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Titlebook: Paraoxonases in Inflammation, Infection, and Toxicology; Srinivasa T. Reddy Conference proceedings 2010 The Editor(s) (if applicable) and

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Engineering Human PON1 in an , Expression System,ction of recombinant PON1 have relied on either eukaryotic expression in baculovirus or prokaryotic expression of synthetic, gene-shuffled rabbit–mouse–human PON1 hybrid molecules. We review here methods and protocols for the production of pure, native rHuPON1 using an . expression system followed b
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Temporal and Tissue-Specific Patterns of , Expression in Mouse: In situ Hybridization Analysis,ent studies have demonstrated that PON3 is present in human and rabbit HDL but not in mouse HDL. Mouse PON3 appears to be cell-associated and is expressed in a wide range of tissues such as liver, adipose, macrophage, and the artery wall. In vitro studies have shown that PON3 can prevent LDL oxidati
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PON1 and Oxidative Stress in Human Sepsis and an Animal Model of Sepsis,ailure are complex and involve activation of systemic inflammatory response and coagulation together with endothelial dysfunction. Oxidative stress is a major promoter and mediator of the systemic inflammatory response. Serum PON1 has been demonstrated in multiple clinical and animal studies to prot
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The Role of Paraoxonase 1 in the Detoxification of Homocysteine Thiolactone,ethionyl-tRNA synthetase. Accumulating evidence suggests that Hcy-thiolactone plays an important role in atherothrombosis. The thioester chemistry of Hcy-thiolactone underlies its ability to form isopeptide bonds with protein lysine residues, which impairs or alters protein function and has pathophy
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Alteration of PON1 Activity in Adult and Childhood Obesity and Its Relation to Adipokine Levels,s. Adipokines such as leptin, adiponectin and resistin have a great impact on the development of atherosclerosis in obesity. Elevated levels of leptin have been found to be atherogenic whereas decreased levels of adiponectin have been proved to be anti-atherogenic in recent studies. The exact role o
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Anti-Inflammatory Properties of Paraoxonase-1 in Atherosclerosis,LDL) in the artery wall. The ability of high-density lipoprotein (HDL) to inhibit the oxidation of LDL (and cell membranes) and promote macrophage cholesterol efflux through the action of several of its associated proteins, particularly paraoxonase-1 (PON1), reduces the inflammation associated with
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