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Surface Functionalization of Enzyme-Coronated Gold Nanoparticles with an Erythrocyte Membrane for Highly Selective Glucose Assays

Authors
Jang, Jae WonKim, HyunjiKim, InsuLee, Sang WonJung, Hyo GiHwang, Kyo SeonLee, Jeong HoonLee, GyudoLee, DongtakYoon, Dae Sung
Issue Date
3-5월-2022
Publisher
AMER CHEMICAL SOC
Citation
ANALYTICAL CHEMISTRY, v.94, no.17, pp.6473 - 6481
Indexed
SCIE
SCOPUS
Journal Title
ANALYTICAL CHEMISTRY
Volume
94
Number
17
Start Page
6473
End Page
6481
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/141738
DOI
10.1021/acs.analchem.1c04541
ISSN
0003-2700
Abstract
Colorimetric glucose sensors using enzyme coronated gold nanoparticles have been developed for high-throughput assays to monitor the blood glucose levels of diabetic patients. Although those sensors have shown sensitivity and wide linear detection ranges, they suffer from poor selectivity and stability in detecting blood glucose, which has limited their practical use. To address this limitation, herein, we functionalized glucose-oxidase-coronated gold nanoparticles with an erythrocyte membrane (EM-GOx-GNPs). Because the erythrocyte membrane (EM) selectively facilitates the permeation of glucose via glucose transporter-1 (GLUT1), the functionalization of GOx-GNPs with EM improved the stability, selectivity (3.3- to 15.8-fold higher), and limit of detection (LOD). Both membrane proteins, GLUT1 and aquaporin-1 (AQP1), on EM were shown to be key components for selective glucose detection by treatment with their inhibitors. Moreover, we demonstrated the stability of EM-GOx-GNPs in high-antioxidant-concentration conditions, under long-term storage (similar to 4 weeks) and a freeze-thaw cycle. Selectivity of the EM-GOx-GNPs against other saccharides was increased, which improved the LOD in phosphate-buffered saline and human serum. Our results indicated that the functionalization of colorimetric glucose sensors with EM is beneficial for improving selectivity and stability, which may make them candidates for use in a practical glucose sensor.
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