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人类胚胎牙齿发育的时空细胞景观。

Spatiotemporal cell landscape of human embryonic tooth development.

机构信息

Department of Stomatology, Tongren Hospital, Shanghai Jiao Tong University School of Medicine, Shanghai, China.

State Key Laboratory of Oral Disease, West China Hospital of Stomatology, Sichuan University, Chengdu, China.

出版信息

Cell Prolif. 2024 Sep;57(9):e13653. doi: 10.1111/cpr.13653. Epub 2024 Jun 12.

Abstract

Understanding the cellular composition and trajectory of human tooth development is valuable for dentistry and stem cell engineering research. Previous single-cell studies have focused on mature human teeth and developing mouse teeth, but the cell landscape of human embryonic dental development is still unknown. In this study, tooth germ tissues were collected from aborted foetus (17-24 weeks) for single-cell RNA sequence and spatial transcriptome analysis. The cells were classified into seven subclusters of epithelium, and seven clusters of mesenchyme, as well as other cell types such as Schwann cell precursor and pericyte. For epithelium, the stratum intermedium branch and the ameloblast branch diverged from the same set of outer enamel-inner enamel-ALCAM+ epithelial cell lineage, but their spatial distribution of two branches was not clearly distinct. This trajectory received spatially adjacent regulation signals from mesenchyme and pericyte, including JAG1 and APP. The differentiation of pulp cell and pre-odontoblast showed four waves of temporally distinct gene expression, which involved regulation networks of LHX9, DLX5 and SP7, and these genes were regulated by upstream ligands such as the BMP family. This provides a reference landscape for the research on early human tooth development, covering different spatial structures and developmental periods.

摘要

了解人类牙齿发育的细胞组成和轨迹对于牙科学和干细胞工程研究具有重要价值。以前的单细胞研究集中在成熟的人类牙齿和发育中的小鼠牙齿上,但人类胚胎牙齿发育的细胞景观仍然未知。在这项研究中,从流产胎儿(17-24 周)中收集牙原组织进行单细胞 RNA 测序和空间转录组分析。这些细胞被分为上皮的七个亚群,间充质的七个群,以及施万细胞前体和成纤维细胞等其他细胞类型。对于上皮细胞,中胚层分支和釉质细胞分支从同一套外釉内釉-ALCAM+上皮细胞谱系分化而来,但它们的两个分支的空间分布并不明显。这种轨迹从间充质和成纤维细胞接收空间相邻的调节信号,包括 JAG1 和 APP。牙髓细胞和前期成牙本质细胞的分化表现出四个时间上明显不同的基因表达波,涉及 LHX9、DLX5 和 SP7 的调控网络,这些基因受上游配体如 BMP 家族的调节。这为早期人类牙齿发育的研究提供了一个参考图谱,涵盖了不同的空间结构和发育阶段。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1092/11503248/2b03e7647453/CPR-57-e13653-g007.jpg

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