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Changes to Extender, Cryoprotective Medium, and In Vitro Fertilization Improve Zebrafish Sperm Cryopreservation

Sperm cryopreservation is a highly efficient method for preserving genetic resources. It extends the reproductive period of males and significantly reduces costs normally associated with maintenance of live animal colonies. However, previous zebrafish (Danio rerio) cryopreservation methods have prod...

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Autores principales: Matthews, Jennifer L., Murphy, Joy M., Carmichael, Carrie, Yang, Huiping, Tiersch, Terrence, Westerfield, Monte, Varga, Zoltan M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Mary Ann Liebert, Inc. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5985902/
https://www.ncbi.nlm.nih.gov/pubmed/29369744
http://dx.doi.org/10.1089/zeb.2017.1521
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author Matthews, Jennifer L.
Murphy, Joy M.
Carmichael, Carrie
Yang, Huiping
Tiersch, Terrence
Westerfield, Monte
Varga, Zoltan M.
author_facet Matthews, Jennifer L.
Murphy, Joy M.
Carmichael, Carrie
Yang, Huiping
Tiersch, Terrence
Westerfield, Monte
Varga, Zoltan M.
author_sort Matthews, Jennifer L.
collection PubMed
description Sperm cryopreservation is a highly efficient method for preserving genetic resources. It extends the reproductive period of males and significantly reduces costs normally associated with maintenance of live animal colonies. However, previous zebrafish (Danio rerio) cryopreservation methods have produced variable outcomes and low post-thaw fertilization rates. To improve post-thaw fertilization rates after cryopreservation, we developed a new extender and cryoprotective medium (CPM), introduced quality assessment (QA), determined the optimal cooling rate, and improved the post-thaw in vitro fertilization process. We found that the hypertonic extender E400 preserved motility of sperm held on ice for at least 6 h. We implemented QA by measuring sperm cell densities with a NanoDrop spectrophotometer and sperm motility with computer-assisted sperm analysis (CASA). We developed a CPM, RMMB, which contains raffinose, skim milk, methanol, and bicine buffer. Post-thaw motility indicated that the optimal cooling rate in two types of cryogenic vials was between 10 and 15°C/min. Test thaws from this method produced average motility of 20% ± 13% and an average post-thaw fertilization rate of 68% ± 16%.
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spelling pubmed-59859022018-06-05 Changes to Extender, Cryoprotective Medium, and In Vitro Fertilization Improve Zebrafish Sperm Cryopreservation Matthews, Jennifer L. Murphy, Joy M. Carmichael, Carrie Yang, Huiping Tiersch, Terrence Westerfield, Monte Varga, Zoltan M. Zebrafish Fish Haus Sperm cryopreservation is a highly efficient method for preserving genetic resources. It extends the reproductive period of males and significantly reduces costs normally associated with maintenance of live animal colonies. However, previous zebrafish (Danio rerio) cryopreservation methods have produced variable outcomes and low post-thaw fertilization rates. To improve post-thaw fertilization rates after cryopreservation, we developed a new extender and cryoprotective medium (CPM), introduced quality assessment (QA), determined the optimal cooling rate, and improved the post-thaw in vitro fertilization process. We found that the hypertonic extender E400 preserved motility of sperm held on ice for at least 6 h. We implemented QA by measuring sperm cell densities with a NanoDrop spectrophotometer and sperm motility with computer-assisted sperm analysis (CASA). We developed a CPM, RMMB, which contains raffinose, skim milk, methanol, and bicine buffer. Post-thaw motility indicated that the optimal cooling rate in two types of cryogenic vials was between 10 and 15°C/min. Test thaws from this method produced average motility of 20% ± 13% and an average post-thaw fertilization rate of 68% ± 16%. Mary Ann Liebert, Inc. 2018-06-01 2018-06-01 /pmc/articles/PMC5985902/ /pubmed/29369744 http://dx.doi.org/10.1089/zeb.2017.1521 Text en © Jennifer L. Matthews et al. 2018; Published by Mary Ann Liebert, Inc. This Open Access article is distributed under the terms of the Creative Commons License (http://creativecommons.org/licenses/by/4.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Fish Haus
Matthews, Jennifer L.
Murphy, Joy M.
Carmichael, Carrie
Yang, Huiping
Tiersch, Terrence
Westerfield, Monte
Varga, Zoltan M.
Changes to Extender, Cryoprotective Medium, and In Vitro Fertilization Improve Zebrafish Sperm Cryopreservation
title Changes to Extender, Cryoprotective Medium, and In Vitro Fertilization Improve Zebrafish Sperm Cryopreservation
title_full Changes to Extender, Cryoprotective Medium, and In Vitro Fertilization Improve Zebrafish Sperm Cryopreservation
title_fullStr Changes to Extender, Cryoprotective Medium, and In Vitro Fertilization Improve Zebrafish Sperm Cryopreservation
title_full_unstemmed Changes to Extender, Cryoprotective Medium, and In Vitro Fertilization Improve Zebrafish Sperm Cryopreservation
title_short Changes to Extender, Cryoprotective Medium, and In Vitro Fertilization Improve Zebrafish Sperm Cryopreservation
title_sort changes to extender, cryoprotective medium, and in vitro fertilization improve zebrafish sperm cryopreservation
topic Fish Haus
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5985902/
https://www.ncbi.nlm.nih.gov/pubmed/29369744
http://dx.doi.org/10.1089/zeb.2017.1521
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