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Current Innovations in Intraocular Pressure Monitoring Biosensors for Diagnosis and Treatment of Glaucoma-Novel Strategies and Future Perspectives

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Specialty Biotechnology
Date 2023 Jun 27
PMID 37367028
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Abstract

Biosensors are devices that quantify biologically significant information required for diverse applications, such as disease diagnosis, food safety, drug discovery and detection of environmental pollutants. Recent advancements in microfluidics, nanotechnology and electronics have led to the development of novel implantable and wearable biosensors for the expedient monitoring of diseases such as diabetes, glaucoma and cancer. Glaucoma is an ocular disease which ranks as the second leading cause for loss of vision. It is characterized by the increase in intraocular pressure (IOP) in human eyes, which results in irreversible blindness. Currently, the reduction of IOP is the only treatment used to manage glaucoma. However, the success rate of medicines used to treat glaucoma is quite minimal due to their curbed bioavailability and reduced therapeutic efficacy. The drugs must pass through various barriers to reach the intraocular space, which in turn serves as a major challenge in glaucoma treatment. Rapid progress has been observed in nano-drug delivery systems for the early diagnosis and prompt therapy of ocular diseases. This review gives a deep insight into the current advancements in the field of nanotechnology for detecting and treating glaucoma, as well as for the continuous monitoring of IOP. Various nanotechnology-based achievements, such as nanoparticle/nanofiber-based contact lenses and biosensors that can efficiently monitor IOP for the efficient detection of glaucoma, are also discussed.

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References
1.
Kim Y, Chiang B, Wu X, Prausnitz M . Ocular delivery of macromolecules. J Control Release. 2014; 190:172-81. PMC: 4142116. DOI: 10.1016/j.jconrel.2014.06.043. View

2.
Abellan-Llobregat A, Jeerapan I, Bandodkar A, Vidal L, Canals A, Wang J . A stretchable and screen-printed electrochemical sensor for glucose determination in human perspiration. Biosens Bioelectron. 2017; 91:885-891. PMC: 5328638. DOI: 10.1016/j.bios.2017.01.058. View

3.
Dartt D, Willcox M . Complexity of the tear film: importance in homeostasis and dysfunction during disease. Exp Eye Res. 2013; 117:1-3. PMC: 4225770. DOI: 10.1016/j.exer.2013.10.008. View

4.
Kim J, Kim M, Lee M, Kim K, Ji S, Kim Y . Wearable smart sensor systems integrated on soft contact lenses for wireless ocular diagnostics. Nat Commun. 2017; 8:14997. PMC: 5414034. DOI: 10.1038/ncomms14997. View

5.
Albarqi H, Garg A, Ahmad M, Alqahtani A, Walbi I, Ahmad J . Recent Progress in Chitosan-Based Nanomedicine for Its Ocular Application in Glaucoma. Pharmaceutics. 2023; 15(2). PMC: 9963436. DOI: 10.3390/pharmaceutics15020681. View