CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:LAIR-1 acts as an immune checkpoint on activated ILC2s and regulates the induction of airway hyperreactivity.
LAIR-1 acts as an immune checkpoint on activated ILC2s and regulates the induction of airway hyperreactivity.
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我们的结果揭示了一条 ILC2s 中新的调控轴,能够减轻过敏性 AHR 和肺部炎症。
2型固有淋巴细胞(ILC2s)是2型哮喘中的重要参与者。它们通过细胞因子分泌启动嗜酸性粒细胞浸润和气道高反应性(AHR)。白细胞相关免疫球蛋白样受体1(LAIR-1)是一种抑制性受体,被认为是不同炎症性疾病中的免疫检查点。
我们的目的是研究LAIR-1的表达并评估其在人类和小鼠ILC2s中的作用。
野生型与LAIR-1敲除小鼠经鼻内给予IL-33刺激,分选肺ILC2s,基于RNA测序和流式细胞术进行离体比较研究。随后,我们通过使用敲除小鼠及在Rag2 -/- Il2rg -/-小鼠中进行过继转移实验,研究了LAIR-1缺陷对AHR和肺部炎症的影响。采用敲低反义策略及人源化小鼠评估LAIR-1在人类ILC2s中的作用。
我们已经证明LAIR-1在活化的ILC2s上可诱导表达,并下调细胞因子分泌和效应功能。ILC2s中LAIR-1信号通过抑制性通路介导,包括SHP1/PI3K/AKT,而LAIR-1缺陷导致在IL-33和Alternaria alternata模型中ILC2依赖性AHR加重。在过继转移实验中,我们证实了LAIR-1在体内对ILC2s的调控。有趣的是,LAIR-1在人ILC2s中表达并可诱导,而Lair1的敲低方法导致更高的细胞因子产生。最后,生理性配体C1q与LAIR-1结合显著降低了人源化ILC2小鼠模型中ILC2依赖性AHR。
Type 2 innate lymphoid cells (ILC2s) are relevant players in type 2 asthma. They initiate eosinophil infiltration and airway hyperreactivity (AHR) through cytokine secretion. Leukocyte-associated immunoglobulin-like receptor 1 (LAIR-1) is an inhibitory receptor considered to be an immune checkpoint in different inflammatory diseases.
Our aim here was to investigate the expression of LAIR-1 and assess its role in human and murine ILC2s.
Wild-type and LAIR-1 knockout mice were intranasally challenged with IL-33, and pulmonary ILC2s were sorted to perform an ex vivo comparative study based on RNA sequencing and flow cytometry. We next studied the impact of LAIR-1 deficiency on AHR and lung inflammation by using knockout mice and adoptive transfer experiments in Rag2 -/- Il2rg -/- mice. Knockdown antisense strategies and humanized mice were used to assess the role of LAIR-1 in human ILC2s.
We have demonstrated that LAIR-1 is inducible on activated ILC2s and downregulates cytokine secretion and effector function. LAIR-1 signaling in ILC2s was mediated via inhibitory pathways, including SHP1/PI3K/AKT, and LAIR-1 deficiency led to exacerbated ILC2-dependent AHR in IL-33 and Alternaria alternata models. In adoptive transfer experiments, we confirmed the LAIR-1-mediated regulation of ILC2s in vivo. Interestingly, LAIR-1 was expressed and inducible in human ILC2s, and knockdown approaches of Lair1 resulted in higher cytokine production. Finally, engagement of LAIR-1 by physiologic ligand C1q significantly reduced ILC2-dependent AHR in a humanized ILC2 murine model.
Our results unravel a novel regulatory axis in ILC2s with the capacity to reduce allergic AHR and lung inflammation.
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