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Title: Sensitive and responsive upconversion nanoprobes for fluorescence turn-on detection of glucose concentration
Authors: Zha, S
Li, H
Law, GL 
Wong, KL
All, AH
Issue Date: Mar-2023
Source: Materials and design, Mar. 2023, v. 227, 111800
Abstract: Various approaches for detecting glucose concentration in real time are emerging at a breakneck pace. Glucose metabolism is closely linked to severe pathological events, which would either cause or predispose many progressive diseases in human. Herein, hydrophilic upconversion nanoprobes NaGdF4: Yb3+, Er3+@Ag anchored with glucose oxidase (GOx) for glucose detection with lower detection limits have been efficaciously constructed. In the upconversion nanoprobes, NaGdF4: Yb3+, Er3+ cores, and Ag layers act as energy donors and effective quenchers, respectively, through energy transfer. Moreover, the layer of Ag may disintegrate by H2O2 in the presence of glucose when glucose oxidase anchoring on the exterior of NaGdF4: Yb3+, Er3+@Ag nanoprobes, which leads to the phenomenon of upconverting emission recovery. Additionally, NaGdF4: Yb3+, Er3+@Ag-GOx has an ultralow detection limit of 1.77 μmol L−1 on glucose detection, and it can achieve optical bioimaging to distinguish cancer cells from normal cells. As a result, the NaGdF4: Yb3+, Er3+@Ag nanoprobes could be expanded to detect diverse H2O2-involved analytes. Overall, this nanoprobe has promising potential to be a compelling tool for the biomedical applications.
Keywords: Glucose detection
Lanthanide-doped upconversion nanoparticles
Optical bioimaging
Surface modification
Upconversion emission recovery
Publisher: Elsevier
Journal: Materials and design 
ISSN: 0264-1275
EISSN: 1873-4197
DOI: 10.1016/j.matdes.2023.111800
Rights: © 2023 The Author(s). Published by Elsevier Ltd. This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
The following publication Zha, S., Li, H., Law, G. L., Wong, K. L., & All, A. H. (2023). Sensitive and responsive upconversion nanoprobes for fluorescence turn-on detection of glucose concentration. Materials & Design, 227, 111800 is availale at https://doi.org/10.1016/j.matdes.2023.111800.
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