Small interfering RNA targeting N-cadherin regulates cell proliferation and migration in enzalutamide-resistant
Cheng-Hsin Lu1,2,3, Chun-Hsien Wu2,4,5, Pei-Fang Hsieh2,6
1Division of Urology, Penghu Hospital, Penghu 880001, Taiwan, R.O.C.
Abstract:
Enzalutamide is one of the options for treating patients with castration-resistant or metastatic prostate cancer. However, a substantial proportion of patients become resistant to enzalutamide after a period of treatment. Cells in these tumors typically exhibit increased proliferative and migratory capabilities, in which N-cadherin (CDH2) appear to serve an important role. In the present study, by up- and downregulating the expression of CDH2, the possible effects of CDH2 on the prostate cancer cell line LNCaP were investigated. Male sex hormone-sensitive LNCaP cells treated with 10 µM enzalutamide were named LNCaP enzalutamide-resistant (EnzaR) cells. Reverse transcription-PCR, western blotting and immunofluorescence staining were used to measure CDH2, E-cadherin, α-SMA, Snail and Slug expression. Transfection with the pCMV-CDH2 plasmid was performed for CDH2 upregulation, whilst transfection with small interfering RNA (siRNA)-CDH2 was performed for CDH2 downregulation. MTT and Cell Counting Kit-4 assays were used to evaluate the proportion of viable cancer cells. Subsequently, gap closure assay was performed to evaluate the migratory capability of both LNCaP and LNCaP EnzaR cell lines. CDH2 expression was found to be increased in LNCaP EnzaR cells compared with that in LNCaP cells. CDH2 overexpression increased cell viability and migration in both LNCaP and LNCaP EnzaR cell lines. By contrast, the opposite trend was observed after CDH2 expression was knocked down. CDH2 expression also showed a high association with that of four epithelial-mesenchymal transition markers, which was confirmed by western blotting. Based on these results, it was concluded that knocking down CDH2 expression using siRNA transfection mediated significant influence on LNCaP EnzaR cell physiology, which may be a potential therapeutic option for prostate cancer treatment.
Insights
N-cadherin (CDH2) upregulation promotes enzalutamide resistance in prostate cancer by increasing cell viability and migration. Downregulating CDH2 may offer a new therapeutic strategy for castration-resistant prostate cancer.
Area of Science:
- Oncology
- Molecular Biology
- Cell Biology
Background:
- Enzalutamide is a key treatment for castration-resistant prostate cancer (CRPC).
- Acquired resistance to enzalutamide is a significant clinical challenge.
- N-cadherin (CDH2) is implicated in the increased proliferation and migration observed in resistant tumors.
Purpose of the Study:
- To investigate the role of CDH2 in enzalutamide-resistant prostate cancer (EnzaR) cells.
- To determine the effects of modulating CDH2 expression on prostate cancer cell physiology and migration.
Main Methods:
- Established enzalutamide-resistant LNCaP (LNCaP EnzaR) cell line.
- Utilized reverse transcription-PCR, western blotting, and immunofluorescence staining to assess protein expression.
- Manipulated CDH2 expression via plasmid transfection (upregulation) and siRNA (downregulation).
- Evaluated cell viability using MTT and Cell Counting Kit-4 assays.
- Assessed cell migration using gap closure assays.
Main Results:
- CDH2 expression was significantly increased in LNCaP EnzaR cells compared to parental LNCaP cells.
- CDH2 overexpression enhanced cell viability and migration in both cell lines.
- CDH2 knockdown using siRNA reversed these effects, reducing viability and migration.
- CDH2 expression correlated with markers of epithelial-mesenchymal transition (EMT).
Conclusions:
- CDH2 plays a crucial role in the enhanced viability and migratory potential of enzalutamide-resistant prostate cancer cells.
- Targeting CDH2 expression, particularly through knockdown, demonstrates potential as a therapeutic strategy for overcoming enzalutamide resistance in prostate cancer.
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