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Cryopreservation of the Microalgae Scenedesmus sp.

Each phytoplankton species presents a different behavior and tolerance to the cryopreservation process. Therefore, in a species-specific protocol, it is essential to ensure both growth and post-thawing cell viability. In this study, we explored the effect of cryopreservation of Scenedesmus sp. with...

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Autores principales: Prieto-Guevara, Martha, Alarcón-Furnieles, Jany, Jiménez-Velásquez, César, Hernández-Julio, Yamid, Espinosa-Araujo, José, Atencio-García, Víctor
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9954032/
https://www.ncbi.nlm.nih.gov/pubmed/36831229
http://dx.doi.org/10.3390/cells12040562
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author Prieto-Guevara, Martha
Alarcón-Furnieles, Jany
Jiménez-Velásquez, César
Hernández-Julio, Yamid
Espinosa-Araujo, José
Atencio-García, Víctor
author_facet Prieto-Guevara, Martha
Alarcón-Furnieles, Jany
Jiménez-Velásquez, César
Hernández-Julio, Yamid
Espinosa-Araujo, José
Atencio-García, Víctor
author_sort Prieto-Guevara, Martha
collection PubMed
description Each phytoplankton species presents a different behavior and tolerance to the cryopreservation process. Therefore, in a species-specific protocol, it is essential to ensure both growth and post-thawing cell viability. In this study, we explored the effect of cryopreservation of Scenedesmus sp. with two cryoprotectants, dimethyl sulfoxide (DMSO) and methanol (MET), at 5% and 10% inclusion for each. In the control treatment, the microalgae were not exposed to cryoprotective agents (Control). Three post-thawing cell viability criteria were used: no cell damage (NCD), cell damage (CD), and marked lesions (LM), and mitochondrial and cell membrane damage was evaluated by flow cytometry. The study was a 2 × 2 factorial design, with five replications by treatments, population growth, and cell damage evaluated from the fifth day after thawing. On the fifth day, the highest percentage of NCD was observed when the microalgae were cryopreserved with DMSO 5% (50%); Regarding the control group, it showed 0% NCD. Flow cytometry analysis reveals minor damage at the membrane and mitochondria (9–10.7%) when DMSO is used at both inclusion percentages (5–10%) after thawing. In the exponential phase, the highest growth rates, doubling time, and yield was observed in cryopreserved cells with MET 5%. The results suggest that DMSO 5% is an ideal treatment for cryopreserving microalgae Scenedesmus sp.
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spelling pubmed-99540322023-02-25 Cryopreservation of the Microalgae Scenedesmus sp. Prieto-Guevara, Martha Alarcón-Furnieles, Jany Jiménez-Velásquez, César Hernández-Julio, Yamid Espinosa-Araujo, José Atencio-García, Víctor Cells Article Each phytoplankton species presents a different behavior and tolerance to the cryopreservation process. Therefore, in a species-specific protocol, it is essential to ensure both growth and post-thawing cell viability. In this study, we explored the effect of cryopreservation of Scenedesmus sp. with two cryoprotectants, dimethyl sulfoxide (DMSO) and methanol (MET), at 5% and 10% inclusion for each. In the control treatment, the microalgae were not exposed to cryoprotective agents (Control). Three post-thawing cell viability criteria were used: no cell damage (NCD), cell damage (CD), and marked lesions (LM), and mitochondrial and cell membrane damage was evaluated by flow cytometry. The study was a 2 × 2 factorial design, with five replications by treatments, population growth, and cell damage evaluated from the fifth day after thawing. On the fifth day, the highest percentage of NCD was observed when the microalgae were cryopreserved with DMSO 5% (50%); Regarding the control group, it showed 0% NCD. Flow cytometry analysis reveals minor damage at the membrane and mitochondria (9–10.7%) when DMSO is used at both inclusion percentages (5–10%) after thawing. In the exponential phase, the highest growth rates, doubling time, and yield was observed in cryopreserved cells with MET 5%. The results suggest that DMSO 5% is an ideal treatment for cryopreserving microalgae Scenedesmus sp. MDPI 2023-02-09 /pmc/articles/PMC9954032/ /pubmed/36831229 http://dx.doi.org/10.3390/cells12040562 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Prieto-Guevara, Martha
Alarcón-Furnieles, Jany
Jiménez-Velásquez, César
Hernández-Julio, Yamid
Espinosa-Araujo, José
Atencio-García, Víctor
Cryopreservation of the Microalgae Scenedesmus sp.
title Cryopreservation of the Microalgae Scenedesmus sp.
title_full Cryopreservation of the Microalgae Scenedesmus sp.
title_fullStr Cryopreservation of the Microalgae Scenedesmus sp.
title_full_unstemmed Cryopreservation of the Microalgae Scenedesmus sp.
title_short Cryopreservation of the Microalgae Scenedesmus sp.
title_sort cryopreservation of the microalgae scenedesmus sp.
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9954032/
https://www.ncbi.nlm.nih.gov/pubmed/36831229
http://dx.doi.org/10.3390/cells12040562
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