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DLL3-Targeted Strategies in Advanced Prostate Cancer: Current Evidence and Future Perspectives
Giovanna Pecoraro1,2,3, Alberto De Giorgi1,4, Giulia Montelatici1,5
1Oncology Institute of Southern Switzerland (IOSI), Ente Ospedaliero Cantonale (EOC), Bellinzona, Switzerland.
Abstract:
Inhibition of androgen receptor (AR) signaling remains the cornerstone of systemic therapy for advanced prostate cancer (PC). However, a subset of aggressive tumors either arises de novo with neuroendocrine features or emerges under treatment pressure through lineage plasticity and AR independence. These lethal states are encompassed within the spectrum of aggressive-variant prostate cancer (AVPC), an umbrella term that includes both histologically confirmed neuroendocrine prostate cancer (NEPC)-comprising de novo NEPC and treatment-emergent NEPC (t-NEPC)-and clinically or molecularly defined AVPC lacking histologic confirmation but sharing neuroendocrine-like, AR-indifferent, or small-cell features. These phenotypes are characterized by rapid progression, visceral dissemination, low or discordant prostate-specific antigen (PSA) levels relative to tumor burden, and poor prognosis. Treatment options for NEPC/AVPC remain limited and largely rely on platinum-based chemotherapy, which usually provides only modest and transient benefit. This unmet need has intensified interest in lineage-associated vulnerabilities. Delta-like ligand 3 (DLL3), an inhibitory Notch ligand with restricted expression in normal adult tissues, is aberrantly upregulated in several neuroendocrine malignancies and has emerged as a clinically actionable target. In prostate cancer, DLL3 expression is enriched in neuroendocrine tumor cells, being detected in approximately 76.6% of castration-resistant NEPC compared with only 12.5% of castration-resistant adenocarcinoma, supporting its development as both a biomarker and therapeutic vulnerability. Clinical success of DLL3-targeted therapies in small-cell lung cancer further supports evaluation of DLL3-directed strategies in NEPC and related AVPC states. This review summarizes the biological rationale, translational evidence, and emerging clinical data supporting DLL3-targeted therapies in prostate cancer. Investigational platforms include antibody-drug conjugates, bispecific and trispecific T-cell engagers, and DLL3-directed radiopharmaceuticals. Early clinical studies suggest that activity is largely confined to DLL3-expressing neuroendocrine tumors, highlighting the importance of biomarker-guided patient selection. Delta-like ligand 3-directed therapies may reshape the management of DLL3-expressing prostate cancer if ongoing efforts to refine biomarkers improve patient enrichment and optimize trial design are successfully translated into clinical practice.
Insights
Aggressive prostate cancers can become resistant to treatment by changing cell type. Targeting Delta-like ligand 3 (DLL3) shows promise for these difficult-to-treat neuroendocrine prostate cancers.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Therapeutics
Background:
- Advanced prostate cancer (PC) typically responds to androgen receptor (AR) signaling inhibition.
- A subset of aggressive PC develops neuroendocrine features (NEPC) or aggressive-variant PC (AVPC) under treatment pressure, characterized by rapid progression and poor prognosis.
- Current treatments for NEPC/AVPC, primarily platinum-based chemotherapy, offer limited benefit.
Purpose of the Study:
- To review the biological rationale, translational evidence, and clinical data for Delta-like ligand 3 (DLL3)-targeted therapies in prostate cancer.
- To highlight DLL3 as a potential therapeutic target and biomarker in NEPC/AVPC.
- To discuss the potential of DLL3-directed strategies to improve outcomes for patients with aggressive prostate cancer.
Main Methods:
- Review of existing literature on DLL3 expression in prostate cancer.
- Analysis of translational evidence and emerging clinical data for DLL3-targeted therapies.
- Examination of various investigational platforms including antibody-drug conjugates, T-cell engagers, and radiopharmaceuticals.
Main Results:
- DLL3 is aberrantly upregulated in neuroendocrine malignancies, including approximately 76.6% of castration-resistant NEPC, compared to 12.5% of castration-resistant adenocarcinoma.
- DLL3-targeted therapies have shown clinical success in small-cell lung cancer, supporting their evaluation in NEPC.
- Early clinical studies indicate that DLL3-directed therapies are most effective in DLL3-expressing neuroendocrine tumors, emphasizing the need for biomarker-guided selection.
Conclusions:
- DLL3 is a promising therapeutic target and biomarker for aggressive-variant prostate cancer, particularly NEPC.
- DLL3-targeted therapies, including antibody-drug conjugates and T-cell engagers, hold potential to reshape treatment paradigms for DLL3-expressing prostate cancer.
- Refining biomarkers and optimizing clinical trial design are crucial for the successful translation of DLL3-directed therapies into clinical practice.
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