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A flexible and highly sensitive organic electrochemical transistor-based biosensor for continuous and wireless nitric oxide detection

As nitric oxide (NO) plays significant roles in a variety of physiological processes, the capability for real-time and accurate detection of NO in live organisms is in great demand. Traditional assessments of NO rely on indirect colorimetric techniques or electrochemical sensors that often comprise...

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Autores principales: Deng, Yuping, Qi, Hui, Ma, Yuan, Liu, Shangbin, Zhao, Mingyou, Guo, Zhenhu, Jie, Yongsheng, Zheng, Rui, Jing, Jinzhu, Chen, Kuntao, Ding, He, Lv, Guoqing, Zhang, Kaiyuan, Li, Rongfeng, Cheng, Huanyu, Zhao, Lingyun, Sheng, Xing, Zhang, Milin, Yin, Lan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: National Academy of Sciences 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9407321/
https://www.ncbi.nlm.nih.gov/pubmed/35972962
http://dx.doi.org/10.1073/pnas.2208060119
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author Deng, Yuping
Qi, Hui
Ma, Yuan
Liu, Shangbin
Zhao, Mingyou
Guo, Zhenhu
Jie, Yongsheng
Zheng, Rui
Jing, Jinzhu
Chen, Kuntao
Ding, He
Lv, Guoqing
Zhang, Kaiyuan
Li, Rongfeng
Cheng, Huanyu
Zhao, Lingyun
Sheng, Xing
Zhang, Milin
Yin, Lan
author_facet Deng, Yuping
Qi, Hui
Ma, Yuan
Liu, Shangbin
Zhao, Mingyou
Guo, Zhenhu
Jie, Yongsheng
Zheng, Rui
Jing, Jinzhu
Chen, Kuntao
Ding, He
Lv, Guoqing
Zhang, Kaiyuan
Li, Rongfeng
Cheng, Huanyu
Zhao, Lingyun
Sheng, Xing
Zhang, Milin
Yin, Lan
author_sort Deng, Yuping
collection PubMed
description As nitric oxide (NO) plays significant roles in a variety of physiological processes, the capability for real-time and accurate detection of NO in live organisms is in great demand. Traditional assessments of NO rely on indirect colorimetric techniques or electrochemical sensors that often comprise rigid constituent materials and can hardly satisfy sensitivity and spatial resolution simultaneously. Here, we report a flexible and highly sensitive biosensor based on organic electrochemical transistors (OECTs) capable of continuous and wireless detection of NO in biological systems. By modifying the geometry of the active channel and the gate electrodes of OECTs, devices achieve optimum signal amplification of NO. The sensor exhibits a low response limit, a wide linear range, high sensitivity, and excellent selectivity, with a miniaturized active sensing region compared with a conventional electrochemical sensor. The device demonstrates continuous detection of the nanomolar range of NO in cultured cells for hours without significant signal drift. Real-time and wireless measurement of NO is accomplished for 8 d in the articular cavity of New Zealand White rabbits with anterior cruciate ligament (ACL) rupture injuries. The observed high level of NO is associated with the onset of osteoarthritis (OA) at the later stage. The proposed device platform could provide critical information for the early diagnosis of chronic diseases and timely medical intervention to optimize therapeutic efficacy.
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spelling pubmed-94073212023-02-16 A flexible and highly sensitive organic electrochemical transistor-based biosensor for continuous and wireless nitric oxide detection Deng, Yuping Qi, Hui Ma, Yuan Liu, Shangbin Zhao, Mingyou Guo, Zhenhu Jie, Yongsheng Zheng, Rui Jing, Jinzhu Chen, Kuntao Ding, He Lv, Guoqing Zhang, Kaiyuan Li, Rongfeng Cheng, Huanyu Zhao, Lingyun Sheng, Xing Zhang, Milin Yin, Lan Proc Natl Acad Sci U S A Physical Sciences As nitric oxide (NO) plays significant roles in a variety of physiological processes, the capability for real-time and accurate detection of NO in live organisms is in great demand. Traditional assessments of NO rely on indirect colorimetric techniques or electrochemical sensors that often comprise rigid constituent materials and can hardly satisfy sensitivity and spatial resolution simultaneously. Here, we report a flexible and highly sensitive biosensor based on organic electrochemical transistors (OECTs) capable of continuous and wireless detection of NO in biological systems. By modifying the geometry of the active channel and the gate electrodes of OECTs, devices achieve optimum signal amplification of NO. The sensor exhibits a low response limit, a wide linear range, high sensitivity, and excellent selectivity, with a miniaturized active sensing region compared with a conventional electrochemical sensor. The device demonstrates continuous detection of the nanomolar range of NO in cultured cells for hours without significant signal drift. Real-time and wireless measurement of NO is accomplished for 8 d in the articular cavity of New Zealand White rabbits with anterior cruciate ligament (ACL) rupture injuries. The observed high level of NO is associated with the onset of osteoarthritis (OA) at the later stage. The proposed device platform could provide critical information for the early diagnosis of chronic diseases and timely medical intervention to optimize therapeutic efficacy. National Academy of Sciences 2022-08-16 2022-08-23 /pmc/articles/PMC9407321/ /pubmed/35972962 http://dx.doi.org/10.1073/pnas.2208060119 Text en Copyright © 2022 the Author(s). Published by PNAS. https://creativecommons.org/licenses/by-nc-nd/4.0/This article is distributed under Creative Commons Attribution-NonCommercial-NoDerivatives License 4.0 (CC BY-NC-ND) (https://creativecommons.org/licenses/by-nc-nd/4.0/) .
spellingShingle Physical Sciences
Deng, Yuping
Qi, Hui
Ma, Yuan
Liu, Shangbin
Zhao, Mingyou
Guo, Zhenhu
Jie, Yongsheng
Zheng, Rui
Jing, Jinzhu
Chen, Kuntao
Ding, He
Lv, Guoqing
Zhang, Kaiyuan
Li, Rongfeng
Cheng, Huanyu
Zhao, Lingyun
Sheng, Xing
Zhang, Milin
Yin, Lan
A flexible and highly sensitive organic electrochemical transistor-based biosensor for continuous and wireless nitric oxide detection
title A flexible and highly sensitive organic electrochemical transistor-based biosensor for continuous and wireless nitric oxide detection
title_full A flexible and highly sensitive organic electrochemical transistor-based biosensor for continuous and wireless nitric oxide detection
title_fullStr A flexible and highly sensitive organic electrochemical transistor-based biosensor for continuous and wireless nitric oxide detection
title_full_unstemmed A flexible and highly sensitive organic electrochemical transistor-based biosensor for continuous and wireless nitric oxide detection
title_short A flexible and highly sensitive organic electrochemical transistor-based biosensor for continuous and wireless nitric oxide detection
title_sort flexible and highly sensitive organic electrochemical transistor-based biosensor for continuous and wireless nitric oxide detection
topic Physical Sciences
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9407321/
https://www.ncbi.nlm.nih.gov/pubmed/35972962
http://dx.doi.org/10.1073/pnas.2208060119
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