细胞因子和植入。

A Sharkey
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引用次数: 188

摘要

有强有力的证据表明,细胞因子和生长因子作为类固醇作用于子宫内膜的局部介质发挥重要作用,为着床做好准备。这些因素也被证明以自分泌和旁分泌的方式调节着床前胚胎的发育。定义每种细胞因子功能的尝试包括受体定位、类固醇激素控制模式的建立以及体内和体外功能测定。然而,由于细胞因子网络的复杂性和冗余性,确定这众多因素中哪一个在植入中起关键作用已被证明是困难的。虽然细胞因子可以直接影响着床前胚胎的发育,但几种物种胚胎在确定的培养基中的体外培养表明,外源细胞因子对囊胚发育并不是必需的。尽管如此,在培养基中补充生长因子对于克服体外胚胎培养的有害影响可能是有价值的,体外胚胎培养广泛用于人类和家养物种的辅助生殖技术。在小鼠品系中,生长因子或粘附分子的特定基因被删除,这也被证明对确定植入过程中必不可少的因素以及那些发挥不太重要作用的因素很重要。在子宫内膜中不能表达白血病抑制因子的小鼠不能支持着床,这表明该蛋白在产生接受性子宫内膜中起关键作用。相反,缺乏表皮生长因子受体的CF-1小鼠胚胎不能附着,这表明该受体是产生植入能力胚胎所必需的。这类受体或其配体在子宫内膜中的异常表达可能是人类某些形式的不孕症的基础。检查这些因素在子宫内膜中的作用将允许解剖胚胎附着和着床的分子基础。
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Cytokines and implantation.

There is strong evidence that cytokines and growth factors play an important role as local mediators of the actions of steroids on the endometrium to prepare it for implantation. These factors have also been shown to act in both an autocrine and paracrine manner to regulate the development of preimplantation embryos in several species. Attempts to define the function of each cytokine have involved receptor localization, establishment of the mode of control by steroid hormones, and functional assays in vivo and in vitro. However, because of the complex and redundant nature of cytokine networks, defining which of this plethora of factors plays a critical role in implantation has proved difficult. Although the development of preimplantation embryos can be influenced directly by cytokines, the in vitro culture of embryos from several species in defined media indicates that exogenous cytokines are not essential for development to the blastocyst stage. Nonetheless, supplementation of media with growth factors may prove valuable in overcoming the detrimental effects of embryo culture in vitro, which is widely used in assisted reproduction techniques in humans and domestic species. The creation of mouse strains in which specific genes for growth factors or adhesion molecules are deleted has also proved important in defining factors essential in implantation, as well as those that play a less significant role. Mice unable to express leukaemia inhibitory factor in the endometrium fail to support implantation, indicating a critical role for this protein in producing a receptive endometrium. Conversely, mouse embryos of the CF-1 strain, which lack the receptor for epidermal growth factor, fail to attach, indicating that this receptor is necessary for producing an implantation competent embryo. It is likely that abnormal expression of such receptors or their ligands in the endometrium underlies some forms of human infertility. Examining the actions of these factors in the endometrium will allow dissection of the molecular basis of embryo attachment and implantation.

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Is the action of inhibin mediated via a unique receptor? Function of steroidogenic factor 1 during development and differentiation of the reproductive system. Roles of KIT and KIT LIGAND in ovarian function. Role of mother-young interactions in the survival of offspring in domestic mammals. Control of the immunological environment of the uterus.
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