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  4. Covalent conjugation of glucose oxidase on single-walled carbon nanotubes for glucose sensing
 
preprint

Covalent conjugation of glucose oxidase on single-walled carbon nanotubes for glucose sensing

Wang, Hanxuan  
•
Dehury, Subhasis  
•
Zubkovs, Vitalijs  
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October 15, 2024

Glucose sensing and monitoring are crucial for biological and medical applications. Compared to existing methods, real-time detection and long-term monitoring are still required. Single-walled carbon nanotubes (SWCNTs) have excellent optical properties for sensing applications, which provide the possibility for designing a new generation of glucose sensors. In this study, we describe a method for covalently conjugate glucose oxidase (GOx) on SWCNTs as an optical glucose sensor. The functional groups are introduced by a photocatalytic reaction which acts as the handle for protein loading on SWCNTs. In this sp3 defect reaction, the optical properties of SWCNTs can be maintained. With a convenient bioconjugation reaction, the GOx could be covalently linked with SWCNTs. Compared to the non-covalent immobilization conjugates, the covalent conjugate sensor exhibits a much stronger optical response toward glucose, and the stability of the biosensor also increases in harsh conditions. At the same time, we also report the changing ratio of the original E11 and defected E11* peak during the bioconjugation reaction, which is also inspiring for reaction monitoring on SWCNTs.

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Type
preprint
DOI
10.1101/2024.10.14.618143
Author(s)
Wang, Hanxuan  

EPFL

Dehury, Subhasis  

EPFL

Zubkovs, Vitalijs  
Reggente, Melania  

EPFL

Boghossian, Ardemis Anoush  

EPFL

Date Issued

2024-10-15

Publisher

BioRxiv

URL

View on BioRxiv

https://www.biorxiv.org/content/10.1101/2024.10.14.618143v1
Written at

EPFL

EPFL units
LNB  
FunderFunding(s)Grant NumberGrant URL

Swiss National Science Foundation

Near-infrared Optical Probing of Protein Interactions on Carbon Nanotubes

200021_184822

https://data.snf.ch/grants/grant/184822

European Research Council

853005

Available on Infoscience
November 18, 2024
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/242054
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