Fontes P K, Castilho A C S, Razza E M, Ereno R L, Satrapa R A, Barros C M
Department of Pharmacology, Institute of Bioscience, University of São Paulo State, Botucatu, São Paulo, Brazil.
Department of Pharmacology, Institute of Bioscience, University of São Paulo State, Botucatu, São Paulo, Brazil.
Anim Reprod Sci. 2014 Dec 30;151(3-4):112-8. doi: 10.1016/j.anireprosci.2014.10.012. Epub 2014 Oct 22.
Many peptides are responsible for the coordination of muscle contraction, secretion and ciliary beating of the oviduct epithelium to allow the transport of gametes and embryos, including vascular endothelial growth factors (VEGF), prostaglandins (PGs), endotelin-1 (ET-1) and angiotensin II (Ang II). The effect of reproductive biotechnologies used to improve embryo yield on oviduct gene expression is poorly understood. Thus, the aim of the present study was to evaluate the effect of ovarian superstimulation on the mRNA expression of the genes encoding the major peptides involved in oviduct contraction in bovine. Therefore, Nelore cows were submitted to P-36 (n=5) or P-36/eCG (n=5) ovarian superstimulatory protocols and a control group of cows was not submitted to any superstimulatory protocol (n=5). The relative expression of VEGF (VEGF, Flk1, Flt1), Ang II (AGTR2, ACE1), ET1 (ET1, ECE1) and PG pathway members (PGES, EP2, EP4, COX1, COX2) was analyzed using real time RT-PCR in each of oviduct segment (infundibulum, ampulla and isthmus). All target genes were expressed in the three segments of the bovine oviduct; however, specific genes were regulated by ovarian superstimulation: EP2 and EP4 receptors mRNA was affected by P-36/eCG protocol, in the ampulla and infundibulum, respectively; and AGTR2 mRNA was up-regulated by both the P-36/eCG and P-36 protocols in the isthmus. The upregulation of EP2, EP4 and AGTR2 expression in the superstimulated cows suggests a suitable effect of FSH and eCG on bovine oviduct physiology, coordinating the contraction in Nelore cows.
许多肽负责协调肌肉收缩、输卵管上皮的分泌和纤毛摆动,以促进配子和胚胎的运输,包括血管内皮生长因子(VEGF)、前列腺素(PGs)、内皮素-1(ET-1)和血管紧张素II(Ang II)。用于提高胚胎产量的生殖生物技术对输卵管基因表达的影响尚不清楚。因此,本研究的目的是评估卵巢超刺激对牛输卵管收缩相关主要肽编码基因mRNA表达的影响。因此,将内罗尔牛分为P-36组(n = 5)或P-36/eCG组(n = 5)进行卵巢超刺激方案处理,对照组牛不进行任何超刺激方案处理(n = 5)。使用实时RT-PCR分析每个输卵管段(漏斗部、壶腹部和峡部)中VEGF(VEGF、Flk1、Flt1)、Ang II(AGTR2、ACE1)、ET1(ET1、ECE1)和PG途径成员(PGES、EP2、EP4、COX1、COX2)的相对表达。所有靶基因均在牛输卵管的三个段中表达;然而,特定基因受卵巢超刺激调节:EP2和EP4受体mRNA分别在壶腹部和漏斗部受P-36/eCG方案影响;AGTR2 mRNA在峡部受P-36/eCG和P-36方案上调。超刺激母牛中EP2、EP4和AGTR2表达的上调表明FSH和eCG对牛输卵管生理有适当影响,可协调内罗尔牛的收缩。