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Updated: Jan 24, 2026

Isolation of Cancer Stem Cells From Human Prostate Cancer Samples
Published on: March 14, 2014
Transcriptional Reprogramming and Novel Therapeutic Approaches for Targeting Prostate Cancer Stem Cells
Gianluca Civenni1, Domenico Albino1, Dheeraj Shinde1
1Institute of Oncology (IOR), Università della Svizzera Italiana, Bellinzona, Switzerland.
Abstract:
Prostate cancer is the most common malignancy in men and the second cause of cancer-related deaths in western countries. Despite the progress in the treatment of localized prostate cancer, there is still lack of effective therapies for the advanced forms of the disease. Most patients with advanced prostate cancer become resistant to androgen deprivation therapy (ADT), which remains the main therapeutic option in this setting, and progress to lethal metastatic castration-resistant prostate cancer (mCRPC). Current therapies for prostate cancer preferentially target proliferating, partially differentiated, and AR-dependent cancer cells that constitute the bulk of the tumor mass. However, the subpopulation of tumor-initiating or tumor-propagating stem-like cancer cells is virtually resistant to the standard treatments causing tumor relapse at the primary or metastatic sites. Understanding the pathways controlling the establishment, expansion and maintenance of the cancer stem cell (CSC) subpopulation is an important step toward the development of more effective treatment for prostate cancer, which might enable ablation or exhaustion of CSCs and prevent treatment resistance and disease recurrence. In this review, we focus on the impact of transcriptional regulators on phenotypic reprogramming of prostate CSCs and provide examples supporting the possibility of inhibiting maintenance and expansion of the CSC pool in human prostate cancer along with the currently available methodological approaches. Transcription factors are key elements for instructing specific transcriptional programs and inducing CSC-associated phenotypic changes implicated in disease progression and treatment resistance. Recent studies have shown that interfering with these processes causes exhaustion of CSCs with loss of self-renewal and tumorigenic capability in prostate cancer models. Targeting key transcriptional regulators in prostate CSCs is a valid therapeutic strategy waiting to be tested in clinical trials.
Insights
Targeting transcriptional regulators can deplete prostate cancer stem cells (CSCs), offering a new strategy against treatment resistance and recurrence in advanced prostate cancer.
Area of Science:
- Oncology
- Cancer Stem Cell Biology
- Molecular Therapeutics
Background:
- Prostate cancer is a leading cause of cancer death in men, with advanced forms often becoming resistant to androgen deprivation therapy (ADT).
- Current treatments primarily target bulk tumor cells, leaving cancer stem cells (CSCs) resistant and leading to relapse.
- Metastatic castration-resistant prostate cancer (mCRPC) remains a significant clinical challenge due to treatment resistance.
Purpose of the Study:
- To review the role of transcriptional regulators in prostate cancer stem cell (CSC) reprogramming.
- To explore therapeutic strategies targeting CSC maintenance and expansion.
- To highlight the potential of targeting transcription factors for novel prostate cancer treatments.
Main Methods:
- Review of current literature on prostate cancer, CSCs, and transcriptional regulation.
- Analysis of studies investigating the impact of transcriptional regulators on CSC phenotypes.
- Examination of therapeutic approaches targeting CSCs in preclinical models.
Main Results:
- Transcriptional regulators significantly influence the phenotypic plasticity of prostate CSCs.
- Interfering with key transcription factors can lead to CSC exhaustion, reducing self-renewal and tumorigenicity.
- Targeting transcriptional regulators shows promise in depleting the CSC pool.
Conclusions:
- Understanding transcriptional regulation in prostate CSCs is crucial for developing effective therapies.
- Targeting transcriptional regulators represents a promising therapeutic strategy for overcoming treatment resistance and preventing recurrence in prostate cancer.
- Further clinical investigation of targeting transcription factors in prostate CSCs is warranted.
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