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细胞外基质成分和弹性调节间质细胞诱导的小鼠阴道上皮分化†。

Extracellular matrix components and elasticity regulate mouse vaginal epithelial differentiation induced by mesenchymal cells†.

机构信息

Department of Biological Science and Technology, Faculty of Industrial Science and Technology, Tokyo University of Science, Tokyo, Japan.

Institute of Industrial Science, The University of Tokyo, Tokyo, Japan.

出版信息

Biol Reprod. 2021 Jun 4;104(6):1239-1248. doi: 10.1093/biolre/ioab041.

Abstract

Oviduct, uterus, and vagina are derived from Müllerian ducts. But only in the vagina, the epithelium differentiates into stratified layers. Organ-specific secreted factors derived from the stroma of a neonatal mouse induce epithelial differentiation in the female reproductive tracts. However, the effects of the components and mechanical property of extracellular matrix (ECM) on the regulation of gene expression in the mesenchymal cells of neonatal stroma and differentiation of epithelium in the female reproductive tracts have been overlooked. In the present study, we have developed a simple 3D neonatal vaginal model using clonal cell lines to study the effect of ECM's components and stiffness on the epithelial stratification. Transcriptome analysis was performed by DNA-microarray to identify the components of ECM involved in the differentiation of vaginal epithelial stratification. The knockdown experiment of the candidate genes relating to vaginal epithelial stratification was focused on fibromodulin (Fmod), a collagen cross-linking protein. FMOD was essential for the expression of Bmp4, which encodes secreted factors to induce the epithelial stratification of vaginal mesenchymal cells. Furthermore, stiffer ECM as a scaffold for epithelial cells is necessary for vaginal epithelial stratification. Therefore, the components and stiffness of ECM are both crucial for the epithelial stratification in the neonatal vagina.

摘要

输卵管、子宫和阴道均由缪勒管发育而来。但只有在阴道中,上皮才分化为复层。来源于新生小鼠间质的器官特异性分泌因子诱导雌性生殖道的上皮分化。然而,细胞外基质(ECM)的成分和机械特性对调节新生间质中基质细胞的基因表达以及雌性生殖道上皮的分化的影响尚未被关注。在本研究中,我们使用克隆细胞系开发了一个简单的 3D 新生阴道模型,以研究 ECM 成分和硬度对上皮分层的影响。通过 DNA 微阵列进行转录组分析,以鉴定参与阴道上皮分层分化的 ECM 成分。候选基因与阴道上皮分层有关的基因敲低实验主要集中在纤维调节素(Fmod),一种胶原蛋白交联蛋白上。FMOD 对于编码分泌因子的 Bmp4 的表达是必需的,这些分泌因子诱导阴道间充质细胞的上皮分层。此外,作为上皮细胞支架的较硬 ECM 对于阴道上皮分层是必需的。因此,ECM 的成分和硬度对于新生阴道中的上皮分层都是至关重要的。

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