干燥应激引起的眼表免疫耐受性破坏可导致干眼病

M. Guzmán, I. Keitelman, F. Sabbione, A. Trevani, M. Giordano, J. Galletti
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引用次数: 56

摘要

干眼症是一种自身免疫性疾病,其发病机制和眼表靶向抗原尚不清楚,但有大量证据表明,局部T辅助型1 (Th1)/Th17效应T细胞反应是其发病机制的原因。在这项工作中,我们探索了一个调和的假设,即干燥应激,通常被认为是一个加剧因素,实际上可能足以扭曲眼表粘膜对任何抗原的反应,从而驱动疾病。通过小鼠干眼模型,我们发现干燥应激会导致核因子κB (NF - κB)和时间依赖性的眼表对外源性卵清蛋白的免疫耐受的破坏。这一致病事件是由引流淋巴结中Th1和Th17 T细胞的增加和调节性T细胞的减少介导的。相反,局部使用NF - κB抑制剂可降低干燥应激小鼠角膜上皮损伤和眼表白细胞介素(IL) - 1β和IL - 6水平。观察到的效果是由增强的调节性T细胞反应介导的,这一发现强调了粘膜耐受性破坏在干眼症发病中的作用。值得注意的是,NF‐κB通路也参与了其他眼表疾病的粘膜耐受破坏。综上所述,这些结果表明靶向粘膜NF - κB活化可能具有治疗干眼症的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Desiccating stress‐induced disruption of ocular surface immune tolerance drives dry eye disease
Dry eye is an allegedly autoimmune disorder for which the initiating mechanisms and the targeted antigens in the ocular surface are not known, yet there is extensive evidence that a localized T helper type 1 (Th1)/Th17 effector T cell response is responsible for its pathogenesis. In this work, we explore the reconciling hypothesis that desiccating stress, which is usually considered an exacerbating factor, could actually be sufficient to skew the ocular surface's mucosal response to any antigen and therefore drive the disease. Using a mouse model of dry eye, we found that desiccating stress causes a nuclear factor kappa B (NF‐κB)‐ and time‐dependent disruption of the ocular surface's immune tolerance to exogenous ovalbumin. This pathogenic event is mediated by increased Th1 and Th17 T cells and reduced regulatory T cells in the draining lymph nodes. Conversely, topical NF‐κB inhibitors reduced corneal epithelial damage and interleukin (IL)‐1β and IL‐6 levels in the ocular surface of mice under desiccating stress. The observed effect was mediated by an augmented regulatory T cell response, a finding that highlights the role of mucosal tolerance disruption in dry eye pathogenesis. Remarkably, the NF‐κB pathway is also involved in mucosal tolerance disruption in other ocular surface disorders. Together, these results suggest that targeting of mucosal NF‐κB activation could have therapeutic potential in dry eye.
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