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Oridonin suppresses particulate-induced NLRP3-independent IL-1α release to prevent crystallopathy in the lung

炎症体 炎症 吞噬作用 化学 细胞生物学 免疫系统 吡喃结构域 先天免疫系统 微粒 免疫学 生物 有机化学
作者
Kenta Ikoma,Michihiro Takahama,Atsushi Kimishima,Yixi Pan,Manabu Taura,Akiyoshi Nakayama,Masayoshi Arai,Naoki Takemura,Tatsuya Saitoh
出处
期刊:International Immunology [Oxford University Press]
卷期号:34 (10): 493-504 被引量:5
标识
DOI:10.1093/intimm/dxac018
摘要

Abstract The human body is exposed to various particulates of industrial, environmental, or endogenous origin. Invading or intrinsic particulates can induce inflammation by aberrantly activating the immune system, thereby causing crystallopathies. When immune cells such as macrophages phagocytose the particulates, their phagolysosomal membranes undergo mechanical damage, eventually leading to pyroptotic cell death accompanied by the release of inflammatory cytokines, including interleukin (IL)-1α and IL-1β. The nod-like receptor family pyrin domain containing 3 (NLRP3) inflammasome is responsible for particulate-induced IL-1β release and is therefore regarded as a potential therapeutic target for inflammation-mediated crystallopathies. However, IL-1α is released after particulate stimulation in an NLRP3 inflammasome-independent manner and plays a critical role in disease development. Therefore, drugs that exert potent anti-inflammatory effects by comprehensively suppressing particulate-induced responses, including IL-1β release and IL-1α release, should be developed. Here, we found that oridonin, a diterpenoid isolated from Isodon japonicus HARA, strongly suppressed particulate-induced cell death, accompanied by the release of IL-1α and IL-1β in mouse and human macrophages. Oridonin reduced particulate-induced phagolysosomal membrane damage in macrophages without affecting phagocytosis of particulates. Furthermore, oridonin treatment markedly suppressed the symptoms of silica particle-induced pneumonia, which was attributed to the release of IL-1α independently of NLRP3. Thus, oridonin is a potential lead compound for developing effective therapeutics for crystallopathies attributed to NLRP3-dependent as well as NLRP3-independent inflammation.
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