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Updated: Jun 26, 2025

A Bioluminescent and Fluorescent Orthotopic Syngeneic Murine Model of Androgen-dependent and Castration-resistant Prostate Cancer
Published on: March 6, 2018
Overcoming ABCB1 mediated multidrug resistance in castration resistant prostate cancer
Alexander Ishov1, Sadia Sarwar1, Viacheslav Morozov
1University of Florida College of Medicine.
Abstract:
Prostate cancer (PCa) is the second leading cause of cancer-related death in American men. PCa that relapses after hormonal therapies, referred to as castration resistant PCa (CRPC), often presents with metastases (mCRPC) that are the major cause of mortality. The few available therapies for mCRPC patients include taxanes docetaxel (DTX) and cabazitaxel (CBZ). However, development of resistance limits their clinical use. Mechanistically, resistance arises through upregulation of multidrug resistance (MDR) proteins such as MDR1/ABCB1, making ABCB1 an attractive therapeutic target. Yet, ABCB1 inhibitors failed to be clinically useful due to low specificity and toxicity issues. To study taxanes resistance, we produced CBZ resistant C4-2B cells (RC4-2B) and documented resistance to both CBZ and DTX in cell culture and in 3D prostaspheres settings. RNAseq identified increased expression of ABCB1 in RC4-2B, that was confirmed by immunoblotting and immunofluorescent analysis. ABCB1-specific inhibitor elacridar reversed CBZ and DTX resistance in RC4-2B cells, confirming ABCB1-mediated resistance mechanism. In a cell-based screen using a curated library of FDA-approved cytotoxic drugs, we found that DNA damaging compounds Camptothecin (CPT) and Cytarabine (Ara-C) overcame resistance as seen by similar cytotoxicity in parental C4-2B and resistant RC4-2B. Further, these compounds were cytotoxic to multiple PC cells resistant to taxanes with high ABCB1 expression and, therefore, can be used to conquer the acquired resistance to taxanes in PCa. Finally, inhibition of CDK4/6 kinases with small molecule inhibitors (CDK4/6i) potentiated cytotoxic effect of CPT or Ara-C in both parental and resistant cells. Overall, our findings indicate that DNA damaging agents CPT and Ara-C alone or in combination with CDK4/6i can be suggested as a new treatment regimen in CRPC patients, including those that are resistant to taxanes.
Insights
New DNA damaging drugs, Camptothecin and Cytarabine, overcome taxane resistance in prostate cancer. Combining them with CDK4/6 inhibitors offers a promising new treatment for castration-resistant prostate cancer patients.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Castration-resistant prostate cancer (CRPC) with metastases (mCRPC) is a leading cause of cancer mortality in men.
- Taxanes like docetaxel and cabazitaxel are main treatments for mCRPC, but resistance limits their efficacy.
- Multidrug resistance (MDR) protein ABCB1 (MDR1) upregulation is a key mechanism of taxane resistance.
Approach:
- Developed cabazitaxel-resistant C4-2B cells (RC4-2B) to model taxane resistance in prostate cancer.
- Confirmed increased ABCB1 expression in resistant cells using RNAseq, immunoblotting, and immunofluorescence.
- Screened FDA-approved cytotoxic drugs to identify agents overcoming taxane resistance.
Key Points:
- Camptothecin (CPT) and Cytarabine (Ara-C), DNA damaging agents, demonstrated potent cytotoxicity against taxane-resistant prostate cancer cells.
- These agents were effective in cells with high ABCB1 expression, suggesting a mechanism to overcome MDR.
- Inhibition of CDK4/6 kinases potentiated the cytotoxic effects of CPT and Ara-C in both sensitive and resistant cells.
Conclusions:
- DNA damaging agents CPT and Ara-C represent a novel therapeutic strategy for taxane-resistant prostate cancer.
- Combination therapy with CPT or Ara-C and CDK4/6 inhibitors shows potential for treating mCRPC patients.
- This approach may overcome acquired resistance to taxanes in advanced prostate cancer.
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