Recipient Endothelial IRF1 mediates IFNγ-driven tissue tolerance in mouse models of acute Graft-versus-Host Disease.

免疫学 内部收益率1 生物 炎症 骨髓 T细胞 造血 内皮干细胞 重编程 淋巴系统 嵌合体(遗传学) 癌症研究 免疫耐受 内皮 移植 白细胞介素10 细胞 细胞生物学 干扰素 主要组织相容性复合体 单克隆抗体 内皮细胞活化 干扰素γ 淋巴管 封锁 克隆无能 同种免疫 否定选择 细胞生长 移植物抗宿主病 医学 干细胞
作者
Lotus Neidemire-Colley,Rathan Kumar,Elizabeth A.R. Garfinkle,Camryn Steere,Annie Gordon,G Giordano,Adithe Rivaldi,Yogesh Budhathoki,Sonu Kalyan,Malith Karunasiri,Qiuhong Zhao,Jiasheng Wang,Alessandro La Ferlita,Katherine E. Miller,Ivan Maillard,Hannah K Choe,Sumithira Vasu,Parvathi Ranganathan
出处
期刊:Blood [Elsevier BV]
标识
DOI:10.1182/blood.2026033806
摘要

Recipient endothelial cells (ECs) actively respond to inflammation during allogeneic hematopoietic cell transplant (allo-HCT), yet mechanisms by which ECs influence acute graft-versus-host-disease (GVHD) pathology remain incompletely defined. Single cell RNA-sequencing of ECs isolated from a GVHD target organ, the liver, showed rapid, subset-specific transcriptional reprogramming after allo-HCT, with induction of canonical interferon-γ (IFNγ)-inducible genes including interferon regulatory factor 1 (IRF1), MHC II, and PD-L1 in lymphatic ECs (LECs). In allo-HCT recipients, circulating IFNγ peaked on day 4 (early), decreased but remained elevated at day 14 (late), and declined by day 21, with a concordant induction of IRF1+ LECs in the liver and GI tract. IFNγ neutralization with anti-IFNγ monoclonal antibody at either early or late time points attenuated IRF1⁺MHCII⁺PD-L1⁺ LEC activation. Notably, early donor T cell expansion was IFNγ-independent, whereas late IFNγ blockade selectively impaired donor Treg, but not Th1, expansion, leading to accelerated GVHD. Using in vitro LEC-CD4 T cell co-cultures and allo-HCT in Irf1-/- bone marrow chimera recipients, we show that recipient ECs that cannot mediate IFNγ-IRF1 signaling exhibit reduced activation and apoptosis, but also have impaired Treg expansion, increased donor Th1/Treg ratios, and worsened GVHD severity. Finally, pharmacological JAK inhibition in allo-HCT recipient mice spares IRF1+ LECs and Tregs while reducing pathogenic Th1 cells, correlating with reduced GVHD severity and improved survival. Our findings identify a role for the lymphatic endothelial IFNγ-IRF1 axis in regulating early vascular remodeling, donor T cell mediated tolerance, underscoring a potential "goldilocks" level of pathway activation required to improve post-transplant outcomes.
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