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Resistance to Antiandrogens in Prostate Cancer: Is It Inevitable, Intrinsic or Induced?
1Department of Biology, University of York, Heslington, York YO10 5DD, UK.
Abstract:
Increasingly sophisticated therapies for chemical castration dominate first-line treatments for locally advanced prostate cancer. However, androgen deprivation therapy (ADT) offers little prospect of a cure, as resistant tumors emerge rather rapidly, normally within 30 months. Cells have multiple mechanisms of resistance to even the most sophisticated drug regimes, and both tumor cell heterogeneity in prostate cancer and the multiple salvage pathways result in castration-resistant disease related genetically to the original hormone-naive cancer. The timing and mechanisms of cell death after ADT for prostate cancer are not well understood, and off-target effects after long-term ADT due to functional extra-prostatic expression of the androgen receptor protein are now increasingly being recorded. Our knowledge of how these widely used treatments fail at a biological level in patients is deficient. In this review, I will discuss whether there are pre-existing drug-resistant cells in a tumor mass, or whether resistance is induced/selected by the ADT. Equally, what is the cell of origin of this resistance, and does it differ from the treatment-naïve tumor cells by differentiation or dedifferentiation? Conflicting evidence also emerges from studies in the range of biological systems and species employed to answer this key question. It is only by improving our understanding of this aspect of treatment and not simply devising another new means of androgen inhibition that we can improve patient outcomes.
Insights
Androgen deprivation therapy for prostate cancer is limited by rapid resistance. Understanding the biological mechanisms of resistance is crucial for improving patient outcomes beyond new drug development.
Area of Science:
- Oncology
- Molecular Biology
- Urology
Background:
- Advanced prostate cancer treatments often involve sophisticated chemical castration.
- Androgen deprivation therapy (ADT) is a common first-line treatment, but tumors frequently develop resistance.
- Mechanisms of resistance and cell death following ADT are not fully understood.
Purpose of the Study:
- To review the biological mechanisms underlying resistance to androgen deprivation therapy in prostate cancer.
- To explore whether drug-resistant cells pre-exist or are selected/induced by ADT.
- To investigate the cell of origin for treatment resistance.
Main Methods:
- Literature review of existing studies on prostate cancer treatment resistance.
- Analysis of biological systems and species to understand resistance mechanisms.
- Discussion of tumor cell heterogeneity and salvage pathways in castration-resistant disease.
Main Results:
- Tumor resistance to ADT emerges rapidly, typically within 30 months.
- Multiple cellular mechanisms and salvage pathways contribute to castration-resistant prostate cancer.
- Off-target effects of long-term ADT are increasingly recognized.
Conclusions:
- Current knowledge of ADT failure at a biological level is insufficient.
- Improving understanding of resistance mechanisms is key to enhancing patient outcomes.
- Focusing on resistance biology, not just new androgen inhibition, is vital for therapeutic advancement.
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