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Follicular development: the role of the follicular microenvironment in selection of the dominant follicle

机译:滤泡发育:滤泡微环境在优势滤泡选择中的作用

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The importance of endocrine signals in the regulation of follicular development has long been recognized. However, the follicular microenvironment also plays a critical role in determining follicular fate. This review summarizes our studies on the role of the intrafollicular IGF system in selection of the dominant follicle (DF) in cattle. During the bovine estrous cycle, the largest antral follicles develop in two or three successive waves of follicular recruitment and selection of a DF High concentrations of estradiol in the follicular fluid are the hallmark of dominant and preovulatory follicles and are associated with lower concentrations of low molecular weight (MW) insulin-like growth factor binding proteins (IGFBP-2, -4, and -5), which can prevent binding of IGF to its receptor. Our studies have shown that dominant and preovulatory follicles also have much higher levels of an IGFBP-4/-5 protease activity, which is the bovine equivalent of the human IGFBP-4 protease, pregnancy-associated plasma protein-A (PAPP-A). Studies of follicles isolated just after the emergence of the DF showed that PAPP-A is present in the follicular fluid of the DF as soon as it can be detected as morphologically dominant. To examine whether higher levels of PAPP-A in one follicle of the cohort (the future DF) precedes morphological dominance, the four largest follicles were isolated from pairs of bovine ovaries obtained before one follicle of the cohort was significantly larger the others, around the time that one follicle was first detected as morphologically dominant and after dominance was well established. Analysis of the temporal sequence of changes in estradiol, low MW IGFBPs, free IGF, and PAPP-A in the follicular fluid suggested that an increase in PAPP-A is the earliest biochemical difference yet detected in the future DF and that follicular selection is the result of a progressive series of changes beginning with the acquisition of PAPP-A, which leads to a decrease in IGFBP-4 and -5 and an increase in free IGF, which synergizes with FSH to increase estradiol production. Co-dominant follicles, induced by injection of small doses of recombinant bovine (rb) FSH, both had levels of PAPP-A similar to the single DF of control heifers, supporting the hypothesized role of FSH in the induction of PAPP-A in the DE Taken together, these results suggest a critical role for FSH-induced PAPP-A, and thus for free IGF, in the selection of the DE In contrast, other experiments provided evidence for a deleterious effect of IGF on the initiation of bovine follicular growth and the survival of primordial and primary follicles in vitro. These results underscore the importance of the follicular microenvironment in determining follicular fate and indicate that its effects can be stage-specific.
机译:早已认识到内分泌信号在卵泡发育调节中的重要性。但是,滤泡微环境在决定滤泡命运方面也起着关键作用。这篇综述总结了我们关于卵泡内IGF系统在牛优势卵泡(DF)选择中的作用的研究。在牛的发情周期中,最大的窦性卵泡在连续的两到三波卵泡募集和选择DF中发育。卵泡液中高浓度的雌二醇是优势卵泡和排卵前卵泡的标志,并与较低浓度的低分子卵泡相关重(MW)的胰岛素样生长因子结合蛋白(IGFBP-2,-4和-5),可以阻止IGF与其受体结合。我们的研究表明,优势卵泡和排卵前卵泡还具有更高水平的IGFBP-4 / -5蛋白酶活性,这与人IGFBP-4蛋白酶,与妊娠相关的血浆蛋白A(PAPP-A)的牛等效物。对DF刚出现后分离出的卵泡的研究表明,只要可以检测到PAPP-A在形态上占优势,就存在于DF的卵泡液中。为了检查一个队列(未来的DF)中较高的PAPP-A水平是否先于形态学优势,从队列中一个卵泡明显大于另一个卵泡之前,从成对的卵巢中分离出最大的四个卵泡。首次检测到一个卵泡在形态上占优势并在确立支配地位之后的时间。分析卵泡液中雌二醇,低分子量IGFBP,游离IGF和PAPP-A的时间变化顺序表明,PAPP-A的增加是在未来DF中发现的最早的生化差异,卵泡的选择是从获得PAPP-A开始进行一系列变化的结果,这导致IGFBP-4和-5的减少以及游离IGF的增加(与FSH协同作用以增加雌二醇的产生)。通过注射小剂量重组牛(rb)FSH诱导的共支卵泡均具有与对照小母牛的单个DF相似的PAPP-A水平,支持了FSH假定的FSH在诱导PAPP-A中的作用。结合在一起,这些结果表明,在选择DE时,FSH诱导的PAPP-A以及游离的IGF都起着至关重要的作用。相反,其他实验提供了IGF对牛卵泡生长的有害作用的证据。和原始和初级卵泡的体外存活率。这些结果强调了卵泡微环境在确定卵泡命运中的重要性,并表明其作用可能是阶段特异性的。

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