共 36 条
[1]
Rao N.A., Role of oxygen free radicals in retinal damage associated with experimental uveitis, Trans Am Ophthalmol Soc, 88, pp. 797-850, (1990)
[2]
Caspi R.R., Experimental autoimmune uveoretinitis in the rat and mouse, Curr Protoc Immunol Chapter, 15, (2003)
[3]
Saraswathy S., Rao N.A., Mitochondrial proteomics in experimental autoimmune uveitis oxidative stress, Invest Ophthalmol Vis Sci, 50, 12, pp. 5559-5566, (2009)
[4]
Saraswathy S., Nguyen A.M., Rao N.A., The role of tlr4 in photoreceptor {alpha}a crystallin upregulation during early experimental autoimmune uveitis, Invest Ophthalmol Vis Sci, 51, 7, pp. 3680-3686, (2010)
[5]
Saraswathy S., Rao N.A., Photoreceptor mitochondrial oxidative stress in experimental autoimmune uveitis, Ophthalmic Res, 40, 3-4, pp. 160-164, (2008)
[6]
Wu G.S., Lee T.D., Moore R.E., Rao N.A., Photoreceptor mitochondrial tyrosine nitration in experimental uveitis, Invest Ophthalmol Vis Sci, 46, 7, pp. 2271-2281, (2005)
[7]
Khurana R.N., Parikh J.G., Saraswathy S., Wu G.S., Rao N.A., Mitochondrial oxidative DNA damage in experimental autoimmune uveitis, Invest Ophthalmol Vis Sci, 49, 8, pp. 3299-3304, (2008)
[8]
Caspi R., Autoimmunity in the immune privileged eye: Pathogenic and regulatory t cells, Immunol Res, 42, 1-3, pp. 41-50, (2008)
[9]
Luger D., Silver P.B., Tang J., Cua D., Chen Z., Iwakura Y., Bowman E.P., Sgambellone N.M., Chan C.C., Caspi R.R., Either a th17 or a th1 effector response can drive autoimmunity: Conditions of disease induction affect dominant effector category, J Exp Med, 205, 4, pp. 799-810, (2008)
[10]
Rao N.A., Wu G.S., Free radical mediated photoreceptor damage in uveitis, Prog Retin Eye Res, 19, 1, pp. 41-68, (2000)