Tumor resistance to ferroptosis driven by Stearoyl-CoA Desaturase-1 (SCD1) in cancer cells and Fatty Acid Biding Protein-4 (FABP4) in tumor microenvironment promote tumor recurrence

癌细胞中的硬脂酰辅酶 A 去饱和酶-1 (SCD1) 和肿瘤微环境中的脂肪酸结合蛋白-4 (FABP4) 驱动的肿瘤对铁死亡的抵抗促进了肿瘤复发

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作者:Géraldine Luis, Adrien Godfroid, Shin Nishiumi, Jonathan Cimino, Silvia Blacher, Erik Maquoi, Coline Wery, Alice Collignon, Rémi Longuespée, Laetitia Montero-Ruiz, Isabelle Dassoul, Naima Maloujahmoum, Charles Pottier, Gabriel Mazzucchelli, Edwin Depauw, Akeila Bellahcène, Masaru Yoshida, Agnès Noel

Conclusion

This finding unveils that it is worth taking advantage of tumor lipid addiction, as a tumor vulnerability to design novel treatment strategy to prevent cancer recurrence.

Methods

Lipidomics, proteomics and mass spectrometry imaging approaches where applied to mouse tumor models of recurrence. Genetic and pharmacological inhibitions of lipid mediators in tumors were used in vivo and in functional assays in vitro.

Results

We found that stearoyl-CoA desaturase-1 (SCD1) expressed by cancer cells and fatty acid binding protein-4 (FABP4) produced by tumor endothelial cells (TECs) and adipocytes in the tumor microenvironment (TME) are essential for tumor relapse in response to tyrosine kinase inhibitors (TKI) and chemotherapy. SCD1 and FABP4 were also found upregulated in recurrent human breast cancer samples and correlated with worse prognosis of cancer patients with different types of tumors. Mechanistically, SCD1 leads to fatty acid (FA) desaturation and FABP4 derived from TEM enhances lipid droplet (LD) in cancer cells, which cooperatively protect from oxidative stress-induced ferroptosis. We revealed that lipid mobilization and desaturation elicit tumor intrinsic antioxidant and anti-ferroptotic resources for survival and regrowth in a harsh TME. Inhibition of lipid transport from TME by FABP4 inhibitor reduced tumor regrowth and by genetic - or by pharmacological - targeting SCD1 in vivo, tumor regrowth was abolished completely.

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