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Updated: Nov 22, 2025

Assessment of Ovarian Cancer Spheroid Attachment and Invasion of Mesothelial Cells in Real Time
Published on: May 20, 2014
Ceramide synthase 2-C24:1 -ceramide axis limits the metastatic potential of ovarian cancer cells
Xuewei Zhang1, Wataru Sakamoto2, Daniel Canals2
1Department of Obstetrics and Gynecology, Tohoku University Graduate School of Medicine, Miyagi, Japan.
Abstract:
Regulation of sphingolipid metabolism plays a role in cellular homeostasis, and dysregulation of these pathways is involved in cancer progression. Previously, our reports identified ceramide as an anti-metastatic lipid. In the present study, we investigated the biochemical alterations in ceramide-centered metabolism of sphingolipids that were associated with metastatic potential. We established metastasis-prone sublines of SKOV3 ovarian cancer cells using an in vivo selection method. These cells showed decreases in ceramide levels and ceramide synthase (CerS) 2 expression. Moreover, CerS2 downregulation in ovarian cancer cells promoted metastasis in vivo and potentiated cell motility and invasiveness. Moreover, CerS2 knock-in suppressed the formation of lamellipodia required for cell motility in this cell line. In order to define specific roles of ceramide species in cell motility controlled by CerS2, the effect of exogenous long- and very long-chain ceramide species on the formation of lamellipodia was evaluated. Treatment with distinct ceramides increased cellular ceramides and had inhibitory effects on the formation of lamellipodia. Interestingly, blocking the recycling pathway of ceramides by a CerS inhibitor was ineffective in the suppression of exogenous C24:1 -ceramide for the formation of lamellipodia. These results suggested that C24:1 -ceramide, a CerS2 metabolite, predominantly suppresses the formation of lamellipodia without the requirement for deacylation/reacylation. Moreover, knockdown of neutral ceramidase suppressed the formation of lamellipodia concomitant with upregulation of C24:1 -ceramide. Collectively, the CerS2-C24:1 -ceramide axis, which may be countered by neutral ceramidase, is suggested to limit cell motility and metastatic potential. These findings may provide insights that lead to further development of ceramide-based therapy and biomarkers for metastatic ovarian cancer.
Insights
The ceramide synthase 2 (CerS2) pathway, specifically its metabolite C24:1-ceramide, limits ovarian cancer cell motility and metastasis. This axis, potentially opposed by neutral ceramidase, offers new therapeutic targets for metastatic ovarian cancer.
Area of Science:
- Biochemistry
- Cancer Biology
- Cellular Metabolism
Background:
- Sphingolipid metabolism is crucial for cellular homeostasis; its dysregulation contributes to cancer progression.
- Ceramide has been previously identified as an anti-metastatic lipid.
- Understanding ceramide-centered metabolic alterations is key to targeting metastatic potential.
Purpose of the Study:
- To investigate biochemical changes in ceramide metabolism linked to metastatic potential in ovarian cancer.
- To elucidate the role of ceramide synthase 2 (CerS2) and its metabolites in ovarian cancer cell motility and invasion.
- To explore potential therapeutic strategies targeting the ceramide pathway in metastatic ovarian cancer.
Main Methods:
- Establishment of metastasis-prone SKOV3 ovarian cancer cell sublines using in vivo selection.
- Assessment of ceramide levels, CerS2 expression, cell motility, and lamellipodia formation.
- Evaluation of exogenous ceramide species' effects and CerS inhibitor activity.
- Analysis of neutral ceramidase knockdown effects on cell motility and ceramide levels.
Main Results:
- Metastasis-prone cells exhibited reduced ceramide levels and CerS2 expression.
- Downregulation of CerS2 enhanced ovarian cancer cell metastasis, motility, and invasiveness in vivo.
- Exogenous C24:1-ceramide suppressed lamellipodia formation, indicating a direct inhibitory role.
- Neutral ceramidase knockdown increased C24:1-ceramide and suppressed lamellipodia formation.
Conclusions:
- The CerS2-C24:1-ceramide pathway limits ovarian cancer cell motility and metastatic potential.
- This pathway may be counteracted by neutral ceramidase.
- These findings suggest ceramide-based therapies and biomarkers for metastatic ovarian cancer.
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