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Effect of phosphodiesterase type 3 inhibitor on nuclear maturation and in vitro development of ovine oocytes

机译:磷酸二酯酶3型抑制剂对绵羊卵母细胞核成熟和体外发育的影响

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The present study aims to investigate if prematuration culture (PMC) of ovine oocytes in the presence of a phosphodiesterase type 3 (PDE3) inhibitor cilostamide can improve the shortcomings of conventional in vitro maturation (IVM) system. Therefore, a two-step culture system consisting of 22 hours culture in the presence of 1, 10, and 20 mu M cilostamide (PMC medium), followed by 22 hours culture in maturation medium, was designed. The effect of cilostamide on gap junction communications and nuclear status was studied. The variables assessed were chromosome organization, spindle pattern, polar body extrusion, and embryonic development. According to the results, inhibition of PDE3 could not permanently block nuclear maturation in ovine oocytes but it delayed the process of nuclear maturation. Elevation of intra-oocyte cAMP concentration could inhibit cumulus cells expansion and maintain gap junction communications between oocyte and cumulus cells. Deletion of cilostamide and refreshing maturation medium after 22 hours culture revealed that cumulus cells were completely expanded. The inhibitory effect induced by 1 mu M cilostamide was reversible, and it increased the number of Mature oocytes with aligned chromosomes and normal spindle. However, the inhibitory effects of 10 and 20 mu M cilostamide was not fully reversible and was associated with deleterious effects on chromosome organization and spindle pattern. Investigation of embryonic development via parthenogenetic activation and in vitro fertilization revealed that the blastocyst rate of oocytes that were prematured with 1 mu M cilostamide was not significantly different from oocytes that underwent converitional IVM but it was significantly reduced in oocytes that. were prematured with 10 and 20 mu M cilostamide. Our results provide the evidence that reduced cAMP via PDE3 is not the only mechanism that controls the progress of nuclear maturation in sheep oocytes, and that alternative or additional mechanisms may also exist.
机译:本研究旨在研究在存在磷酸二酯酶3型(PDE3)抑制剂西洛酰胺的情况下绵羊卵母细胞的过早培养(PMC)是否可以改善常规体外成熟(IVM)系统的缺点。因此,设计了一个两步培养系统,该系统由在1、10和20μM西洛酰胺(PMC培养基)存在下进行22小时培养,然后在成熟培养基中进行22小时培养组成。研究了西洛酰胺对间隙连接通讯和核状态的影响。评估的变量是染色体组织,纺锤体模式,极体挤压和胚胎发育。根据结果​​,抑制PDE3不能永久性阻断绵羊卵母细胞的核成熟,但会延迟核成熟的过程。卵母细胞内cAMP浓度的升高可抑制卵母细胞的扩增并维持卵母细胞与卵母细胞之间的间隙连接通讯。培养22小时后,删除西洛他酰胺和新鲜的成熟培养基表明卵丘细胞已完全扩增。 1μM西洛他酰胺诱导的抑制作用是可逆的,并且增加了具有对齐染色体和正常纺锤体的成熟卵母细胞的数量。然而,10和20μM西洛他酰胺的抑制作用不是完全可逆的,并且与对染色体组织和纺锤体模式的有害作用有关。通过孤雌生殖激活和体外受精对胚胎发育的研究表明,用1μM西洛他酰胺预成熟的卵母细胞的囊胚形成率与经过IVM的卵母细胞的胚泡率没有显着差异,但在卵母细胞中卵母细胞的胚泡率显着降低。分别用10和20μM西洛他酰胺进行熟化。我们的结果提供了证据,证明通过PDE3降低cAMP并不是控制绵羊卵母细胞核成熟进程的唯一机制,并且还可能存在其他机制。

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