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MicroRNA-223-3p regulates cell chemo-sensitivity by targeting FOXO3 in prostatic cancer
Qiang Feng1, Peng He1, Yu Wang1
1Department of Urology, Sichuan Academy of Medical Sciences & Sichuan Provincial People's Hospital, Sichuan 610072, China.
Abstract:
Prostate cancer (PCa) is one of the most common malignant cancers in male and docetaxel is commonly used as an effective chemotherapeutic drug for PCa patients. However, docetaxel resistance inhibits the therapeutic effect of this agent, thus investigating the mechanism of chemoresistance to docetaxel of PCa may help to improve the prognosis of PCa patients. In our present study, we found that miR-223-3p was up-regulated in PCa cell lines (C4-2, LNCap, PC3, DU-145). Transfection with miR-223-3p inhibitor increased chemo-sensitivity to docetaxel and cell apoptosis rate in PCa cells compared with docetaxel + miR-223-3p mock group, especially in DU-145 cells which were more resistant to docetaxel. Bioinformatics study and luciferase reporter assay indicated that FOXO3 was a target of miR-223-3p and the results from western blot suggested that FOXO3 was negatively regulated by miR-223-3p. Further study revealed that up-regulation of FOXO3 by transfection with pCMV-FOXO3 decreased the IC50 values of docetaxel and increased cell apoptosis rate compared with docetaxel + pCMV-vector group, suggesting that overexpressed FOXO3 suppressed cell survival and sensitized PCa cells to docetaxel. Moreover, siRNA-mediated knockdown of FOXO3 abolished the effects of miR-223-3p inhibitor on chemo-sensitivity and apoptosis in PCa cells by increasing chemoresistance and decreasing cell apoptosis rate. Finally, the in vivo experiments showed that miR-223-3p inhibitor sensitized prostatic cancer mouse model to docetaxel by increasing the expression of FOXO3. In conclusion, our present study indicated that miR-223-3p regulated cell chemo-sensitivity by targeting FOXO3 in prostatic cancer both in vitro and in vivo, providing new potential therapeutic strategy for PCa treatment.
Insights
MicroRNA-223-3p (miR-223-3p) promotes docetaxel resistance in prostate cancer (PCa) by suppressing FOXO3. Inhibiting miR-223-3p restores sensitivity to docetaxel, offering a potential therapeutic strategy for PCa patients.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Prostate cancer (PCa) is a prevalent malignancy in males.
- Docetaxel is a key chemotherapeutic agent for PCa, but resistance limits its efficacy.
- Understanding chemoresistance mechanisms is crucial for improving PCa patient outcomes.
Purpose of the Study:
- To investigate the role of miR-223-3p in docetaxel resistance in prostate cancer.
- To identify the molecular targets of miR-223-3p involved in chemoresistance.
- To evaluate the therapeutic potential of targeting the miR-223-3p/FOXO3 axis in PCa.
Main Methods:
- Quantitative analysis of miR-223-3p expression in PCa cell lines.
- In vitro studies using miR-223-3p inhibitors and FOXO3 overexpression/knockdown.
- Bioinformatics analysis, luciferase reporter assays, and Western blotting to confirm target interaction.
- In vivo experiments using a PCa mouse model.
Main Results:
- miR-223-3p was significantly upregulated in PCa cell lines.
- Inhibition of miR-223-3p enhanced docetaxel sensitivity and apoptosis, particularly in resistant cells.
- FOXO3 was identified as a direct target of miR-223-3p, with its expression negatively regulated by miR-223-3p.
- Overexpression of FOXO3 sensitized PCa cells to docetaxel, while its knockdown abolished the effects of miR-223-3p inhibition.
- In vivo studies confirmed that miR-223-3p inhibition sensitized the PCa mouse model to docetaxel.
Conclusions:
- miR-223-3p promotes docetaxel resistance in prostate cancer by targeting and downregulating FOXO3.
- Targeting miR-223-3p represents a promising therapeutic strategy to overcome docetaxel resistance in PCa.
- The miR-223-3p/FOXO3 pathway is a critical regulator of chemo-sensitivity in prostate cancer.
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