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Progesterone from the Cumulus Cells Is the Sperm Chemoattractant Secreted by the Rabbit Oocyte Cumulus Complex

机译:积丘细胞中的孕酮是兔卵母细胞积丘复合物分泌的精子趋化因子。

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摘要

Sperm chemotaxis in mammals have been identified towards several female sources as follicular fluid (FF), oviduct fluid, and conditioned medium from the cumulus oophorus (CU) and the oocyte (O). Though several substances were confirmed as sperm chemoattractant, Progesterone (P) seems to be the best chemoattractant candidate, because: 1) spermatozoa express a cell surface P receptor, 2) capacitated spermatozoa are chemotactically attracted in vitro by gradients of low quantities of P; 3) the CU cells produce and secrete P after ovulation; 4) a gradient of P may be kept stable along the CU; and 5) the most probable site for sperm chemotaxis in vivo could be near and/or inside the CU. The aim of this study was to verify whether P is the sperm chemoattractant secreted by the rabbit oocyte-cumulus complex (OCC) in the rabbit, as a mammalian animal model. By means of videomicroscopy and computer image analysis we observed that only the CU are a stable source of sperm attractants. The CU produce and secrete P since the hormone was localized inside these cells by immunocytochemistry and in the conditioned medium by enzyme immunoassay. In addition, rabbit spermatozoa express a cell surface P receptor detected by western blot and localized over the acrosomal region by immunocytochemistry. To confirm that P is the sperm chemoattractant secreted by the CU, the sperm chemotactic response towards the OCC conditioned medium was inhibited by three different approaches: P from the OCC conditioned medium was removed with an anti-P antibody, the attractant gradient of the OCC conditioned medium was disrupted by a P counter gradient, and the sperm P receptor was blocked with a specific antibody. We concluded that only the CU but not the oocyte secretes P, and the latter chemoattract spermatozoa by means of a cell surface receptor. Our findings may be of interest in assisted reproduction procedures in humans, animals of economic importance and endangered species.
机译:哺乳动物中的精子趋化作用已被发现有几种雌性来源,如卵泡液(FF),输卵管液以及卵丘(CU)和卵母细胞(O)的条件培养基。尽管已确认几种物质可作为精子的化学吸引剂,但孕酮(P)似乎是最佳的化学吸引剂,因为:1)精子表达细胞表面的P受体; 2)体外,低浓度P的梯度在化学上吸引了有能力的精子; 3)排卵后CU细胞产生并分泌P; 4)P的梯度可以沿着CU保持稳定; 5)体内最可能发生精子趋化的部位可能在CU附近和/或内部。这项研究的目的是验证作为哺乳动物动物模型,P是否为兔卵母细胞-卵丘复合物(OCC)分泌的精子趋化因子。通过视频显微镜和计算机图像分析,我们观察到只有CU是稳定的精子引诱剂来源。 CU产生并分泌P,因为该激素通过免疫细胞化学定位在这些细胞内部,并通过酶免疫测定定位在条件培养基中。另外,兔精子表达通过免疫印迹检测的细胞表面P受体,并通过免疫细胞化学定位在顶体区域。为了确认P是CU分泌的精子趋化因子,通过三种不同的方法抑制了对OCC条件培养基的精子趋化反应:用抗P抗体去除了OCC条件培养基中的P,OCC的吸引梯度P反向梯度破坏条件培养基,并用特异性抗体封闭精子P受体。我们得出的结论是,只有CU才能卵母细胞分泌P,而卵母细胞则不能通过细胞表面受体分泌精子。我们的发现可能对人类,具有重要经济意义的动物和濒危物种的辅助生殖程序感兴趣。

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