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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.
Abstract:
Despite the distant metastasis of cervical cancer cells being a prominent cause of mortality, neither the metastasis capacity nor the in vitro conditions mimicking adhesion of cervical cancer cells to endothelial cells have been fully elucidated. Circulating metastatic cancer cells undergo transendothelial migration and invade normal organs in distant metastasis; however, the putative molecular mechanism remains largely uncertain. In this study, we describe the use of an in vitro parallel-plate flow chamber to simulate the dynamic circulation stress on cervical cancer cells and elucidate their vascular adhesion and metastasis. We isolate the viable and shear stress-resistant (SSR) cervical cancer cells for mechanistic studies. Remarkably, the identified SSR-HeLa and SSR-CaSki exhibited high in vitro adhesive and metastatic activities. Hence, a consistently suppressed miR-128 level was revealed in SSR cell clones compared to those of parental wild-type (WT) cells. Overexpressed miR-128 attenuated SSR-HeLa cells' adherence to human umbilical cord vein endothelial cells (HUVECs); in contrast, suppressed miR-128 efficiently augmented the static adhesion capacity in WT-HeLa and WT-CaSki cells. Hence, amplified miR-128 modestly abolished in vitro SSR-augmented HeLa and CaSki cell movement, whereas reduced miR-128 aggravated the migration speed in a time-lapse recording assay in WT groups. Consistently, the force expression of miR-128 alleviated the SSR-enhanced HeLa and CaSki cell mobility in a wound healing assay. Notably, miR-128 mediated SSR-enhanced HeLa and CaSki cells' adhesion and metastasis through suppressed ITGA5, ITGB5, sLex, CEACAM-6, MMP9, and MMP23 transcript levels. Our data provide evidence suggesting that miR-128 is a promising microRNA that prevented endothelial cells' adhesion and transendothelial migration to contribute to the SSR-enhanced adhesion and metastasis progression under a parallel-plate flow chamber system. This indicates that the nucleoid-based miR-128 strategy may be an attractive therapeutic strategy to eliminate tumor cells resistant to circulation shear flow, prevent vascular adhesion, and preclude subsequent transendothelial metastasis.
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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