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Concentration and composition of free amino acids and osmolalities of porcine oviductal and uterine fluid and their effects on development of porcine IVF embryos.

机译:猪输卵管和子宫液的游离氨基酸和重量摩尔渗透压浓度的浓度,组成及其对猪体外受精胚胎发育的影响。

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The concentration of free amino acids and the osmolalities in porcine oviductal (OF) and uterine fluids (UFs) on day 3 (D3) and day 5 (D5) were measured by HPLC and Vapor Pressure Osmometer, respectively. Based on these measurements we designed new media based on PZM3 by modifying the amino acid composition and osmolality. The effectiveness of the modified PZM3 on the development of porcine IVF embryos was then investigated. A total of 24 free amino acids were measured, including 20 protein and 4 nonprotein amino acids (beta-alanine, taurine, ornithine, and citrulline). There was no significant difference in the total concentration of amino acids among D3OF (13.06 +/- 3.63 mmol/L), D3UF (10.54 +/- 5.16 mmol/L), or D5UF (10.23 +/- 6.69 mmol/L). But the total concentration of amino acids in D5OF (5.89 +/- 1.47 mmol/L) was significantly lower than the three fluids above. Some individual amino acids varied significantly depending on where they were collected and from which day. The blastocyst rates of porcine IVF embryos were not improved when embryos were cultured in PZM3 with amino acids at D3OF (PZM3-D3OF, 20.3 +/- 7.9%) or D5UF (PZM3-D5UF, 14.3 +/- 10.7%) concentrations or in PZM3-D3OF for the first 48 (20.5 +/- 15.1), 72 (25.6 +/- 10.4), and 96 (18.7 +/- 10.0) hr and then transferred into PZM3-D5UF compared with PZM3 with Sigma amino acid solution (PZM3-SAA) (30.8 +/- 9.1%). However, when IVF embryos were cultured in PZM3-D5UF, the average nuclear number per blastocyst (57.6 +/- 8.3) was increased compared to PZM3-SAA (40.5 +/- 3.5). The osmolalities in D3OF, D3UF, D5OF, and D5UF were 318 +/- 8, 320 +/- 32, 321, and 293 +/- 8 mOsM, respectively. When the IVF embryos were cultured in PZM3-SAA and PZM3-D3OF at a variety of osmolalities (150-360 mOsM), higher blastocyst rates were obtained at 270-300 mOsM in the PZM3-SAA group (24.6-33.9%) and 270-290 mOsM in PZM3-D3OF group (22.4-24.2%). The blastocyst rate gradually decreased when the osmolality was increased or decreased in both groups. When the embryos were cultured in PZM3-SAA at 330 mOsM for the first 72 hr and then transferred to 250 mOsM (33.3 +/- 3.4%), the blastocyst rate was higher than original PZM3 (21.2 +/- 2.2%) (288 mOsM).
机译:在第3天(D3)和第5天(D5)分别通过HPLC和蒸气压渗透压计测量猪输卵管(OF)和子宫液(UFs)中的游离氨基酸浓度和重量摩尔渗透压浓度。基于这些测量,我们通过修改氨基酸组成和重量克分子渗透压浓度设计了基于PZM3的新培养基。然后研究了修饰的PZM3对猪IVF胚胎发育的有效性。总共测量了24个游离氨基酸,包括20个蛋白质和4个非蛋白质氨基酸(β-丙氨酸,牛磺酸,鸟氨酸和瓜氨酸)。 D3OF(13.06 +/- 3.63 mmol / L),D3UF(10.54 +/- 5.16 mmol / L)或D5UF(10.23 +/- 6.69 mmol / L)之间的氨基酸总浓度无显着差异。但是D5OF中氨基酸的总浓度(5.89 +/- 1.47 mmol / L)明显低于上述三种液体。某些氨基酸根据收集的地点和日期不同而有很大差异。在含有D3OF(PZM3-D3OF,20.3 +/- 7.9%)或D5UF(PZM3-D5UF,14.3 +/- 10.7%)浓度的D3OF(PZM3-D3OF,14.3 +/- 10.7%)浓度的PZM3中培养的猪IVF胚胎的胚泡率没有改善。在开始的48(20.5 +/- 15.1),72(25.6 +/- 10.4)和96(18.7 +/- 10.0)小时内使用PZM3-D3OF,然后与使用Sigma氨基酸溶液的PZM3相比,将其转移到PZM3-D5UF中( PZM3-SAA)(30.8 +/- 9.1%)。但是,当在PZM3-D5UF中培养IVF胚胎时,与PZM3-SAA(40.5 +/- 3.5)相比,每个胚泡的平均核数(57.6 +/- 8.3)增加。 D3OF,D3UF,D5OF和D5UF中的重量克分子渗透浓度分别为318 +/- 8、320 +/- 32、321和293 +/- 8 mOsM。当在各种渗透压(150-360 mOsM)的PZM3-SAA和PZM3-D3OF中培养IVF胚胎时,PZM3-SAA组(24.6-33.9%)和270-300 mOsM的胚泡发生率更高。 PZM3-D3OF组为-290 mOsM(22.4-24.2%)。两组的渗透压升高或降低时,胚泡率逐渐降低。当将胚胎在330 mOsM的PZM3-SAA中培养72小时,然后转移至250 mOsM(33.3 +/- 3.4%)时,胚泡率高于原始PZM3(21.2 +/- 2.2%)(288) mOsM)。

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