Tofacitinib repairs inflammation and mitochondrial dysregulation in GM-CSF-reprogrammed RA macrophages

作者信息Neha Satoeya, Stephanie R Zack, Osama Al Zoubi, Sadiq Umar, Adel Burgos, Sara Abdulrab, Brian Zanotti, Michael V Volin, Joseph A Karam, Yinglin Xia, Diana C Umali, Shiva Arami, Mina Al-Awqati, Huan T Chang, Luke A J O'Neill, Georg Schett, Nadera Sweiss, Shiva Shahrara
PMID41781698
期刊Cell Mol Immunol
发布时间2026-04
DOI10.1038/s41423-026-01395-x

摘要

Rheumatoid arthritis (RA) exhibits heterogeneous endotypes, complicating treatment strategies. GM-CSF and GM-CSFRα are enriched in RA synovial CD68⁺macrophages (MΦs), and are implicated in acute and chronic disease stages. Since anti-TNFi and anti-IL6R therapies did not effectively suppress GM-CSF/GM-CSFRα expression or the GM-CSF-associated landscape, we explored alternative therapeutic strategies to target GM-CSF function using RA blood, synovial tissues, and preclinical models. We demonstrate that GM-CSF-MΦs reprogrammed in RA blood and synovial tissue share a distinct IL1β⁺S100A⁺HIF1⁺IL10ˡᵒNFIL3/6ˡᵒ expression profile, manifested by mitochondrial oxidative stress and fragmentation. To correct the metabolic imbalance of GM-CSF-MΦs, cells were treated with a complex I inhibitor (i) or a glucose uptake blocker. Complex Ii did not broadly alter the inflammatory or metabolic networks or affect the mitochondrial dynamics remodeled by GM-CSF-MΦs. While the glucose uptake inhibitor (HK2i) reduced glycolysis-derived ATP, it had limited efficacy in restricting the inflammatory signature or restoring TCA enzymes in GM-CSF-MΦs. In contrast, tofacitinib achieved broad-spectrum effects by downregulating GM-CSFRα expression and inhibiting STAT5 signaling. Moreover, tofacitinib redirected RA blood and synovial IL1β⁺S100A⁺HIF1⁺IL10ˡᵒNFIL3/6ˡᵒMΦs into a regulatory phenotype, reversing oxidative stress and mitochondrial fragmentation. In preclinical models, local GM-CSF overexpression induced MΦ-directed joint inflammation and metabolic dysregulation. Consistently, Tofacitinib reversed GM-CSF-differentiated murine IL1β⁺HBEGF⁺HIF1⁺MΦs by impeding STAT5 signaling, correcting metabolic dysregulation, and repairing mitochondrial fragmentation. In conclusion, anti-TNFi, anti-IL6R, and metabolic-targeted therapies were largely ineffective in modifying GM-CSF-MΦ pathology. Conversely, tofacitinib deactivation of STAT5 attenuates GM-CSF-MΦ-triggered inflammation and mitochondrial malfunction by restoring regulatory markers and rebalancing oxidative phosphorylation in RA specimens and/or preclinical models.

实验方法

产品清单

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Ficoll-Paque PREMIUM分离液GE Healthcare--
TRIzol试剂Life Technologies--
RIPA裂解缓冲液Cell Signaling Technology--
高容量cDNA逆转录试剂盒Applied Biosystems--
TaqMan基因表达预混液Applied Biosystems--
QuantStudio5实时荧光定量PCR仪Applied BiosystemsQuantStudio5
Pierce BCA蛋白定量试剂盒Thermo Fisher--
Trans-Blot Turbo转印系统Bio-Rad--
iBright 1500成像系统Invitrogen by Thermo Fisher1500
Seahorse XF ATP速率测定试剂盒Agilent Technologies--
EasySep™人单核细胞分离试剂盒StemCell Technologies--
Gallios 10/3流式细胞仪Beckman Coulter10/3
Illumina NovaSeq 6000测序仪Illumina6000
Qubit 2.0荧光计Thermo Fisher2.0
TapeStation分析仪Agilent Technologies--