Vitrification of mouse embryos using the thin plastic strip method

The aim of this study was to compare vitrification optimization of mouse embryos using electron microscopy (EM) grid, cryotop, and thin plastic strip (TPS) containers by evaluating developmental competence and apoptosis rates. Mouse embryos were obtained from superovulated mice. Mouse cleavage-stage...

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Veröffentlicht in:Clinical and experimental reproductive medicine 2012, 39(4), , pp.153-160
Hauptverfasser: Ryu, Eun Kyung, Hur, Yong Soo, Ann, Ji Young, Maeng, Ja Young, Park, Miji, Park, Jeong Hyun, Yoon, Jung, Yoon, San Hyun, Hur, Chang Young, Lee, Won Don, Lim, Jin Ho
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Sprache:eng
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Zusammenfassung:The aim of this study was to compare vitrification optimization of mouse embryos using electron microscopy (EM) grid, cryotop, and thin plastic strip (TPS) containers by evaluating developmental competence and apoptosis rates. Mouse embryos were obtained from superovulated mice. Mouse cleavage-stage, expanded, hatching-stage, and hatched-stage embryos were cryopreserved in EM grid, cryotop, and TPS containers by vitrification in 15% ethylene glycol, 15% dimethylsulfoxide, 10 µg/mL Ficoll, and 0.65 M sucrose, and 20% serum substitute supplement (SSS) with basal medium, respectively. For the three groups in which the embryos were thawed in the EM grid, cryotop, and TPS containers, the thawing solution consisted of 0.25 M sucrose, 0.125 M sucrose, and 20% SSS with basal medium, respectively. Rates of survival, re-expansion, reaching the hatched stage, and apoptosis after thawing were compared among the three groups. Developmental competence after thawing of vitrified expanded and hatching-stage blastocysts using cryotop and TPS methods were significantly higher than survival using the EM grid (p
ISSN:2233-8233
2233-8241
DOI:10.5653/cerm.2012.39.4.153