Sehic Amer, Tulek Amela, Khuu Cuong, Nirvani Minou, Sand Lars Peter, Utheim Tor Paaske
Department of Oral Biology, Faculty of Dentistry, University of Oslo, Norway.
Faculty of Medicine, University of Banjaluka, Bosnia and Herzegovina.
Gene. 2017 Jan 5;596:9-18. doi: 10.1016/j.gene.2016.10.009. Epub 2016 Oct 8.
MicroRNAs (miRNAs) are a class of small, non-coding RNAs that provide an efficient pathway for regulation of gene expression at a post-transcriptional level. Tooth development is regulated by a complex network of cell-cell signaling during all steps of organogenesis. Most of the congenital dental defects in humans are caused by mutations in genes involved in developmental regulatory networks. Whereas the developmental morphological stages of the tooth development already are thoroughly documented, the implicated genetic network is still under investigation. The involvement of miRNAs in the regulation of tooth genetic network was suggested for the first time in 2008. MiRNAs regulate tooth morphogenesis by fine-tuning the signaling networks. Unique groups of miRNAs are expressed in dental epithelium compared with mesenchyme, as well as in molars compared with incisors. The present review focuses on the current state of knowledge on the expression and function of miRNAs in human dental tissues, including teeth and the surrounding structures. Herein, we show that miRNAs exhibit specific roles in human dental tissues and are involved in gingival and periodontal disease, tooth movement and eruption, dental pulp physiology including repair and regeneration, differentiation of dental cells, and enamel mineralization. In light of similarities between the tooth development and other organs originating from the epithelium, further understanding of miRNAs` function in dental tissues may have wide biological relevance.
微小RNA(miRNA)是一类小的非编码RNA,它们在转录后水平为基因表达调控提供了一条有效的途径。在器官发生的所有步骤中,牙齿发育都受到细胞间信号复杂网络的调控。人类大多数先天性牙齿缺陷是由发育调控网络中相关基因突变引起的。虽然牙齿发育的形态学阶段已经有了详尽的记录,但其中涉及的基因网络仍在研究之中。2008年首次提出miRNA参与牙齿基因网络的调控。miRNA通过微调信号网络来调节牙齿形态发生。与间充质相比,在牙上皮中以及与切牙相比在磨牙中表达有独特的miRNA组。本综述聚焦于miRNA在人类牙齿组织(包括牙齿及其周围结构)中的表达和功能的当前知识状态。在此,我们表明miRNA在人类牙齿组织中发挥特定作用,并参与牙龈和牙周疾病、牙齿移动和萌出、牙髓生理(包括修复和再生)、牙细胞分化以及釉质矿化。鉴于牙齿发育与源自上皮的其他器官之间的相似性,进一步了解miRNA在牙齿组织中的功能可能具有广泛的生物学意义。
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