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Insights Into Local Orbital Immunity: Evidence for the Involvement of the Th17 Cell Pathway in Thyroid-Associated Ophthalmopathy

免疫 甲状腺 医学 Graves眼病 免疫学 免疫系统 格雷夫斯病 内分泌学
作者
Sijie Fang,Yazhuo Huang,Ningjian Wang,Shuo Zhang,Sisi Zhong,Yinwei Li,Jing Sun,Xingtong Liu,Y. N. Wang,Ping Gu,Bin Li,Huifang Zhou,Xianqun Fan
出处
期刊:The Journal of Clinical Endocrinology and Metabolism [The Endocrine Society]
卷期号:104 (5): 1697-1711 被引量:55
标识
DOI:10.1210/jc.2018-01626
摘要

Unique features of local immunity in thyroid-associated ophthalmopathy (TAO) may affect disease progression. To investigate the association between the orbital immune microenvironment and TAO development. TAO and control orbital connective tissues were collected. Single-cell sequencing examined orbital lymphocytic infiltrates. Multicolor flow cytometry explored the phenotypes of different cell subsets and in vitro models for cell functional studies. Coculture experiment and western blotting assay were used to determine underlying mechanism of the enhanced T helper 17 (Th17) cell pathway. The TAO orbital microenvironment was composed of natural killer cells, dendritic cells, macrophages, T cells, plasma cells, and CD34+ orbital fibroblasts, but few B cells. Increases in CD3+CD8− IL-17A-producing and RAR-related orphan receptor (ROR)γt-expressing T cells and in CD3+CD8– IL-13–producing and GATA3-expressing T cells suggested Th17 and Th2 cell responses in TAO orbits. Increased interferon-γ (IFN-γ)-producing and RORγt+Tbet+ T cells indicated a Th1-like phenotype of orbital-infiltrating Th17 cells. Higher IL-23R and IL-1R expression and lower IL-21R expression were also observed on Th17 cells in TAO orbits. Multivariate analyses revealed that the Th17 pathway [IL-17A (P = 0.001), IFN-γ (P = 0.009), RORγt (P = 0.003), IL-23R (P = 0.033), IL-21R (P = 0.019)], and Th2 pathway [IL-13 (P = 0.015), GATA3 (P = 0.012)] were associated with TAO. IL-17A, IL-23R, and IL-1R correlated with clinical activity score and visual acuity. CD34+ orbital fibroblasts exhibited distinct cell surface marker expression and promoted IL-23R and IL-1R expression on T cells to facilitate the Th17-cell phenotype through prostaglandin E2-EP2/EP4-cAMP signaling. Our study addresses the importance of retroorbital immunity and suggests possible means of disrupting TAO pathogenesis.
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