炎症
免疫系统
免疫学
生物
嗜酸性
肺
白细胞介素33
白细胞介素
细胞因子
医学
内科学
遗传学
作者
Kiyoshi Hirahara,Naoko Mato,Koichi Hagiwara,Toshinori Nakayama
标识
DOI:10.1002/jlb.mr1117-456r
摘要
Abstract The lungs are the primary organs of the respiratory system in many animals and have unique epithelial barrier systems to protect the host from continuous invasion of various harmful particles, such as viruses and bacteria. IL-33, a member of the IL-1 family of cytokines, is released from epithelial cells in the mucosal organs and drives the type 2 immune response by activating a number of immune cells in cases of helminth infection. However, IL-33 derived from epithelial cells also causes various allergic diseases via the activation of ST2-positive immune cells, including memory-type (CD62LlowCD44hi) ST2+CD4+ T cells in the lung. Recent studies have revealed that the type 2 inflammation induced by IL-33 is steroid resistant. Steroid resistance causes severe chronic inflammatory diseases, such as intractable asthma. In this review, we will discuss the impact of ST2+CD4+ T cells on shaping the pathology of IL-33-induced eosinophilic inflammation. We will also highlight the mechanism underlying steroid resistance in eosinophilic pneumonia. A better understanding of the cellular and molecular mechanisms underlying steroid resistance is crucial for the development of new therapeutic strategies for intractable allergic diseases. Review on the impact of IL-33 in the development of eosinophilic lung inflammation and the mechanism of steroid resistance in the airway inflammation.
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