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Aryl Hydrocarbon Receptor Protects Lungs from Cockroach Allergen Induced Inflammation by Modulating Mesenchymal Stem Cells

机译:芳烃受体通过调节间充质干细胞保护肺免受蟑螂变应原诱导的炎症

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摘要

Exposure to cockroach allergen leads to allergic sensitization and increased risk of developing asthma. Aryl hydrocarbon receptor (AhR), a receptor for many common environmental contaminants, can sense not only environmental pollutants but also microbial insults. Mesenchymal stem cells (MSCs) are multipotent progenitor cells with the capacity to modulate immune responses. In this study, we investigated whether AhR can sense cockroach allergens and modulate allergen-induced lung inflammation through MSCs. We found that cockroach allergen treated AhR-deficient (AhR−/−) mice showed exacerbation of lung inflammation when compared to wild-type (WT) mice. In contrast, 2,3,7,8-Tetrachlorodibenzo-p-dioxin (TCDD), an AhR agonist, significantly suppressed allergen-induced mouse lung inflammation. MSCs were significantly reduced in cockroach allergen challenged AhR−/− mice as compared to WT mice, but increased in cockroach allergen-challenged WT mice when treated with TCDD. Moreover, MSCs express AhR and AhR signaling can be activated by cockroach allergen with increased expression of its downstream genes, cyp1a1 and cyp1b1. Furthermore, we tracked the migration of intravenously injected GFP+ MSCs and found that cockroach allergen-challenged AhR−/− mice displayed less migration of MSCs to the lungs compared to WT. The AhR mediated MSC migration was further verified by an in vitro Transwell migration assay. Epithelial conditioned medium (ECM) prepared from CRE-challenged epithelial cells significantly induced MSC migrations, which was further enhanced by TCDD. The administration of MSCs significantly attenuated cockroach allergen-induced inflammation, which was abolished by TGFβ1 neutralizing antibody. These results suggest that AhR plays an important role in protecting lungs from allergen-induced inflammation by modulating MSC recruitment and their immune-suppressive activity.
机译:接触蟑螂过敏原会导致过敏,并增加患哮喘的风险。芳烃受体(AhR)是许多常见环境污染物的受体,不仅可以感知环境污染物,还可以感知微生物污染。间充质干细胞(MSC)是多能祖细胞,具有调节免疫反应的能力。在这项研究中,我们调查了AhR是否可以感知蟑螂过敏原并通过MSC调节过敏原诱发的肺部炎症。我们发现,与野生型(WT)小鼠相比,蟑螂过敏原治疗的AhR缺陷型(AhR -/-)小鼠显示出肺部炎症的加剧。相反,AhR激动剂2,3,7,8-四氯二苯并-对-二恶英(TCDD)显着抑制了变应原诱导的小鼠肺部炎症。与WT小鼠相比,在蟑螂过敏原攻击的AhR -/-小鼠中,MSCs显着减少,但在用TCDD处理的蟑螂过敏原攻击的WT小鼠中,MSCs升高。此外,表达AhR和AhR信号的MSC可以被蟑螂变应原激活,其下游基因cyp1a1和cyp1b1的表达增加。此外,我们追踪了静脉注射的GFP + MSCs的迁移情况,发现与WT相比,蟑螂变应原攻击的AhR -/-小鼠表现出更少的MSCs向肺的迁移。 AhR介导的MSC迁移通过体外Transwell迁移分析进一步证实。由CRE挑战的上皮细胞制备的上皮条件培养液(ECM)显着诱导MSC迁移,而TCDD进一步增强了MSC迁移。 MSC的施用显着减轻了蟑螂变应原诱导的炎症,这种炎症已被TGFβ1中和抗体所消除。这些结果表明,AhR通过调节MSC募集及其免疫抑制活性,在保护肺部免受变应原诱导的炎症中起重要作用。

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