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Updated: Aug 21, 2025

Generation of Prostate Cancer Cell Models of Resistance to the Anti-mitotic Agent Docetaxel
Published on: September 8, 2017
Targeting mTOR Complex 2 in Castration-Resistant Prostate Cancer with Acquired Docetaxel Resistance
Yujie Huang1, You Zhai1, Meijia Wu1
1Research Center for Clinical Pharmacy, Zhejiang Provincial Key Laboratory for Drug Evaluation and Clinical Research, The First Affiliated Hospital, Zhejiang University School of Medicine, Hangzhou, People's Republic of China.
Purpose:
Mammalian Target of rapamycin (mTOR) plays a central role in regulating cell growth, proliferation, and cell cycle. The key component of mTORC2 is highly expressed in docetaxel-resistant prostate cells. However, the underlying molecular effects on prostate cells remain unclear.
Methods:
A docetaxel-resistant human prostate cell line (PC-3/DTX) was constructed to investigate the role of mTORC2 in docetaxel resistance. The lentivirus was transfected into cells to knock down the expression of Rictor, and cell viability was measured by Cell Counting Kit 8 (CCK-8). Flow cytometry was used to analyze the cell cycle, and the changes in related signal cascades were assessed by immunohistochemistry (IHC) staining and Western blot.
Results:
Docetaxel showed the lowest IC50 (50% inhibitory concentration) in PC-3/DTX cells with sh-RNA. Decreased Rictor expression resulted in a larger proportion of arrested cells in the G0/G1 phase in PC-3/DTX cells. The IC50 values of the AZD8055 group were lower than in the Rapamycin group when treated with docetaxel again. Furthermore, a larger proportion of PC-3/DTX cells were arrested in the G0/G1 phase in the AZD8055 group compared to the Rapamycin group. The IHC results of the prostate cancer tissues from a CRPC patient revealed the over expression of Rictor only, while Raptor expression was unaffected.
Conclusion:
We investigated the role of mTORC2 signaling on the acquired docetaxel -resistant PC-3 cells to identify potential methods for clinical treatment. MTORC2 expression is essential for docetaxel drug resistance of PC-3 cells. The mTORC1/2 inhibitor AZD8055 caused more significant disruption of mTORC2 kinase activity than the mTORC1 inhibitor Rapamycin, which lead to decreased docetaxel-mediated resistance. Therefore, reversing docetaxel resistance, may become a therapeutic option in the treatment of mCRPC patients.
Insights
Mammalian Target of rapamycin complex 2 (mTORC2) is crucial for docetaxel resistance in prostate cancer cells. Inhibiting mTORC2 with AZD8055 can overcome this resistance, offering a potential therapeutic strategy for metastatic castration-resistant prostate cancer (mCRPC).
Area of Science:
- Oncology
- Molecular Biology
- Cell Biology
Background:
- Mammalian Target of rapamycin (mTOR) regulates cell growth and proliferation.
- mTOR complex 2 (mTORC2) is highly expressed in docetaxel-resistant prostate cancer cells, but its role is unclear.
- Docetaxel resistance is a significant challenge in treating prostate cancer.
Purpose of the Study:
- To investigate the role of mTORC2 in acquired docetaxel resistance in prostate cancer cells.
- To identify potential therapeutic strategies to overcome docetaxel resistance by targeting mTORC2.
- To elucidate the molecular mechanisms underlying mTORC2's involvement in drug resistance.
Main Methods:
- Construction of a docetaxel-resistant human prostate cell line (PC-3/DTX).
- Knockdown of Rictor (a key component of mTORC2) using lentivirus.
- Assessment of cell viability (CCK-8), cell cycle (flow cytometry), and signaling pathways (IHC, Western blot).
- Treatment with mTOR inhibitors (AZD8055, Rapamycin) in combination with docetaxel.
Main Results:
- Decreased Rictor expression in PC-3/DTX cells led to G0/G1 cell cycle arrest and reduced viability.
- The mTORC1/2 inhibitor AZD8055 was more effective than the mTORC1 inhibitor Rapamycin in reducing docetaxel resistance.
- AZD8055 treatment resulted in greater G0/G1 cell cycle arrest compared to Rapamycin.
- Rictor was overexpressed in prostate cancer tissues from a castration-resistant prostate cancer (CRPC) patient.
Conclusions:
- mTORC2 signaling is essential for acquired docetaxel resistance in prostate cancer cells.
- Targeting mTORC2 with inhibitors like AZD8055 can reverse docetaxel resistance.
- Reversing docetaxel resistance by targeting mTORC2 presents a potential therapeutic option for mCRPC patients.
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