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奶牛输卵管中的血管内皮生长因子系统:可能参与输卵管运动和胚胎运输的调节。

Vascular endothelial growth factor system in the cow oviduct: a possible involvement in the regulation of oviductal motility and embryo transport.

作者信息

Wijayagunawardane Missaka P B, Kodithuwakku Suranga P, Yamamoto Dai, Miyamoto Akio

机构信息

Department of Animal Science, University of Peradeniya, Peradeniya, Sri Lanka.

出版信息

Mol Reprod Dev. 2005 Dec;72(4):511-20. doi: 10.1002/mrd.20379.

Abstract

Vascular endothelial growth factor (VEGF) is a potent angiogenic and permeability enhancing factor, which shows the highest activity in the oviduct during the periovulatory period of the estrous cycle in cattle. It has also been shown that the contraction activity of oviduct is highest during the periovulatory period. The present study therefore focused on the possible involvement of VEGF in the regulation of biosynthesis and secretion of contraction-relaxation-related substances in the cow oviduct. Possible autonomous VEGF system in the oviduct as well as its endocrine control was also studied. Bovine oviductal epithelial cells (BOEC) in the second passage were cultured with VEGF (1 ng/ml) alone or with luteinizing hormone (LH; 10 ng/ml), estradiol 17-beta (E2; 1 ng/ml), and/or progesterone (P4; 1 ng/ml). The levels of prostaglandins (PGs), endothelin-1 (ET-1), and angiotensin II (Ang II) in the medium were measured using second antibody enzymeimmunoassay (EIA). The mRNA expressions for cycloxygenase-2 (Cox-2), prostaglandin F synthase (PGFS), prostaglandin E synthase (PGES), prepro-ET-1, endothelin converting enzyme-1 (Ece-1), angiotensin converting enzyme-1 (Ace-1), VEGF and its receptors were investigated using real-time RT-PCR. The results indicate that, (1) VEGF dose-dependently stimulated the release of prostaglandin E2 (PGE2), prostaglandin F2alpha (PGF2alpha), and ET-1, but not Ang II. VEGF and VEGF with LH, E2, and P4 upregulated mRNA expression for biosynthesis cascade of PG, ET-1 as well as their release. However, only the combination of VEGF with LH, E2, and P4 upregulated mRNA for Ace-1 and Ang II release, but not VEGF alone. (2) Treatments of LH, with E2 and/or P4 increased the mRNA expression for VEGF, Flk-1 and Flt-1, and (3) VEGF itself downregulated the expression of mRNA for VEGF, and LH, E2, and P4 enhanced this downregulatory effect. The results of the present study provide the first evidence that (1) VEGF directly stimulates the biosynthesis and release of PGE2, PGF2alpha, and ET-1 in the bovine oviduct, (2) LH stimulates the oviductal VEGF system, and (3) VEGF downregulates the oviductal VEGF system and this downregulation was further intensified in the presence of LH. The data suggest that the preovulatory LH-surge, together with increasing E2 secretion from the Graffian follicle and basal P4 levels from the regressing corpus luteum (CL), upregulates the oviductal VEGF system, inducing the maximum oviductal production of contraction-relaxation-related substances for active oviduct contraction and rapid transport of gametes to the fertilization site. However, the oviductal VEGF elevation caused by the LH-surge, appears to downregulate the oviductal VEGF system immediately after ovulation thereby may contribute to suppress oviductal contraction to secure slow transport of the embryo to the uterus at the optimal time.

摘要

血管内皮生长因子(VEGF)是一种强大的血管生成和通透性增强因子,在牛发情周期的排卵期,其在输卵管中的活性最高。研究还表明,输卵管的收缩活性在排卵期也最高。因此,本研究重点关注VEGF在调节奶牛输卵管收缩 - 舒张相关物质的生物合成和分泌中可能发挥的作用。同时也研究了输卵管中可能存在的自主VEGF系统及其内分泌调控。将第二代牛输卵管上皮细胞(BOEC)单独用VEGF(1 ng/ml)培养,或与促黄体生成素(LH;10 ng/ml)、17-β雌二醇(E2;1 ng/ml)和/或孕酮(P4;1 ng/ml)共同培养。使用第二抗体酶免疫测定法(EIA)测量培养基中前列腺素(PGs)、内皮素 - 1(ET - 1)和血管紧张素II(Ang II)的水平。使用实时RT - PCR研究环氧化酶 - 2(Cox - 2)、前列腺素F合酶(PGFS)、前列腺素E合酶(PGES)、前内皮素 - 1、内皮素转换酶 - 1(Ece - 1)、血管紧张素转换酶 - 1(Ace - 1)、VEGF及其受体的mRNA表达。结果表明,(1)VEGF以剂量依赖的方式刺激前列腺素E2(PGE2)、前列腺素F2α(PGF2α)和ET - 1的释放,但不刺激Ang II的释放。VEGF以及VEGF与LH、E2和P4共同作用上调了PG、ET - 1生物合成级联反应的mRNA表达及其释放。然而,只有VEGF与LH、E2和P4的组合上调了Ace - 1和Ang II释放的mRNA,单独的VEGF则没有。(2)LH与E2和/或P4处理增加了VEGF、Flk - 1和Flt - 1的mRNA表达,并且(3)VEGF自身下调了VEGF的mRNA表达,而LH、E2和P4增强了这种下调作用。本研究结果首次证明:(1)VEGF直接刺激牛输卵管中PGE2、PGF2α和ET - 1的生物合成和释放;()LH刺激输卵管VEGF系统;(3)VEGF下调输卵管VEGF系统,并且在LH存在的情况下这种下调作用进一步增强。数据表明,排卵前LH峰与格拉夫卵泡中E2分泌增加以及退化黄体(CL)的基础P4水平一起,上调了输卵管VEGF系统,诱导输卵管产生最大量的收缩 - 舒张相关物质,以实现输卵管的主动收缩以及将配子快速运输到受精部位。然而,LH峰引起的输卵管VEGF升高似乎在排卵后立即下调输卵管VEGF系统,从而可能有助于抑制输卵管收缩,确保胚胎在最佳时间缓慢运输到子宫。

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