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Integration of Bioinformatics Approaches and Experimental Validations to Understand the Role of Notch Signaling in Ovarian Cancer
Published on: January 12, 2020
Notch3-specific inhibition using siRNA knockdown or GSI sensitizes paclitaxel-resistant ovarian cancer cells
Haeyoun Kang1,2, Ju-Yeon Jeong1, Ji-Ye Song2
1Department of Pathology, CHA Bundang Medical Center, CHA University, Seongnam-si, South Korea.
Abstract:
Notch signaling plays an important role in ovarian cancer chemoresistance, which is responsible for recurrence. Gamma-secretase inhibitor (GSI) is a broad-spectrum Notch inhibitor, but it has serious side effects. The efficacy of Notch3-specific inhibition in paclitaxel-resistant ovarian cancers was assessed in this study, which has not yet been evaluated relative to GSI. To analyze the effect of Notch3-specific inhibition on paclitaxel-resistant ovarian cancers, we compared cell viability, apoptosis, cell migration, angiogenesis, cell cycle, and spheroid formation after treatment with either Notch3 siRNA or GSI in paclitaxel-resistant SKpac cells and parental SKOV3 cells. Expression levels of survival, cell cycle, and apoptosis-related proteins were measured and compared between groups. Notch3 was significantly overexpressed in chemoresistant cancer tissues and cell lines relative to chemosensitive group. In paclitaxel-resistant cancer cells, Notch inhibition significantly reduced viability, migration, and angiogenesis and increased apoptosis, thereby boosting sensitivity to paclitaxel. Spheroid formation was also significantly reduced. Both Notch3 siRNA-treated cells and GSI-treated cells arrested in the G2/M phase of the cell cycle. Proteins of cell survival, cyclin D1 and cyclin D3 were reduced, whereas p21 and p27 were elevated. Both GSI and Notch3 siRNA treatment reduced expression of anti-apoptotic proteins (BCL-W, BCL2, and BCL-XL) and increased expression of pro-apoptotic proteins (Bad, Bak, Bim, Bid, and Bax). These results indicate that Notch3-specific inhibition sensitizes paclitaxel-resistant cancer cells to paclitaxel treatment, with an efficacy comparable to that of GSI. This approach would be likely to avoid the side effects of broad-spectrum GSI treatment. © 2015 Wiley Periodicals, Inc.
Insights
Targeting Notch3 specifically can overcome paclitaxel resistance in ovarian cancer, showing efficacy similar to broad-spectrum inhibitors but with fewer side effects. This offers a promising strategy for treating recurrent ovarian cancer.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Research
Background:
- Notch signaling is implicated in ovarian cancer chemoresistance and recurrence.
- Gamma-secretase inhibitors (GSIs) broadly inhibit Notch but cause severe side effects.
- Notch3-specific inhibition has not been evaluated against GSIs in paclitaxel-resistant ovarian cancer.
Purpose of the Study:
- To assess the efficacy of Notch3-specific inhibition versus GSI in paclitaxel-resistant ovarian cancer.
- To compare effects on cell viability, apoptosis, migration, angiogenesis, cell cycle, and spheroid formation.
- To analyze the impact on key protein expression related to cell survival and apoptosis.
Main Methods:
- Utilized paclitaxel-resistant SKpac and parental SKOV3 ovarian cancer cells.
- Administered Notch3 siRNA or GSI treatments.
- Quantified cell viability, apoptosis, migration, angiogenesis, cell cycle progression, and spheroid formation.
- Measured expression levels of relevant survival, cell cycle, and apoptosis-related proteins.
Main Results:
- Notch3 was overexpressed in chemoresistant ovarian cancer tissues and cell lines.
- Notch inhibition (Notch3 siRNA or GSI) reduced viability, migration, and angiogenesis, and increased apoptosis in resistant cells.
- Both treatments led to G2/M cell cycle arrest and altered expression of cell cycle and apoptosis proteins.
- Notch3-specific inhibition demonstrated comparable efficacy to GSI in sensitizing cells to paclitaxel.
Conclusions:
- Notch3-specific inhibition effectively sensitizes paclitaxel-resistant ovarian cancer cells to paclitaxel.
- This targeted approach offers comparable efficacy to broad-spectrum GSI but may avoid associated side effects.
- Notch3 inhibition presents a potential therapeutic strategy for overcoming chemoresistance in ovarian cancer.

