Drug Repurposing: Exploring Potential Anti-Cancer Strategies by Targeting Cancer Signalling Pathways
Natalia Haddad1, Sara Magura Gamaethige1, Nadine Wehida1
1Department of Biomolecular Sciences, Kingston University London, Kingston-upon-Thames KT1 2EE, UK.
Abstract:
The repurposing of previously clinically approved drugs as an alternative therapeutic approach to treating disease has gained significant attention in recent years. A multitude of studies have demonstrated various and successful therapeutic interventions with these drugs in a wide range of neoplastic diseases, including multiple myeloma, leukaemia, glioblastoma, and colon cancer. Drug repurposing has been widely encouraged due to the known efficacy, safety, and convenience of already established drugs, allowing the bypass of the long and difficult road of lead optimization and drug development. Repurposing drugs in cancer therapy is an exciting prospect due to the ability of these drugs to successfully target cancer-associated genes, often dysregulated in oncogenic signalling pathways, amongst which are the classical cancer signalling pathways; WNT (wingless-related integration type) and Hippo signalling. These pathways play a fundamental role in controlling organ size, tissue homeostasis, cell proliferation, and apoptosis, all hallmarks of cancer initiation and progression. Prolonged dysregulation of these pathways has been found to promote uncontrolled cellular growth and malignant transformation, contributing to carcinogenesis and ultimately leading to malignancy. However, the translation of cancer signalling pathways and potential targeted therapies in cancer treatment faces ongoing challenges due to the pleiotropic nature of cancer cells, contributing to resistance and an increased rate of incomplete remission in patients. This review provides analyses of a range of potential anti-cancer compounds in drug repurposing. It unravels the current understanding of the molecular rationale for repurposing these drugs and their potential for targeting key oncogenic signalling pathways.
Insights
Drug repurposing offers a faster path to cancer treatment by using approved drugs to target key cancer pathways like WNT and Hippo signaling. This approach bypasses lengthy development, providing new hope for challenging neoplastic diseases.
Area of Science:
- Oncology
- Pharmacology
- Molecular Biology
Background:
- Drug repurposing leverages existing clinically approved drugs for new therapeutic applications.
- This strategy is gaining traction for treating various neoplastic diseases, including cancers of the colon, brain, and blood.
Purpose of the Study:
- To review and analyze potential anti-cancer compounds for drug repurposing.
- To elucidate the molecular rationale behind repurposing drugs for cancer therapy.
- To explore the potential of repurposed drugs in targeting key oncogenic signaling pathways.
Main Methods:
- Literature review and analysis of existing studies on drug repurposing in oncology.
- Examination of the molecular mechanisms through which repurposed drugs affect cancer-associated genes.
- Focus on the WNT (wingless-related integration type) and Hippo signaling pathways.
Main Results:
- Drug repurposing offers a viable alternative to traditional drug development, utilizing drugs with known efficacy and safety profiles.
- Repurposed drugs can effectively target cancer-associated genes and dysregulated oncogenic signaling pathways.
- Challenges in translation include cancer cell pleiotropy, leading to resistance and incomplete remission.
Conclusions:
- Repurposing clinically approved drugs presents a promising strategy for developing novel cancer therapies.
- Targeting key oncogenic pathways like WNT and Hippo signaling with repurposed drugs holds significant therapeutic potential.
- Further research is needed to overcome resistance mechanisms and improve remission rates in patients.
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