Nitric Oxide in Experimental Autoimmune Uveoretinitis
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[1] M. Terashima,et al. TGF-β1 enhances degradation of IFN-γ-induced iNOS protein via proteasomes in RAW 264.7 cells , 2005 .
[2] Roger E. Moore,et al. Photoreceptor mitochondrial tyrosine nitration in experimental uveitis. , 2005, Investigative ophthalmology & visual science.
[3] J. Forrester,et al. The role of tumour necrosis factor (TNF-α) in experimental autoimmune uveoretinitis (EAU) , 2004, Progress in Retinal and Eye Research.
[4] J. Rees,et al. The genetics of sun sensitivity in humans. , 2004, American journal of human genetics.
[5] Shosuke Ito,et al. Melanin acts as a potent UVB photosensitizer to cause an atypical mode of cell death in murine skin. , 2004, Proceedings of the National Academy of Sciences of the United States of America.
[6] J. Dahle,et al. Melanin synthesis may sensitize melanocytes to oxidative DNA damage by ultraviolet A radiation and protect melanocytes from direct DNA damage by ultraviolet B radiation. , 2004, Pigment cell research.
[7] J. Forrester,et al. Neutralizing tumor necrosis factor activity leads to remission in patients with refractory noninfectious posterior uveitis. , 2004, Archives of ophthalmology.
[8] Paul Meredith,et al. Radiative Relaxation Quantum Yields for Synthetic Eumelanin¶ , 2003, Photochemistry and photobiology.
[9] C. McCarty,et al. Iris colour, ethnic origin and progression of age‐related macular degeneration , 2003, Clinical & experimental ophthalmology.
[10] J. Dahle,et al. Pigmented melanocytes are protected against ultraviolet-A-induced membrane damage. , 2003, The Journal of investigative dermatology.
[11] J. Forrester,et al. Control of myeloid activity during retinal inflammation , 2003, Journal of leukocyte biology.
[12] J. Forrester,et al. Neutralizing tumor necrosis factor-alpha activity suppresses activation of infiltrating macrophages in experimental autoimmune uveoretinitis. , 2003, Investigative ophthalmology & visual science.
[13] V. Bronte,et al. L-arginine metabolism in myeloid cells controls T-lymphocyte functions. , 2003, Trends in immunology.
[14] Sharon A Miller,et al. UV‐induced DNA damage and melanin content in human skin differing in racial/ethnic origin , 2003, FASEB journal : official publication of the Federation of American Societies for Experimental Biology.
[15] R. Kastelein,et al. Interleukin-23 rather than interleukin-12 is the critical cytokine for autoimmune inflammation of the brain , 2003, Nature.
[16] S. Ito,et al. Highly selective inhibitor of inducible nitric oxide synthase enhances S-antigen-induced uveitis , 2003, Current eye research.
[17] Ruben Zamora,et al. A DNA microarray study of nitric oxide-induced genes in mouse hepatocytes: implications for hepatic heme oxygenase-1 expression in ischemia/reperfusion. , 2002, Nitric oxide : biology and chemistry.
[18] J. Forrester,et al. Retinal microenvironment controls resident and infiltrating macrophage function during uveoretinitis. , 2002, Investigative ophthalmology & visual science.
[19] M. Boulton,et al. Photoreactivity of aged human RPE melanosomes: a comparison with lipofuscin. , 2002, Investigative ophthalmology & visual science.
[20] R. Pope. Apoptosis as a therapeutic tool in rheumatoid arthritis , 2002, Nature Reviews Immunology.
[21] John D Simon,et al. Aggregation of eumelanin mitigates photogeneration of reactive oxygen species. , 2002, Free radical biology & medicine.
[22] A. Dick,et al. Nitric oxide mediates apoptosis through formation of peroxynitrite and Fas/Fas-ligand interactions in experimental autoimmune uveitis. , 2002, The American journal of pathology.
[23] U. Pleyer,et al. Modulation of leukocyte-endothelium interaction by nitric oxide synthase inhibitors: effects on leukocyte adhesion in endotoxin-induced uveitis , 2001, Inflammation Research.
[24] H. Pae,et al. Exogenous nitric oxide inhibits experimental autoimmune uveoretinitis development in Lewis rats by modulation of the Th1-dependent immune response. , 2001, Molecules and cells.
[25] J. Simon,et al. Ultrastructural organization of eumelanin from Sepia officinalis measured by atomic force microscopy. , 2001, Biochemistry.
[26] K. Scharffetter-Kochanek,et al. Solar UV irradiation and dermal photoaging. , 2001, Journal of photochemistry and photobiology. B, Biology.
[27] A. Girotti,et al. Photosensitized oxidation of membrane lipids: reaction pathways, cytotoxic effects, and cytoprotective mechanisms. , 2001, Journal of photochemistry and photobiology. B, Biology.
[28] B. Armstrong,et al. The epidemiology of UV induced skin cancer. , 2001, Journal of photochemistry and photobiology. B, Biology.
[29] Christian Bogdan,et al. Nitric oxide and the immune response , 2001, Nature Immunology.
[30] P. Kubes,et al. Inducible nitric oxide synthase (iNOS) and regulation of leucocyte/endothelial cell interactions: studies in iNOS-deficient mice. , 2001, Acta physiologica Scandinavica.
[31] M. Steenwinkel,et al. Melanin Offers Protection Against Induction of Cyclobutane Pyrimidine Dimers and 6–4 Photoproducts by UVB in Cultured Human Melanocytes¶ , 2001, Photochemistry and photobiology.
[32] C. Suschek,et al. Inducible nitric oxide synthase-derived nitric oxide in gene regulation, cell death and cell survival. , 2001, International immunopharmacology.
[33] T. Wilczok,et al. Dopamine-melanin protects against tyrosine nitration, tryptophan oxidation and Ca(2+)-ATPase inactivation induced by peroxynitrite. , 2000, Biochimica et biophysica acta.
[34] M. Naud,et al. Delayed onset and decreased severity of experimental autoimmune uveoretinitis in mice lacking nitric oxide synthase type 2 , 2000, Journal of Neuroimmunology.
[35] M. Boulton,et al. The role of oxidative stress in the pathogenesis of age-related macular degeneration. , 2000, Survey of ophthalmology.
[36] J. Simon,et al. A Hierarchical Self-Assembly of Eumelanin , 2000 .
[37] A. Dick,et al. IFN-γ and LPS-Mediated IL-10–Dependent Suppression of Retinal Microglial Activation , 2000 .
[38] P. Kubes. Inducible nitric oxide synthase: a little bit of good in all of us , 2000, Gut.
[39] Kristi Kincaid,et al. M-1/M-2 Macrophages and the Th1/Th2 Paradigm1 , 2000, The Journal of Immunology.
[40] J. Flammer,et al. Absolute Rate Constants for the Quenching of Reactive Excited States by Melanin and Related 5,6-Dihydroxyindole Metabolites: Implications for Their Antioxidant Activity , 2000, Photochemistry and photobiology.
[41] T. Sarna,et al. Structural differences in unbleached and mildly-bleached synthetic tyrosine-derived melanins identified by scanning probe microscopies. , 2000, Pigment cell research.
[42] S. Martin,et al. Alternative Activation of Macrophage by IL-10 , 2000, Pathobiology.
[43] C. Bogdan,et al. The role of nitric oxide in innate immunity , 2000, Immunological reviews.
[44] H. Castro-Faria-Neto,et al. Uptake of apoptotic cells drives the growth of a pathogenic trypanosome in macrophages , 2000, Nature.
[45] John D. Simon,et al. A Model for the Activated Energy Transfer within Eumelanin Aggregates , 2000 .
[46] G. Wu,et al. Stimulation of macrophages by retinal proteins: production of reactive nitrogen and oxygen metabolites. , 1999, Investigative ophthalmology & visual science.
[47] K Eichmann,et al. Th1/Th2-regulated expression of arginase isoforms in murine macrophages and dendritic cells. , 1999, Journal of immunology.
[48] M. Naud,et al. Inhibition of endotoxin-induced uveitis and potentiation of local TNF-alpha and interleukin-6 mRNA expression by interleukin-13. , 1999, Investigative ophthalmology & visual science.
[49] R. Tyrrell,et al. The role of melanin in the induction of oxidative DNA base damage by ultraviolet A irradiation of DNA or melanoma cells. , 1999, The Journal of investigative dermatology.
[50] G. Wu,et al. Differential expression of nitric oxide synthase in experimental uveoretinitis. , 1999, Investigative ophthalmology & visual science.
[51] Y. Courtois,et al. Requirement for Nitric Oxide in Retinal Neuronal Cell Death Induced by Activated Müller Glial Cells , 1999, Journal of neurochemistry.
[52] M. A. Ostrovsky,et al. Retinal pigment epithelium pigment granules stimulate the photo-oxidation of unsaturated fatty acids. , 1999, Free radical biology & medicine.
[53] C. Chan,et al. Mice deficient in inducible nitric oxide synthase are susceptible to experimental autoimmune uveoretinitis. , 1999, Investigative ophthalmology & visual science.
[54] E. Land,et al. Free radical scavenging properties of melanin interaction of eu- and pheo-melanin models with reducing and oxidising radicals. , 1999, Free radical biology & medicine.
[55] Y. Courtois,et al. Differential regulation of nitric oxide synthase-II mRNA by growth factors in rat, bovine, and human retinal pigmented epithelial cells. , 1999, Ocular immunology and inflammation.
[56] T. Gotoh,et al. Arginase II Downregulates Nitric Oxide (NO) Production and Prevents NO-mediated Apoptosis in Murine Macrophage-derived RAW 264.7 Cells , 1999, The Journal of cell biology.
[57] R. Caspi,et al. Interleukin 12 Protects from a T Helper Type 1–mediated Autoimmune Disease, Experimental Autoimmune Uveitis, through a Mechanism Involving Interferon γ, Nitric Oxide, and Apoptosis , 1999, The Journal of experimental medicine.
[58] Justine R. Smith,et al. Basic pathogenic mechanisms operating in experimental models of acute anterior uveitis , 1998, Immunology and cell biology.
[59] D. Liebler,et al. Photoprotective actions of natural and synthetic melanins. , 1998, Chemical research in toxicology.
[60] E. Wenczl,et al. (Pheo)melanin photosensitizes UVA-induced DNA damage in cultured human melanocytes. , 1998, The Journal of investigative dermatology.
[61] D. Geller,et al. Cytokine induction of NO synthase II in human DLD‐1 cells: roles of the JAK‐STAT, AP‐1 and NF‐κB‐signaling pathways , 1998, British journal of pharmacology.
[62] C. Chignell,et al. Lactoperoxidase-catalyzed oxidation of melanin by reactive nitrogen species derived from nitrite (NO2-): an EPR study. , 1998, Free radical biology & medicine.
[63] M. Munder,et al. Alternative metabolic states in murine macrophages reflected by the nitric oxide synthase/arginase balance: competitive regulation by CD4+ T cells correlates with Th1/Th2 phenotype. , 1998, Journal of immunology.
[64] C. Chan,et al. IL-10 has a protective role in experimental autoimmune uveoretinitis. , 1998, International immunology.
[65] C. Bogdan. The Multiplex Function of Nitric Oxide in (Auto)immunity , 1998, The Journal of experimental medicine.
[66] Y. Courtois,et al. Inhibition of Inducible Nitric Oxide Synthase Expression by Interferons α and β in Bovine Retinal Pigmented Epithelial Cells* , 1997, The Journal of Biological Chemistry.
[67] C. Nathan,et al. Perspectives Series : Nitric Oxide and Nitric Oxide Synthases Inducible Nitric Oxide Synthase : What Difference Does It Make ? , 2013 .
[68] J. Forrester,et al. Nitric oxide accelerates the onset and increases the severity of experimental autoimmune uveoretinitis through an IFN-gamma-dependent mechanism. , 1997, Journal of immunology.
[69] Y. Courtois,et al. Control of nitric oxide production by endogenous TNF-alpha in mouse retinal pigmented epithelial and Muller glial cells. , 1997, Biochemical and biophysical research communications.
[70] F. Liew,et al. Cytokines and nitric oxide as effector molecules against parasitic infections. , 1997, Philosophical transactions of the Royal Society of London. Series B, Biological sciences.
[71] J. Crewe,et al. Cellular localisation and dynamics of nitric oxide synthase expression in the rat anterior segment during endotoxin-induced uveitis. , 1997, Experimental eye research.
[72] C. Chan,et al. IFN-gamma-deficient mice develop experimental autoimmune uveitis in the context of a deviant effector response. , 1997, Journal of immunology.
[73] J. Mudgett,et al. Identification of nitric oxide synthase as a protective locus against tuberculosis. , 1997, Proceedings of the National Academy of Sciences of the United States of America.
[74] K. Kröncke,et al. Nitric oxide: cytotoxicity versus cytoprotection--how, why, when, and where? , 1997, Nitric oxide : biology and chemistry.
[75] T. Sarna,et al. The Role of Retinal Pigment Epithelium Melanin in Photoinduced Oxidation of Ascorbate * , 1997, Photochemistry and photobiology.
[76] R. Nussenblatt,et al. Experimental autoimmune uveitis and its relationship to clinical ocular inflammatory disease. , 1996, Journal of autoimmunity.
[77] I. Goldstein,et al. Nitric Oxide: A Review of Its Role in Retinal Function and Disease , 1996, Vision Research.
[78] E. Land,et al. Interaction of melanin with carbon- and oxygen-centered radicals from methanol and ethanol. , 1995, Free radical biology & medicine.
[79] D. Barker,et al. Comparison of the responses of human melanocytes with different melanin contents to ultraviolet B irradiation. , 1995, Cancer research.
[80] J. Crewe,et al. Endotoxin-induced uveitis. Kinetics and phenotype of the inflammatory cell infiltrate and the response of the resident tissue macrophages and dendritic cells in the iris and ciliary body. , 1995, Investigative ophthalmology & visual science.
[81] M. Boulton,et al. Blue Light-induced Reactivity of Retinal Age Pigment , 1995, The Journal of Biological Chemistry.
[82] Y. Courtois,et al. Increased nitric oxide production in endotoxin-induced uveitis. Reduction of uveitis by an inhibitor of nitric oxide synthase. , 1995, Journal of immunology.
[83] T. Sarna,et al. The effect of a synthetic neuromelanin on yield of free hydroxyl radicals generated in model systems. , 1995, Biochimica et biophysica acta.
[84] C. Nathan,et al. Altered responses to bacterial infection and endotoxic shock in mice lacking inducible nitric oxide synthase , 1995, Cell.
[85] T. Sarna,et al. Antioxidant action of neuromelanin: the mechanism of inhibitory effect on lipid peroxidation. , 1995, Archives of biochemistry and biophysics.
[86] Alan W. Stitt,et al. Nitric oxide synthase activity and expression in retinal capillary endothelial cells and pericytes. , 1995, Current eye research.
[87] A. Sommer,et al. Nitric oxide generation during cellular metabolization of the diabetogenic N-methyl-N-nitroso-urea streptozotozin contributes to islet cell DNA damage. , 1995, Biological chemistry Hoppe-Seyler.
[88] J. Forrester,et al. Rat retinal pigment epithelial cells express an inducible form of nitric oxide synthase and produce nitric oxide in response to inflammatory cytokines and activated T cells. , 1994, Immunology.
[89] A. D. de Vos,et al. Expression of multiple cytokines and IL-1RA in the uvea and retina during endotoxin-induced uveitis in the rat. , 1994, Investigative ophthalmology & visual science.
[90] Y. Courtois,et al. Induction and Regulation of Nitric Oxide Synthase in Retinal Müller Glial Cells , 1994, Journal of neurochemistry.
[91] G. Zajac,et al. The fundamental unit of synthetic melanin: a verification by tunneling microscopy of X-ray scattering results. , 1994, Biochimica et biophysica acta.
[92] Y. Vodovotz,et al. Mechanism of suppression of nitric oxide synthase expression by interleukin‐4 in primary mouse macrophages , 1994, Journal of leukocyte biology.
[93] Y. Courtois,et al. Human retinal pigmented epithelial cells produce nitric oxide in response to cytokines. , 1994, Biochemical and biophysical research communications.
[94] Y. Vodovotz,et al. Mechanisms of suppression of macrophage nitric oxide release by transforming growth factor beta , 1993, The Journal of experimental medicine.
[95] J. Forrester,et al. Retinal pigment epithelial cells modulate lymphocyte function at the blood-retina barrier by autocrine PGE2 and membrane-bound mechanisms. , 1993, Cellular immunology.
[96] W. S. Enochs,et al. A standardized test for the identification and characterization of melanins using electron paramagnetic resonance (EPR) spectroscopy. , 1993, Pigment cell research.
[97] M. Chedekel,et al. Melanin standard method: particle description. , 1992, Pigment cell research.
[98] A. Sher,et al. IL-10 synergizes with IL-4 and transforming growth factor-beta to inhibit macrophage cytotoxic activity. , 1992, Journal of immunology.
[99] A. D. de Vos,et al. Cytokines and uveitis, a review. , 1992, Current eye research.
[100] T. Wilczok,et al. Antioxidative activity of synthetic melanins. Cardiolipin liposome model. , 1992, Biochimica et biophysica acta.
[101] R. Glickman,et al. OXIDATION OF ASCORBIC ACID AS AN INDICATOR OF PHOTOOXIDATIVE STRESS IN THE EYE , 1992, Photochemistry and photobiology.
[102] C. Viappiani,et al. Direct evidence of electron-phonon interaction in melanins. , 1991, Journal of photochemistry and photobiology. B, Biology.
[103] V. Hearing,et al. Enzymatic control of pigmentation in mammals , 1991, FASEB journal : official publication of the Federation of American Societies for Experimental Biology.
[104] J. Albina,et al. Nitric oxide production is required for murine resident peritoneal macrophages to suppress mitogen-stimulated T cell proliferation. Role of IFN-gamma in the induction of the nitric oxide-synthesizing pathway. , 1991, Journal of immunology.
[105] S. Moncada,et al. Nitric oxide: physiology, pathophysiology, and pharmacology. , 1991, Pharmacological reviews.
[106] J. Forrester,et al. Interactions between lymphocytes and cells of the blood-retina barrier: mechanisms of T lymphocyte adhesion to human retinal capillary endothelial cells and retinal pigment epithelial cells in vitro. , 1990, Immunology.
[107] T. Sarna,et al. Bleaching of melanin pigments. Role of copper ions and hydrogen peroxide in autooxidation and photooxidation of synthetic dopa-melanin. , 1990, The Journal of biological chemistry.
[108] C. Corsaro,et al. Lipid peroxidation in pigmented and unpigmented liver tissues: protective role of melanin. , 1989, Pigment cell research.
[109] G. Prota. Progress in the chemistry of melanins and related metabolites , 1988, Medicinal research reviews.
[110] M. Ostrovsky,et al. An antioxidative role of ocular screening pigments , 1987, Vision Research.
[111] M. Chedekel,et al. PHOTOINITIATED DNA DAMAGE BY MELANOGENIC INTERMEDIATES IN VITRO , 1986, Photochemistry and photobiology.
[112] E. Land,et al. Interaction of radicals from water radiolysis with melanin. , 1986, Biochimica et biophysica acta.
[113] T. Sarna,et al. PHOTOSENSITIZATION OF MELANIN: AN ELECTRON SPIN RESONANCE STUDY OF SENSITIZED RADICAL PRODUCTION AND OXYGEN CONSUMPTION , 1984, Photochemistry and photobiology.
[114] K. Jimbow,et al. Characterization of melanogenesis and morphogenesis of melanosomes by physicochemical properties of melanin and melanosomes in malignant melanoma. , 1984, Cancer research.
[115] R. Kastelein,et al. Understanding the IL-23-IL-17 immune pathway. , 2006, Trends in immunology.
[116] R. Caspi. Immune mechanisms in uveitis , 2004, Springer Seminars in Immunopathology.
[117] S. Gordon. Alternative activation of macrophages , 2003, Nature Reviews Immunology.
[118] T. Sarna,et al. Loss of melanin from human RPE with aging: possible role of melanin photooxidation. , 2003, Experimental eye research.
[119] J. Forrester,et al. Leukocyte trafficking in experimental autoimmune uveitis: breakdown of blood-retinal barrier and upregulation of cellular adhesion molecules. , 2003, Investigative ophthalmology & visual science.
[120] C. Mills. Macrophage arginine metabolism to ornithine/urea or nitric oxide/citrulline: a life or death issue. , 2001, Critical reviews in immunology.
[121] J. Greenwood,et al. The effect of TNF-α and IL-6 on the permeability of the rat blood-retinal barrier in vivo , 1996, Acta Neuropathologica.
[122] Hearing Vj. Unraveling the melanocyte. , 1993 .
[123] J. Forrester,et al. Adhesion molecule expression in acute and fibrotic sympathetic ophthalmia. , 1993, Current eye research.
[124] C. Corsaro,et al. In vitro scavenger activity of some flavonoids and melanins against O2-(.). , 1991, Free radical biology & medicine.
[125] R. W. Young. Solar radiation and age-related macular degeneration. , 1988, Survey of ophthalmology.
[126] J. Forrester,et al. Experimental autoimmune uveitis (EAU): immunophenotypic analysis of inflammatory cells in chorio retinal lesions. , 1988, Current eye research.
[127] T. Sarna,et al. The effect of melanin on iron associated decomposition of hydrogen peroxide. , 1988, Free radical biology & medicine.
[128] T. G. Truscott,et al. Photochemical studies of porphyrin–melanin interactions , 1986 .
[129] W. Koppenol,et al. Energetics of interconversion reactions of oxyradicals , 1985 .