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Bioengineering a glucose oxidase nanosensor for near-infrared continuous glucose monitoring.


ABSTRACT: Single-walled carbon nanotubes (SWCNTs) emit photostable near-infrared (NIR) fluorescence that is conducive for optical glucose monitoring. Such SWCNT-based optical sensors often require the immobilization of proteins that can confer glucose selectivity and reactivity. In this work, we immobilize a glucose-reactive enzyme, glucose oxidase (GOx), onto SWCNTs using a N-(1-pyrenyl)maleimide (PM) crosslinker via thiol bioconjugation of engineered cysteine residues. We compare the conjugation of several glucose oxidase variants containing rationally-engineered cysteines and identify a D70C variant that shows effective bioconjugation. The bioconjugation was characterized through both absorption and fluorescence spectroscopy. Furthermore, we demonstrate an application for continuous glucose monitoring in the NIR-II optical region using the bioconjugated reaction solution, which shows a reversible response to physiological concentrations of glucose. Finally, we develop a miniaturized NIR-II reader to be used for cell cultures that require continuous glucose monitoring.

SUBMITTER: Zubkovs V 

PROVIDER: S-EPMC9154020 | biostudies-literature | 2022 May

REPOSITORIES: biostudies-literature

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Bioengineering a glucose oxidase nanosensor for near-infrared continuous glucose monitoring.

Zubkovs Vitalijs V   Wang Hanxuan H   Schuergers Nils N   Weninger Astrid A   Glieder Anton A   Cattaneo Stefano S   Boghossian Ardemis A AA  

Nanoscale advances 20220504 11


Single-walled carbon nanotubes (SWCNTs) emit photostable near-infrared (NIR) fluorescence that is conducive for optical glucose monitoring. Such SWCNT-based optical sensors often require the immobilization of proteins that can confer glucose selectivity and reactivity. In this work, we immobilize a glucose-reactive enzyme, glucose oxidase (GOx), onto SWCNTs using a <i>N</i>-(1-pyrenyl)maleimide (PM) crosslinker <i>via</i> thiol bioconjugation of engineered cysteine residues. We compare the conju  ...[more]

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