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Development and validation of a novel fluorometric sensor for hydrogen peroxide monitoring in exhaled breath condensate

机译:呼出呼吸冷凝物中的过氧化氢传感器新型荧光传感器的开发与验证

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摘要

A novel fluorometric sensor based on catalyzed 5-aminosalicylic acid (5-ASA)/H2O2 systems was developed to detect trace levels of H2O2 in exhaled breath condensate (EBC). It relies on the oxidative conversion of the fluorophore (5-ASA) into its non-fluorescent product (5-ASAox). The fluorescence intensity of 5-ASA was lost by the reaction with H2O2 in the presence of horseradish peroxidase (HRP) or CuO nanoparticles (NPs). As the decrease in the fluorescence intensity is proportional to H2O2 concentration, new methods were developed for the monitoring of H2O2 in EBC samples using the HRP-and CuO NPcatalyzed 5-ASA/H2O2 assays. The methods were optimized and validated according to the standard validation techniques in EBC samples. Under the optimized experimental conditions, linear calibration graphs were obtained in the range of 200-8000 nmol L-1 and 50-500 nmol L-1 for the HRP-catalyzed and CuO NP-catalyzed 5-ASA/H2O2 assays, respectively. The limits of detection, evaluated as 3Sb/m (where Sb and m are the standard deviation of the blank and slope of the calibration curves, respectively), were found to be 137.0 nmol L-1 and 33.6 nmol L-1 for HRP-catalyzed and CuO NP-catalyzed 5-ASA/H2O2 systems, respectively. These developed systems are promising for application in the detection of trace amounts of H2O2 in oxidative stress studies.
机译:基于催化的5-氨基水杨酸(5-ASA)/ H 2 O 2系统的一种新型荧光传感器以检测呼出呼吸冷凝物(EBC)中的痕量H2O2。它依赖于荧光团(5-ASA)氧化转化为其非荧光产品(5- asaOx)。在辣根过氧化物酶(HRP)或CuO纳米颗粒(NPS)存在下,通过与H 2 O 2的反应失去5-ASA的荧光强度。随着荧光强度的降低与H 2 O 2浓度成比例,随着HRP-and CuO NPCAtalyzed 5-ASA / H 2 O 2测定的5-ASA / H 2 O 2测定,开发了用于监测EBC样品中H2O2的新方法。根据EBC样品中的标准验证技术进行了优化和验证了该方法。在优化的实验条件下,对于HRP催化和CuO NP催化的5-ASA / H2O2测定,获得了线性校准图。检测极限,评估为3SB / m(其中Sb和m分别是校准曲线的坯料的标准偏差),被发现为hrp的137.0 nmol l-1和33.6 nmol l-1催化和CuO NP催化的5-ASA / H 2 O 2系统。这些发达的系统在氧化应激研究中检测到痕量H2O2的检测中是有前途的。

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