Literature DB >> 34982504

Acute iron oxide nanoparticles exposure induced murine eosinophilic airway inflammation via TLR2 and TLR4 signaling.

Liang Yue1, Li Qidian1, Wang Jiawei1, Xue Rou1, He Miao1.   

Abstract

Iron oxide nanoparticles (Fe2 O3 NPs) is the main component of air pollution particles in urban rail transit environment. People are more exposed to Fe2 O3 NPs, however, the studies on relationship between Fe2 O3 NPs and respiratory health are limited. In the present study, acute airway inflammation caused by Fe2 O3 NPs and its possible mechanism were investigated. BALB/c mice were intratracheally challenged with different concentrations of Fe2 O3 NPs. Fe2 O3 NPs induced bronchial epithelial barrier function damage, infiltration of neutrophils and lymphocytes into the airway submucosa, secretion of mucus in the airway epithelium and elevated expression of eosinophil major basic protein (EMBP) in lungs. Compared with the control group, Fe2 O3 NPs increased eosinophils by 20 times in bronchoalveolar lavage fluid (BALF), and markedly increased eosinophils related cytokines and chemokines, including interleukin (IL) -5, IL-33, thymic stromal lymphopoietin (TSLP), monocyte chemotactic protein (MCP)-3, eotaxin, tumor necrosis factor (TNF)-α, keratinocyte chemoattractant (KC). Furthermore, Fe2 O3 NPs up-regulated levels of IL-5, MCP-3, eotaxin, and KC in serum. In vitro studies showed that Fe2 O3 NPs increased the genes and proteins expression of Toll-like receptors (TLR)-2, TLR4, TNF receptor associated factor 6 (TRAF6), myeloid differentiation factor 88 (MyD88), nuclear factor (NF)-κB, and TNF-α in RAW267.4 cells. The downstream inflammatory cytokine protein expression and release such as TNF-α was significantly decreased after using TLR2/TLR4 inhibitor OxPAPC, but not MyD88 inhibitor ST2825. These results suggest that TLR2 and TLR4 played important role in Fe2 O3 NPs inducing acute eosinophilic airway inflammation in the murine lung.
© 2022 Wiley Periodicals LLC.

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Keywords:  TLR signaling pathway; airway inflammation; eosinophilia; iron oxide; nanoparticles

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Year:  2022        PMID: 34982504     DOI: 10.1002/tox.23455

Source DB:  PubMed          Journal:  Environ Toxicol        ISSN: 1520-4081            Impact factor:   4.119


  1 in total

1.  A microsatellite DNA-derived oligodeoxynucleotide attenuates lipopolysaccharide-induced acute lung injury in mice by inhibiting the HMGB1-TLR4-NF-κB signaling pathway.

Authors:  Chenghua Zhang; Hui Wang; Hongrui Wang; Shuyou Shi; Peiyan Zhao; Yingying Su; Hua Wang; Ming Yang; Mingli Fang
Journal:  Front Microbiol       Date:  2022-08-04       Impact factor: 6.064

  1 in total

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