View clinical trials related to Age-Related Macular Degeneration.
Filter by:A 24 - month Study looking at the the changes in visual acuity of patients receiving PDT therapy in conjunction with intravitreal triamcinolone.
To determine whether VISUDYNE therapy in combination with 4 mg intravitreal triamcinolone will reduce the average loss from baseline of best corrected visual acuity (BCVA) as compared with Visudyne therapy without intravitreal triamcinolone at 12 months in subjects with occult subfoveal and minimally classic subfoveal CNV secondary to AMD. The intravitreal triamcinolone will be given as either a 1 mg or 4 mg dose. This study will also evaluate the safety of Visudyne therapy in combination with intravitreal triamcinolone. An interim statistical readout will be performed when the first 60 patients have completed 6 months of follow-up evaluation.
Age related macular degeneration is the leading cause of blindness for people over 50 in the western world. Blood vessels which start to grow form a lesion in the back of the eye. Verteporfin may stabilize the disease, by closing the blood vessels. This study will assess the efficacy and safety of verteporfin in patients with occult only lesions.
The purpose of the trial is to compare whether Macugen (pegaptanib sodium) in combination with PDT with Visudyne (verteporfin) is safe and effective in slowing down the leakage of fluid within the eye and thereby stabilizing or improving vision when compared to Macugen alone. Patients must be recently diagnosed with predominantly classic wet AMD and must be eligible for PDT.
AG-013,958 is being studied to treat patients with Age-Related Macular Degeneration. A total of 144 subjects may be enrolled in the trial. Subjects will be male or female at least 55 years of age with "wet" age-related macular degeneration.
The purpose of this project is to diagnose and evaluate ocular and related tissues with various diseases such as conjunctival, corneal, uveal, vitreoretinal and optic nerve disorders, ocular degenerative, metabolic or genetic diseases and tumors. These will be studied using light microscopy, electron microscopy, confocal microscopy, immunohistochemistry, molecular pathological including polymerase chain reaction and in situ hybridization, as well as measuring the functions of cellular organelles, e.g., mitochondrial function. Lymphocytes in the peripheral blood as well as other involved biopsied tissues and ocular tissue will be compared and categorized by disease. Cytokines, chemokines or growth factors and/or other released molecules in the blood and ocular fluids will be also analyzed. Elucidating the relationship between the infiltrating cells, ocular resident cells, and their products in various diseases will help us to make diagnoses and increase our understanding of human ocular disorders. Patients who require eye surgery to treat an eye disease or other disease in which the eye is involved may participate in this study. Samples of eye tissue and fluid that are normally removed and discarded during eye surgery will instead be given to researchers for study. The tissues will be examined under microscope and studied using sophisticated chemical and biological tests. Immune cells from blood samples may also be examined. These studies will help better understand and diagnose the various eye diseases and to develop more attractive therapies.