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◆ Apoptosis : an international journal on programmed cell death2026-08-19

Targeting FAR1 to inhibit intestinal macrophage ferroptosis: repurposing irinotecan as a novel sepsis therapy.

Haoyue Deng, Weifei Wang, Qinghui Li, Xinming Xiang, Yu Zhu, Zisen Zhang, Xiaowei Zhou, Yue Wu, Jie Zhang, Liangming Liu, Tao Li

原始摘要(英文原文)· Original abstract
Intestinal barrier breakdown is a key driver of sepsis-related multiple organ dysfunction; however, the metabolic mechanisms underlying this process remain poorly understood. In this study, by integrating multiomic analysis with machine learning on clinical and experimental data, we identified fatty acyl-CoA reductase 1 (FAR1) as a critical regulator that promotes ferroptotic susceptibility in sepsis. FAR1 was markedly upregulated in septic macrophages, promoting polyunsaturated ether phospholipid remodeling and lipid peroxidation involving the ACSL4/GPX4 metabolic-regulatory network. We repurposed irinotecan as a FAR1-targeting compound through pharmacological sensitivity screening and subsequent validation. Beyond its canonical function as a topoisomerase I inhibitor, irinotecan exhibited a noncanonical activity by directly interacting with FAR1 in a Gly252-dependent manner. This interaction suppresses FAR1-associated ether lipid metabolic remodeling, thereby attenuating ferroptotic responses and preserving the "gatekeeper" function of intestinal macrophages. In preclinical sepsis models, low-dose irinotecan attenuated macrophage ferroptotic responses, restored mitochondrial integrity, alleviated intestinal barrier dysfunction, and improved survival. Our findings provide evidence supporting a "target-drug-mechanism" framework and highlight the potential repurposing of irinotecan as a host-directed therapeutic strategy for sepsis, particularly in contexts associated with elevated FAR1 expression.
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Targeting FAR1 to inhibit intestinal macrophage ferroptosis: repurposing irinotecan as a novel sepsis therapy. — 科研速览 Science Skim