MicroRNA-128 Confers Anti-Endothelial Adhesion and Anti-Migration Properties to Counteract Highly Metastatic Cervical

Pei-Chin Chuang1,2,3, Chun-Wun Lu1,2, Ching-Chin Tsai1,2

  • 1Department of Medical Research, Kaohsiung Chang Gung Memorial Hospital, Kaohsiung 833, Taiwan.

Insights

This study identifies shear stress-resistant cervical cancer cells with high metastatic potential. Suppressed miR-128 levels in these cells promote adhesion and migration, suggesting miR-128 as a therapeutic target to prevent cancer metastasis.

Area of Science:

  • Oncology
  • Molecular Biology
  • Biophysics

Background:

  • Distant metastasis of cervical cancer is a major cause of mortality.
  • The mechanisms of cervical cancer cell adhesion to endothelial cells and metastasis remain unclear.
  • Understanding these processes is crucial for developing effective cancer therapies.

Purpose of the Study:

  • To investigate the in vitro adhesion and metastasis of cervical cancer cells under simulated circulation stress.
  • To identify molecular mechanisms underlying shear stress resistance and metastasis in cervical cancer.
  • To evaluate the role of miR-128 in regulating cancer cell adhesion, migration, and metastasis.

Main Methods:

  • Utilized an in vitro parallel-plate flow chamber to simulate dynamic circulation stress.
  • Isolated shear stress-resistant (SSR) cervical cancer cell lines (SSR-HeLa and SSR-CaSki).
  • Assessed cell adhesion to human umbilical cord vein endothelial cells (HUVECs), cell migration using time-lapse and wound healing assays, and gene/microRNA expression levels.

Main Results:

  • SSR-HeLa and SSR-CaSki cells demonstrated significantly higher in vitro adhesive and metastatic activities compared to wild-type cells.
  • SSR cells consistently showed suppressed miR-128 levels.
  • Overexpression of miR-128 reduced adherence and migration of SSR cells, while miR-128 suppression enhanced these processes in wild-type cells.
  • miR-128 regulated SSR-enhanced cell adhesion and metastasis by suppressing ITGA5, ITGB5, sLex, CEACAM-6, MMP9, and MMP23 transcript levels.

Conclusions:

  • miR-128 plays a critical role in preventing endothelial cell adhesion and transendothelial migration in cervical cancer cells.
  • Suppressed miR-128 contributes to shear stress-enhanced adhesion and metastasis.
  • Targeting miR-128 presents a potential therapeutic strategy to inhibit cervical cancer metastasis by preventing vascular adhesion and transendothelial migration.

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