Models for the study of uterine receptivity for blastocyst implantation.

K L Sharpe-Timms, S R Glasser
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引用次数: 3

Abstract

A variety of models have been developed to study endometrial receptivity which involves normal, appropriately timed endometrial development and remodeling for blastocyst attachment and trophoblast invasion during the luteal phase of the menstrual cycle. Due to species differences, the human is by far the best model per se by which to study human endometrial receptivity. Techniques have evolved to obtain in vivo data on endometrial receptivity using hysteroscopy, ultrasonography or magnetic resonance imaging. Despite species differences, comparative studies of mammalian models and tissue- and cell culture models using endometrial tissue or cells harvested at particular phases of the reproductive cycle, or following experimental manipulation, have been used productively to study endometrial function. Differences as well as similarities have proven to be instructive. Such models have been used to study a variety of entities, such as homotypic and heterotypic cell-cell interaction, the role of steroids, cytokines, growth factors, immunomodulatory agents and pharmacological substances. These models have also been used to study cellular, biochemical and molecular mechanisms involved with uterine receptivity. This chapter was designed to provide a critical review of contemporary literature relating to in vivo models and laboratory strategies and paradigms for the study of uterine receptivity for blastocyst implantation.

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囊胚着床子宫接受性研究的模型。
在月经周期的黄体期,人们建立了多种模型来研究子宫内膜容受性,包括正常的、适当时间的子宫内膜发育和重塑,以适应囊胚附着和滋养细胞侵袭。由于物种差异,人类是迄今为止研究人类子宫内膜容受性的最佳模型。技术已经发展到通过宫腔镜、超声或磁共振成像获得子宫内膜容受性的体内数据。尽管存在物种差异,但使用子宫内膜组织或生殖周期特定阶段收获的细胞或经过实验操作的哺乳动物模型和组织和细胞培养模型的比较研究已经有效地用于研究子宫内膜功能。事实证明,差异和相似都是有益的。这些模型已被用于研究各种实体,如同型和异型细胞-细胞相互作用,类固醇,细胞因子,生长因子,免疫调节剂和药理学物质的作用。这些模型也被用于研究子宫接受性的细胞、生化和分子机制。这一章的目的是提供一个重要的回顾当代文献有关体内模型和实验室策略和范式的子宫接受性研究囊胚着床。
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Publisher's Note: In Gratitude Farewell - and Thanks Prolactin and its receptor in human endometrium. Paracrinology of endometrial neuropeptides: corticotropin-releasing hormone and opioids. The role of placental Fas ligand in maintaining immune privilege at maternal-fetal interfaces.
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