...
首页> 外文期刊>Stem Cell Research & Therapy >Lineage-specific exosomes promote the odontogenic differentiation of human dental pulp stem cells (DPSCs) through TGFβ1/smads signaling pathway via transfer of microRNAs
【24h】

Lineage-specific exosomes promote the odontogenic differentiation of human dental pulp stem cells (DPSCs) through TGFβ1/smads signaling pathway via transfer of microRNAs

机译:谱系特异性外来促进人牙齿纸浆干细胞(DPSC)通过TGFβ1/ Smads信号传导途径通过转移来促进人牙齿纸浆干细胞(DPSC)的渡齿菌分化

获取原文
           

摘要

Exosomes derived from dental pulp stem cells (DPSCs) can be used as biomimetic tools to induce odontogenic differentiation of stem cells, but the regulatory mechanisms and functions of exosome-encapsulated microRNAs are still unknown. The present study aimed to clarify the role of microRNAs contained in the exosomes derived from human DPSCs and their potential signaling cascade in odontogenic differentiation. Exosomes were isolated from human DPSCs cultured undergrowth and odontogenic differentiation conditions, named UN-Exo and OD-Exo, respectively. The microRNA sequencing was performed to explore the microRNA profile contained in UN-Exo and OD-Exo. Pathway analysis was taken to detect enriched pathways associated with the predicted target genes of microRNAs. The regulatory roles of a highly expressed microRNA in OD-Exo were investigated through its inhibition or overexpression (miRNA inhibitors and miRNA mimics). Automated western blot was used to identify the function of exosomal microRNA and the roles of TGFβ1/smads pathway in odontogenic differentiation of DPSCs. A luciferase reporter gene assay was used to verify the direct target gene of exosomal miR-27a-5p. Endocytosis of OD-Exo triggered odontogenic differentiation of DPSCs by upregulating DSP, DMP-1, ALP, and RUNX2 proteins. MicroRNA sequencing showed that 28 microRNAs significantly changed in OD-Exo, of which 7 increased and 21 decreased. Pathway analysis showed genes targeted by differentially expressed microRNAs were involved in multiple signal transductions, including TGFβ pathway. 16 genes targeted by 15 differentially expressed microRNAs were involved in TGFβ signaling. Consistently, automated western blot found that OD-Exo activated TGFβ1 pathway by upregulating TGFβ1, TGFR1, p-Smad2/3, and Smad4 in DPSCs. Accordingly, once the TGFβ1 signaling pathway was inhibited by SB525334, protein levels of p-Smad2/3, DSP, and DMP-1 were significantly decreased in DPSCs treated with OD-Exo. MiR-27a-5p was expressed 11 times higher in OD-Exo, while miR-27a-5p promoted odontogenic differentiation of DPSCs and significantly upregulated TGFβ1, TGFR1, p-Smad2/3, and Smad4 by downregulating the inhibitory molecule LTBP1. The microRNA expression profiles of exosomes derived from DPSCs were identified. OD-Exo isolated under odontogenic conditions were better inducers of DPSC differentiation. Exosomal microRNAs promoted odontogenic differentiation via TGFβ1/smads signaling pathway by downregulating LTBP1.
机译:衍生自牙髓干细胞(DPSC)的外泌体可用作灭菌工具,以诱导干细胞的异肠病分化,但外囊肿的微小RNA的调节机制和功能仍然未知。本研究旨在阐明衍生自人DPSCS的外泌体中含有的微大罗氏的作用及其在渡外源性分化中的潜在信号级联。外泌体与人DPSCS培养的患者分离,分别命名为UN-EXO和OD-EXO。进行MicroRNA测序以探索未脱欧和OD-EXO中包含的微小RNA型材。途径分析用于检测与预测的MicroRNA的预测靶基因相关的富集途径。通过其抑制或过表达(miRNA抑制剂和miRNA模拟物)研究了高表达的微小RONE在OD-EXO中的调节作用。自动蛋白质印迹用于鉴定外泌体microRNA的功能和TGFβ1/ Smads途径在非血栓分化中的TGFβ1/ Smads途径的作用。使用荧光素酶报告基因测定来验证外泌体miR-27a-5p的直接靶基因。 OD-EXO的内吞作用通过上调DSP,DMP-1,ALP和RUNX2蛋白来引发DPSCS的odontogencic分化。 MicroRNA测序显示OD-EXO中显着变化的28微米,其中7分钟增加,21例降低。途径分析显示通过差异表达的微小RNA靶向的基因涉及多个信号转导,包括TGFβ途径。由15个差异表达的微小RNA靶向的16个基因涉及TGFβ信号传导。一致地,自动化的Western印迹发现OD-EXO活化TGFβ1途径通过上调TGFβ1,TGFR1,P-Smad2 / 3和DPSC中的Smad4。因此,一旦通过SB525334抑制TGFβ1信号传导途径,在用OD-EXO处理的DPSC中,P-Smad2 / 3,DSP和DMP-1的蛋白质水平显着降低。 MiR-27A-5P在OD-EXO中表达了11倍,而MiR-27A-5P通过下调抑制分子LTBP1促进了DPSCs的偶联分化,显着上调TGFβ1,TGFR1,P-Smad2 / 3和Smad4。鉴定了来自DPSCs的外泌体的微瘤表达谱。 OD-EXO在牙突病症下分离是DPSC差异的更好的诱导剂。通过下调LTBP1,外泌体微小RNA通过TGFβ1/ Smads信号传导途径促进了odontogencic分化。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号