Combined photodynamic therapy with verteporfin and intravitreal triamcinolone acetonide for choroidal neovascularization. 2003

Richard F Spaide, and John Sorenson, and Leandro Maranan
Vitreous-Retina-Macula Consultants of New York, New York, New York 10021, USA.

OBJECTIVE To examine combined photodynamic therapy (PDT) with verteporfin and intravitreal triamcinolone acetonide for choroidal neovascularization (CNV) secondary to age-related macular degeneration (AMD). METHODS Noncomparative case series. METHODS Twenty-six eyes of 26 patients with CNV secondary to AMD. Thirteen with CNV, without restriction to type, were not treated with prior PDT and were called the Newly Treated group. Thirteen patients with prior PDT therapy who experienced visual loss during treatment with PDT alone comprised the remainder and were termed the Prior PDT group. METHODS Patients with CNV were treated with PDT immediately followed by an intravitreal injection of 4 mg of triamcinolone acetonide. Visual acuity was measured by Early Treatment Diabetic Retinopathy Study protocol refraction. Need for retreatment was based on fluorescein angiographic evidence of leakage at 3-month follow-up intervals. METHODS Visual acuity and retreatment rate. RESULTS Of the 13 patients in the Newly Treated group the mean visual acuity change at 3 months was an improvement of 1.9 lines, and 4 (30.8%) had an improvement of at least 3 lines. Two patients (15.4%) required retreatment at 3 months. At the 6-month follow-up, available for 12 patients in the Newly Treated group, the mean visual acuity change from baseline was an improvement of 2.4 lines, 4 patients (33%) had an improvement of at least 3 lines and 1 patient required retreatment. At both time points the visual acuity was significantly greater than at baseline (P = 0.023 and P = 0.007, at the 3-month and 6-month time points, Wilcoxon signed ranks test) for patients in the Newly Treated group. Among the 13 patients in the Prior PDT group, the mean change in visual acuity from baseline at the 3-month follow-up was 0.31 lines and 1 patient (7.7%) had an improvement of at least 3 lines. Six-month follow-up was available for 11 patients in the Prior PDT group and the mean change from baseline visual acuity was 0.1 lines and 1 patient (9.1%) experienced an improvement of 3 or more lines. No patient in the Prior PDT group required retreatment at 3 or 6 months. At the 3-month and 6-month time points the visual acuity was not significantly different than the baseline acuity in the Prior PDT group. No patient in either group at any time point experienced a loss of visual acuity of 3 or more lines. Five patients (19.2%), 3 in the Newly Treated group and 2 in the Prior PDT group, required monodrop therapy to control their intraocular pressure. No patient developed endophthalmitis. CONCLUSIONS Although the number of patients in this pilot study was limited, the improvement of acuity and the lack of fluorescein leakage in these patients suggest combination therapy with PDT and intravitreal triamcinolone acetonide, particularly when used as first-line therapy, merits further investigation.

UI MeSH Term Description Entries
D007267 Injections Introduction of substances into the body using a needle and syringe. Injectables,Injectable,Injection
D008268 Macular Degeneration Degenerative changes in the RETINA usually of older adults which results in a loss of vision in the center of the visual field (the MACULA LUTEA) because of damage to the retina. It occurs in dry and wet forms. Maculopathy,Maculopathy, Age-Related,Age-Related Macular Degeneration,Age-Related Maculopathies,Age-Related Maculopathy,Macular Degeneration, Age-Related,Macular Dystrophy,Maculopathies, Age-Related,Age Related Macular Degeneration,Age Related Maculopathies,Age Related Maculopathy,Age-Related Macular Degenerations,Degeneration, Macular,Dystrophy, Macular,Macular Degeneration, Age Related,Macular Degenerations,Macular Dystrophies,Maculopathies,Maculopathy, Age Related
D008297 Male Males
D010778 Photochemotherapy Therapy using oral or topical photosensitizing agents with subsequent exposure to light. Blue Light Photodynamic Therapy,Photodynamic Therapy,Red Light PDT,Red Light Photodynamic Therapy,Therapy, Photodynamic,Light PDT, Red,PDT, Red Light,Photochemotherapies,Photodynamic Therapies,Therapies, Photodynamic
D010865 Pilot Projects Small-scale tests of methods and procedures to be used on a larger scale if the pilot study demonstrates that these methods and procedures can work. Pilot Studies,Pilot Study,Pilot Project,Project, Pilot,Projects, Pilot,Studies, Pilot,Study, Pilot
D011166 Porphyrins A group of compounds containing the porphin structure, four pyrrole rings connected by methine bridges in a cyclic configuration to which a variety of side chains are attached. The nature of the side chain is indicated by a prefix, as uroporphyrin, hematoporphyrin, etc. The porphyrins, in combination with iron, form the heme component in biologically significant compounds such as hemoglobin and myoglobin. Porphyrin
D011446 Prospective Studies Observation of a population for a sufficient number of persons over a sufficient number of years to generate incidence or mortality rates subsequent to the selection of the study group. Prospective Study,Studies, Prospective,Study, Prospective
D004359 Drug Therapy, Combination Therapy with two or more separate preparations given for a combined effect. Combination Chemotherapy,Polychemotherapy,Chemotherapy, Combination,Combination Drug Therapy,Drug Polytherapy,Therapy, Combination Drug,Chemotherapies, Combination,Combination Chemotherapies,Combination Drug Therapies,Drug Polytherapies,Drug Therapies, Combination,Polychemotherapies,Polytherapies, Drug,Polytherapy, Drug,Therapies, Combination Drug
D005260 Female Females
D005451 Fluorescein Angiography Visualization of a vascular system after intravenous injection of a fluorescein solution. The images may be photographed or televised. It is used especially in studying the retinal and uveal vasculature. Fluorescence Angiography,Fundus Fluorescence Photography,Angiography, Fluorescein,Angiography, Fluorescence,Fluorescence Photography, Fundus,Photography, Fundus Fluorescence

Related Publications

Richard F Spaide, and John Sorenson, and Leandro Maranan
October 2007, Frontiers of medicine in China,
Richard F Spaide, and John Sorenson, and Leandro Maranan
June 2010, Clinical ophthalmology (Auckland, N.Z.),
Richard F Spaide, and John Sorenson, and Leandro Maranan
January 2007, Retina (Philadelphia, Pa.),
Richard F Spaide, and John Sorenson, and Leandro Maranan
December 2006, Indian journal of ophthalmology,
Richard F Spaide, and John Sorenson, and Leandro Maranan
August 2006, American journal of ophthalmology,
Richard F Spaide, and John Sorenson, and Leandro Maranan
January 2008, Ophthalmic surgery, lasers & imaging : the official journal of the International Society for Imaging in the Eye,
Richard F Spaide, and John Sorenson, and Leandro Maranan
January 2005, Retina (Philadelphia, Pa.),
Richard F Spaide, and John Sorenson, and Leandro Maranan
April 2006, American journal of ophthalmology,
Richard F Spaide, and John Sorenson, and Leandro Maranan
September 2007, Korean journal of ophthalmology : KJO,
Copied contents to your clipboard!