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Ni-rGO Sensor Combined with Human Olfactory Receptor-Embedded Nanodiscs for Detecting Gas-Phase DMMP as a Simulant of Nerve Agents

Title
Ni-rGO Sensor Combined with Human Olfactory Receptor-Embedded Nanodiscs for Detecting Gas-Phase DMMP as a Simulant of Nerve Agents
Authors
Kim S.-O.Kim S.G.Ahn H.Yoo J.Jang J.Park T.H.
Ewha Authors
박태현
SCOPUS Author ID
박태현scopus
Issue Date
2023
Journal Title
ACS Sensors
ISSN
2379-3694JCR Link
Citation
ACS Sensors vol. 8, no. 8, pp. 3095 - 3103
Keywords
bioelectronic nosechemical warfare agentsDMMPgas sensorhuman olfactory receptornanodiscNi-rGO
Publisher
American Chemical Society
Indexed
SCIE; SCOPUS scopus
Document Type
Article
Abstract
Nerve agents are organophosphorus toxic chemicals that can inhibit acetylcholinesterase, leading to paralysis of the nervous system and death. Early detection of nerve agents is important for safety issues. Dimethyl methylphosphonate (DMMP) is widely used as a simulant of nerve agents, and many studies have been conducted using DMMP as a substitute for detecting nerve agents. Despite many studies on sensors for detecting DMMP, they have limitations in sensitivity and selectivity. To overcome these limitations, a nickel-decorated reduced graphene oxide (Ni-rGO) sensor with human olfactory receptor hOR2T7 nanodiscs was utilized to create a bioelectronic nose platform for DMMP gas detection. hOR2T7 was produced and reconstituted into nanodiscs for enhancing the sensor’s stability, especially for detection in a gas phase. It could detect DMMP gas selectively and repeatedly at a concentration of 1 ppb. This sensitive and selective bioelectronic nose can be applied as a practical tool for the detection of gaseous chemical warfare agents in military and safety fields. © 2023 American Chemical Society
DOI
10.1021/acssensors.3c00744
Appears in Collections:
신산업융합대학 > 식품영양학과 > Journal papers
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