Li Junjie, LoBue Anthea, Heuser Sophia K, Cortese-Krott Miriam M
Myocardial Infarction Research Laboratory, Department of Cardiology, Pulmonology, and Angiology, Medical Faculty, Heinrich-Heine-University, 40225 Düsseldorf, Germany.
CARID, Cardiovascular Research Institute Düsseldorf, Medical Faculty, Heinrich-Heine-University, 40225 Düsseldorf, Germany.
Antioxidants (Basel). 2024 Jan 31;13(2):179. doi: 10.3390/antiox13020179.
Ozone-based chemiluminescence detection (CLD) has been widely applied for determining nitric oxide (NO) and its derived species in many different fields, such as environmental monitoring and biomedical research. In humans and animals, CLD has been applied to determine exhaled NO and NO metabolites in plasma and tissues. The main advantages of CLD are high sensitivity and selectivity for quantitative analysis in a wide dynamic range. Combining CLD with analytical separation techniques like chromatography allows for the analytes to be quantified with less disturbance from matrix components or impurities. Sampling techniques like microdialysis and flow injection analysis may be coupled to CLD with the possibility of real-time monitoring of NO. However, details and precautions in experimental practice need to be addressed and clarified to avoid wrong estimations. Therefore, using CLD as a detection tool requires a deep understanding of the sample preparation procedure and chemical reactions used for liberating NO from its derived species. In this review, we discuss the advantages and pitfalls of CLD for determining NO species, list the different applications and combinations with other analytical techniques, and provide general practical notes for sample preparation. These guidelines are designed to assist researchers in comprehending CLD data and in selecting the most appropriate method for measuring NO species.
基于臭氧的化学发光检测(CLD)已广泛应用于许多不同领域,如环境监测和生物医学研究中一氧化氮(NO)及其衍生物种的测定。在人类和动物中,CLD已用于测定呼出的NO以及血浆和组织中的NO代谢物。CLD的主要优点是在宽动态范围内进行定量分析时具有高灵敏度和选择性。将CLD与色谱等分析分离技术相结合,可以在基质成分或杂质干扰较小的情况下对分析物进行定量。微透析和流动注射分析等采样技术可以与CLD联用,实现对NO的实时监测。然而,实验实践中的细节和注意事项需要加以解决和澄清,以避免错误估计。因此,将CLD用作检测工具需要深入了解样品制备程序以及用于从其衍生物种中释放NO的化学反应。在本综述中,我们讨论了CLD在测定NO物种方面的优点和缺陷,列出了不同的应用以及与其他分析技术的组合,并提供了样品制备的一般实用注意事项。这些指南旨在帮助研究人员理解CLD数据,并选择最合适的方法来测量NO物种。