通过空间转录组分析对人类胎儿阴道上皮细胞进行分子分层。

Ziying Ye, Peipei Jiang, Qi Zhu, Zhongrui Pei, Yali Hu, Guangfeng Zhao
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摘要

人体阴道上皮是众多生殖过程的重要组成部分,也是抵御病原体入侵的重要保护屏障。尽管其重要性不言而喻,但对其分子特征(包括其多层的分子表达和分布)的全面探索尚未进行。在本研究中,我们对人类胎儿阴道壁进行了空间转录组分析,以填补这一知识空白。根据转录组特征和解剖学特征,我们成功地将阴道上皮分为四个不同的区域。这种方法揭示了这些区域内独特的转录组特征,使我们能够识别差异表达的基因,并发现阴道上皮不同区域的新标记。此外,我们的研究结果还突显了角蛋白(KRT)基因在阴道上皮不同区域的不同表达,观察到表达模式从基底层向表面/表层逐渐转变。这表明人类阴道上皮存在潜在的分化轨迹,揭示了该组织的动态性质。此外,通过 KEGG 通路分析发现,基底层富含丰富的生物过程,这表明基底层细胞处于活跃状态。随后,基底区潜伏干细胞标志物的表达也被确定。总之,我们的研究为人类阴道上皮细胞和阴道粘膜的复杂机制提供了重要的认识,在阴道重建和给药方面具有潜在的应用价值,使该图集成为未来妇女健康和生殖医学研究的重要工具。
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Molecular stratification of the human fetal vaginal epithelium by spatial transcriptome analysis.
The human vaginal epithelium is a crucial component of numerous reproductive processes and serves as a vital protective barrier against pathogenic invasion. Despite its significance, a comprehensive exploration of its molecular profiles, including molecular expression and distribution across its multiple layers, has not been performed. In this study, we perform a spatial transcriptomic analysis within the vaginal wall of human fetuses to fill this knowledge gap. We successfully categorize the vaginal epithelium into four distinct zones based on transcriptomic profiles and anatomical features. This approach reveals unique transcriptomic signatures within these regions, allowing us to identify differentially expressed genes and uncover novel markers for distinct regions of the vaginal epithelium. Additionally, our findings highlight the varied expressions of keratin ( KRT) genes across different zones of the vaginal epithelium, with a gradual shift in expression patterns observed from the basal layer to the surface/superficial layer. This suggests a potential differentiation trajectory of the human vaginal epithelium, shedding light on the dynamic nature of this tissue. Furthermore, abundant biological processes are found to be enriched in the basal zone by KEGG pathway analysis, indicating an active state of the basal zone cells. Subsequently, the expressions of latent stem cell markers in the basal zone are identified. In summary, our research provides a crucial understanding of human vaginal epithelial cells and the complex mechanisms of the vaginal mucosa, with potential applications in vaginal reconstruction and drug delivery, making this atlas a valuable tool for future research in women's health and reproductive medicine.
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