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Article

Identification of a microRNA signature in endothelial cells with mechanical stretch stimulation

  • Authors:
    • Jubing Zheng
    • Kui Zhang
    • Yueli Wang
    • Jian Cao
    • Feng Zhang
    • Qiwen Zhou
    • Ran Dong
  • View Affiliations / Copyright

    Affiliations: Department of Cardiac Surgery, Beijing Institute of Heart, Lung and Blood Vessel Disease, Capital Medical University, Beijing Anzhen Hospital, Beijing 100029, P.R. China, Department of Cardiology, Beijing Institute of Heart, Lung and Blood Vessel Disease, Capital Medical University, Beijing Anzhen Hospital, Beijing 100029, P.R. China, Department of Bioinfomatics, Beijing Institute of Genomics, Chinese Academy of Sciences, Beijing 100101, P.R. China
  • Pages: 3525-3530
    |
    Published online on: May 25, 2015
       https://doi.org/10.3892/mmr.2015.3835
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Abstract

The current study aimed to verify an miRNA signature in endothelial cells undergoing mechanical stretch stimulation. In the present study, microarray profiling was conducted in order to identify the differential expression of miRNAs in endothelial cells undergoing mechanical stimulation, compared with unstimulated endothelial cells. The microarray data was then validated by reverse transcription‑quantitative polymerase chain reaction. Genes and signaling pathways regulated by the miRNAs were investigated in silico using Gene Ontology and the Kyoto Encyclopedia of Genes or Genomes, which are ontological and network‑mapping algorithms. The microarray data collected demonstrated that 38 miRNAs exhibited significant differential expression in endothelial cells with mechanical stretch stimulation. Of these, 20 were upregulated and 18 were downregulated. The results from the in silico analysis indicated that the miRNAs identified were participants in mechanical stretch‑induced endothelial dysfunction. During the initial stage of vein graft failure, which is induced by endothelial dysfunction, a unique miRNA signature was identified. The identified miRNAs are suggested to be involved in the pathological processes of traumatic injury.
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Copy and paste a formatted citation
Spandidos Publications style
Zheng J, Zhang K, Wang Y, Cao J, Zhang F, Zhou Q and Dong R: Identification of a microRNA signature in endothelial cells with mechanical stretch stimulation. Mol Med Rep 12: 3525-3530, 2015.
APA
Zheng, J., Zhang, K., Wang, Y., Cao, J., Zhang, F., Zhou, Q., & Dong, R. (2015). Identification of a microRNA signature in endothelial cells with mechanical stretch stimulation. Molecular Medicine Reports, 12, 3525-3530. https://doi.org/10.3892/mmr.2015.3835
MLA
Zheng, J., Zhang, K., Wang, Y., Cao, J., Zhang, F., Zhou, Q., Dong, R."Identification of a microRNA signature in endothelial cells with mechanical stretch stimulation". Molecular Medicine Reports 12.3 (2015): 3525-3530.
Chicago
Zheng, J., Zhang, K., Wang, Y., Cao, J., Zhang, F., Zhou, Q., Dong, R."Identification of a microRNA signature in endothelial cells with mechanical stretch stimulation". Molecular Medicine Reports 12, no. 3 (2015): 3525-3530. https://doi.org/10.3892/mmr.2015.3835
Copy and paste a formatted citation
x
Spandidos Publications style
Zheng J, Zhang K, Wang Y, Cao J, Zhang F, Zhou Q and Dong R: Identification of a microRNA signature in endothelial cells with mechanical stretch stimulation. Mol Med Rep 12: 3525-3530, 2015.
APA
Zheng, J., Zhang, K., Wang, Y., Cao, J., Zhang, F., Zhou, Q., & Dong, R. (2015). Identification of a microRNA signature in endothelial cells with mechanical stretch stimulation. Molecular Medicine Reports, 12, 3525-3530. https://doi.org/10.3892/mmr.2015.3835
MLA
Zheng, J., Zhang, K., Wang, Y., Cao, J., Zhang, F., Zhou, Q., Dong, R."Identification of a microRNA signature in endothelial cells with mechanical stretch stimulation". Molecular Medicine Reports 12.3 (2015): 3525-3530.
Chicago
Zheng, J., Zhang, K., Wang, Y., Cao, J., Zhang, F., Zhou, Q., Dong, R."Identification of a microRNA signature in endothelial cells with mechanical stretch stimulation". Molecular Medicine Reports 12, no. 3 (2015): 3525-3530. https://doi.org/10.3892/mmr.2015.3835
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