Inhibition of MAPK and STAT3-SOCS3 by Sakuranetin Attenuated Chronic Allergic Airway Inflammation in Mice

SOCS3 车站3 炎症 免疫学 医学 MAPK/ERK通路 过敏性炎症 细胞因子 生物 激酶 信号转导 生物化学 细胞生物学
作者
Fernanda Paula Roncon Santana,Rafael Carlos da Silva,Simone S. Grecco,Aruanã Joaquim Matheus Costa Rodrigues Pinheiro,Luciana C. Caperuto,Fernanda M. Arantes-Costa,Samuel Rangel Cláudio,Kelly Yoshizaki,Mariângela Macchione,Daniel Araki Ribeiro,Iolanda de Fátima Lopes Calvo Tibério,Lídio Gonçãlves Lima Neto,João Henrique G. Lago,Carla M. Prado
出处
期刊:Mediators of Inflammation [Hindawi Publishing Corporation]
卷期号:2019: 1-14 被引量:65
标识
DOI:10.1155/2019/1356356
摘要

Asthma allergic disease is caused by airway chronic inflammation. Some intracellular signaling pathways, such as MAPK and STAT3-SOCS3, are involved in the control of airway inflammation in asthma. The flavonoid sakuranetin demonstrated an anti-inflammatory effect in different asthma models. Our aim was to clarify how sakuranetin treatment affects MAPK and STAT3-SOCS3 pathways in a murine experimental asthma model. Mice were submitted to an asthma ovalbumin-induction protocol and were treated with vehicle, sakuranetin, or dexamethasone. We assayed the inflammatory profile, mucus production, and serum antibody, STAT3-SOCS3, and MAPK levels in the lungs. Morphological alterations were also evaluated in the liver. LPS-stimulated RAW 264.7 cells were used to evaluate the effects of sakuranetin on nitric oxide (NO) and cytokine production. In vivo , sakuranetin treatment reduced serum IgE levels, lung inflammation (eosinophils, neutrophils, and Th2/Th17 cytokines), and respiratory epithelial mucus production in ovalbumin-sensitized animals. Considering possible mechanisms, sakuranetin inhibits the activation of ERK1/2, JNK, p38, and STAT3 in the lungs. No alterations were found in the liver for treated animals. Sakuranetin did not modify in vitro cell viability in RAW 264.7 and reduced NO release and gene expression of IL-1 β and IL-6 induced by LPS in these cells. In conclusion, our data showed that the inhibitory effects of sakuranetin on eosinophilic lung inflammation can be due to the inhibition of Th2 and Th17 cytokines and the inhibition of MAPK and STAT3 pathways, reinforcing the idea that sakuranetin can be considered a relevant candidate for the treatment of inflammatory allergic airway disease.
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