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Boar Sperm Cryopreservation Improvement Using Semen Extender Modification by Dextran and Pentaisomaltose

SIMPLE SUMMARY: Cryopreservation of sperm is an important process used in livestock breeding. It is used to facilitate artificial insemination and helps to maintain genetic diversity by utilizing storage in cryobanks. Boar sperm are extremely sensitive to the conditions present during cryopreservati...

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Autores principales: Simonik, Ondrej, Bubenickova, Filipa, Tumova, Lucie, Frolikova, Michaela, Sur, Vishma Pratap, Beran, Jan, Havlikova, Katerina, Hackerova, Lenka, Spevakova, Daniela, Komrskova, Katerina, Postlerova, Pavla
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
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Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8997129/
https://www.ncbi.nlm.nih.gov/pubmed/35405857
http://dx.doi.org/10.3390/ani12070868
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author Simonik, Ondrej
Bubenickova, Filipa
Tumova, Lucie
Frolikova, Michaela
Sur, Vishma Pratap
Beran, Jan
Havlikova, Katerina
Hackerova, Lenka
Spevakova, Daniela
Komrskova, Katerina
Postlerova, Pavla
author_facet Simonik, Ondrej
Bubenickova, Filipa
Tumova, Lucie
Frolikova, Michaela
Sur, Vishma Pratap
Beran, Jan
Havlikova, Katerina
Hackerova, Lenka
Spevakova, Daniela
Komrskova, Katerina
Postlerova, Pavla
author_sort Simonik, Ondrej
collection PubMed
description SIMPLE SUMMARY: Cryopreservation of sperm is an important process used in livestock breeding. It is used to facilitate artificial insemination and helps to maintain genetic diversity by utilizing storage in cryobanks. Boar sperm are extremely sensitive to the conditions present during cryopreservation. Glycerol is the most used permeable cryoprotectant, showing both protective activity and some level of sperm toxicity. To improve the insemination rates, it is necessary to develop new cryoprotective agents. The goal of this paper is to evaluate the effect of the highly biocompatible, non-toxic polysaccharides dextran and pentaisomaltose on the cryopreservation of boar sperm. Additionally, we used computational modeling for the prediction of their cryoprotective action through interaction with selected sperm surface proteins. Our results show a lower impact of cryopreservation on sperm qualitative parameters when the extender is modified by pentaisomaltose. This approach represents a promising option for the complete removal of toxic glycerol in cryopreservation. ABSTRACT: The long-term storage of boar sperm presents an ongoing challenge, and the modification of the cryoprotective compounds in semen extenders is crucial for improving cryopreservation’s success rate. The aim of our study was to reduce the percentage of glycerol in the extender by elimination or substitution with biocompatible, non-toxic polysaccharides. For boar semen extender improvement, we tested a novel modification with the polysaccharides dextran and pentaisomaltose in combination with unique in silico predictive modeling. We targeted the analysis of in vitro qualitative sperm parameters such as motility, viability, mitochondrial activity, acrosome integrity, and DNA integrity. Non-penetrating polysaccharide-based cryoprotective agents interact with sperm surface proteins such as spermadhesins, which are recognized as fertility markers of boar sperm quality. The in silico docking study showed a moderate binding affinity of dextran and pentaisomaltose toward one specific spermadhesin known as AWN, which is located in the sperm plasma membrane. Pentaisomaltose formed a hydrophobic pocket for the AWN protein, and the higher energy of this protein–ligand complex compared with dextran was calculated. In addition, the root mean square deviation (RMSD) analysis for the molecular dynamics (MD) of both polysaccharides and AWN simulation suggests their interaction was highly stable. The in silico results were supported by in vitro experiments. In the experimental groups where glycerol was partially or entirely substituted, the use of pentaisomaltose resulted in improved sperm mitochondrial activity and DNA integrity after thawing when compared with dextran. In this paper, we demonstrate that pentaisomaltose, previously used for cryopreservation in hematopoietic stem cells, represents a promising compound for the elimination or reduction of glycerol in extenders for boar semen cryopreservation. This novel approach, using in silico computer prediction and in vitro testing, represents a promising technique to help identify new cryoprotectants for use in animal breeding or genetic resource programs.
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spelling pubmed-89971292022-04-12 Boar Sperm Cryopreservation Improvement Using Semen Extender Modification by Dextran and Pentaisomaltose Simonik, Ondrej Bubenickova, Filipa Tumova, Lucie Frolikova, Michaela Sur, Vishma Pratap Beran, Jan Havlikova, Katerina Hackerova, Lenka Spevakova, Daniela Komrskova, Katerina Postlerova, Pavla Animals (Basel) Article SIMPLE SUMMARY: Cryopreservation of sperm is an important process used in livestock breeding. It is used to facilitate artificial insemination and helps to maintain genetic diversity by utilizing storage in cryobanks. Boar sperm are extremely sensitive to the conditions present during cryopreservation. Glycerol is the most used permeable cryoprotectant, showing both protective activity and some level of sperm toxicity. To improve the insemination rates, it is necessary to develop new cryoprotective agents. The goal of this paper is to evaluate the effect of the highly biocompatible, non-toxic polysaccharides dextran and pentaisomaltose on the cryopreservation of boar sperm. Additionally, we used computational modeling for the prediction of their cryoprotective action through interaction with selected sperm surface proteins. Our results show a lower impact of cryopreservation on sperm qualitative parameters when the extender is modified by pentaisomaltose. This approach represents a promising option for the complete removal of toxic glycerol in cryopreservation. ABSTRACT: The long-term storage of boar sperm presents an ongoing challenge, and the modification of the cryoprotective compounds in semen extenders is crucial for improving cryopreservation’s success rate. The aim of our study was to reduce the percentage of glycerol in the extender by elimination or substitution with biocompatible, non-toxic polysaccharides. For boar semen extender improvement, we tested a novel modification with the polysaccharides dextran and pentaisomaltose in combination with unique in silico predictive modeling. We targeted the analysis of in vitro qualitative sperm parameters such as motility, viability, mitochondrial activity, acrosome integrity, and DNA integrity. Non-penetrating polysaccharide-based cryoprotective agents interact with sperm surface proteins such as spermadhesins, which are recognized as fertility markers of boar sperm quality. The in silico docking study showed a moderate binding affinity of dextran and pentaisomaltose toward one specific spermadhesin known as AWN, which is located in the sperm plasma membrane. Pentaisomaltose formed a hydrophobic pocket for the AWN protein, and the higher energy of this protein–ligand complex compared with dextran was calculated. In addition, the root mean square deviation (RMSD) analysis for the molecular dynamics (MD) of both polysaccharides and AWN simulation suggests their interaction was highly stable. The in silico results were supported by in vitro experiments. In the experimental groups where glycerol was partially or entirely substituted, the use of pentaisomaltose resulted in improved sperm mitochondrial activity and DNA integrity after thawing when compared with dextran. In this paper, we demonstrate that pentaisomaltose, previously used for cryopreservation in hematopoietic stem cells, represents a promising compound for the elimination or reduction of glycerol in extenders for boar semen cryopreservation. This novel approach, using in silico computer prediction and in vitro testing, represents a promising technique to help identify new cryoprotectants for use in animal breeding or genetic resource programs. MDPI 2022-03-30 /pmc/articles/PMC8997129/ /pubmed/35405857 http://dx.doi.org/10.3390/ani12070868 Text en © 2022 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
Simonik, Ondrej
Bubenickova, Filipa
Tumova, Lucie
Frolikova, Michaela
Sur, Vishma Pratap
Beran, Jan
Havlikova, Katerina
Hackerova, Lenka
Spevakova, Daniela
Komrskova, Katerina
Postlerova, Pavla
Boar Sperm Cryopreservation Improvement Using Semen Extender Modification by Dextran and Pentaisomaltose
title Boar Sperm Cryopreservation Improvement Using Semen Extender Modification by Dextran and Pentaisomaltose
title_full Boar Sperm Cryopreservation Improvement Using Semen Extender Modification by Dextran and Pentaisomaltose
title_fullStr Boar Sperm Cryopreservation Improvement Using Semen Extender Modification by Dextran and Pentaisomaltose
title_full_unstemmed Boar Sperm Cryopreservation Improvement Using Semen Extender Modification by Dextran and Pentaisomaltose
title_short Boar Sperm Cryopreservation Improvement Using Semen Extender Modification by Dextran and Pentaisomaltose
title_sort boar sperm cryopreservation improvement using semen extender modification by dextran and pentaisomaltose
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8997129/
https://www.ncbi.nlm.nih.gov/pubmed/35405857
http://dx.doi.org/10.3390/ani12070868
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