Metabolic syndrome and the decreased levels of uric acid by leflunomide favor redox imbalance in patients with rheumatoid arthritis |
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Authors: | Neide Tomimura Costa Bruna Miglioranza Scavuzzi Tatiana Mayumi Veiga Iriyoda Marcell Alysson Batisti Lozovoy Daniela Frizon Alfieri Fabiano Aparecido de Medeiros Marcelo Cândido de Sá Pâmela Lonardoni Micheletti Bruno Alexandre Sekiguchi Edna Maria Vissoci Reiche Michael Maes Andréa Name Colado Simão Isaias Dichi |
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Affiliation: | 1.Laboratory of Research in Applied Immunology,University of Londrina,Londrina,Brazil;2.Department of Internal Medicine,University of Londrina,Londrina,Brazil;3.Department of Rheumatology – PUC,Pontifícia Universidade Católica,Londrina,Brazil;4.Department of Clinical Pathology,Clinical Analysis and Toxicology – University of Londrina,Londrina,Brazil;5.Post Graduate Program in Clinical and Laboratory Pathophysiology,University of Londrina,Londrina,Brazil;6.IMPACT Strategic Research Centre, School of Medicine,Deakin University,Geelong,Australia |
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Abstract: | Oxidative stress plays a role in the pathophysiology of rheumatoid arthritis (RA). The aim of the present study was to verify the influence of metabolic syndrome (MetS) and disease-modifying antirheumatic drugs on nitrosative and oxidative biomarkers in patients with RA. A total of 177 patients with RA and 150 healthy volunteers participated in this study, which measured lipid hydroperoxides, advanced oxidation protein products (AOPP), nitric oxide metabolites (NOx), carbonyl protein, total radical-trapping antioxidant parameter (TRAP), uric acid (UA), and C-reactive protein (CRP). NOx and the NOx/TRAP ratio were significantly increased in RA, while no significant differences in lipid hydroperoxides, AOPP, UA, and TRAP levels were found between both groups. Treatment with leflunomide was associated with increased levels of carbonyl protein, and lowered levels in TRAP and UA, while the NOx/TRAP ratio further increased. NOx and the NOx/TRAP ratio were significantly higher in women than in men, while TRAP and UA were significantly lower in women. MetS was accompanied by increased AOPP and UA levels. RA was best predicted by increased NOx/TRAP ratio, CRP, and BMI. In conclusion, our data demonstrated that NOx and NOx/TRAP are strongly associated with RA physiopathology. Our findings suggest that inhibition of iNOS may become an interesting therapeutic approach for the treatment of RA. In addition, the presence of MetS and a decrease in levels of UA by leflunomide favor redox imbalance in RA patients. More studies are needed to evaluate the impact of antioxidant capacity reduction on RA progression. |
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