Department of Mechanical Engineering, Khalifa University of Science and Technology, Abu Dhabi, United Arab Emirates.
Department of Chemical Engineering, Imperial College London, London SW7 2AZ, United Kingdom.
ACS Sens. 2021 Jun 25;6(6):2046-2076. doi: 10.1021/acssensors.1c00370. Epub 2021 May 27.
Advances in multifunctional materials and technologies have allowed contact lenses to serve as wearable devices for continuous monitoring of physiological parameters and delivering drugs for ocular diseases. Since the tear fluids comprise a library of biomarkers, direct measurement of different parameters such as concentration of glucose, urea, proteins, nitrite, and chloride ions, intraocular pressure (IOP), corneal temperature, and pH can be carried out non-invasively using contact lens sensors. Microfluidic contact lens sensor based colorimetric sensing and liquid control mechanisms enable the wearers to perform self-examinations at home using smartphones. Furthermore, drug-laden contact lenses have emerged as delivery platforms using a low dosage of drugs with extended residence time and increased ocular bioavailability. This review provides an overview of contact lenses for ocular diagnostics and drug delivery applications. The designs, working principles, and sensing mechanisms of sensors and drug delivery systems are reviewed. The potential applications of contact lenses in point-of-care diagnostics and personalized medicine, along with the significance of integrating multiplexed sensing units together with drug delivery systems, have also been discussed.
多功能材料和技术的进步使得隐形眼镜可以作为可穿戴设备,用于持续监测生理参数并为眼部疾病输送药物。由于泪液包含生物标志物文库,因此可以使用隐形眼镜传感器非侵入式地直接测量各种参数,如葡萄糖、尿素、蛋白质、亚硝酸盐和氯离子、眼内压 (IOP)、角膜温度和 pH 值。基于微流控隐形眼镜传感器的比色传感和液体控制机制使佩戴者能够使用智能手机在家中进行自我检查。此外,载药隐形眼镜作为给药平台,使用低剂量的药物,延长了药物在眼部的滞留时间,提高了眼部生物利用度。本综述介绍了用于眼部诊断和药物输送应用的隐形眼镜。回顾了传感器和药物输送系统的设计、工作原理和传感机制。还讨论了隐形眼镜在即时诊断和个性化医疗中的潜在应用,以及将多路复用传感单元与药物输送系统集成的重要性。