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首页> 外文期刊>Reproduction, fertility, and development >Metabolic regulation of in-vitro-produced bovine embryos. II. Effects of phenazine ethosulfate, sodium azide and 2,4-dinitrophenol during post-compaction development on glucose metabolism and lipid accumulation.
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Metabolic regulation of in-vitro-produced bovine embryos. II. Effects of phenazine ethosulfate, sodium azide and 2,4-dinitrophenol during post-compaction development on glucose metabolism and lipid accumulation.

机译:体外产生的牛胚胎的代谢调控。二。致密化过程中吩嗪乙醇硫酸盐,叠氮化钠和2,4-二硝基苯酚对葡萄糖代谢和脂质积累的影响。

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The objective was to compare effects of three metabolic regulators on development of post-compaction bovine embryos. In-vitro-produced 8- to 16-cell embryos were allocated to treatments for 72 h in G2.2 medium as follows: 0.3 micro M phenazine ethosulfate (PES); 27 micro M sodium azide (NaN3); 30 micro M 2,4-dinitrophenol (DNP); and control, no regulator. Treatments responded similarly for blastocyst rates and embryo quality responses (P0.1). The PES treatment resulted in higher glucose metabolism than the NaN3 treatment (18.5 v. 14.5 pmol per embryo per h, P0.05), and both did not differ from DNP or the control. The PES treatment tended to result in more flux of glucose through the pentose phosphate pathway (PPP) than the control (50.5 v. 21.5%, P0.11). The NaN3 treatment caused more glucose uptake than the PES treatment (38.9 v. 13.1 pmol per embryo per h, P0.01), but neither differed from the control or DNP treatment (P0.1). Glycolysis for the PES treatment was 187%, which was higher than any of the other groups (88-94%; P0.01). There were fewer medium+large lipid granules in the cytoplasm of PES-treated embryos than any other group, including the in vitro control (P0.01). However, in vivo control embryos had still fewer large and medium-sized lipid granules (P0.01) than the PES treatment. Developmental competence to Day 14 after embryo transfer was similar among treatments. The PES treatment increased glucose metabolism, tended to increase the PPP flux of glucose and clearly reduced accumulation of lipids in embryos produced in the chemically defined media used. Use of PES in culture media may be a promising approach to improving in vitro production of embryos..
机译:目的是比较三种代谢调节剂对压实后牛胚胎发育的影响。将体外产生的8至16个细胞的胚胎在G2.2培养基中进行72小时的处理,方法如下:0.3 micro M吩嗪乙硫酸盐(PES); 27 micro M叠氮化钠(NaN3); 30 micro M 2,4-二硝基苯酚(DNP);和控制,没有调节器。处理对胚泡率和胚胎质量反应的反应相似(P> 0.1)。与NaN3处理相比,PES处理导致更高的葡萄糖代谢(每个胚胎每小时18.5 v。14.5 pmol,P <0.05),并且两者均与DNP或对照无差异。与对照组相比,PES处理趋于导致葡萄糖通过戊糖磷酸途径(PPP)的通量更高(50.5 v。21.5%,P <0.11)。 NaN3处理比PES处理引起更多的葡萄糖摄取(每个胚胎每小时38.9 v。13.1 pmol,P <0.01),但与对照或DNP处理均无差异(P> 0.1)。用于PES治疗的糖酵解率为187%,高于其他任何一组(88-94%; P <0.01)。经PES处理的胚胎的细胞质中,中型和大型脂质颗粒的数量少于任何其他组,包括体外对照组(P <0.01)。然而,体内对照胚胎仍比PES处理的大,中型脂质颗粒少(P <0.01)。胚胎移植后至第14天的发育能力在治疗之间相似。 PES处理增加了葡萄糖的代谢,倾向于增加葡萄糖的PPP通量,并明显减少了在使用化学成分确定的培养基中产生的胚胎中脂质的积累。在培养基中使用PES可能是改善胚胎体外产生的一种有前途的方法。

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