Salih Ahmed E, Elsherif Mohamed, Alam Fahad, Yetisen Ali K, Butt Haider
Department of Mechanical Engineering, Khalifa University, Abu Dhabi, United Arab Emirates.
Department of Chemical Engineering, Imperial College London, London SW7 2AZ, United Kingdom.
ACS Nano. 2021 Mar 23;15(3):4870-4880. doi: 10.1021/acsnano.0c09657. Epub 2021 Feb 11.
Color vision deficiency (CVD) is an ocular congenital disorder that affects 8% of males and 0.5% of females. The most prevalent form of color vision deficiency (color blindness) affects protans and deutans and is more commonly known as "red-green color blindness". Since there is no cure for this disorder, CVD patients opt for wearables that aid in enhancing their color perception. The most common wearable used by CVD patients is a form of tinted glass/lens. Those glasses filter out the problematic wavelengths (540-580 nm) for the red-green CVD patients using organic dyes. However, few studies have addressed the fabrication of contact lenses for color vision deficiency, and several problems related to their effectiveness and toxicity were reported. In this study, gold nanoparticles are integrated into contact lens material, thus forming nanocomposite contact lenses targeted for red-green CVD application. Three distinct sets of nanoparticles were characterized and incorporated with the hydrogel material of the lenses (pHEMA), and their resulting optical and material properties were assessed. The transmission spectra of the developed nanocomposite lenses were analogous to those of the commercial CVD wearables, and their water retention and wettability capabilities were superior to those in some of the commercially available contact lenses used for cosmetic/vision correction purposes. Hence, this work demonstrates the potential of gold nanocomposite lenses in CVD management and, more generally, color filtering applications.
色觉缺陷(CVD)是一种眼部先天性疾病,影响8%的男性和0.5%的女性。最常见的色觉缺陷形式(色盲)影响红色盲和绿色盲患者,通常被称为“红绿色盲”。由于这种疾病无法治愈,CVD患者选择使用可穿戴设备来帮助增强他们的颜色感知。CVD患者最常用的可穿戴设备是一种有色玻璃/镜片。这些眼镜使用有机染料滤除红绿色CVD患者的问题波长(540-580纳米)。然而,很少有研究涉及用于色觉缺陷的隐形眼镜的制造,并且报道了一些与其有效性和毒性相关的问题。在本研究中,金纳米颗粒被整合到隐形眼镜材料中,从而形成针对红绿色CVD应用的纳米复合隐形眼镜。对三组不同的纳米颗粒进行了表征,并将其与镜片的水凝胶材料(聚甲基丙烯酸羟乙酯)结合,评估了其光学和材料性能。所开发的纳米复合镜片的透射光谱与商业CVD可穿戴设备的光谱相似,并且它们的保水和润湿性能力优于一些用于美容/视力矫正目的的市售隐形眼镜。因此,这项工作证明了金纳米复合镜片在CVD管理以及更广泛的颜色过滤应用中的潜力。