in a traditional suspension and storage by developing innovative multiple emulsion‐based carriers for the encapsulation and cryopreservation of cells. During freezing‐thawing processes, irreversible damage to cells occurs as a result of the formation of ice crystals, cell dehydration, and the toxicity of cryoprotectant. The proposed method was effective due to the “flexible” protective structure of multiple emulsions, which was proven by a high cell survival rate, above 90%. Results make new contributions in the fields of cell engineering and biotechnology and contribute to the development of methods for banking biological material.
spellingShingle Dluska, E
Cui, Z
Markowska-Radomska, A
Metera, A
Kosicki, K
Cryoprotection and banking of living cells in a 3D multiple emulsion-based carrier.
title Cryoprotection and banking of living cells in a 3D multiple emulsion-based carrier.
title_full Cryoprotection and banking of living cells in a 3D multiple emulsion-based carrier.
title_fullStr Cryoprotection and banking of living cells in a 3D multiple emulsion-based carrier.
title_full_unstemmed Cryoprotection and banking of living cells in a 3D multiple emulsion-based carrier.
title_short Cryoprotection and banking of living cells in a 3D multiple emulsion-based carrier.
title_sort cryoprotection and banking of living cells in a 3d multiple emulsion based carrier
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AT markowskaradomskaa cryoprotectionandbankingoflivingcellsina3dmultipleemulsionbasedcarrier
AT meteraa cryoprotectionandbankingoflivingcellsina3dmultipleemulsionbasedcarrier
AT kosickik cryoprotectionandbankingoflivingcellsina3dmultipleemulsionbasedcarrier