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A New Wave of Targeting 'Undruggable' Wnt Signaling for Cancer Therapy: Challenges and Opportunities
Woo-Jung Park1, Moon Jong Kim1,2
1Department of Life Science, Gachon University, Seongnam 13120, Republic of Korea.
Abstract:
Aberrant Wnt signaling activation is frequently observed in many cancers. The mutation acquisition of Wnt signaling leads to tumorigenesis, whereas the inhibition of Wnt signaling robustly suppresses tumor development in various in vivo models. Based on the excellent preclinical effect of targeting Wnt signaling, over the past 40 years, numerous Wnt-targeted therapies have been investigated for cancer treatment. However, Wnt signaling-targeting drugs are still not clinically available. A major obstacle to Wnt targeting is the concomitant side effects during treatment due to the pleiotropic role of Wnt signaling in development, tissue homeostasis, and stem cells. Additionally, the complexity of the Wnt signaling cascades across different cancer contexts hinders the development of optimized targeted therapies. Although the therapeutic targeting of Wnt signaling remains challenging, alternative strategies have been continuously developed alongside technological advances. In this review, we give an overview of current Wnt targeting strategies and discuss recent promising trials that have the potential to be clinically realized based on their mechanism of action. Furthermore, we highlight new waves of Wnt targeting that combine recently developed technologies such as PROTAC/molecular glue, antibody-drug conjugates (ADC), and anti-sense oligonucleotides (ASO), which may provide us with new opportunities to target 'undruggable' Wnt signaling.
Insights
Targeting Wnt signaling shows promise for cancer treatment, but clinical application is hindered by side effects and pathway complexity. Novel strategies like PROTACs and ADCs offer new hope for
Area of Science:
- Oncology
- Molecular Biology
- Drug Discovery
Background:
- Aberrant Wnt signaling activation is a hallmark of many cancers, driving tumorigenesis.
- Despite preclinical success, Wnt-targeting cancer therapies face challenges due to pleiotropic effects and pathway complexity.
- Existing Wnt-targeting drugs are not yet clinically available.
Purpose of the Study:
- To review current Wnt targeting strategies in cancer therapy.
- To discuss promising clinical trials and novel therapeutic approaches.
- To highlight emerging technologies for targeting Wnt signaling.
Main Methods:
- Review of preclinical and clinical studies on Wnt signaling inhibitors.
- Analysis of recent technological advancements in targeted cancer therapy.
- Exploration of novel strategies including PROTACs, ADCs, and ASOs.
Main Results:
- Wnt signaling inhibition effectively suppresses tumor development in preclinical models.
- Significant challenges remain in clinical translation due to side effects and pathway complexity.
- Emerging technologies offer potential solutions for targeting previously 'undruggable' Wnt pathways.
Conclusions:
- Targeting Wnt signaling is a promising avenue for cancer treatment, but requires overcoming significant hurdles.
- Novel therapeutic strategies and advanced technologies are crucial for successful clinical application.
- New approaches like PROTACs, ADCs, and ASOs present opportunities to effectively target Wnt signaling in cancer.
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