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Published on: January 12, 2020
Targeting the DLL/Notch Signaling Pathway in Cancer: Challenges and Advances in Clinical Development
Weon-Kyoo You1, Thomas J Schuetz2, Sang Hoon Lee1
1R&D Center, ABL Bio, Inc., Seongnam-si, Republic of Korea.
Abstract:
The DLL/Notch signaling pathway plays an important role in cancer as a key driver in maintaining cancer stemness and inducing tumor angiogenesis. Many different types of DLL/Notch inhibitors have been developed and explored in clinical trials for cancer treatment, including small-molecule compounds to inhibit gamma-secretase and antibodies targeting Notch ligands or receptors. Despite promising efficacy of these inhibitors in preclinical studies, the overall clinical outcomes have been insufficient to advance to the next stage of clinical development primarily due to safety concerns or modest efficacy. To overcome the narrow therapeutic window of DLL/Notch inhibitors, diverse strategies for improving the balance between the safety and efficacy are currently being explored. Here, we review the clinical perspective and potential of DLL/Notch inhibitors as anticancer agents based on recent results from multiple clinical studies. An antibody specifically targeting Notch ligands or receptors may offer a better approach to reduce concerns about toxicity derived from broad-spectrum DLL/Notch blockers. In addition, combination therapy with an angiogenesis inhibitor targeting VEGF could be a better option for increasing anticancer efficacy. Taken together, the results of clinical trials suggest a bispecific antibody blocking the DLL/Notch and VEGF/VEGFR signaling pathways as a promising approach for effective anticancer treatment.
Insights
DLL/Notch inhibitors show promise in cancer treatment but face challenges. Bispecific antibodies targeting DLL/Notch and VEGF pathways offer a potential solution for improved anticancer efficacy and safety.
Area of Science:
- Oncology
- Molecular Biology
- Drug Development
Background:
- The DLL/Notch signaling pathway is crucial for cancer stemness and angiogenesis.
- Current DLL/Notch inhibitors (gamma-secretase inhibitors, antibodies) show limited clinical success due to safety and efficacy issues.
- There is a need for strategies to improve the therapeutic window of these inhibitors.
Approach:
- Review of clinical trial data for DLL/Notch inhibitors in cancer treatment.
- Exploration of antibody-based therapies targeting Notch ligands or receptors.
- Investigation of combination therapies, including with angiogenesis inhibitors like VEGF inhibitors.
Key Points:
- Specific antibodies targeting Notch components may reduce toxicity compared to broad-spectrum inhibitors.
- Combining DLL/Notch inhibitors with VEGF inhibitors could enhance anticancer efficacy.
- Clinical trial results indicate potential for improved safety and efficacy.
Conclusions:
- Bispecific antibodies blocking both DLL/Notch and VEGF/VEGFR pathways represent a promising strategy for effective cancer treatment.
- Targeted inhibition offers a more favorable safety profile.
- Further clinical investigation is warranted for novel therapeutic approaches.
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