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High oxygen tension during in vitro oocyte maturation improves in vitro development of porcine oocytes after fertilization

机译:体外卵母细胞成熟过程中的高氧张力改善了受精后猪卵母细胞的体外发育

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This study was conducted to evaluate the effect of oxygen tension during IVM and/or IVC on developmental competence of porcine follicular oocytes. Prospective, randomized experiments were designed, and oocytes were matured, inseminated and cultured in vitro in the designated condition. In experiment 1, either high (20%) or low (7%) oxygen tension was used for IVM. The high oxygen significantly improved blastocyst formation (23% versus 13%; P<0.01) after IVF than the low oxygen. Such treatment, however, did not significantly (P>0.05) improve the rates of nuclear maturation (89% in each treatment), sperm penetration (62-72%), monospermic fertilization (56-67%), pronuclear formation (90-96%), cleavage (49-53%) and blastocyst cell number (31-32 cells). In experiment 2, the combined effect of oxygen tension during IVM and IVC of embryos was evaluated by a 2 x 2 factorial arrangement. Again, the high oxygen tension during IVM supported blastocyst formation more efficiently (P<0.01) than the low oxygen, and this was independent of oxygen tension during IVC (26-28% versus 15-16%). In oocytes matured under the high oxygen, a tendency to increase blastomere number (P=0.0630) was found, when the low oxygen was used for IVC after insemination (39-45 cells/blastocyst). In conclusion, the use of high oxygen tension (20% maintained by exposure to 5% CO2 in air) for IVM of porcine oocytes promoted blastocyst formation in vitro.
机译:进行该研究以评估IVM和/或IVC期间氧张力对猪卵泡卵母细胞发育能力的影响。设计了前瞻性随机实验,并在指定条件下体外成熟,授精和培养了卵母细胞。在实验1中,将高(20%)或低(7%)的氧气张力用于IVM。 IVF后高氧比低氧显着改善了胚泡形成(23%对13%; P <0.01)。但是,此类治疗并未显着(P> 0.05)改善核成熟率(每次治疗89%),精子渗透率(62-72%),单精子受精率(56-67%),前核形成率(90- 96%),卵裂(49-53%)和胚泡细胞数(31-32细胞)。在实验2中,通过2 x 2因子安排评估了胚胎IVM和IVC期间氧张力的综合作用。同样,IVM期间的高氧张力比低氧更有效地支持了胚泡的形成(P <0.01),这与IVC期间的氧张力无关(26-28%对15-16%)。在高氧下成熟的卵母细胞中,当在授精后将低氧用于IVC时(39-45个细胞/胚泡),发现卵裂球数增加的趋势(P = 0.0630)。总之,猪卵母细胞IVM使用高氧张力(通过暴露于空气中的5%CO2维持20%的氧)可促进体外胚泡的形成。

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