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EMT transcription factors are involved in the altered cell adhesion under simulated microgravity effect or overloading by regulation of e-cadherin

  • Shuliang Shi
  • , Qiao Li
  • , Qiuying Cao
  • , Yan Diao
  • , Yao Zhang
  • , Lei Yue
  • , Lijun Wei*
  • *Corresponding author for this work
  • School of Life Science and Technology, Harbin Institute of Technology
  • China West Normal University
  • Chinese Astronaut Research and Training Center

Research output: Contribution to journalArticlepeer-review

Abstract

In order to study the effect of stress changes on cell adhesion, HUVEC, and MCF-7 cells were treated with simulated microgravity effect (SMG) and overloading (OL). Methods: Rotating Wall Vessel (2D-RWVS) bioreactor was used to create different culture conditions. In addition, the alteration of cell adhesion states, adhesion proteins, and relating factors of adhesion molecules under these two conditions were detected using cell adhesion assay, immunofluorescence, western blot, and qRT-PCR technology. Results: The results showed that the adhesion of cells decreased under SMG, while increased under OL. The expressions of integrin β1, paxillin, and E-cadherin under SMG condition were down-regulated as compared to that of the control group showing a time-dependent pattern of the decreasing. However, under OL condition, the expressions of adhesion proteins were up-regulated as compared to that of the control group, with a time-dependent pattern of increasing. EMT transcription factors Snail, twist, and ZEB1 were up-regulated under SMG while down-regulated under OL. Conclusion: Collectively our results indicated that cells could respond to stress changes to regulate the expressions of adhesion proteins and adapt their adhesion state to the altered mechanical environment. The altered cell adhesion in response to the mechanical stress may involve the changed expression of EMT-inducing factors, Snail, Twist, and ZEB1under the SMG/OL conditions.

Original languageEnglish
Article number1349
JournalInternational Journal of Molecular Sciences
Volume21
Issue number4
DOIs
StatePublished - 2 Feb 2020
Externally publishedYes

Keywords

  • Cell adhesion, HUVEC and MCF-7 cell
  • Mechanical overloading (OL)
  • Simulated microgravity effect (SMG)

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