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成熟与未成熟牙髓细胞之间的分子差异:生物信息学与初步结果。

Molecular differences between mature and immature dental pulp cells: Bioinformatics and preliminary results.

作者信息

Chen Long, Jiang Yifeng, Du Zhen

机构信息

Department of Stomatology, Linyi People's Hospital, Linyi, Shandong 276000, P.R. China.

Stomatology Department of Shandong Medical College, Linyi, Shandong 276002, P.R. China.

出版信息

Exp Ther Med. 2018 Apr;15(4):3362-3368. doi: 10.3892/etm.2018.5847. Epub 2018 Feb 7.

Abstract

Although previous studies have demonstrated that dental pulp stem cells (DPSCs) from mature and immature teeth exhibit potential for multi-directional differentiation, the molecular and biological difference between the DPSCs from mature and immature permanent teeth has not been fully investigated. In the present study, 500 differentially expressed genes from dental pulp cells (DPCs) in mature and immature permanent teeth were obtained from the Gene Expression Omnibus online database. Based on bioinformatics analysis using the Database for Annotation, Visualization and Integrated Discovery, these genes were divided into a number of subgroups associated with immunity, inflammation and cell signaling. The results of the present study suggest that immune features, response to infection and cell signaling may be different in DPCs from mature and immature permanent teeth; furthermore, DPCs from immature permanent teeth may be more suitable for use in tissue engineering or stem cell therapy. The Online Mendelian Inheritance in Man database stated that Sonic Hedgehog (SHH), a differentially expressed gene in DPCs from mature and immature permanent teeth, serves a crucial role in the development of craniofacial tissues, including teeth, which further confirmed that SHH may cause DPCs from mature and immature permanent teeth to exhibit different biological characteristics. The Search Tool for the Retrieval of Interacting Genes/Proteins database revealed that SHH has functional protein associations with a number of other proteins, including Glioma-associated oncogene (GLI)1, GLI2, growth arrest-specific protein 1, bone morphogenetic protein (BMP)2 and BMP4, in mice and humans. It was also demonstrated that SHH may interact with other genes to regulate the biological characteristics of DPCs. The results of the present study may provide a useful reference basis for selecting suitable DPSCs and molecules for the treatment of these cells to optimize features for tissue engineering or stem cell therapy. Quantitative polymerase chain reaction should be performed to confirm the differential expression of these genes prior to the beginning of a functional study.

摘要

尽管先前的研究表明,来自成熟和未成熟牙齿的牙髓干细胞(DPSCs)具有多向分化的潜力,但成熟恒牙和未成熟恒牙来源的DPSCs之间的分子和生物学差异尚未得到充分研究。在本研究中,从基因表达综合在线数据库中获得了500个成熟恒牙和未成熟恒牙牙髓细胞(DPCs)中的差异表达基因。基于使用注释、可视化和综合发现数据库的生物信息学分析,这些基因被分为多个与免疫、炎症和细胞信号传导相关的亚组。本研究结果表明,成熟恒牙和未成熟恒牙来源的DPCs在免疫特征、对感染的反应和细胞信号传导方面可能存在差异;此外,未成熟恒牙来源的DPCs可能更适合用于组织工程或干细胞治疗。在线人类孟德尔遗传数据库表明,Sonic Hedgehog(SHH)是成熟恒牙和未成熟恒牙来源的DPCs中的一个差异表达基因,在包括牙齿在内的颅面组织发育中起关键作用,这进一步证实SHH可能导致成熟恒牙和未成熟恒牙来源的DPCs表现出不同的生物学特性。检索相互作用基因/蛋白质的搜索工具数据库显示,在小鼠和人类中,SHH与许多其他蛋白质具有功能性蛋白质关联,包括胶质瘤相关癌基因(GLI)1、GLI2、生长停滞特异性蛋白1、骨形态发生蛋白(BMP)2和BMP4。还证实SHH可能与其他基因相互作用以调节DPCs的生物学特性。本研究结果可为选择合适的DPSCs和分子用于这些细胞的治疗以优化组织工程或干细胞治疗的特性提供有用的参考依据。在开始功能研究之前,应进行定量聚合酶链反应以确认这些基因的差异表达。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/00c4/5841066/024324aed421/etm-15-04-3362-g00.jpg

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本文引用的文献

1
Identification of hub genes, key miRNAs and potential molecular mechanisms of colorectal cancer.
Oncol Rep. 2017 Oct;38(4):2043-2050. doi: 10.3892/or.2017.5930. Epub 2017 Aug 29.
3
Pluripotency of Stem Cells from Human Exfoliated Deciduous Teeth for Tissue Engineering.
Stem Cells Int. 2016;2016:5957806. doi: 10.1155/2016/5957806. Epub 2016 May 30.
6
BMP-SHH signaling network controls epithelial stem cell fate via regulation of its niche in the developing tooth.
Dev Cell. 2015 Apr 20;33(2):125-35. doi: 10.1016/j.devcel.2015.02.021. Epub 2015 Apr 9.
8
Neurogenic differentiation of dental pulp stem cells to neuron-like cells in dopaminergic and motor neuronal inductive media.
J Formos Med Assoc. 2014 Dec;113(12):956-65. doi: 10.1016/j.jfma.2014.09.003. Epub 2014 Nov 12.
9
STRING v10: protein-protein interaction networks, integrated over the tree of life.
Nucleic Acids Res. 2015 Jan;43(Database issue):D447-52. doi: 10.1093/nar/gku1003. Epub 2014 Oct 28.
10
Human dental pulp stem cells respond to cues from the rat retina and differentiate to express the retinal neuronal marker rhodopsin.
Neuroscience. 2014 Nov 7;280:142-55. doi: 10.1016/j.neuroscience.2014.09.023. Epub 2014 Sep 19.

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