18 research outputs found

    Butyrate Attenuates Lipopolysaccharide-Induced Inflammation in Intestinal Cells and Crohn's Mucosa through Modulation of Antioxidant Defense Machinery

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    Oxidative stress plays an important role in the pathogenesis of inflammatory bowel disease (IBD), including Crohn's disease (CrD). High levels of Reactive Oxygen Species (ROS) induce the activation of the redox-sensitive nuclear transcription factor kappa-B (NF-ÎșB), which in turn triggers the inflammatory mediators. Butyrate decreases pro-inflammatory cytokine expression by the lamina propria mononuclear cells in CrD patients via inhibition of NF-ÎșB activation, but how it reduces inflammation is still unclear. We suggest that butyrate controls ROS mediated NF-ÎșB activation and thus mucosal inflammation in intestinal epithelial cells and in CrD colonic mucosa by triggering intracellular antioxidant defense systems. Intestinal epithelial Caco-2 cells and colonic mucosa from 14 patients with CrD and 12 controls were challenged with or without lipopolysaccaride from Escherichia Coli (EC-LPS) in presence or absence of butyrate for 4 and 24 h. The effects of butyrate on oxidative stress, p42/44 MAP kinase phosphorylation, p65-NF-ÎșB activation and mucosal inflammation were investigated by real time PCR, western blot and confocal microscopy. Our results suggest that EC-LPS challenge induces a decrease in Gluthation-S-Transferase-alpha (GSTA1/A2) mRNA levels, protein expression and catalytic activity; enhanced levels of ROS induced by EC-LPS challenge mediates p65-NF-ÎșB activation and inflammatory response in Caco-2 cells and in CrD colonic mucosa. Furthermore butyrate treatment was seen to restore GSTA1/A2 mRNA levels, protein expression and catalytic activity and to control NF-ÎșB activation, COX-2, ICAM-1 and the release of pro-inflammatory cytokine. In conclusion, butyrate rescues the redox machinery and controls the intracellular ROS balance thus switching off EC-LPS induced inflammatory response in intestinal epithelial cells and in CrD colonic mucosa

    Green BIM and CIM: Sustainable Planning Using Building Information Modelling

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    The design, construction and management of sustainable and intelligent buildings, neighbourhoods and cities require tools that can manage complexity in a completely different manner to the practices adopted to date. This chapter intro-duces the most advanced current approach, Building Information Modelling (BIM), focusing in particular on its use to support green and smart planning of buildings, neighbourhoods and cities. The initial part of the chapter introduces the general con-cepts underlying the BIM. The second part explores its application, the Green BIM, intended as the use of the tool to support the sustainable design of buildings. The chapter concludes with the introduction of a more recent concept, the City Informa-tion Modelling (CIM), intended as a common platform to design, build and manage the buildings, infrastructures and services of neighbourhoods and cities that evolve towards sustainable and smart schemes
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