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首页> 外文期刊>Reproduction in Domestic Animals >In Vitro Fertilization (IVF) in Straws and a Short Gamete Coincubation Time Improves the Efficiency of Porcine IVF
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In Vitro Fertilization (IVF) in Straws and a Short Gamete Coincubation Time Improves the Efficiency of Porcine IVF

机译:秸秆中的体外受精(IVF)和较短的配子共孵育时间可提高猪IVF的效率

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摘要

The present study was designed to evaluate three different in vitro fertilization (IVF) systems: a straw-IVF system with 10 min of coincubation, a straw-IVF system with 6-h coincubation and the microdrop-IVF system with 6-h coincubation (the traditional IVF system used routinely in most of IVF laboratories) in an attempt to reduce polyspermic penetration ( Experiment 1 ). When the straw-IVF system was tested in combination with two coincubation times, the use of 10 min of coincubation significantly increased (p < 0.001) the penetration rate and the efficiency of fertilization (67.7 pl 6.4% vs 31.9 pl 6.5% and 41.5 pl 2.5% vs 17.6 pl 2.5% for 10 min and 6 h, respectively), while there were no significant differences in the incidence of monospermy between both systems (64.3 pl 5.1% and 67.7 pl 3.4%, for 10 min and 6 h, respectively). The penetration rate in the 6-h microdrop-IVF system was higher (93.8 pl 3.6%; p < 0.001) compared with the 10-min straw-IVF system (67.7 pl 6.4%), however, monospermy was severely reduced (25.0 pl 4.3% vs 67.7 pl 3.4%, for the 6-h microdrop-IVF system and 10-min straw-IVF system, respectively). The efficiency of the IVF showed similar values between microdrop and 6-h straw-IVF systems, but efficiency was significantly improved (p < 0.05) when the 10-min straw-IVF system was used. Experiment 2 was designed to compare porcine in vitro embryo production in two IVF systems, the 6-h microdrop-IVF system (1000 sperm per oocyte) and 10-min straw-IVF system (30 000 sperm per oocyte). The blastocyst formation rates tended (p = 0.06) to be higher when the 10-min straw-IVF system was used compared with the 6-h microdrop-IVF system. In addition, the number of total cells per blastocyst increased significantly (p < 0.05) in the 10-min straw-IVF system. These results showed that the 10-min straw-IVF system is an effective way to decrease polyspermic penetration, and improve the efficiency of fertilization and the quality of blastocysts in terms of cell number per embryo.
机译:本研究旨在评估三种不同的体外受精(IVF)系统:共同孵育10分钟的秸秆IVF系统,共同孵育6小时的秸秆IVF系统和共同孵育6小时的microdrop-IVF系统(传统的IVF系统通常在大多数IVF实验室中使用),以尝试减少多精子的渗透(实验1)。当结合两次共孵育时间对秸秆-IVF系统进行测试时,共孵育10分钟的使用显着提高(p <0.001)的渗透率和受精效率(67.7 pl 6.4%vs 31.9 pl 6.5%和41.5 pl在10分钟和6小时内分别为2.5%和17.6 pl 2.5%,而两个系统之间的单精子发生率没有显着差异(分别为10min和6 h分别为64.3 pl 5.1%和67.7 pl 3.4%) )。与10分钟吸管IVF系统(67.7 pl 6.4%)相比,在6小时microdrop-IVF系统中的渗透率更高(93.8 pl 3.6%; p <0.001),但是,单精子严重减少(25.0 pl对于6小时的微滴IVF系统和10分钟的吸管IVF系统,分别为4.3%和67.7 pl 3.4%。 IVF的效率在微滴和6小时吸管IVF系统之间显示出相似的值,但是当使用10分钟吸管IVF系统时,效率显着提高(p <0.05)。设计实验2来比较两种IVF系统中的猪体外胚胎产生,这两种系统分别是6小时的microdrop-IVF系统(每个卵母细胞1000精子)和10分钟的秸秆IVF系统(每个卵母细胞30 000精子)。当使用10分钟的秸秆IVF系统时,与6小时的微滴IVF系统相比,胚泡形成率倾向于更高(p = 0.06)。此外,在10分钟的秸秆IVF系统中,每个胚泡的总细胞数显着增加(p <0.05)。这些结果表明,以每个胚胎的细胞数计,10分钟的秸秆-IVF系统是减少多精子穿透,提高受精效率和胚泡质量的有效方法。

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