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High expression of TROP2 characterizes different cell subpopulations in androgen-sensitive and androgen-independent
Jinhan Xie1,2, Christina Mølck3, Sophie Paquet-Fifield3
1Drug Discovery Biology, Monash Institute of Pharmaceutical Sciences, Monash University, Parkville, Australia.
Abstract:
Progression of castration-resistant tumors is frequent in prostate cancer. Current systemic treatments for castration-resistant prostate cancer only produce modest increases in survival time and self-renewing Tumor-Initiating Cells (TICs) are suspected to play an important role in resistance to these treatments. However it remains unclear whether the same TICs display both chemo-resistance and self-renewing abilities throughout progression from early stage lesions to late, castration resistant tumors. Here, we found that treatment of mice bearing LNCaP-derived xenograft tumors with cytotoxic (docetaxel) and anti-androgen (flutamide) compounds enriched for cells that express TROP2, a putative TIC marker. Consistent with a tumor-initiating role, TROP2high cells from androgen-sensitive prostate cancer cell lines displayed an enhanced ability to re-grow in culture following treatment with taxane-based chemotherapy with or without androgen blockade. TROP2 down-regulation in these cells reduced their ability to recur after treatment with docetaxel, in the presence or absence of flutamide. Accordingly, in silico analysis of published clinical data revealed that prostate cancer patients with poor prognosis exhibit significantly elevated TROP2 expression level compared to low-risk patients, particularly in the case of patients diagnosed with early stage tumors. In contrast, in androgen-independent prostate cancer cell lines, TROP2high cells did not exhibit a differential treatment response but were characterized by their high self-renewal ability. Based on these findings we propose that high TROP2 expression identifies distinct cell sub-populations in androgen-sensitive and androgen-independent prostate tumors and that it may be a predictive biomarker for prostate cancer treatment response in androgen-sensitive tumors.
Insights
High TROP2 expression in prostate cancer cells indicates tumor-initiating cells (TICs) that drive treatment resistance. TROP2 may serve as a predictive biomarker for treatment response in androgen-sensitive tumors.
Area of Science:
- Oncology
- Cancer Biology
- Prostate Cancer Research
Background:
- Castration-resistant prostate cancer (CRPC) progression is common, with current treatments offering limited survival benefits.
- Self-renewing Tumor-Initiating Cells (TICs) are implicated in treatment resistance, but their role throughout tumor progression remains unclear.
Purpose of the Study:
- To investigate whether TICs exhibit both chemo-resistance and self-renewal abilities across prostate cancer progression.
- To determine the role of TROP2 as a potential marker for TICs and its association with treatment response and prognosis.
Main Methods:
- Treatment of mice with LNCaP-derived xenograft tumors using docetaxel and flutamide.
- Analysis of TROP2 expression in androgen-sensitive and androgen-independent prostate cancer cell lines post-treatment.
- In silico analysis of clinical data to correlate TROP2 expression with patient prognosis.
Main Results:
- Docetaxel and flutamide treatments enriched for TROP2-expressing cells, which showed enhanced tumor regrowth.
- Down-regulation of TROP2 reduced tumor recurrence after chemotherapy, irrespective of androgen blockade.
- Elevated TROP2 expression in patients correlated with poor prognosis, especially in early-stage tumors.
- In androgen-independent cells, TROP2high cells demonstrated high self-renewal but not differential treatment response.
Conclusions:
- High TROP2 expression identifies distinct cell subpopulations in both androgen-sensitive and androgen-independent prostate tumors.
- TROP2 may serve as a predictive biomarker for treatment response in androgen-sensitive prostate cancer.
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