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Improved Sperm Cryosurvival in Diluents Containing Amides versus Glycerol in the Przewalski's Horse (<I>Equus ferus przewalskii</I>)

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dc.contributor.author Pukazhenthi, Budhan S. en
dc.contributor.author Johnson, Aime en
dc.contributor.author Guthrie, H. David en
dc.contributor.author Songsasen, Nucharin en
dc.contributor.author Padilla, Luis R. en
dc.contributor.author Wolfe, Barbara A. en
dc.contributor.author da Silva, Marco Coutinho en
dc.contributor.author Alvarenga, Marco A. en
dc.contributor.author Wildt, David E. en
dc.date.accessioned 2015-04-20T15:16:08Z
dc.date.available 2015-04-20T15:16:08Z
dc.date.issued 2014
dc.identifier.citation Pukazhenthi, Budhan S., Johnson, Aime, Guthrie, H. David, Songsasen, Nucharin, Padilla, Luis R., Wolfe, Barbara A., da Silva, Marco Coutinho, Alvarenga, Marco A., and Wildt, David E. 2014. "Improved Sperm Cryosurvival in Diluents Containing Amides versus Glycerol in the Przewalski's Horse (Equus ferus przewalskii)." <em>Cryobiology</em>. 68 (2):205&ndash;214. <a href="https://doi.org/10.1016/j.cryobiol.2014.01.013">https://doi.org/10.1016/j.cryobiol.2014.01.013</a> en
dc.identifier.issn 0011-2240
dc.identifier.uri http://hdl.handle.net/10088/25833
dc.description.abstract Two studies were conducted to understand sperm cryosensitivity in an endangered equid, the Przewalski's horse (Equus ferus przewalski), while testing the cryoprotectant ability of formamides. The first assessed the toxicity of permeating cryoprotectants (glycerol, methylformamide MF] and dimethylformamide DMF]) to Przewalski's horse spermatozoa during liquid storage at 4°C. The second examined the comparative influence of three diluents (with or without formamides) on cryosurvival of sperm from the Przewalski's versus domestic horse. When Przewalski's horse spermatozoa were incubated at 4°C in INRA 96 with differing concentrations of glycerol, MF or DMF or a combination of these amides, cells tolerated all but the highest concentration (10% v/v) of MF alone or in combination with DMF, both of which decreased (P 0.05) between the Przewalski's (67%, 84%, respectively) and domestic (66%, 76%) horse donors. Sperm from both species were diluted in lactose-EDTA-glycerol (EQ), Botu-Crio (BOTU; a proprietary product containing glycerol and MF) or SM (INRA 96 plus 2% v/v] egg yolk and 2.5% v/v] MF and DMF) and then frozen over liquid nitrogen vapor. After thawing, the highest values recovered for total and progressive sperm motility, acrosomal integrity and mitochondrial membrane potential were 42.4%, 21.8%, 88.7% and 25.4 CN (CN = mean JC-1 fluorescence intensity/cell on a channel number scale), respectively, in the Przewalski's and 49.3%, 24.6%, 88.9% and 25.8 CN, respectively, in the domestic horse. Although sperm progressive motility and acrosome integrity did not differ (P &gt; 0.05) among treatments across species, mitochondrial membrane potential was higher (P &lt; 0.05) in both species using EQ compared to BOTU or SM media. Additionally, Przewalski's stallion sperm expressed higher (P &lt; 0.05) post-thaw total motility in BOTU and SM compared to EQ, whereas there were no differences among freezing diluents in the domestic horse. In summary, Przewalski's stallion sperm benefit from exposure to either MF or DMF as an alternative cryoprotectant to glycerol. Overt sperm quality appears similar between the Przewalski's and domestic horse, although the total motility of cells from the former appears more sensitive to certain freezing diluents. Nonetheless, post-thaw motility and acrosomal integrity values for Przewalski's horse spermatozoa mimic findings in the domestic horse in the presence of INRA 96 supplemented with 2% (v/v) egg yolk and a combined 2.5% concentration of MF and DMF. Statement of funding: This work was supported by the Sichel Endowment. en
dc.relation.ispartof Cryobiology en
dc.title Improved Sperm Cryosurvival in Diluents Containing Amides versus Glycerol in the Przewalski's Horse (<I>Equus ferus przewalskii</I>) en
dc.type Journal Article en
dc.identifier.srbnumber 118790
dc.identifier.doi 10.1016/j.cryobiol.2014.01.013
rft.jtitle Cryobiology
rft.volume 68
rft.issue 2
rft.spage 205
rft.epage 214
dc.description.SIUnit NZP en
dc.description.SIUnit Peer-reviewed en
dc.citation.spage 205
dc.citation.epage 214


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