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MR Molecular Imaging of Prostate Cancer with a Small Molecular CLT1 Peptide Targeted Contrast Agent
Published on: September 3, 2013
Precision Targeting in Metastatic Prostate Cancer: Molecular Insights to Therapeutic Frontiers
Whi-An Kwon1, Jae Young Joung2
1Department of Urology, Hanyang University College of Medicine, Myongji Hospital, Goyang 10475, Republic of Korea.
Abstract:
Metastatic prostate cancer (mPCa) remains a significant cause of cancer-related mortality in men. Advances in molecular profiling have demonstrated that the androgen receptor (AR) axis, DNA damage repair pathways, and the PI3K/AKT/mTOR pathway are critical drivers of disease progression and therapeutic resistance. Despite the established benefits of hormone therapy, chemotherapy, and bone-targeting agents, mPCa commonly becomes treatment-resistant. Recent breakthroughs have highlighted the importance of identifying actionable genetic alterations, such as BRCA2 or ATM defects, that render tumors sensitive to poly-ADP ribose polymerase (PARP) inhibitors. Parallel efforts have refined imaging-particularly prostate-specific membrane antigen (PSMA) positron emission tomography-computed tomography-to detect and localize metastatic lesions with high sensitivity, thereby guiding patient selection for PSMA-targeted radioligand therapies. Multi-omics innovations, including liquid biopsy technologies, enable the real-time tracking of emergent AR splice variants or reversion mutations, supporting adaptive therapy paradigms. Nonetheless, the complexity of mPCa necessitates combination strategies, such as pairing AR inhibition with PI3K/AKT blockade or PARP inhibitors, to inhibit tumor plasticity. Immuno-oncological approaches remain challenging for unselected patients; however, subsets with mismatch repair deficiency or neuroendocrine phenotypes may benefit from immune checkpoint blockade or targeted epigenetic interventions. We present these pivotal advances, and discuss how biomarker-guided integrative treatments can improve mPCa management.
Insights
Metastatic prostate cancer (mPCa) management is advancing with molecular profiling and targeted therapies. Biomarker-guided treatments, including PARP inhibitors and PSMA-targeted radioligand therapy, offer new hope for patients with treatment-resistant disease.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Metastatic prostate cancer (mPCa) is a leading cause of cancer death in men.
- AR axis, DNA repair, and PI3K/AKT/mTOR pathways drive mPCa progression and resistance.
- Current treatments face challenges with therapeutic resistance.
Purpose of the Study:
- To review pivotal advances in mPCa management.
- To discuss biomarker-guided integrative treatment strategies.
- To highlight the role of molecular profiling and advanced imaging.
Main Methods:
- Review of recent breakthroughs in molecular profiling (e.g., AR axis, DNA damage repair, PI3K/AKT/mTOR).
- Analysis of genetic alterations (e.g., BRCA2, ATM) and PARP inhibitor sensitivity.
- Evaluation of advanced imaging techniques (e.g., PSMA PET-CT) and liquid biopsy.
- Discussion of combination strategies and immuno-oncology approaches.
Main Results:
- Actionable genetic alterations (BRCA2, ATM) predict PARP inhibitor response.
- PSMA PET-CT enhances metastatic lesion detection and guides PSMA-targeted radioligand therapy.
- Liquid biopsies track emergent resistance mechanisms for adaptive therapy.
- Combination strategies (AR inhibition + PI3K/AKT blockade or PARP inhibitors) are crucial.
Conclusions:
- Biomarker-guided integrative treatments are essential for improving mPCa management.
- Targeted therapies and advanced diagnostics offer new avenues for treatment-resistant mPCa.
- Future directions include personalized combination strategies and exploring immunotherapy for specific subsets.
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