Literature DB >> 29774672

Glucose-sensitive silicone hydrogel contact lens toward tear glucose monitoring.

Ramachandram Badugu1, Edward Albert Reece2,3, Joseph R Lakowicz1.   

Abstract

Accurate and reliable monitoring of blood glucose is needed for the treatment of diabetes, which has many challenges, including lack of patient compliance. Measuring tear glucose is an alternative to traditional finger-stick tests used to track blood sugar levels, but glucose sensing using tears has yet to be achieved. We report a methodology for possible tear glucose monitoring using glucose-sensitive silicone hydrogel (SiHG) contact lenses, the primary type of lenses available in today's market. Initially, we assessed the interpenetrating polymer network, with nearly pure silicone and water regions, existing in the SiHGs using a polarity-sensitive probe Prodan. We then synthesized a glucose-sensitive fluorophore Quin-C18 with a hydrophobic side chain for localization of probe at the interfacial region. Using our glucose-sensing contact lens, we were able to measure varying concentrations of glucose in an in-vitro system. The Quin-C18 strongly bound to the lenses with insignificant leaching even after multiple rinses. The lenses displayed a similar response to glucose after three months of storage in water. This study demonstrates that it may be possible to develop a contact lens for continuous glucose monitoring in the near term, using our concept of fluorophore binding at the silicone-water interface. (2018) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE).

Entities:  

Keywords:  contact lens; diabetes mellitus; fluorescence spectroscopy and sensing; glucose monitoring; glucose sensors; tear glucose

Mesh:

Substances:

Year:  2018        PMID: 29774672      PMCID: PMC5956140          DOI: 10.1117/1.JBO.23.5.057005

Source DB:  PubMed          Journal:  J Biomed Opt        ISSN: 1083-3668            Impact factor:   3.170


  43 in total

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3.  Contact lens to measure individual ion concentrations in tears and applications to dry eye disease.

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Authors:  Adolfo Correa; Suzanne M Gilboa; Lilah M Besser; Lorenzo D Botto; Cynthia A Moore; Charlotte A Hobbs; Mario A Cleves; Tiffany J Riehle-Colarusso; D Kim Waller; E Albert Reece
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9.  Fluorescence sensors for monosaccharides based on the 6-methylquinolinium nucleus and boronic acid moiety: potential application to ophthalmic diagnostics.

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10.  Clinical experience of an iontophoresis based glucose measuring system.

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2.  Sodium-Sensitive Contact Lens for Diagnostics of Ocular Pathologies.

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Review 3.  Fouling in ocular devices: implications for drug delivery, bioactive surface immobilization, and biomaterial design.

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Review 4.  Non-Invasive Blood Glucose Monitoring Technology: A Review.

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Review 5.  Fiber Optic Sensors: A Review for Glucose Measurement.

Authors:  José Luis Cano Perez; Jaime Gutiérrez-Gutiérrez; Christian Perezcampos Mayoral; Eduardo L Pérez-Campos; Maria Del Socorro Pina Canseco; Lorenzo Tepech Carrillo; Laura Pérez-Campos Mayoral; Marciano Vargas Treviño; Edmundo López Apreza; Roberto Rojas Laguna
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Review 6.  Wearable Smart Contact Lenses for Continual Glucose Monitoring: A Review.

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Review 7.  Fluorescence Sensing Technologies for Ophthalmic Diagnosis.

Authors:  Yuqi Shi; Yubing Hu; Nan Jiang; Ali K Yetisen
Journal:  ACS Sens       Date:  2022-05-31       Impact factor: 9.618

Review 8.  Is Raman the best strategy towards the development of non-invasive continuous glucose monitoring devices for diabetes management?

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  8 in total

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