Purpose: To determine whether the use of a blue light-filtering intraocular lens (IOL) prevents the onset of wet age-related macular degeneration (AMD). More precisely, we examined the proportion of blue light-filtering IOL in a wet AMD patients' sample and compared it with a general North American pseudophakic population sample.
Design: Retrospective case-control study.
Methods: Case patients were diagnosed and treated for wet AMD and had prior IOL implantation at least 3 years before the diagnosis of wet AMD. Control patients were randomly selected among patients who had cataract surgery at our institution. They were exempt of AMD and paired for the year of surgery, sex and age at cataract surgery. A total of 196 patients were included in each study group.
Results: Among patients with wet AMD, 62.8% had a blue light-filtering IOL compared with 63.3% among control patients (p = 0.92). Mean time between implantation and injection of anti-VEGF in AMD patients was 6.62 years (95% confidence interval (CI): 6.04-7.19) in non-blue light-filtering IOL group and 5.76 years (95% CI: 5.41-6.11) in blue light-filtering IOL group (p = 0.0120).
Conclusion: No correlations could be established between the presence of a blue light filter in the IOL and the occurrence of wet AMD. AMD patients without blue light-filtering IOL were injected significantly later than patients with an IOL filtering blue light, which contradict the potential clinical benefit of the blue light filter.
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http://dx.doi.org/10.2147/OPTH.S300461 | DOI Listing |
J Funct Biomater
December 2024
Department of Surgery, Division of Ophthalmology, University of Sherbrooke, Sherbrooke, QC J1G 2E8, Canada.
Intraocular lenses (IOLs) play a pivotal role in restoring vision following cataract surgery. The evolution of polymeric biomaterials has been central to addressing challenges such as biocompatibility, optical clarity, mechanical stability, and resistance to opacification. This review explores essential requirements for IOL biomaterials, emphasizing their ability to mitigate complications like posterior capsule opacification (PCO) and dysphotopsias while maintaining long-term durability and visual quality.
View Article and Find Full Text PDFHeliyon
November 2024
Vision at Johnson & Johnson, USA.
Purpose: To compare comfort outcomes between a novel daily disposable contact lens - designed to maximize comfort - and an established control. The hypothesis was that the test lens would be superior to the control for four key comfort questionnaire items: end-of-day comfort, all-day comfort, visual comfort while driving at night, and reduction of ocular fatigue from digital device use.
Methods: This randomized, controlled, subject-masked, parallel-arm study enrolled young (18-39 years), healthy, myopic, contact lens wearers with an up-to-date prescription at 19 investigational sites in the United States.
Antioxidants (Basel)
October 2024
Institut de la Vision, French National Institute of Health and Medical Research (INSERM), National Centre for Scientific Research (CNRS), Sorbonne Université, 75012 Paris, France.
Blue light accelerates retinal aging. Previous studies have indicated that wavelengths between 400 and 455 nm are most harmful to aging retinal pigment epithelia (RPE). This study explored whether filtering these wavelengths can protect cells exposed to broad sunlight.
View Article and Find Full Text PDFInvest Ophthalmol Vis Sci
September 2024
N. N. Emanuel Institute of Biochemical Physics, Russian Academy of Sciences, Moscow, Russia.
Purpose: The retinal pigment epithelium (RPE) is a monolayer of epithelial cells essential for photoreceptor function and viability. Quail Coturnix japonica is a convenient experimental animal model for the study of age and pathological retina processes to an accelerated time regime. The three main types of pigment granules present in the RPE are melanin-containing melanosomes, lipofuscin-containing lipofuscin granules, and mixed melanolipofuscin granules containing both melanin and lipofuscin.
View Article and Find Full Text PDFJ Thromb Haemost
January 2025
Department of Surgery, Trauma and Transfusion Medicine Research Center, University of Pittsburgh, Pittsburgh, Pennsylvania, USA; University of Pittsburgh Medical School, Pittsburgh, Pennsylvania, USA.
Background: Variations in light exposure are associated with changes in inflammation and coagulation. The impact of light spectra on venous thrombosis (VT) and arterial thrombosis is largely unexplored.
Objectives: To investigate the impact of altering light spectrum on platelet function in thrombosis.
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