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Influence of hydrogel encapsulation during cryopreservation of ovarian tissues and impact of post-thawing in vitro culture systems in a research animal model

OBJECTIVE: Using domestic cats as a biomedical research model for fertility preservation, the present study aimed to characterize the influences of ovarian tissue encapsulation in biodegradable hydrogel matrix (fibrinogen/thrombin) on resilience to cryopreservation, and static versus non-static cult...

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Autores principales: Thuwanut, Paweena, Comizzoli, Pierre, Pimpin, Alongkorn, Srituravanich, Weerayut, Sereepapong, Wisan, Pruksananonda, Kamthorn, Taweepolcharoen, Charoen, Tuntiviriyapun, Punkavee, Suebthawinkul, Chanakarn, Sirayapiwat, Porntip
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Korean Society for Reproductive Medicine 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8176157/
https://www.ncbi.nlm.nih.gov/pubmed/34024082
http://dx.doi.org/10.5653/cerm.2020.04056
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author Thuwanut, Paweena
Comizzoli, Pierre
Pimpin, Alongkorn
Srituravanich, Weerayut
Sereepapong, Wisan
Pruksananonda, Kamthorn
Taweepolcharoen, Charoen
Tuntiviriyapun, Punkavee
Suebthawinkul, Chanakarn
Sirayapiwat, Porntip
author_facet Thuwanut, Paweena
Comizzoli, Pierre
Pimpin, Alongkorn
Srituravanich, Weerayut
Sereepapong, Wisan
Pruksananonda, Kamthorn
Taweepolcharoen, Charoen
Tuntiviriyapun, Punkavee
Suebthawinkul, Chanakarn
Sirayapiwat, Porntip
author_sort Thuwanut, Paweena
collection PubMed
description OBJECTIVE: Using domestic cats as a biomedical research model for fertility preservation, the present study aimed to characterize the influences of ovarian tissue encapsulation in biodegradable hydrogel matrix (fibrinogen/thrombin) on resilience to cryopreservation, and static versus non-static culture systems following ovarian tissue encapsulation and cryopreservation on follicle quality. METHODS: In experiment I, ovarian tissues (n=21 animals; 567 ovarian fragments) were assigned to controls or hydrogel encapsulation with 5 or 10 mg/mL fibrinogen (5 or 10 FG). Following cryopreservation (slow freezing or vitrification), follicle viability, morphology, density, and key protein phosphorylation were assessed. In experiment II (based on the findings from experiment I), ovarian tissues (n=10 animals; 270 ovarian fragments) were encapsulated with 10 FG, cryopreserved, and in vitro cultured under static or non-static systems for 7 days followed by similar follicle quality assessments. RESULTS: In experiment I, the combination of 10 FG encapsulation/slow freezing led to greater post-thawed follicle quality than in the control group, as shown by follicle viability (66.9%±2.2% vs. 61.5%±3.1%), normal follicle morphology (62.2%±2.1% vs. 55.2%±3.5%), and the relative band intensity of vascular endothelial growth factor protein phosphorylation (0.58±0.06 vs. 0.42±0.09). Experiment II demonstrated that hydrogel encapsulation promoted follicle survival and maintenance of follicle development regardless of the culture system when compared to fresh controls. CONCLUSION: These results provide a better understanding of the role of hydrogel encapsulation and culture systems in ovarian tissue cryopreservation and follicle quality outcomes using an animal model, paving the way for optimized approaches to human fertility preservation.
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spelling pubmed-81761572021-06-15 Influence of hydrogel encapsulation during cryopreservation of ovarian tissues and impact of post-thawing in vitro culture systems in a research animal model Thuwanut, Paweena Comizzoli, Pierre Pimpin, Alongkorn Srituravanich, Weerayut Sereepapong, Wisan Pruksananonda, Kamthorn Taweepolcharoen, Charoen Tuntiviriyapun, Punkavee Suebthawinkul, Chanakarn Sirayapiwat, Porntip Clin Exp Reprod Med Original Article OBJECTIVE: Using domestic cats as a biomedical research model for fertility preservation, the present study aimed to characterize the influences of ovarian tissue encapsulation in biodegradable hydrogel matrix (fibrinogen/thrombin) on resilience to cryopreservation, and static versus non-static culture systems following ovarian tissue encapsulation and cryopreservation on follicle quality. METHODS: In experiment I, ovarian tissues (n=21 animals; 567 ovarian fragments) were assigned to controls or hydrogel encapsulation with 5 or 10 mg/mL fibrinogen (5 or 10 FG). Following cryopreservation (slow freezing or vitrification), follicle viability, morphology, density, and key protein phosphorylation were assessed. In experiment II (based on the findings from experiment I), ovarian tissues (n=10 animals; 270 ovarian fragments) were encapsulated with 10 FG, cryopreserved, and in vitro cultured under static or non-static systems for 7 days followed by similar follicle quality assessments. RESULTS: In experiment I, the combination of 10 FG encapsulation/slow freezing led to greater post-thawed follicle quality than in the control group, as shown by follicle viability (66.9%±2.2% vs. 61.5%±3.1%), normal follicle morphology (62.2%±2.1% vs. 55.2%±3.5%), and the relative band intensity of vascular endothelial growth factor protein phosphorylation (0.58±0.06 vs. 0.42±0.09). Experiment II demonstrated that hydrogel encapsulation promoted follicle survival and maintenance of follicle development regardless of the culture system when compared to fresh controls. CONCLUSION: These results provide a better understanding of the role of hydrogel encapsulation and culture systems in ovarian tissue cryopreservation and follicle quality outcomes using an animal model, paving the way for optimized approaches to human fertility preservation. Korean Society for Reproductive Medicine 2021-06 2021-04-21 /pmc/articles/PMC8176157/ /pubmed/34024082 http://dx.doi.org/10.5653/cerm.2020.04056 Text en Copyright © 2021. THE KOREAN SOCIETY FOR REPRODUCTIVE MEDICINE https://creativecommons.org/licenses/by-nc/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/4.0/ (https://creativecommons.org/licenses/by-nc/4.0/) ) which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Article
Thuwanut, Paweena
Comizzoli, Pierre
Pimpin, Alongkorn
Srituravanich, Weerayut
Sereepapong, Wisan
Pruksananonda, Kamthorn
Taweepolcharoen, Charoen
Tuntiviriyapun, Punkavee
Suebthawinkul, Chanakarn
Sirayapiwat, Porntip
Influence of hydrogel encapsulation during cryopreservation of ovarian tissues and impact of post-thawing in vitro culture systems in a research animal model
title Influence of hydrogel encapsulation during cryopreservation of ovarian tissues and impact of post-thawing in vitro culture systems in a research animal model
title_full Influence of hydrogel encapsulation during cryopreservation of ovarian tissues and impact of post-thawing in vitro culture systems in a research animal model
title_fullStr Influence of hydrogel encapsulation during cryopreservation of ovarian tissues and impact of post-thawing in vitro culture systems in a research animal model
title_full_unstemmed Influence of hydrogel encapsulation during cryopreservation of ovarian tissues and impact of post-thawing in vitro culture systems in a research animal model
title_short Influence of hydrogel encapsulation during cryopreservation of ovarian tissues and impact of post-thawing in vitro culture systems in a research animal model
title_sort influence of hydrogel encapsulation during cryopreservation of ovarian tissues and impact of post-thawing in vitro culture systems in a research animal model
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8176157/
https://www.ncbi.nlm.nih.gov/pubmed/34024082
http://dx.doi.org/10.5653/cerm.2020.04056
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