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Micellar Delivery of miR-34a Modulator Rubone and Paclitaxel in Resistant Prostate Cancer
Di Wen1, Yang Peng1, Feng Lin1
1Department of Pharmaceutical Sciences, University of Nebraska Medical Center, Omaha, Nebraska.
Abstract:
Treatment of prostate cancer with paclitaxel often fails due to the development of chemoresistance caused by downregulation of the tumor suppressor gene miR-34a. In this study, we demonstrate that codelivery of paclitaxel and 2'-hydroxy-2,4,4',5,6'-pentamethoxychalcone (termed rubone) drives upregulation of miR-34a and chemosensitizes paclitaxel-resistant prostate cancer cells, killing both cancer stem-like cells (CSC) and bulk tumor cells. Rubone upregulated miR-34a and reversed its downstream target genes in DU145-TXR and PC3-TXR cells. Paclitaxel and rubone combination therapy inhibited tumor cell growth, migration, and CSC population growth. We synthesized poly(ethylene glycol)-block-poly(2-methyl-2-carboxyl-propylene carbonate-graft-dodecanol; PEG-PCD) to prepare micelles. The drug-loading capacities were 9.70% ± 0.10% and 5.34% ± 0.02% for paclitaxel and rubone, respectively, controlling a drug release of 60.20% ± 2.67% and 60.62% ± 4.35% release of paclitaxel and rubone at 24 hours. Delivery of miR-34a and rubone decreased PC3-TXR cell viability with increasing paclitaxel concentration. Coincubation with a miR-34a inhibitor diminished the effect of rubone. Paclitaxel IC50 in PC3 and PC3-TXR cells was 55.6 and 2,580 nmol/L, respectively, but decreased to 49.8 and 93.2 nmol/L when treated in combination with rubone, demonstrating a reversal of paclitaxel resistance by rubone. Systemic administration of micelles carrying paclitaxel and rubone inhibited orthotopic prostate tumor growth in nude mice, compared with monotherapy, by reversing the expression of miR-34a, SIRT1, cyclin D1, and E-cadherin. In summary, our results showed how rubone acts as an efficient small-molecule modulator of miR-34a to reverse chemoresistance and further enhance the therapeutic efficacy of paclitaxel in paclitaxel-resistant prostate cancer. Cancer Res; 77(12); 3244-54. ©2017 AACR.
Insights
Paclitaxel resistance in prostate cancer is reversed by rubone, a compound that upregulates tumor suppressor miR-34a. This combination therapy effectively kills resistant cancer cells and inhibits tumor growth.
Area of Science:
- Oncology
- Molecular Biology
- Nanomedicine
Background:
- Prostate cancer treatment with paclitaxel often fails due to chemoresistance.
- This resistance is linked to the downregulation of the tumor suppressor gene miR-34a.
Purpose of the Study:
- To investigate the potential of codelivering paclitaxel with rubone to overcome paclitaxel resistance in prostate cancer.
- To explore the role of miR-34a upregulation in this chemosensitization process.
Main Methods:
- Synthesized micelles (PEG-PCD) for codelivery of paclitaxel and rubone.
- Assessed drug loading and release kinetics of the micelles.
- Evaluated the effect of combination therapy on paclitaxel-resistant prostate cancer cells (DU145-TXR, PC3-TXR) in vitro and in vivo.
- Investigated miR-34a expression and its downstream targets.
Main Results:
- Rubone upregulated miR-34a and reversed its downstream targets in resistant cells.
- Combination therapy inhibited cell growth, migration, and cancer stem-like cell (CSC) populations.
- Paclitaxel resistance was significantly reversed, with IC50 values decreasing substantially.
- Systemic administration of micelles suppressed orthotopic tumor growth in mice.
Conclusions:
- Rubone effectively modulates miR-34a to overcome paclitaxel resistance in prostate cancer.
- Codelivery of paclitaxel and rubone enhances therapeutic efficacy against resistant prostate cancer, including CSCs.
- This approach offers a promising strategy for treating paclitaxel-resistant prostate cancer.
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