19 research outputs found
Activation of Sirt1 by Resveratrol Inhibits TNF-α Induced Inflammation in Fibroblasts
Inflammation is one of main mechanisms of autoimmune disorders and a common feature of most diseases. Appropriate suppression of inflammation is a key resolution to treat the diseases. Sirtuin1 (Sirt1) has been shown to play a role in regulation of inflammation. Resveratrol, a potent Sirt1 activator, has anti-inflammation property. However, the detailed mechanism is not fully understood. In this study, we investigated the anti-inflammation role of Sirt1 in NIH/3T3 fibroblast cell line. Upregulation of matrix metalloproteinases 9 (MMP-9), interleukin-1beta (IL-1β), IL-6 and inducible nitric oxide synthase (iNOS) were induced by tumor necrosis factor alpha (TNF-α) in 3T3 cells and resveratrol suppressed overexpression of these pro-inflammatory molecules in a dose-dependent manner. Knockdown of Sirt1 by RNA interference caused 3T3 cells susceptible to TNF-α stimulation and diminished anti-inflammatory effect of resveratrol. We also explored potential anti-inflammatory mechanisms of resveratrol. Resveratrol reduced NF-κB subunit RelA/p65 acetylation, which is notably Sirt1 dependent. Resveratrol also attenuated phosphorylation of mammalian target of rapamycin (mTOR) and S6 ribosomal protein (S6RP) while ameliorating inflammation. Our data demonstrate that resveratrol inhibits TNF-α-induced inflammation via Sirt1. It suggests that Sirt1 is an efficient target for regulation of inflammation. This study provides insight on treatment of inflammation-related diseases
Improved electrical property of Sb-doped SnO 2 nanonets as measured by contact and non-contact approaches
10.1039/c2ra20973jRSC Advances2259590-959
K-enriched MoO 3 nanobundles: A layered structure with high electric conductivity
10.1021/jp211079bJournal of Physical Chemistry C11663962-396
Facile one-step synthesis of CdSxSe1- x nanobelts with uniform and controllable stoichiometry
10.1021/jp205760rJournal of Physical Chemistry C1154019538-1954
Desorption of ambient gas molecules and phase transformation of α-Fe2O3 nanostructures during ultrahigh vacuum annealing
10.1021/jp3110387Journal of Physical Chemistry C11731509-151
Ultrasensitive phototransistor based on K-enriched MoO 3 single nanowires
10.1021/jp305231jJournal of Physical Chemistry C1164122015-2202
Enhanced field emission properties of α-Fe2O3 nanostructures with the removal of adsorbed gas molecules
10.1021/jp200858gJournal of Physical Chemistry C115178816-882
Direct laser pruning of CdS xSe 1- x nanobelts en route to a multicolored pattern with controlled functionalities
10.1021/nn303000jACS Nano698298-830