首页> 外文期刊>Reproduction in Domestic Animals >Forced Collapse of the Blastocoel Cavity Improves Developmental Potential in Cryopreserved Bovine Blastocysts by Slow-Rate Freezing and Vitrification
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Forced Collapse of the Blastocoel Cavity Improves Developmental Potential in Cryopreserved Bovine Blastocysts by Slow-Rate Freezing and Vitrification

机译:Blastocoel腔的强制塌陷通过慢速冷冻和玻璃化提高了冷冻保存的牛Blastocysts的发展潜力。

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This study was conducted to evaluate the effectiveness of forced collapse of the blastocoel before slow-rate freezing and vitrification of bovine blastocysts. Cryopreservation of bovine blastocysts has been proposed as a tool to improve the feasibility of cattle production using the embryo transfer technique. However, the low efficiency of frozen-thawed embryos survival and further development is a crucial problem. In this study, bovine in vitro and in vivo blastocysts were slow-rate frozen and vitrified after forced blastocoele collapse (FBC) of the blastocyst cavity by puncturing the blastocoele with a pulled Pasteur pipet. Differences in the developmental potential of frozen-thawed blastocysts derived from FBC and non-FBC groups were found in both slow-rate freezing and vitrification. Furthermore, we found that the total cell number of blastocysts in FBC groups was increased and the index of apoptosis in FBC groups was decreased. Consistent with these results, real-time RT-PCR analysis data showed that expression of the antiapoptotic Bcl-XL gene was significantly increased by FBC groups, whereas expression of the pro-apoptotic Bax gene was significantly decreased by FBC groups. Our results also showed that pregnancy outcomes in both slow-rate frozen and vitrified bovine in vivo blastocysts could be improved by reducing the fluid content after FBC of the blastocyst cavity. Therefore, we suggest that FBC of the blastocyst cavity with a pulled Pasteur pipet is an effective pre-treatment technique for both slow-rate freezing and vitrification of bovine blastocysts
机译:进行这项研究以评估在缓慢冷冻和玻璃化牛胚泡之前,囊胚腔强制性塌陷的有效性。牛胚泡的冷冻保存已被提出作为使用胚胎移植技术提高牛生产可行性的工具。但是,冻融胚胎存活和进一步发育的效率低下是一个关键问题。在这项研究中,牛的体外和体内囊胚通过用拉拔的巴斯德吸管刺破囊胚腔而被强制囊胚腔塌陷(FBC)后,被缓慢冷冻和玻璃化。在慢速冷冻和玻璃化中都发现了来自FBC组和非FBC组的冻融囊胚的发育潜能差异。此外,我们发现FBC组的胚泡总数增加了,FBC组的凋亡指数降低了。与这些结果一致,实时RT-PCR分析数据表明,FBC组抗凋亡Bcl-XL基因的表达显着增加,而FBC组显着降低促凋亡Bax基因的表达。我们的结果还表明,通过减少囊胚腔FBC后的液体含量,可以提高慢速冷冻和玻璃化牛体内囊胚的妊娠结局。因此,我们建议用巴斯德吸管将胚泡腔的FBC用作慢速冷冻和玻璃化牛胚泡的有效预处理技术。

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