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Fatty acid synthase as a new therapeutic target for HER2-positive gastric cancer
Lorenzo Castagnoli1, Simona Corso2,3, Alma Franceschini1
1Molecular Targeting Unit, Department of Research, Fondazione IRCCS Istituto Nazionale Dei Tumori, Milan, Italy.
Purpose:
Trastuzumab is an HER2-specific agent approved as the gold-standard therapy for advanced HER2-positive (HER2+) gastric cancer (GC), but the high rate and rapid appearance of resistance limit its clinical efficacy, resulting in the need to identify new vulnerabilities. Defining the drivers influencing HER2+ cancer stem cell (CSC) maintenance/survival could represent a clinically useful strategy to counteract tumor growth and therapy resistance. Accumulating evidence show that targeting crucial metabolic hubs, as the fatty acid synthase (FASN), may be clinically relevant.
Methods:
FASN protein and transcript expression were examined by WB and FACS and by qRT-PCR and GEP analyses, respectively, in trastuzumab-sensitive and trastuzumab-resistant HER2+ GC cell lines cultured in adherent (2D) or gastrosphere promoting (3D) conditions. Molecular data were analyzed in silico in public HER2+ GC datasets. The effectiveness of the FASN inhibitor TVB3166 to overcome anti-HER2 therapy resistance was tested in vitro in gastrospheres forming efficiency bioassays and in vivo in mice bearing trastuzumab-resistant GC cells.
Results:
We compared the transcriptome profiles of HER2+ GC cells cultured in 2D versus 3D conditions finding a significant enrichment of FASN in 3D cultures. FASN upregulation significantly correlated with high stemness score and poor prognosis in HER2+ GC cases. TVB3166 treatment significantly decreased GCSCs in all cell targets. HER2 and FASN cotargeting significantly decreased the capability to form gastrospheres versus monotherapy and reduced the in vivo growth of trastuzumab-resistant GC cells.
Conclusion:
Our findings indicate that cotargeting HER2 and FASN increase the benefit of anti-HER2 therapy representing a new opportunity for metabolically combating trastuzumab-resistant HER2+ GC.
Insights
Targeting fatty acid synthase (FASN) alongside HER2 overcomes trastuzumab resistance in gastric cancer. This dual approach combats cancer stem cells and reduces tumor growth, offering a new strategy for HER2-positive gastric cancer.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Metabolism
Background:
- Trastuzumab is a standard therapy for HER2-positive gastric cancer (GC).
- Therapy resistance limits trastuzumab's efficacy, necessitating novel therapeutic strategies.
- Cancer stem cells (CSCs) are implicated in tumor growth and resistance.
Purpose of the Study:
- To investigate fatty acid synthase (FASN) as a therapeutic target in HER2-positive GC.
- To evaluate the efficacy of FASN inhibition in overcoming trastuzumab resistance.
- To explore the role of FASN in maintaining HER2-positive gastric cancer stem cells (GCSCs).
Main Methods:
- Compared gene and protein expression of FASN in trastuzumab-sensitive and resistant HER2+ GC cells under 2D and 3D culture conditions.
- Analyzed public HER2+ GC datasets for FASN expression correlation with stemness and prognosis.
- Tested the FASN inhibitor TVB3166 in vitro and in vivo models of trastuzumab-resistant GC.
Main Results:
- FASN expression was significantly enriched in 3D cultures and correlated with high stemness and poor prognosis in HER2+ GC.
- TVB3166 treatment reduced GCSCs and, when combined with HER2 targeting, significantly inhibited gastrosphere formation.
- Dual HER2 and FASN targeting reduced in vivo tumor growth of trastuzumab-resistant GC cells.
Conclusions:
- Co-targeting HER2 and FASN enhances anti-HER2 therapy benefits.
- This strategy presents a novel metabolic approach to combat trastuzumab-resistant HER2+ GC.
- Targeting FASN is a promising strategy to overcome resistance in HER2+ gastric cancer.
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