Boruszewska Dorota, Sinderewicz Emilia, Kowalczyk-Zieba Ilona, Grycmacher Katarzyna, Woclawek-Potocka Izabela
Department of Reproductive Immunology and Pathology, Institute of Animal Reproduction and Food Research, Polish Academy of Sciences, Tuwima 10, 10-748, Olsztyn, Poland.
Reprod Biol Endocrinol. 2015 May 16;13:44. doi: 10.1186/s12958-015-0044-x.
In the cow, lysophosphatidic acid (LPA) acts as an auto-/paracrine factor, through its receptors LPAR1-4, on oocytes and cumulus cells during in vitro maturation (IVM). The aim of the present work was to determine the effect of LPA during IVM of bovine oocytes on: 1) oocyte maturation; 2) apoptosis of COCs; 3) expression of genes involved in developmental competence and apoptosis in bovine oocytes and subsequent blastocysts; 4) cumulus expansion and expression of genes involved in the ovulatory cascade in cumulus cells; 5) glucose metabolism and expression of genes involved in glucose utilization in cumulus cells; 6) cleavage and blastocyst rates on Day 2 and Day 7 of in vitro culture, respectively.
Cumulus-oocyte complexes (COCs) were matured in vitro in the presence or absence of LPA (10(-5) M) for 24 h. Following maturation, we determined: oocyte maturation stage, cumulus expansion, COCs apoptosis and glucose and lactate levels in the maturation medium. Moreover, COCs were either used for gene expression analysis or fertilized in vitro. The embryos were cultured until Day 7 to assess cleavage and blastocyst rates. Oocytes, cumulus cells and blastocysts were used for gene expression analysis.
Supplementation of the maturation medium with LPA enhanced oocyte maturation rates and stimulated the expression of developmental competence-related factors (OCT4, SOX2, IGF2R) in oocytes and subsequent blastocysts. Moreover, LPA reduced the occurrence of apoptosis in COCs and promoted an antiapoptotic balance in the transcription of genes involved in apoptosis (BAX and BCL2) either in oocytes or blastocysts. LPA increased glucose uptake by COCs via augmentation of GLUT1 expression in cumulus cells as well as stimulating lactate production via the enhancement of PFKP expression in cumulus cells. LPA did not affect cumulus expansion as visually assessed, however, it stimulated upstream genes of cumulus expansion cascade, AREG and EREG.
Supplementation of the maturation medium with LPA improves oocyte maturation rates, decreases extent of apoptosis in COCs and sustains the expression of developmental competence related factors during oocyte maturation and subsequently affects gene expression profile at the blastocyst stage. We also demonstrate that LPA directs glucose metabolism toward the glycolytic pathway during IVM.
在奶牛中,溶血磷脂酸(LPA)通过其受体LPAR1 - 4,在体外成熟(IVM)过程中作为一种自分泌/旁分泌因子作用于卵母细胞和卵丘细胞。本研究的目的是确定LPA在牛卵母细胞IVM过程中对以下方面的影响:1)卵母细胞成熟;2)卵丘 - 卵母细胞复合体(COCs)的凋亡;3)牛卵母细胞及随后囊胚中与发育能力和凋亡相关基因的表达;4)卵丘扩展以及卵丘细胞中排卵级联相关基因的表达;5)卵丘细胞中的葡萄糖代谢以及与葡萄糖利用相关基因的表达;6)体外培养第2天和第7天的卵裂率和囊胚率。
将COCs在有或无LPA(10⁻⁵ M)存在的情况下体外成熟24小时。成熟后,我们测定了:卵母细胞成熟阶段、卵丘扩展、COCs凋亡以及成熟培养基中的葡萄糖和乳酸水平。此外,COCs要么用于基因表达分析,要么进行体外受精。胚胎培养至第7天以评估卵裂率和囊胚率。卵母细胞、卵丘细胞和囊胚用于基因表达分析。
在成熟培养基中添加LPA可提高卵母细胞成熟率,并刺激卵母细胞及随后囊胚中与发育能力相关因子(OCT4、SOX2、IGF2R)的表达。此外,LPA减少了COCs中凋亡的发生,并促进了卵母细胞或囊胚中凋亡相关基因(BAX和BCL2)转录的抗凋亡平衡。LPA通过增加卵丘细胞中GLUT1的表达来增加COCs对葡萄糖的摄取,并通过增强卵丘细胞中PFKP的表达来刺激乳酸产生。从视觉评估来看,LPA不影响卵丘扩展,然而,它刺激了卵丘扩展级联的上游基因AREG和EREG。
在成熟培养基中添加LPA可提高卵母细胞成熟率,降低COCs中的凋亡程度,并在卵母细胞成熟过程中维持与发育能力相关因子的表达,随后影响囊胚阶段的基因表达谱。我们还证明,LPA在IVM过程中引导葡萄糖代谢向糖酵解途径发展。