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与更高水平的 IL-1β 相关的 ILC3s 加重了缺乏吞噬型 NADPH 氧化酶的小鼠的炎症性关节炎。

Increased ILC3s associated with higher levels of IL-1β aggravates inflammatory arthritis in mice lacking phagocytic NADPH oxidase.

机构信息

Institute of Clinical Medicine, National Cheng-Kung University Medical College, Tainan, Taiwan.

National Laboratory Animal Center, National Applied Research Laboratories, Tainan, Taiwan.

出版信息

Eur J Immunol. 2019 Nov;49(11):2063-2073. doi: 10.1002/eji.201948141. Epub 2019 Aug 6.

DOI:10.1002/eji.201948141
PMID:31350760
Abstract

The role of redox regulation in immune-mediated arthritis has been previously described. However, the relationship between innate immune cells, including innate lymphoid cells (ILCs) and phagocyte-derived ROS, in this process remains unclear. Here, we characterize ILCs and measure the IL-1 family cytokines along with other cytokines relevant to ILC functions and development in serum-induced arthritic joints in wild type and phagocytic NADPH oxidase (NOX2)-deficient Ncf1 mice. We found more severe serum-induced joint inflammation and increased NCR ILC3s in inflamed joints of Ncf1 mice. Furthermore, in vitro stimulation with IL-1β on Tbet ILC1s from joints facilitated their differentiation into ROR-γt ILC3s. Moreover, treatment with IL-1 antagonists effectively lowered the proportions of NCR ILC3s and IL-17A producing ILC3s in Ncf1 arthritic mice and ameliorated the joint inflammation. These results suggest that NOX2 is an essential regulator of ILC transdifferentiation and may mediate this process in a redox-dependent manner through IL-1β production in the inflammatory joint. Our findings shed important light on the role of ILCs in the initiation and progression in tissue inflammation and delineate a novel innate immune cell-mediated pathogenic mechanism through which redox regulation may determine the direction of immune responses in joints.

摘要

氧化还原调节在免疫介导的关节炎中作用已被先前描述。然而,在这个过程中,先天免疫细胞(包括先天淋巴细胞(ILCs)和吞噬细胞衍生的 ROS)之间的关系尚不清楚。在这里,我们对 ILCs 进行了表征,并测量了血清诱导性关节炎关节中的 IL-1 家族细胞因子以及与 ILC 功能和发育相关的其他细胞因子,在野生型和吞噬细胞 NADPH 氧化酶(NOX2)缺陷型 Ncf1 小鼠中。我们发现 Ncf1 小鼠的血清诱导性关节炎症更严重,炎症关节中的 NCR ILC3s 增加。此外,体外用 IL-1β刺激来自关节的 Tbet ILC1s 可促进其分化为 ROR-γt ILC3s。此外,用 IL-1 拮抗剂治疗可有效降低 Ncf1 关节炎小鼠炎症关节中 NCR ILC3s 和产生 IL-17A 的 ILC3s 的比例,并改善关节炎症。这些结果表明,NOX2 是 ILC 转分化的必需调节剂,可能通过在炎症关节中产生 IL-1β 以氧化还原依赖的方式介导此过程。我们的发现为 ILC 在组织炎症的起始和进展中的作用提供了重要线索,并描述了一种新的先天免疫细胞介导的致病机制,其中氧化还原调节可能决定关节中免疫反应的方向。

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