M Aravind, Saxena Ankur, Mishra Dhaneshwar, Singh Kulwant, George Sajan D
Manipal Institute of Applied Physics, Manipal Academy of Higher Education, Manipal, 576104, India.
Department of Mechanical Engineering, Manipal University Jaipur, Jaipur, 303007, India.
Microsyst Nanoeng. 2025 Apr 3;11(1):59. doi: 10.1038/s41378-025-00909-3.
Microfluidic contact lenses integrate microscale features that can efficiently and precisely manipulate, interact, and analyze the small volumes of tears available in the limited accessible space for the lens in the eye. The microfluidic network on contact lenses allows the miniaturization of biochemical operations on the wealth of physiological information available in the eye. Sensors integrated into channels enable real-time monitoring of ocular parameters, including glucose, pH, electrolytes, or other biomarkers. Additionally, microchannel-integrated contact lenses have demonstrated potential as power-free, continuous intraocular pressure monitoring platforms for the effective management of glaucoma. Furthermore, the controlled release of medications directly onto the eye from microfluidic contact lenses enhances therapeutic efficacy by increasing bioavailability. Despite current challenges such as scalable fabrication techniques, microfluidic contact lenses hold immense promise for ocular health, bridging the gap between diagnostics and treatment. This review summarizes the progress made in the design and fabrication of microfluidic contact lenses, with a special emphasis on the methods adopted to fabricate microfluidic contact lenses. Furthermore, the various applications of microfluidic contact lenses, ocular disease diagnosis, and drug delivery in particular are discussed in detail. Aside from outlining the state-of-the-art research activities in this area, challenges and future directions are discussed here.
微流控隐形眼镜集成了微观特征,能够在眼睛中镜片有限的可及空间内,对少量泪液进行高效且精确的操控、相互作用和分析。隐形眼镜上的微流控网络可实现对眼睛中丰富生理信息的生化操作的小型化。集成在通道中的传感器能够实时监测眼部参数,包括葡萄糖、pH值、电解质或其他生物标志物。此外,集成微通道的隐形眼镜已展现出作为无电源、连续眼压监测平台的潜力,可有效管理青光眼。此外,通过微流控隐形眼镜将药物直接释放到眼睛上,可提高生物利用度,从而增强治疗效果。尽管目前存在可扩展制造技术等挑战,但微流控隐形眼镜在眼部健康方面具有巨大潜力,可弥合诊断与治疗之间的差距。本文综述了微流控隐形眼镜在设计和制造方面取得的进展,特别强调了制造微流控隐形眼镜所采用的方法。此外,还详细讨论了微流控隐形眼镜的各种应用,尤其是眼部疾病诊断和药物递送。除了概述该领域的最新研究活动外,还讨论了挑战和未来方向。