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Capillary Blood GSH Level Monitoring Using an Electrochemical Method Adapted for Micro Volumes

机译:毛细血管中GSH水平的监测采用适合微体积的电化学方法

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摘要

Glutathione (γ-glutamyl-cysteinyl-glycine; also known as GSH) is an endogenous antioxidant that plays a crucial role in cell defense mechanisms against oxidative stress. It is thus not surprising that this molecule can serve as a biomarker for oxidative stress monitoring. As capillary blood is a highly accessible target for biomarking, it is a valuable bodily fluid for diagnosing human GSH levels. This study focused on the optimization of GSH measurements from micro volumes of capillary blood prior to using electrochemical detection. The optimization of experimental parameters, including the sample volume and its stability, was performed and evaluated. Moreover, we tested the optimized method as part of a short-term study. The study consisted of examining 10 subjects within 96 h of their consumption of high amounts of antioxidants, attained from a daily dose of 2 g/150 mL of green tea. The subjects’ capillary blood (5 μL) was taken at 0 h, 48 h, and 96 h for subsequent analysis. The short-term supplementation of diet with green tea showed an increase of GSH pool by approximately 38% (between 0 and 48 h) within all subjects.
机译:谷胱甘肽(γ-谷氨酰-半胱氨酸-甘氨酸;也称为GSH)是一种内源性抗氧化剂,在细胞防御氧化应激的防御机制中起着至关重要的作用。因此,毫不奇怪,该分子可用作氧化应激监测的生物标记。由于毛细血管血是生物标记的高度可及的靶标,因此它是诊断人GSH水平的有价值的体液。这项研究的重点是在使用电化学检测之前,从微量毛细管血中优化GSH测量。进行并评估了实验参数的优化,包括样品量及其稳定性。此外,作为短期研究的一部分,我们测试了优化方法。这项研究包括检查10名受试者在每天摄入2 g / 150 mL绿茶后摄入的大量抗氧化剂后的96小时内。在0、48、96小时分别采集受试者的毛细血管血(5μL),以进行后续分析。在所有受试者中,短期补充绿茶饮食均显示GSH池增加了约38%(0至48小时之间)。

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