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Published on: January 18, 2017
Fatty acid synthase (FASN) as a therapeutic target in breast cancer
Javier A Menendez1,2, Ruth Lupu3,4
1a ProCURE (Program Against Cancer Therapeutic Resistance) , Metabolism & Cancer Group, Catalan Institute of Oncology , Girona , Spain.
Introduction:
Ten years ago, we put forward the metabolo-oncogenic nature of fatty acid synthase (FASN) in breast cancer. Since the conception of this hypothesis, which provided a model to explain how FASN is intertwined with various signaling networks to cell-autonomously regulate breast cancer initiation and progression, FASN has received considerable attention as a therapeutic target. However, despite the ever-growing evidence demonstrating the involvement of FASN as part of the cancer-associated metabolic reprogramming, translation of the basic science-discovery aspects of FASN blockade to the clinical arena remains a challenge. Areas covered: Ten years later, we herein review the preclinical lessons learned from the pharmaceutical liabilities of the first generation of FASN inhibitors. We provide an updated view of the current development and clinical testing of next generation FASN-targeted drugs. We also discuss new clinico-molecular approaches that should help us to convert roadblocks into roadways that will propel forward our therapeutic understanding of FASN. Expert opinion: With the recent demonstration of target engagement and early signs of clinical activity with the first orally available, selective, potent and reversible FASN inhibitor, we can expect Big pharma to revitalize their interest in lipogenic enzymes as well-credentialed targets for oncology drug development in breast cancer.
Insights
Fatty acid synthase (FASN) is crucial in breast cancer progression. Despite challenges, new FASN inhibitors show promise for targeted cancer therapy.
Area of Science:
- Oncology
- Cancer Metabolism
- Drug Development
Background:
- Fatty acid synthase (FASN) plays a metabolo-oncogenic role in breast cancer.
- FASN is implicated in cancer-associated metabolic reprogramming and signaling networks.
- Clinical translation of FASN inhibitors has faced challenges.
Purpose of the Study:
- Review preclinical lessons from first-generation FASN inhibitors.
- Provide an updated view on next-generation FASN-targeted drugs.
- Discuss clinico-molecular approaches to advance FASN-targeted therapy.
Main Methods:
- Review of preclinical data on FASN inhibitor pharmaceutical liabilities.
- Analysis of current development and clinical testing of novel FASN inhibitors.
- Exploration of emerging clinico-molecular strategies.
Main Results:
- First-generation FASN inhibitors presented pharmaceutical liabilities.
- Next-generation FASN inhibitors are under active development and clinical testing.
- Early clinical activity and target engagement observed with a novel FASN inhibitor.
Conclusions:
- Overcoming challenges in FASN inhibitor development is crucial.
- Next-generation FASN inhibitors offer therapeutic potential in breast cancer.
- Revitalized interest in lipogenic enzymes as oncology targets is anticipated.
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