Targeting FABP4/UCP2 axis to overcome cetuximab resistance in obesity-driven CRC with drug-tolerant persister cells

Cheng, Yi-Chiao and Chen, Ming-Yao and Yadav, Vijesh Kumar and Pikatan, Narpati Wesa and Fong, Iat-Hang and Kuo, Kuang-Tai and Yeh, Chi-Tai and Tsai, Jo-Ting (2025) Targeting FABP4/UCP2 axis to overcome cetuximab resistance in obesity-driven CRC with drug-tolerant persister cells. Translational Oncology, 53. ISSN 19365233

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Abstract

Colorectal cancer (CRC) is closely linked to obesity, a condition that significantly impacts tumor progression and therapeutic resistance. Although cetuximab, an EGFR-targeting monoclonal antibody, is a cornerstone in metastatic CRC treatment, resistance often emerges, leading to poor outcomes. This study investigated the role of drug-tolerant persister (DTP) cells and their metabolic interactions within the tumor microenvironment (TME) in cetuximab resistance. Using patient-derived organoids and in vivo models, we identified the FABP4/UCP2 axis as a critical mediator of resistance. Organoids derived from cetuximab non-responders revealed upregulated FABP4 and UCP2 expression post-treatment. Coculture experiments with adipocytes showed that FABP4 and UCP2 promote lipid metabolic reprogramming, facilitating cancer cell survival in a dormant state. CRISPR/Cas9 mediated inhibition of FABP4 disrupted this metabolic interaction, sensitising resistant cells to cetuximab. In vivo, the FABP4 inhibitor BMS309403, either alone or in combination with cetuximab, significantly reduced tumor growth in resistant CRC models, highlighting its therapeutic potential. These findings establish the FABP4/UCP2 axis as a pivotal driver of cetuximab resistance in obesity-associated CRC and suggest that targeting this metabolic pathway could improve outcomes in DTP-resistant CRC patients. © 2025

Item Type: Article
Additional Information: Cited by: 10; All Open Access; Gold Open Access; Green Open Access
Uncontrolled Keywords: cetuximab; CRISPR associated endonuclease Cas9; fatty acid binding protein 4; ketamine; oxaliplatin; reactive oxygen metabolite; Rho kinase; tumor necrosis factor; uncoupling protein 2; uvomorulin; xylazine; adipocyte; adipogenesis; agar gel electrophoresis; angiogenesis; animal experiment; animal model; Article; cancer chemotherapy; cell isolation; cell survival; cell viability; chemoluminescence; coculture; colorectal cancer; cytokine production; diapause; DNA isolation; epithelial mesenchymal transition; FABP4 gene; female; flow cytometry; gene expression; HEK293T cell line; high throughput sequencing; HT-29 cell line; human; human cell; immunoblotting; immunohistochemistry; immunosuppressive treatment; lipid diet; lipid metabolism; lipolysis; MDA-MB-231 cell line; mouse; nonhuman; obesity; organoid; persister cell; protein expression; reverse transcription polymerase chain reaction; RNA isolation; RNA sequence; single cell RNA seq; tissue microarray; tumor associated leukocyte; tumor growth; tumor microenvironment; tumor volume; UCP2 gene; upregulation; Western blotting
Subjects: R Medicine > RB Biomedical Sciences
Divisions: Faculty of Medicine, Public Health and Nursing > Biomedical Sciences
Depositing User: Yuliawati Dahniar Dahniar
Date Deposited: 29 Jul 2026 08:40
Last Modified: 29 Jul 2026 08:40
URI: https://ir.lib.ugm.ac.id/id/eprint/28356

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