Nitric oxide and tumour necrosis factor alpha in the process of pseudoexfoliation glaucoma.
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V. Jakovljevic | Tatjana S Sarenac Vulovic | N. Zdravkovic | S. Pavlovic | Katarina Janićijević | N. Zdravković
[1] H. Aydın,et al. Total oxidative stress, paraoxonase and arylesterase levels at patients with pseudoexfoliation syndrome and pseudoexfoliative glaucoma. , 2015, International journal of ophthalmology.
[2] Ming-Yung Lee,et al. Nitric oxide suppresses LPS-induced inflammation in a mouse asthma model by attenuating the interaction of IKK and Hsp90 , 2015, Experimental biology and medicine.
[3] H. Iwahashi,et al. Ascorbic acid attenuates acute pulmonary oxidative stress and inflammation caused by zinc oxide nanoparticles , 2015, Journal of occupational health.
[4] A. Gow,et al. Radiation-induced lung injury and inflammation in mice: role of inducible nitric oxide synthase and surfactant protein D. , 2015, Toxicological sciences : an official journal of the Society of Toxicology.
[5] S. Brand,et al. IL-17A Alone Weakly Affects the Transcriptome of Intestinal Epithelial Cells but Strongly Modulates the TNF-&agr;–induced Expression of Inflammatory Mediators and Inflammatory Bowel Disease Susceptibility Genes , 2014, Inflammatory bowel diseases.
[6] E. Ongini,et al. Nitric oxide (NO): an emerging target for the treatment of glaucoma. , 2014, Investigative ophthalmology & visual science.
[7] Xiulan Zhang,et al. Ocular Pseudoexfoliation Syndrome and Vascular Disease: A Systematic Review and Meta-Analysis , 2014, PloS one.
[8] J. Hart,et al. Hydrogen sulfide protects endothelial nitric oxide function under conditions of acute oxidative stress in vitro. , 2013, Naunyn-Schmiedeberg's Archives of Pharmacology.
[9] S. Fu,et al. The suppression of thoc1 in cancer cell apoptosis mediated by activated macrophages is nitric oxide-dependent. , 2013, Biochemical pharmacology.
[10] M. Aslan,et al. Oxidative stress and potential applications of free radical scavengers in glaucoma , 2013, Redox report : communications in free radical research.
[11] R. Ritch,et al. Immunoproteomic analysis of potential serum biomarker candidates in human glaucoma. , 2012, Investigative ophthalmology & visual science.
[12] J. Danias,et al. Pseudoexfoliation syndrome, a systemic disorder with ocular manifestations , 2012, Human Genomics.
[13] M. Babizhayev,et al. Management of the Virulent Influenza Virus Infection by Oral Formulation of Nonhydrolized Carnosine and Isopeptide of Carnosine Attenuating Proinflammatory Cytokine-Induced Nitric Oxide Production , 2012, American journal of therapeutics.
[14] P. Lewczuk,et al. Proinflammatory cytokines are involved in the initiation of the abnormal matrix process in pseudoexfoliation syndrome/glaucoma. , 2010, The American journal of pathology.
[15] M. Rutkowski,et al. Modifications of spectrophotometric methods for antioxidative vitamins determination convenient in analytic practice , 2007 .
[16] U. Schlötzer-Schrehardt,et al. Ascorbic acid concentration is reduced in the aqueous humor of patients with exfoliation syndrome. , 2002, American journal of ophthalmology.
[17] S. Hoffman,et al. Cellular mechanisms of nonspecific immunity to intracellular infection: cytokine-induced synthesis of toxic nitrogen oxides from L-arginine by macrophages and hepatocytes. , 1990, Immunology letters.
[18] S. Tannenbaum,et al. Analysis of nitrate, nitrite, and [15N]nitrate in biological fluids. , 1982, Analytical biochemistry.
[19] R. Sorkhabi,et al. High-sensitivity C-reactive Protein and Tumor Necrosis Factor Alpha in Pseudoexfoliation Syndrome. , 2013, Oman medical journal.
[20] Filiz Yildirim,et al. The role of the cytokines in the pathogenesis of pseudoexfoliation syndrome. , 2013, International journal of ophthalmology.