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Nitric oxide detection by electrochemistry selective probe: calibration in the study environment is mandatory

delete2025-06-02
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PRE
AI
R
Roberta Albino dos Reis
A
Ariane Boudier
F
Flavian Piquard
J
Joana C. PIERETI
A
Amedea B. Seabra
I
Igor Clarot *
DOI:10.1016/j.niox.2025.04.002delete
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Abstract

Abstract

En 中文
Nitric oxide (NO) plays a crucial role in various physiological processes, making its detection and controlled release significant for both therapeutic and environmental contexts. Electrochemical sensors are widely used for NO detection due to their high sensitivity and real-time monitoring capabilities. However, challenges such as interference from other gasotransmitters, sensor degradation, and calibration difficulties-especially in complex biological matrices-hinder accurate NO measurement. This review discusses recent advancements in electrochemical NO detection, with a focus on the impact of complex biological matrices, calibration strategies, and sensor designs. The release of NO from nanoparticles, such as S-nitrosoglutathione (GSNO)-encapsulating chitosan nanoparticles, is used as a case study for improving NO detection accuracy. Future innovations in sensor technology and nanoparticle design are expected to expand the applicability of NO detection in personalized medicine and environmental monitoring.
Keywords:
Nitric oxide detection
Biological matrices
Electrochemical sensors
Nanotechnology
Calibration curves

Journal

N
Nitric Oxide-Biology and Chemistry
IF:
3.2
Papers:
3.9K
Citations:
4.5K

Organization

I
Inst Univ France IUF
Scholars:
41
Papers: 55
Citations: 18
F
Fed Univ ABC UFABC
Scholars:
67
Papers: 29
Citations: 6
U
Univ Lorraine
Scholars:
753
Papers: 441
Citations: 173
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