Publication

Integrative Nano-Bio Systems Laboratory

Journal

2024 MXene/Hydrogel-based bioelectronic nose for the direct evaluation of food spoilage in both liquid and gas-phase environments

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작성자 최고관리자 작성일 25-09-30 20:35

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Author
Jing Liu 1, Youngju Nam1, Danmin Choi, Yoonji Choi, Sang-Eun Lee, Honggyu Oh, Guangxian Wang, Seung Hwan Lee*, Yuan Liu*, Seunghun Hong*
Journal
Biosensors and Bioelectronics
Year
2024
Volume
256
Page
116260
Impact factor
10.5
Link
http://doi.org/10.1016/j.bios.2024.116260
Publication date
2024.07.15

Various bioelectronic noses have been recently developed for mimicking human olfactory systems. However, achieving direct monitoring of gas-phase molecules remains a challenge for the development of bioelectronic noses due to the instability of receptor and the limitations of its surrounding microenvironment. Here, we report a MXene/hydrogel-based bioelectronic nose for the sensitive detection of liquid and gaseous hexanal, a signature odorant from spoiled food. In this study, a conducting MXene/hydrogel structure was formed on a sensor via physical adsorption. Then, canine olfactory receptor 5269-embedded nanodiscs (cfOR5269NDs) which could selectively recognize hexanal molecules were embedded in the three-dimensional (3D) MXene/hydrogel structures using glutaraldehyde as a linker. Our MXene/hydrogel-based bioelectronic nose exhibited a high selectivity and sensitivity for monitoring hexanal in both liquid and gas phases. The bioelectronic noses could sensitively detect liquid and gaseous hexanal down to 10−18 M and 6.9 ppm, and they had wide detection ranges of 10−18 – 10−6 M and 6.9 – 32.9 ppm, respectively. Moreover, our bioelectronic nose allowed us to monitor hexanal levels in fish and milk. In this respect, our MXene/hydrogel-based bioelectronic nose could be a practical strategy for versatile applications such as food spoilage assessments in both liquid and gaseous systems.

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