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Spatial and Single-Cell Transcriptional Profiling Identifies Functionally Distinct Human Dermal Fibroblast Subpopulations

机译:空间和单细胞转录分析确定功能上不同的人类皮肤成纤维细胞亚群。

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摘要

Previous studies have shown that mouse dermis is composed of functionally distinct fibroblast lineages. To explore the extent of fibroblast heterogeneity in human skin, we used a combination of comparative spatial transcriptional profiling of human and mouse dermis and single-cell transcriptional profiling of human dermal fibroblasts. We show that there are at least four distinct fibroblast populations in adult human skin, not all of which are spatially segregated. We define markers permitting their isolation and show that although marker expression is lost in culture, different fibroblast subpopulations retain distinct functionality in terms of Wnt signaling, responsiveness to IFN-γ, and ability to support human epidermal reconstitution when introduced into decellularized dermis. These findings suggest that ex vivo expansion or in vivo ablation of specific fibroblast subpopulations may have therapeutic applications in wound healing and diseases characterized by excessive fibrosis.
机译:先前的研究表明,小鼠真皮由功能不同的成纤维细胞谱系组成。为了探索人类皮肤中成纤维细胞异质性的程度,我们使用了人类和小鼠真皮的比较空间转录谱分析和人类皮肤成纤维细胞的单细胞转录谱分析的组合。我们显示,在成年人类皮肤中至少有四个不同的成纤维细胞群体,但并非所有的都是在空间上隔离的。我们定义了允许其分离的标记,并显示了尽管标记表达在培养中丢失,但不同的成纤维细胞亚群在Wnt信号传导,对IFN-γ的响应性以及在引入脱细胞真皮中支持人表皮重建的能力方面保留了独特的功能。这些发现表明特定纤维母细胞亚群的体外扩增或体内消融可能在伤口愈合和以过度纤维化为特征的疾病中具有治疗应用。

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