Cryopreservation in trehalose preserves functional capacity of murine spermatogonial stem cells.

Development of techniques to isolate, culture, and transplant human spermatogonial stem cells (SSCs) has the future potential to treat male infertility. To maximize the efficiency of these techniques, methods for SSC cryopreservation need to be developed to bank SSCs for extended periods of time. Al...

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Main Authors: Yong-An Lee, Yong-Hee Kim, Bang-Jin Kim, Byung-Gak Kim, Ki-Jung Kim, Joong-Hyuck Auh, Jonathan A Schmidt, Buom-Yong Ryu
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2013-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3551902?pdf=render
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spelling doaj-821a83bb63da46a18875970c0acca8cb2020-11-25T01:14:07ZengPublic Library of Science (PLoS)PLoS ONE1932-62032013-01-0181e5488910.1371/journal.pone.0054889Cryopreservation in trehalose preserves functional capacity of murine spermatogonial stem cells.Yong-An LeeYong-Hee KimBang-Jin KimByung-Gak KimKi-Jung KimJoong-Hyuck AuhJonathan A SchmidtBuom-Yong RyuDevelopment of techniques to isolate, culture, and transplant human spermatogonial stem cells (SSCs) has the future potential to treat male infertility. To maximize the efficiency of these techniques, methods for SSC cryopreservation need to be developed to bank SSCs for extended periods of time. Although, it has been demonstrated that SSCs can reinitiate spermatogenesis after freezing, optimal cryopreservation protocols that maximize SSC proliferative capacity post-thaw have not been identified. The objective of this study was to develop an efficient cryopreservation technique for preservation of SSCs. To identify efficient cryopreservation methods for long-term preservation of SSCs, isolated testis cells enriched for SSCs were placed in medium containing dimethyl sulfoxide (DMSO) or DMSO and trehalose (50 mM, 100 mM, or 200 mM), and frozen in liquid nitrogen for 1 week, 1 month, or 3 months. Freezing in 50 mM trehalose resulted in significantly higher cell viability compared to DMSO at all thawing times and a higher proliferation rate compared to DMSO for the 1 week freezing period. Freezing in 200 mM trehalose did not result in increased cell viability; however, proliferation activity was significantly higher and percentage of apoptotic cells was significantly lower compared to DMSO after freezing for 1 and 3 months. To confirm the functionality of SSCs frozen in 200 mM trehalose, SSC transplantation was performed. Donor SSCs formed spermatogenic colonies and sperm capable of generating normal progeny. Collectively, these results indicate that freezing in DMSO with 200 mM trehalose serves as an efficient method for the cryopreservation of SSCs.http://europepmc.org/articles/PMC3551902?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Yong-An Lee
Yong-Hee Kim
Bang-Jin Kim
Byung-Gak Kim
Ki-Jung Kim
Joong-Hyuck Auh
Jonathan A Schmidt
Buom-Yong Ryu
spellingShingle Yong-An Lee
Yong-Hee Kim
Bang-Jin Kim
Byung-Gak Kim
Ki-Jung Kim
Joong-Hyuck Auh
Jonathan A Schmidt
Buom-Yong Ryu
Cryopreservation in trehalose preserves functional capacity of murine spermatogonial stem cells.
PLoS ONE
author_facet Yong-An Lee
Yong-Hee Kim
Bang-Jin Kim
Byung-Gak Kim
Ki-Jung Kim
Joong-Hyuck Auh
Jonathan A Schmidt
Buom-Yong Ryu
author_sort Yong-An Lee
title Cryopreservation in trehalose preserves functional capacity of murine spermatogonial stem cells.
title_short Cryopreservation in trehalose preserves functional capacity of murine spermatogonial stem cells.
title_full Cryopreservation in trehalose preserves functional capacity of murine spermatogonial stem cells.
title_fullStr Cryopreservation in trehalose preserves functional capacity of murine spermatogonial stem cells.
title_full_unstemmed Cryopreservation in trehalose preserves functional capacity of murine spermatogonial stem cells.
title_sort cryopreservation in trehalose preserves functional capacity of murine spermatogonial stem cells.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2013-01-01
description Development of techniques to isolate, culture, and transplant human spermatogonial stem cells (SSCs) has the future potential to treat male infertility. To maximize the efficiency of these techniques, methods for SSC cryopreservation need to be developed to bank SSCs for extended periods of time. Although, it has been demonstrated that SSCs can reinitiate spermatogenesis after freezing, optimal cryopreservation protocols that maximize SSC proliferative capacity post-thaw have not been identified. The objective of this study was to develop an efficient cryopreservation technique for preservation of SSCs. To identify efficient cryopreservation methods for long-term preservation of SSCs, isolated testis cells enriched for SSCs were placed in medium containing dimethyl sulfoxide (DMSO) or DMSO and trehalose (50 mM, 100 mM, or 200 mM), and frozen in liquid nitrogen for 1 week, 1 month, or 3 months. Freezing in 50 mM trehalose resulted in significantly higher cell viability compared to DMSO at all thawing times and a higher proliferation rate compared to DMSO for the 1 week freezing period. Freezing in 200 mM trehalose did not result in increased cell viability; however, proliferation activity was significantly higher and percentage of apoptotic cells was significantly lower compared to DMSO after freezing for 1 and 3 months. To confirm the functionality of SSCs frozen in 200 mM trehalose, SSC transplantation was performed. Donor SSCs formed spermatogenic colonies and sperm capable of generating normal progeny. Collectively, these results indicate that freezing in DMSO with 200 mM trehalose serves as an efficient method for the cryopreservation of SSCs.
url http://europepmc.org/articles/PMC3551902?pdf=render
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