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基因参与与胆汁分泌途径相关的大鼠牙胚发育。

The involvement of genes related to bile secretion pathway in rat tooth germ development.

机构信息

Department of Stomatology, Huashan Hospital, Fudan University, 12 Urumqi Road, Shanghai, 200040, China.

出版信息

J Mol Histol. 2020 Feb;51(1):99-107. doi: 10.1007/s10735-020-09861-0. Epub 2020 Feb 24.

Abstract

Tooth formation is accomplished under strict genetic control procedures. Therefore, exploring the gene network system of tooth development has a very positive practical significance for the study of tooth tissue regeneration and the prevention and treatment of tooth abnormalities. Early bell stage is the initial phase of odontoblast formation and dentin matrix deposition in the process of tooth development. Through RNA sequencing and differential gene analysis of the rat tooth germ samples at cap stage and early bell stage, we found that the bile secretion pathway was the most significant difference signal pathway during the development between cap stage and bell stage, which mainly included ABCC3, AQP4, SLC10A1, SLC2A1, SLC4A4, ADCY5, AQP9, CFTR, ATP1A2, ATP1B1 and ATP1A1, totally 11genes. Immunostaining revealed that SLC2A1, SLC4A4, ADCY5 and ATP1B1were mainly expressed in epithelium in bud stage and inner and outer enamel epithelium during the embryonic phase. In the postnatal 1 and postnatal 7, SLC2A1, SLC4A4 and ABCC3 were highly expressed in ameloblasts and odontoblasts while ADCY5, ATP1B1 and SLC10A1was expressed moderately only in odontoblasts. This finding illustrated that the bile secretion pathway related genes may participate in the development of tooth germ.

摘要

牙齿的形成是在严格的遗传控制程序下完成的。因此,探索牙齿发育的基因网络系统对于研究牙齿组织再生和预防和治疗牙齿异常具有非常积极的实际意义。早期钟状期是牙齿发育过程中成牙本质细胞形成和牙本质基质沉积的初始阶段。通过对帽状期和早期钟状期大鼠牙胚样本的 RNA 测序和差异基因分析,我们发现胆汁分泌途径是帽状期和钟状期发育过程中差异最显著的信号途径,主要包括 ABCC3、AQP4、SLC10A1、SLC2A1、SLC4A4、ADCY5、AQP9、CFTR、ATP1A2、ATP1B1 和 ATP1A1,共 11 个基因。免疫染色显示,SLC2A1、SLC4A4、ADCY5 和 ATP1B1 在胚胎期主要在芽状期和内外釉上皮中表达。在出生后 1 天和 7 天,SLC2A1、SLC4A4 和 ABCC3 在成釉细胞和成牙本质细胞中高度表达,而 ADCY5、ATP1B1 和 SLC10A1 仅在成牙本质细胞中中度表达。这一发现表明胆汁分泌途径相关基因可能参与牙胚的发育。

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