Black Family Stem Cell Institute, Icahn School of Medicine at Mount Sinai, New York, New York.
Department of Cell, Developmental and Regenerative Biology, Icahn School of Medicine at Mount Sinai, New York, New York.
Exp Dermatol. 2019 Apr;28(4):332-344. doi: 10.1111/exd.13913.
Hair follicle (HF) formation in developing embryonic skin requires stepwise signalling between the epithelial epidermis and mesenchymal dermis, and their specialized derivatives, the placode/germ/peg and dermal condensate/papilla, respectively. Classically, distinct stages of HF morphogenesis have been defined, in the mouse model, based on (a) changes in cell morphology and aggregation; (b) expression of few known molecular markers; (c) the extent of follicle downgrowth; and (d) the presence of differentiating cell types. Refined genetic strategies and recent emerging technologies, such as live imaging and transcriptome analyses of isolated cell populations or single cells, have enabled a closer dissection of the signalling requirements at different stages of HF formation, particularly early on. They have also led to the discovery of precursor cells for placode, dermal condensate and future bulge stem cells that, combined with molecular insights into their fate specification and subsequent formation, serve as novel landmarks for early HF morphogenetic events and studies of the signalling networks mediating these processes. In this review, we integrate the emergence of HF precursor cell states and novel molecular markers of fate and formation to update the widely used 20-year-old seminal classification guide of HF morphogenetic stages by Paus et al. We then temporally describe the latest insights into the early cellular and molecular events and signalling requirements for HF morphogenesis in relation to one another in a holistic manner.
毛发滤泡(HF)在胚胎皮肤中的形成需要上皮表皮和间充质真皮之间的逐步信号传递,以及它们各自的特化衍生物,即基板/ germ/ peg 和真皮凝块/乳头。经典地,基于(a)细胞形态和聚集的变化;(b)少数已知分子标记的表达;(c)滤泡向下生长的程度;以及(d)分化细胞类型的存在,在小鼠模型中定义了 HF 形态发生的不同阶段。精细的遗传策略和最近出现的新技术,如活细胞成像和分离细胞群或单细胞的转录组分析,使人们能够更仔细地剖析 HF 形成不同阶段的信号要求,特别是早期阶段。它们还导致发现了基板、真皮凝块和未来隆起干细胞的前体细胞,这些前体细胞与它们的命运指定和随后形成的分子见解相结合,为早期 HF 形态发生事件和介导这些过程的信号网络研究提供了新的标志物。在这篇综述中,我们整合了 HF 前体细胞状态和命运形成的新分子标记的出现,以更新 Paus 等人广泛使用的 20 年历史的 HF 形态发生阶段的开创性分类指南。然后,我们从时间上描述了与 HF 形态发生相关的早期细胞和分子事件以及信号要求的最新见解,以整体方式相互关联。