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Published on: October 27, 2014
Wnt Signaling and Drug Resistance in Cancer
Zheng Zhong1, David M Virshup2
1Department of Physiology, National University of Singapore, Singapore, Singapore (Z.Z.); Program in Cancer and Stem Cell Biology, Duke-NUS Medical School, Singapore, Singapore (Z.Z., D.M.V.); and Department of Pediatrics, Duke University, Durham, North Carolina (D.M.V.).
Abstract:
Wnts are secreted proteins that bind to cell surface receptors to activate downstream signaling cascades. Normal Wnt signaling plays key roles in embryonic development and adult tissue homeostasis. The secretion of Wnt ligands, the turnover of Wnt receptors, and the signaling transduction are tightly regulated and fine-tuned to keep the signaling output "just right." Hyperactivated Wnt signaling due to recurrent genetic alterations drives several human cancers. Elevated Wnt signaling also confers resistance to multiple conventional and targeted cancer therapies through diverse mechanisms including maintaining the cancer stem cell population, enhancing DNA damage repair, facilitating transcriptional plasticity, and promoting immune evasion. Different classes of Wnt signaling inhibitors targeting key nodes of the pathway have been developed and show efficacy in treating Wnt-driven cancers and subverting Wnt-mediated therapy resistance in preclinical studies. Several of these inhibitors have advanced to clinical trials, both singly and in combination with other existing US Food and Drug Administration-approved anti-cancer modalities. In the near future, pharmacological inhibition of Wnt signaling may be a real choice for patients with cancer. SIGNIFICANCE STATEMENT: The latest insights in Wnt signaling, ranging from basic biology to therapeutic implications in cancer, are reviewed. Recent studies extend understanding of this ancient signaling pathway and describe the development and improvement of anti-Wnt therapeutic modalities for cancer.
Insights
Wnt signaling, crucial for development, drives cancer when overactive. Inhibitors targeting this pathway show promise in treating Wnt-driven cancers and overcoming therapy resistance.
Area of Science:
- Molecular Biology
- Oncology
- Pharmacology
Background:
- Wnt signaling regulates embryonic development and tissue homeostasis.
- Dysregulated Wnt signaling, driven by genetic alterations, is implicated in various human cancers.
- Elevated Wnt signaling contributes to cancer therapy resistance via multiple mechanisms.
Purpose of the Study:
- To review recent insights into Wnt signaling in cancer.
- To discuss the development and efficacy of Wnt signaling inhibitors.
- To highlight the therapeutic potential of targeting Wnt pathways in oncology.
Main Methods:
- Literature review of Wnt signaling pathways.
- Analysis of preclinical and clinical studies on Wnt inhibitors.
- Synthesis of current understanding of Wnt-mediated cancer progression and resistance.
Main Results:
- Wnt signaling inhibitors demonstrate efficacy in preclinical cancer models.
- Targeting Wnt signaling can overcome resistance to conventional and targeted therapies.
- Several Wnt inhibitors are progressing through clinical trials for cancer treatment.
Conclusions:
- Pharmacological inhibition of Wnt signaling represents a promising therapeutic strategy for cancer.
- Targeting Wnt pathways offers potential for treating Wnt-driven cancers and enhancing existing therapies.
- Continued research into Wnt signaling biology and inhibitor development is crucial for advancing cancer care.
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