de Souza Danielle Kaiser, Salles Loise Pedrosa, Camargo Ricardo, Gulart Laura Vanessa Mourão, Costa E Silva Suellen, de Lima Beatriz Dolabela, Torres Fernando Araripe Gonçalves, Rosa E Silva Alzira Amélia Martins
Campus Darcy Ribeiro,Faculdade de Medicina - Universidade de Brasilia 70910-900,Brazil. E-mail:
Laboratory of Health Biotechnologies - Faculty of Medicine,University of Brasilia.
Zygote. 2018 Feb;26(1):50-61. doi: 10.1017/S0967199417000703. Epub 2017 Dec 13.
The purpose of this study was to evaluate the effects of FSH and PI3K on the nuclear maturation, viability, steroidogenesis and embryo development of bovine cumulus-oocyte complexes (COCs). Oocyte maturation was achieved with MIV B, MIV B+100 µM LY294002, MIV B+10 ng/mL follicle stimulating hormone (FSH), or MIV B+10 ng/mL FSH+100 µM LY294002 treatments for 22-24 h. After the cultured COCs were denuded, oocytes were separated into those that extruded polar bodies (mature) and those that did not, and real-time polymerase chain reaction (PCR) for BAX, BCL2, LHR, FSHR, CYP11A1, CYP19A1 and HSD17B1 genes was performed. The culture medium was collected to determine the levels of 17β-estradiol (E2) and progesterone (P4). The trypan blue test was used to study COC viability, and embryo development was evaluated. FSH increased nuclear maturation and PI3K blocked the maturation but did not influence oocyte viability. BAX and BCL2 expression levels in the cumulus cells were only affected by FSH, and the BAX levels decreased after treatment with LY294002. FSH increased the levels of E2 and P4, however inhibition of PI3K decreased E2 levels. MIV B enhanced levels of LHR, FSHR, CYP11A1, CYP19A1 and HSD17B1, whereas LY294002 inhibited the expression levels of all genes. MIV B+FSH decreased the expression levels of all genes except CYP11A1. LY294002 did not demonstrate any effects in the presence of FSH. Embryo development was significantly decreased when the MIV B+FSH medium was used. In conclusion, FSH controls the steroidogenesis, viability and gene expression in COCs. PI3K plays essential roles in nuclear maturation, steroidogenesis and embryo development.
本研究的目的是评估促卵泡素(FSH)和磷脂酰肌醇-3激酶(PI3K)对牛卵丘-卵母细胞复合体(COCs)的核成熟、活力、类固醇生成及胚胎发育的影响。采用MIV B、MIV B + 100 µM LY294002、MIV B + 10 ng/mL促卵泡激素(FSH)或MIV B + 10 ng/mL FSH + 100 µM LY294002处理22 - 24小时以实现卵母细胞成熟。培养的COCs去卵丘后,将卵母细胞分为排出极体的(成熟)和未排出极体的,然后对BAX、BCL2、促黄体生成素受体(LHR)、促卵泡激素受体(FSHR)、细胞色素P450 11A1(CYP11A1)、细胞色素P450 19A1(CYP19A1)和17β-羟类固醇脱氢酶1(HSD17B1)基因进行实时聚合酶链反应(PCR)。收集培养基以测定17β-雌二醇(E2)和孕酮(P4)水平。采用台盼蓝试验研究COCs的活力,并评估胚胎发育情况。FSH可提高核成熟率,PI3K可阻断成熟,但不影响卵母细胞活力。卵丘细胞中BAX和BCL2的表达水平仅受FSH影响,用LY294002处理后BAX水平降低。FSH可提高E2和P4水平,然而抑制PI3K会降低E2水平。MIV B可提高LHR、FSHR、CYP11A1、CYP19A1和HSD17B1的水平,而LY294002可抑制所有基因的表达水平。MIV B + FSH可降低除CYP11A1外所有基因的表达水平。在有FSH存在的情况下,LY294002未显示出任何作用。当使用MIV B + FSH培养基时,胚胎发育显著降低。总之,FSH可控制COCs中的类固醇生成、活力和基因表达。PI3K在核成熟、类固醇生成和胚胎发育中起重要作用。