Combination treatment with FAAH inhibitors/URB597 and ferroptosis inducers significantly decreases the growth and metastasis of renal cell carcinoma cells via the PI3K-AKT signaling pathway

Author:

Hao Junfeng1,Chen Qiguang2,Feng Yongmin1,Jiang Qiyu3,Sun Huiwei4,Deng Botian1,Huang Xin1,Guan Jibin5,Chen Qiuping1,Liu Xincheng1,Wang Yanjin1,Cao Peng6,Feng Fan3ORCID,Li Xiaoyu1ORCID

Affiliation:

1. Affiliated Hospital of Guangdong Medical University

2. The First Affiliated Hospital of China Medical University

3. The Fifth Medical Center of Chinese PLA General Hospital

4. The 302nd Hospital of Chinese PLA

5. University of Minnesota

6. General Hospital of Northern Theater Command

Abstract

Abstract Ferroptosis, a nonapoptotic form of programmed cell death characterized by significant iron-dependent peroxidation of phospholipids, is regulated by cellular metabolism, redox homeostasis, and various cancer-related signaling pathways. Recently, considerable progress has been made in demonstrating the critical role of lipid metabolism in regulating ferroptosis, indicating the potential of combinational strategies for treating cancer in the future. In this study, we explored the combinational effects of lipid metabolism compounds and ferroptosis inducers on renal cell carcinoma (RCC) cells. We found potent synergy of the fatty acid amide hydrolase (FAAH) inhibitor URB597 with (1S, 3R)-RSL3 (RSL3) in inhibiting the growth and metastasis of RCC cells both in vitro and in vivo via induction of G1 cell cycle arrest and promotion of the production of lipid peroxides, malondialdehyde, 4-hydroxynonenal, and cytosolic reactive oxygen species. In addition, inhibition of FAAH increased the sensitivity of RCC cells to ferroptosis. Genome-wide RNA sequencing indicated that the combination of URB597 and RSL3 has more significant effects on regulation of the expression of genes related to cell proliferation, the cell cycle, cell migration and invasion, and ferroptosis than either single agent alone. Moreover, we found that combinational treatment modulated the sensitivity of RCC cells to ferroptosis via the PI3K-AKT signaling pathway. These data demonstrate that dual targeting of FAAH and ferroptosis could be a promising strategy for treating RCC.

Publisher

Research Square Platform LLC

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