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首页> 外文期刊>Molecular human reproduction. >A novel model of human implantation: 3D endometrium-like culture system to study attachment of human trophoblast (Jar) cell spheroids.
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A novel model of human implantation: 3D endometrium-like culture system to study attachment of human trophoblast (Jar) cell spheroids.

机译:一种新型的人类植入模型:3D子宫内膜样培养系统,用于研究人类滋养细胞(Jar)细胞球体的附着。

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摘要

There is an urgent need to develop optimized experimental models to examine human implantation. These studies aimed to (i) establish a human endometrium-like three-dimensional (3D) culture system, and (ii) examine the attachment of trophoblast-like Jar spheroids to the culture. In the present work, 3D endometrial cultures were constructed with fibrin-agarose as matrix scaffold, and using epithelial and stromal cells from both human primary cultures and established cell lines. An attachment assay between trophoblast cells and the 3D culture was developed. Epithelial cells (cytokeratin(+)) concentrated on top of the matrix forming a monolayer, and stromal cells (vimentin(+)) resided within the matrix, resembling the normal endometrial structure. The capability of primary epithelial cells to form glands spontaneously was observed. Human trophoblast cells (Jar cells) were hCG(+) by immunostaining, allowed to form spheroids, and confirmed to secrete hCG into the medium. Time-dependent experiments demonstrated a high rate of attachment of Jar spheroids to the epithelium, and adhesion was strongly related to the various cell types present in the 3D culture. An architecturally and functionally competent 3D endometrial culture system was established, that coupled with Jar spheroids mimicking trophoblast cells, provides a unique in vitro model for the study of certain aspects of human implantation.
机译:迫切需要开发优化的实验模型来检查人体植入情况。这些研究旨在(i)建立人类子宫内膜样三维(3D)培养系统,以及(ii)检查滋养细胞样Jar球体对培养物的附着。在目前的工作中,使用纤维蛋白-琼脂糖作为基质支架,并使用来自人类原代培养物和已建立细胞系的上皮和基质细胞,构建了3D子宫内膜培养物。建立了滋养层细胞与3D培养物之间的附着分析。上皮细胞(cytokeratin(+))集中在基质上形成单层,基质细胞(vimentin(+))驻留在基质内,类似于正常的子宫内膜结构。观察到原代上皮细胞自发形成腺体的能力。通过免疫染色将人类滋养层细胞(Jar细胞)制成hCG(+),使其形成球状体,并确认将hCG分泌到培养基中。时间依赖性实验表明Jar球状体与上皮的附着率很高,并且粘附力与3D培养物中存在的各种细胞类型密切相关。建立了在结构和功能上具有竞争力的3D子宫内膜培养系统,该系统与模仿滋养层细胞的Jar球体相结合,为研究人类植入的某些方面提供了独特的体外模型。

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