期刊文献+

Identification of microRNAs and messenger RNAs involved in human umbilical cord mesenchymal stem cell treatment of ischemic cerebral infarction using integrated bioinformatics analysis 被引量:13

Identification of microRNAs and messenger RNAs involved in human umbilical cord mesenchymal stem cell treatment of ischemic cerebral infarction using integrated bioinformatics analysis
下载PDF
导出
摘要 In recent years,a large number of differentially expressed genes have been identified in human umbilical cord mesenchymal stem cell(hUMSC)transplants for the treatment of ischemic cerebral infarction.These genes are involved in various biochemical processes,but the role of microRNAs(miRNAs)in this process is still unclear.From the Gene Expression Omnibus(GEO)database,we downloaded two microarray datasets for GSE78731(messenger RNA(mRNA)profile)and GSE97532(miRNA profile).The differentially expressed genes screened were compared between the hUMSC group and the middle cerebral artery occlusion group.Gene ontology enrichment and pathway enrichment analyses were subsequently conducted using the online Database for Annotation,Visualization,and Integrated Discovery.Identified genes were applied to perform weighted gene co-suppression analyses,to establish a weighted co-expression network model.Furthermore,the protein-protein interaction network for differentially expressed genes from turquoise modules was built using Cytoscape(version 3.40)and the most highly correlated subnetwork was extracted from the protein-protein interaction network using the MCODE plugin.The predicted target genes for differentially expressed miRNAs were also identified using the online database starBase v3.0.A total of 3698 differentially expressed genes were identified.Gene ontology analysis demonstrated that differentially expressed genes that are related to hUMSC treatment of ischemic cerebral infarction are involved in endocytosis and inflammatory responses.We identified 12 differentially expressed miRNAs in middle cerebral artery occlusion rats after hUMSC treatment,and these differentially expressed miRNAs were mainly involved in signaling in inflammatory pathways,such as in the regulation of neutrophil migration.In conclusion,we have identified a number of differentially expressed genes and differentially expressed mRNAs,miRNA-mRNAs,and signaling pathways involved in the hUMSC treatment of ischemic cerebral infarction.Bioinformatics and interaction analyses can provide novel clues for further research into hUMSC treatment of ischemic cerebral infarction. In recent years, a large number of differentially expressed genes have been identified in human umbilical cord mesenchymal stem cell(hUMSC) transplants for the treatment of ischemic cerebral infarction. These genes are involved in various biochemical processes, but the role of microRNAs(miRNAs) in this process is still unclear. From the Gene Expression Omnibus(GEO) database, we downloaded two microarray datasets for GSE78731(messenger RNA(mRNA) profile) and GSE97532(miRNA profile). The differentially expressed genes screened were compared between the hUMSC group and the middle cerebral artery occlusion group. Gene ontology enrichment and pathway enrichment analyses were subsequently conducted using the online Database for Annotation, Visualization, and Integrated Discovery. Identified genes were applied to perform weighted gene co-suppression analyses, to establish a weighted co-expression network model. Furthermore, the protein-protein interaction network for differentially expressed genes from turquoise modules was built using Cytoscape(version 3.40) and the most highly correlated subnetwork was extracted from the protein-protein interaction network using the MCODE plugin. The predicted target genes for differentially expressed miRNAs were also identified using the online database starBase v3.0. A total of 3698 differentially expressed genes were identified. Gene ontology analysis demonstrated that differentially expressed genes that are related to hUMSC treatment of ischemic cerebral infarction are involved in endocytosis and inflammatory responses. We identified 12 differentially expressed miRNAs in middle cerebral artery occlusion rats after hUMSC treatment, and these differentially expressed miRNAs were mainly involved in signaling in inflammatory pathways, such as in the regulation of neutrophil migration. In conclusion, we have identified a number of differentially expressed genes and differentially expressed mRNAs, miRNA-mRNAs, and signaling pathways involved in the hUMSC treatment of ischemic cerebral infarction. Bioinformatics and interaction analyses can provide novel clues for further research into hUMSC treatment of ischemic cerebral infarction.
出处 《Neural Regeneration Research》 SCIE CAS CSCD 2019年第9期1610-1616,共7页 中国神经再生研究(英文版)
基金 supported by the National Key Research&Development Program of China,No.2016YFC1301600 Program for Jilin University Science and Technology Innovation Team,No.2017TD-12(both to YY)
关键词 nerve REGENERATION ischemic cerebral infarction human umbilical cord mesenchymal STEM CELL TREATMENT bioinformatics analysis DIFFERENTIALLY EXPRESSED genes DIFFERENTIALLY EXPRESSED mRNAs inflammatory response STEM CELL therapy weighted gene co-suppression analysis WGCNA protein-protein interaction network PPI hUMSC neural REGENERATION nerve regeneration ischemic cerebral infarction human umbilical cord mesenchymal stem cell treatment bioinformatics analysis differentially expressed genes differentially expressed mRNAs inflammatory response stem cell therapy weighted gene co-suppression analysis WGCNA protein-protein interaction network PPI hUMSC neural regeneration
  • 相关文献

参考文献1

二级参考文献41

  • 1Mattson MP,Duan W,Pedersen WA,et al. Neurodegenerative disorders and ischemic brain diseases. Apoptosis. 2001;6(1-2): 69-81.
  • 2Bartel DP. MicroRNAs: target recognition and regulatory functions. Cell. 2009;136(2):215-233.
  • 3Chen K,Rajewsky N. The evolution of gene regulation by transcription factors and microRNAs. Nat Rev Genet. 2007;8(2): 93-103.
  • 4Filip A. MiRNA-new mechanisms of gene expression control. Postepy Biochem. 2007;53(4):413-419.
  • 5Kosik KS. The neuronal microRNA system. Nat Rev Neurosci. 2006;7(12):911-920.
  • 6Redell JB,Liu Y,Dash PK. Traumatic brain injury alters expression of hippocampal microRNAs: potential regulators of multiple pathophysiological processes. J Neurosci Res. 2009;87(6):1435-1448.
  • 7Lee Y,Kim M,Han J,et al. MicroRNA genes are transcribed by RNA polymerase II. EMBO J. 2004;23(20):4051-4060.
  • 8Wienholds E,Plasterk RH. MicroRNA function in animal development. FEBS Lett. 2005;579(26):5911-5922.
  • 9Nicoloso MS,Calin GA. MicroRNA involvement in brain tumors: from bench to bedside. Brain Pathol. 2008;18(1):122-129.
  • 10Hébert SS,Horré K,Nicola L,et al. Loss of microRNA cluster miR29a/b-1 in sporadic Alzheimer’s disease correlates with increased BACE1/beta-secretase expression. Proc Natl Acad Sci USA. 2008;105(17):6415-6420.

共引文献12

同被引文献116

引证文献13

二级引证文献57

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部