| Literature DB >> 28511026 |
Haining Zhang1, Yanhua He1, Guiping Zhang1, Xiaobin Li2, Suikai Yan3, Ning Hou1, Qing Xiao1, Yue Huang1, Miaoshan Luo1, Genshui Zhang1, Quan Yi1, Minsheng Chen4, Jiandong Luo1,4.
Abstract
We previously suggested that endogenous glucocorticoids (GCs) may inhibit myocardial inflammation induced by lipopolysaccharide (LPS) in vivo. However, the possible cellular and molecular mechanisms were poorly understood. In this study, we investigated the role of physiological concentration of GCs in inflammation induced by LPS in cardiac fibroblasts and explored the possible mechanisms. The results showed that hydrocortisone at the dose of 127 ng/mL (equivalent to endogenous basal level of GCs) inhibited LPS (100 ng/mL)-induced productions of TNF-α and IL-1β in cardiac fibroblasts. Xanthine oxidase/xanthine (XO/X) system impaired the anti-inflammatory action of GCs through downregulating HDAC2 activity and expression. Knockdown of HDAC2 restrained the anti-inflammatory effects of physiological level of hydrocortisone, and blunted the ability of XO/X system to downregulate the inhibitory action of physiological level of hydrocortisone on cytokines. These results suggested that HDAC2 was required by the physiological concentration of GC to inhibit inflammatory response. The dysfunction of HDAC2 induced by oxidative stress might be account for GC resistance and chronic inflammatory disorders during the cardiac diseases.Entities:
Keywords: HDAC2; fibroblastes; fibroblasts; glucocorticoid; glucocorticoïdes; histone deacetylase; histone désacétylase; inflammation; resistance; résistance
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Year: 2017 PMID: 28511026 DOI: 10.1139/cjpp-2016-0449
Source DB: PubMed Journal: Can J Physiol Pharmacol ISSN: 0008-4212 Impact factor: 2.273