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Updated: Sep 12, 2026

Drug-Induced Senescence in Liver Cells Promotes M2 Macrophage Polarization: Implications for Tyrosine Kinase Inhibitor-Associated Hepatotoxicity
Published on: October 17, 2025
Targeting the AKT2-NAMPT phosphorylation axis prevents macrophage senescence to enhance bactericidal activity in
Qilan Li1, Mei He1, Peichi Shi1
1Department of Critical Care Medicine, Union Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan 430022, China.
Abstract:
Macrophage immune dysregulation in sepsis contributes to secondary infections and poor outcomes. Immunosuppression, a key feature of this dysregulation, has been linked to the acquisition of cellular senescence-like features in cancer. However, the mechanistic connection between immune tolerance, a well-established cellular model of immunosuppression, and macrophage senescence remains poorly understood. Here, using an in vitro model of lipopolysaccharide (LPS)-induced tolerance, we found that immune-tolerant macrophages acquired a senescent phenotype. Unexpectedly, nicotinamide phosphoribosyltransferase (NAMPT) mRNA and protein levels were markedly upregulated in tolerant macrophages despite profound suppression of MYC proto-oncogene (MYC), a canonical transcriptional regulator of NAMPT. Mechanistically, this paradoxical accumulation of NAMPT was driven by reduced expression of the RNA helicase DEAD-box helicase 6 (DDX6), thereby enhancing NAMPT mRNA stability. However, increased NAMPT abundance was uncoupled from its enzymatic activity owing to diminished AKT serine/threonine kinase 2 (AKT2)-mediated phosphorylation. Treatment with SC79, a pan-AKT activator, restored NAMPT phosphorylation and activity, attenuated senescence-associated markers, and enhanced bactericidal function in tolerant macrophages. In a murine model of sepsis, alveolar macrophages similarly exhibited reduced DDX6 and AKT2 expression, together with elevated NAMPT abundance, corroborating the in vitro findings. Collectively, these results identify a dual-layer regulatory mechanism in which DDX6 controls NAMPT abundance, whereas AKT2 dictates its activity. The uncoupling of NAMPT abundance from its enzymatic activity drives senescence during immune tolerance, identifying AKT2-NAMPT as a potential therapeutic axis to restore immune competence in sepsis.
