炎症
免疫学
肺
细胞因子
巨噬细胞
促炎细胞因子
基因剔除小鼠
免疫系统
呼吸上皮
生物
上皮
细胞生物学
受体
病理
医学
体外
内科学
生物化学
作者
Arzu Ulu,Stefanie Sveiven,A. Bilg,Jalene V. Velazquez,Marissa Díaz,Maheswari Mukherjee,Ana Yuil‐Valdes,Santosh Kota,Abigail Burr,Aileen Najera,Tara M. Nordgren
标识
DOI:10.1016/j.taap.2022.116044
摘要
IL-22 is a unique cytokine that is upregulated in many chronic inflammatory diseases, including asthma, and modulates tissue responses during inflammation. However, the role of IL-22 in the resolution of inflammation and how this contributes to lung repair processes are largely unknown. Here, we tested the hypothesis that IL-22 signaling is critical in inflammation resolution after repetitive exposure to agricultural dust. Using an established mouse model of organic dust extract-induced lung inflammation, we found that IL-22 knockout mice have an enhanced response to agricultural dust as evidenced by an exacerbated increase in infiltrating immune cells and lung pathology as compared to wild-type controls. We further identified that, in response to dust, IL-22 is expressed in airway epithelium and in Ym1+ macrophages found within the parenchyma in response to dust. The increase in IL-22 expression was accompanied by increases in IL-22 receptor IL-22R1 within the lung epithelium. In addition, we found that alveolar macrophages in vivo as well as THP-1 cells in vitro express IL-22, and this expression is modulated by dust exposure. Furthermore, subcellular localization of IL-22 appears to be in the Golgi of resting THP1 human monocytes, and treatment with dust extracts is associated with IL-22 release into the cytosolic compartment from the Golgi reservoirs during dust extract exposure. Taken together, we have identified a significant role for macrophage-mediated IL-22 signaling that is activated in dust-induced lung inflammation in mice. • IL-22 regulates lung inflammation in a mouse model of organic dust exposure. • YM1+ macrophages in the lung produce IL-22. • IL-22 knockout leads to exacerbated organic dust-induced lung pathology. • Lung reparative responses following dust exposure are regulated by IL-22.
科研通智能强力驱动
Strongly Powered by AbleSci AI