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Enhanced Differentiation Potential of Primary Human Endometrial Cells Cultured on 3D Scaffolds

机译:增强初级人体子宫内膜细胞的分化潜力在3D支架上培养

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摘要

Novel approaches for culturing primary human cells in vitro are increasingly needed to study cell and tissue physiology and to grow replacement tissue for regenerative medicine. Conventional 2D monolayer cultures of endometrial epithelial and stromal cells fail to replicate the complex 3D architecture of tissue. A fully synthetic scaffold that mimics the microenvironment of the human endometrium can ultimately provide a robust platform for investigating tissue physiology and, hence, take significant steps toward tackling female infertility and IVF failure. In this work, emulsion-templated porous polymers (known as polyHlPEs) were investigated as scaffolds for the culture of primary human endometrial epithelial and stromal cells (HEECs and HESCs). Infiltration of HEECs and HESCs into cell-seeded polyHIPE scaffolds was assessed by histological studies, and phenotype was confirmed by immunostaining. Confocal microscopy revealed that the morphology of HEECs and HESCs is representative of that found in vivo. RNA sequencing was used to investigate transcriptome differences between cells grown on polyHIPE scaffolds and in monolayer cultures. The differentiation status of HEECs and HESCs grown in polyHIPE scaffolds and in monolayer cultures was further evaluated by monitoring the expression of endometrial marker genes. Our observations suggest that a 3D cell culture model that could approximate native human endometrial architecture and function can be developed using tailored polyHIPE scaffolds.
机译:越来越需要在体外​​培养原发性人细胞的新方法,以研究细胞和组织生理学,并为再生药物种植替代组织。常规的2D单层培养物的子宫内膜上皮和基质细胞未能复制组织的复杂3D架构。一种完全合成的支架,其模拟人体子宫内膜的微环境最终可以提供用于研究组织生理学的鲁棒平台,从而采取符合解决女性不孕症和IVF衰竭的重要步骤。在这项工作中,研究了乳液模板化的多孔聚合物(称为Polyhlpes)作为用于初级人子宫内膜上皮和基质细胞(Heecs和HESC)的培养的支架。通过组织学研究评估HEECS和HECS和HECS和HESCS进入细胞种子的聚骨架支架,通过免疫染色证实表型。共聚焦显微镜表明,Heecs和HESCs的形态是在体内发现的。使用RNA测序来研究在聚氢支架和单层培养物上生长的细胞之间的转录组差异。通过监测子宫内膜标记基因的表达,进一步评价在聚丙烯支架中生长的Heecs和HECS和单层培养物中的差异化状态。我们的观察结果表明,可以使用量身定制的Polyhipe Cudolds开发一种可以近似人体子宫内膜结构和功能的3D细胞培养模型。

著录项

  • 来源
    《Biomacromolecules 》 |2018年第8期| 共8页
  • 作者单位

    Univ Warwick Sch Engn Coventry CV4 7AL W Midlands England;

    Univ Warwick Warwick Med Sch Clin Sci Res Labs Div Biomed Sci Reprod Hlth Unit Coventry CV2 2DX W Midlands England;

    Univ Warwick Warwick Med Sch Clin Sci Res Labs Div Biomed Sci Reprod Hlth Unit Coventry CV2 2DX W Midlands England;

    Univ Warwick Warwick Med Sch Clin Sci Res Labs Div Biomed Sci Reprod Hlth Unit Coventry CV2 2DX W Midlands England;

    Univ Warwick Sch Engn Coventry CV4 7AL W Midlands England;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子生物学 ;
  • 关键词

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