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接触镜传感器在眼部诊断中的应用。

Contact lens sensors in ocular diagnostics.

机构信息

Department of Chemical Engineering, Imperial College London, South Kensington Campus, London, SW7 2AZ, UK.

出版信息

Adv Healthc Mater. 2015 Apr 22;4(6):792-810. doi: 10.1002/adhm.201400504. Epub 2014 Nov 17.

Abstract

Contact lenses as a minimally invasive platform for diagnostics and drug delivery have emerged in recent years. Contact lens sensors have been developed for analyzing the glucose composition of tears as a surrogate for blood glucose monitoring and for the diagnosis of glaucoma by measuring intraocular pressure. However, the eye offers a wider diagnostic potential as a sensing site and therefore contact lens sensors have the potential to improve the diagnosis and treatment of many diseases and conditions. With advances in polymer synthesis, electronics and micro/nanofabrication, contact lens sensors can be produced to quantify the concentrations of many biomolecules in ocular fluids. Non- or minimally invasive contact lens sensors can be used directly in a clinical or point-of-care setting to monitor a disease state continuously. This article reviews the state-of-the-art in contact lens sensor fabrication, their detection, wireless powering, and readout mechanisms, and integration with mobile devices and smartphones. High-volume manufacturing considerations of contact lenses are also covered and a case study of an intraocular pressure contact lens sensor is provided as an example of a successful product. This Review further analyzes the contact lens market and the FDA regulatory requirements for commercialization of contact lens sensors.

摘要

近年来,隐形眼镜作为一种微创平台,在诊断和药物输送方面的应用已经出现。隐形眼镜传感器已经被开发出来,用于分析泪液中的葡萄糖成分,作为血糖监测的替代方法,以及通过测量眼压来诊断青光眼。然而,眼睛作为一个传感部位具有更广泛的诊断潜力,因此隐形眼镜传感器有可能改善许多疾病和病症的诊断和治疗。随着聚合物合成、电子和微纳加工技术的进步,隐形眼镜传感器可以用来定量检测眼液中许多生物分子的浓度。非侵入性或微创隐形眼镜传感器可以直接在临床或即时护理环境中使用,以连续监测疾病状态。本文综述了隐形眼镜传感器制造、检测、无线供电和读出机制的最新进展,以及与移动设备和智能手机的集成。还涵盖了隐形眼镜的大规模制造考虑因素,并提供了一个眼压隐形眼镜传感器的案例研究,作为成功产品的一个例子。本综述进一步分析了隐形眼镜市场和 FDA 对隐形眼镜传感器商业化的监管要求。

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