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H Andrew Strong

Publications and source records attributed to H Andrew Strong.

8 recordsLinked to original sources

Verteporfin therapy of subfoveal minimally classic choroidal neovascularization in age-related macular degeneration: 2-year results of a randomized clinical trial.

OBJECTIVE: To compare the treatment effect and safety of photodynamic therapy with verteporfin using a standard (SF) or reduced (RF) light fluence rate with that of placebo therapy in patients with subfoveal minimally classic choroidal neovascularization (CNV) with age-related macular degeneration. DESIGN: Phase 2, multicenter, double-masked, placebo-controlled, randomized clinical trial. SETTING: Nineteen ophthalmology practices in North America and Europe. PARTICIPANTS: Patients with initial best-corrected visual acuity of at least 20/250 and a lesion size of no greater than 6 Macular Photocoagulation Study (MPS) disc areas. METHODS: We randomly assigned 117 patients (1:1:1) to verteporfin infusion (6 mg/m(2)) and light application with an RF rate (300 mW/cm(2)) for 83 seconds (light dose of 25 J/cm(2)) or an SF rate (600 mW/cm(2)) for 83 seconds (light dose of 50 J/cm(2)) or to placebo infusion with RF or SF. Treatment was repeated every 3 months if the treating physician noted fluorescein leakage from CNV on angiography. Patients in whom a predominantly classic lesion developed could receive open-label standard verteporfin treatment. Best-corrected visual acuity was measured every 3 months, and angiographic changes were assessed by the Photograph Reading Center through the 3-month examination unless an ocular adverse event or conversion to a predominantly classic lesion was identified by an investigator. Safety was assessed throughout the study. All outcomes were on an intent-to-treat basis. RESULTS: One hundred three (88%) of 117 patients completed the 24-month examination. Twelve (30%) of 40 patients assigned to placebo received open-label standard verteporfin treatment after confirmation of presence of predominantly classic CNV. At month 12, a loss of at least 3 lines of visual acuity occurred in 5 (14%) of 36 eyes assigned to RF and 10 (28%) of 36 eyes assigned to SF, compared with 18 (47%) of 38 eyes assigned to placebo (RF, P = .002; SF, P = .08; RF + SF, P = .004). At month 24, this loss occurred in 9 (26%) of 34 eyes assigned to RF and 17 (53%) of 32 assigned to SF, compared with 23 (62%) of 37 eyes assigned to placebo (RF, P = .003; SF, P = .45; RF + SF, P = .03). Progression to predominantly classic CNV by 24 months was more common in the placebo group (11 [28%] of 39 patients compared with 2 [5%] of 38 in the RF group [P = .007] and 1 [3%] of 37 in the SF group [P = .002]). No unexpected ocular or systemic adverse events were identified. Treatment-related, usually transient visual disturbances were 13% with SF, 10% with placebo, and 5% with RF. CONCLUSIONS: Verteporfin therapy safely reduced the risks of losing at least 15 letters (> or =3 lines) of visual acuity and progression to predominantly classic CNV for at least 2 years in individuals with subfoveal minimally classic lesions due to age-related macular degeneration measuring 6 MPS disc areas or less. Based on the overall evidence available on verteporfin therapy for these lesions, the VIM Study Group would consider recommending verteporfin therapy for relatively small minimally classic lesions similar to those enrolled in the VIM Trial.

Aged↗

Acute severe visual acuity decrease after photodynamic therapy with verteporfin: case reports from randomized clinical trials-TAP and VIP report no. 3.

PURPOSE: To describe in detail occurrences of acute severe visual acuity decrease after photodynamic therapy (PDT) with verteporfin in the Treatment of Age-related macular degeneration with Photodynamic therapy (TAP) Investigation and the Verteporfin In Photodynamic therapy (VIP) Trial. DESIGN: Observational case series. METHODS: Retrospective review of all cases that developed acute severe visual acuity decrease after treatment. RESULTS: Of 15 acute severe visual acuity decrease events originally identified in 14 eyes of 14 patients, one event in one patient was judged unlikely to have been an acute severe visual acuity decrease event on retrospective review of these events in preparation of this report. Eleven events occurred after the first treatment. At follow-up, 10 improved by at least 1 line in visual acuity from the level noted at the time of the event. Of the nine patients returning for the month 24 examination, visual acuity decreased at least 3 lines from baseline in six, including at least 6 lines in four, and remained within 1 line in three. Associated abnormal morphology included three with a serous macular detachment and abnormal choroidal hypofluorescence, four with macular hemorrhage, three with a greenish subfoveal hemorrhage, and four with no abnormality. Events appeared to be more likely when patients had a visual acuity of 20/50 or better. CONCLUSIONS: Acute severe visual acuity decrease after PDT with verteporfin was an uncommon event; the risk did not outweigh the benefits of therapy previously reported. When considering verteporfin therapy, patients should be warned of the possibility of this serious adverse event.

Acute Disease↗

Photodynamic therapy of subfoveal choroidal neovascularization with verteporfin: fluorescein angiographic guidelines for evaluation and treatment--TAP and VIP report No. 2.

OBJECTIVE: To describe fluorescein angiographic guidelines for the use of verteporfin therapy in patients with subfoveal choroidal neovascularization (CNV) secondary to age-related macular degeneration (AMD) or other conditions based on 2-year vision outcomes from the Treatment of Age-Related Macular Degeneration With Photodynamic Therapy (TAP) Investigation and Verteporfin in Photodynamic Therapy (VIP) Trial. METHODS: Three multicenter, double-masked, placebo-controlled randomized clinical trials at 28 ophthalmology clinical centers in Europe and North America involving prospectively identified patients with best-corrected visual acuity (Snellen equivalent) of approximately 20/20 to 20/200, subfoveal CNV secondary to AMD or pathologic myopia with evidence of CNV, and a lesion greatest linear dimension of 5400 micro m or less. Fluorescein angiography was to be performed on all patients at enrollment and at regular 3-month follow-up visits through 2 years. The initial treatment laser spot size and all subsequent treatment decisions were based on the investigator's interpretation of these fluorescein angiograms. Photographic materials forwarded to the Wilmer Photograph Reading Center were reviewed by masked graders. MAIN OUTCOME MEASURES: Baseline angiographic features, including lesion composition and size, morphologic response to treatment during follow-up (eg, absence of leakage), and reliability (kappa values) of grading selected characteristics based on a 10% regrading of baseline visits. RESULTS: Terms and examples of different lesions and lesion components are provided to assist recognition of fluorescein angiographic characteristics of choroidal neovascular lesions that were important in determining when and where to apply verteporfin therapy. The kappa statistics for agreement of identification of lesion characteristics by the Wilmer Photograph Reading Center for these trials ranged from 0.70 to 0.85. CONCLUSIONS: Ophthalmologists should consider interpreting fluorescein angiographic images of subfoveal lesions with terms provided to follow recommendations regarding which patients are most likely to benefit from verteporfin therapy based on results from the TAP Investigation and VIP Trial.

Choroidal Neovascularization↗

Effect of lesion size, visual acuity, and lesion composition on visual acuity change with and without verteporfin therapy for choroidal neovascularization secondary to age-related macular degeneration: TAP and VIP report no. 1.

PURPOSE: To determine whether differences in baseline lesion size and visual acuity might explain differing results found in three different lesion compositions (predominantly classic, minimally classic, and occult with no classic) among three placebo-controlled, randomized clinical trials evaluating photodynamic therapy with verteporfin (Visudyne, Novartis AG), also termed verteporfin therapy, in patients with subfoveal choroidal neovascularization (CNV) due to age-related macular degeneration (AMD). METHODS: Exploratory analyses were conducted in patients with predominantly classic or minimally classic lesions at enrollment in the Treatment of AMD with Photodynamic Therapy (TAP) Investigation and in AMD patients with occult with no classic CNV in the Verteporfin In Photodynamic Therapy (VIP) Trial. Baseline characteristics of patients among these three lesion compositions were compared. In addition, multiple linear regression modeling was used to explore the effect of baseline lesion size, visual acuity, and lesion composition on mean change in visual acuity from baseline to 24 months. RESULTS: At baseline, the mean size of predominantly classic lesions (3.4 disk areas) was smaller than that of minimally classic (4.7 disk areas) and occult with no classic lesions (4.3 disk areas). In the multiple linear regression model of individual lesion compositions, there was a significant treatment-by-lesion-size interaction for minimally classic and occult with no classic lesions, but not for predominantly classic lesions. Interaction between treatment and baseline visual acuity was not significant for any lesion composition. Small verteporfin-treated lesions lost less vision than large verteporfin-treated lesions in each lesion composition. In the multiple linear regression model that included all lesion compositions, lesion size was a more significant predictive factor for the magnitude of treatment benefit than either lesion composition or visual acuity. Smaller (4.0 disk areas or less) minimally classic and occult with no classic lesions had similar visual acuity outcomes to those observed in predominantly classic lesions. CONCLUSIONS: Based on exploratory analyses, lesion size in the TAP Investigation and VIP Trial was an important predictor of the magnitude of treatment benefit with verteporfin therapy in occult with no classic and minimally classic lesion compositions. In patients with AMD, treating smaller rather than larger neovascular lesions, regardless of lesion composition, likely will result in a better level of visual acuity.

Aged↗

Verteporfin therapy of subfoveal choroidal neovascularization in pathologic myopia: 2-year results of a randomized clinical trial--VIP report no. 3.

PURPOSE: To report 24-month vision and fluorescein angiographic outcomes from trials evaluating photodynamic therapy with verteporfin in patients with subfoveal choroidal neovascularization (CNV) caused by pathologic myopia. DESIGN AND SETTING: Multicenter, double-masked, placebo-controlled, randomized clinical trial at 28 ophthalmology practices in Europe and North America. PARTICIPANTS: Patients with subfoveal choroidal neovascular lesions caused by pathologic myopia measuring no more than 5400 micro m and best-corrected visual acuity (approximate Snellen equivalent) of 20/100 or better. METHODS: Similar to methods described for 1-year results with follow-up examinations beyond 1 year, continuing every 3 months (except Photograph Reading Center evaluations only at the month 24 examination). During the second year, the same regimen (with verteporfin or placebo as applied at baseline) was used if angiography showed fluorescein leakage from CNV. MAIN OUTCOME MEASURES: The primary outcome was the proportion of eyes with fewer than 8 letters (approximately 1.5 lines) of visual acuity loss at the month 24 examination, adhering to an intent-to-treat analysis and using the last observation carried forward method to impute for any missing data. RESULTS: Seventy-seven of 81 patients (95%) in the verteporfin group, compared with 36 of 39 patients (92%) in the placebo group, completed the month 24 examination. At this time point, 29 of 81 verteporfin-treated patients (36%) compared with 20 of 39 placebo-treated patients (51%) lost at least 8 letters (P = 0.11). The distribution of change in visual acuity at the month 24 examination was in favor of a benefit for the cases assigned to verteporfin (P = 0.05). This included improvement by at least 5 letters (equivalent to at least 1 line) in 32 verteporfin-treated cases [40%] vs. five placebo-treated cases (13%) and improvement by at least 15 letters (equivalent to at least 3 lines) in 10 verteporfin-treated cases (12%) vs. zero placebo-treated cases. No additional photosensitivity adverse reactions or injection site adverse events were associated with verteporfin therapy in the second year of follow-up. CONCLUSIONS: Verteporfin therapy for subfoveal CNV caused by pathologic myopia safely maintained a visual benefit compared with a placebo therapy through 2 years of follow-up. Although the primary outcome was not statistically significantly in favor of verteporfin therapy at 2 years as it had been at 1 year of follow-up, the distribution of change in visual acuity at the month 24 examination was in favor of the verteporfin-treated group and showed that this group was more likely to have improved visual acuity through the month 24 examination. The VIP Study Group recommends verteporfin therapy for subfoveal CNV resulting from pathologic myopia based on both the 1- and 2-year results of this randomized clinical trial.

Adult↗

Verteporfin therapy of subfoveal choroidal neovascularization in patients with age-related macular degeneration: additional information regarding baseline lesion composition's impact on vision outcomes-TAP report No. 3.

OBJECTIVE: To explore how baseline lesion composition influenced vision outcomes in patients with age-related macular degeneration (AMD) undergoing photodynamic therapy with verteporfin (Visudyne) for subfoveal choroidal neovascularization (CNV) in the Treatment of Age-Related Macular Degeneration With Photodynamic Therapy Investigation. METHODS: Patients with subfoveal lesions secondary to AMD with evidence of classic CNV were categorized into 2 subgroups based on baseline color photographs and fluorescein angiograms assessed by graders at the Wilmer Photograph Reading Center (The Johns Hopkins University School of Medicine) before any outcome analyses as follows: (1) predominantly classic CNV (area of classic CNV >/=50% of the area of the entire lesion) or (2) minimally classic CNV (area of classic CNV <50% but >0% of the area of the entire lesion). Additional exploratory analyses were performed in the predominantly classic subgroup to investigate the effects of visual acuity, lesion size, prior laser photocoagulation, phakic status, micronutrient use, and presence of occult CNV on vision outcomes. MAIN OUTCOME MEASURES: Subgroup analyses of vision and fluorescein angiographic outcomes at 1 and 2 years after study enrollment were examined in an intent-to-treat analysis from 2 multicenter, double-masked, placebo-controlled, randomized clinical trials. RESULTS: Compared with patients who had minimally classic CNV, patients with predominantly classic CNV had a worse initial mean visual acuity and smaller lesions and were more likely to have lesions that included blood or blocked fluorescence. When evaluated by treatment assignment and lesion composition, 84% to 88% completed the month 24 examination. In the subgroup with predominantly classic lesions, visual acuity outcomes were consistently better in verteporfin-treated patients. Outcomes for patients with predominantly classic lesions without occult CNV tended to be better than outcomes for patients with predominantly classic lesions with occult CNV, although the former tended to have smaller lesions and lower levels of visual acuity at baseline. Contrast sensitivity and fluorescein angiographic outcomes (total lesion size, progression of classic CNV, and absence of classic CNV) were better in verteporfin-treated patients than in placebo-treated patients in the predominantly classic and the minimally classic CNV subgroups. In patients with predominantly classic CNV, no interaction of the treatment benefit by phakic status, micronutrient use, or prior laser photocoagulation therapy was noted. CONCLUSIONS: Verteporfin therapy can safely reduce the risk of moderate and severe vision loss in patients with subfoveal lesions that are predominantly classic CNV secondary to AMD. While this benefit seemed to be even greater in the absence of occult CNV, the effect may be related to the smaller lesions and worse visual acuity associated with predominantly classic lesions without occult CNV and not solely to the lesion composition itself. These analyses support initial reports that verteporfin therapy should be used to treat patients with AMD who have predominantly classic CNV, with or without occult CNV, but suggest that further investigations should be performed to determine if lesions with a minimally classic composition might benefit when they are smaller and have lower levels of visual acuity.

Aged↗

Duration of skin photosensitivity and incidence of photosensitivity reactions after administration of verteporfin.

BACKGROUND: Verteporfin (Visudyne, Novartis AG) is a light-activated drug that reduces the risk of vision loss in patients with certain types of choroidal neovascularization (CNV). Because photosensitivity can occur with photosensitizers, it is important for ophthalmologists providing verteporfin therapy to understand its time course and duration, as well as the incidence of photosensitivity reactions. METHODS: Data were obtained from three sources: 1) the time course of skin photosensitivity in 17 volunteers by measuring erythema/edema over time after verteporfin, using red light exposure; 2) the duration of skin photosensitivity in 30 patients with skin cancer by exposing skin to simulated solar light and calculating the daily minimal erythematous dose; and 3) the incidences of photosensitivity reactions as recorded in three phase III trials in patients with CNV secondary to age-related macular degeneration or pathologic myopia who received the regimen of verteporfin therapy currently approved by regulatory authorities (infusion of 6 mg/m(2) body surface area). RESULTS: 1) Skin photosensitivity was high at the first timepoint of 1.5 hours after dosing and decreased rapidly thereafter; 2) the duration of skin photosensitivity was dose dependent, ranging from 2.0 to 6.7 days at 6 to 20 mg/m(2), respectively (mean of 2 days at a dose of 6 mg/m(2)); and 3) photosensitivity reactions occurred in only 2.2% of patients in the phase III trials, including two severe events, one secondary to extravasation. All treatment-related reactions in the phase III trials occurred within the first 2 days after dosing, with the exception of two mild reactions and one moderate reaction that occurred 3 days after treatment. CONCLUSIONS: Verteporfin is associated with short-lived photosensitivity and a low incidence of photosensitivity reactions in clinical trials, most of which could probably have been avoided by adherence to protocol instructions for skin protection.

Adult↗