CBQF-Centro de Biotecnologia e Química Fina-Laboratório Associado, Escola Superior de Biotecnologia, Universidade Católica Portuguesa, Rua Diogo Botelho 1327, 4169-005 Porto, Portugal.
Molecules. 2021 Oct 21;26(21):6355. doi: 10.3390/molecules26216355.
In this work, the design of a microfluidic paper-based analytical device (μPAD) for the quantification of nitrate in urine samples was described. Nitrate monitoring is highly relevant due to its association to some diseases and health conditions. The nitrate determination was achieved by combining the selectivity of the nitrate reductase enzymatic reaction with the colorimetric detection of nitrite by the well-known Griess reagent. For the optimization of the nitrate determination μPAD, several variables associated with the design and construction of the device were studied. Furthermore, the interference of the urine matrix was evaluated, and stability studies were performed, under different conditions. The developed μPAD enabled us to obtain a limit of detection of 0.04 mM, a limit of quantification of 0.14 mM and a dynamic concentration range of 0.14-1.0 mM. The designed μPAD proved to be stable for 24 h when stored at room temperature in air or vacuum atmosphere, and 60 days when stored in vacuum at -20 °C. The accuracy of the nitrate μPAD measurements was confirmed by analyzing four certified samples (prepared in synthetic urine) and performing recovery studies using urine samples.
本工作描述了一种用于定量尿液样本中硝酸盐的微流控纸基分析装置(μPAD)的设计。由于硝酸盐与一些疾病和健康状况有关,因此对其进行监测非常重要。硝酸盐的测定是通过将硝酸还原酶酶反应的选择性与众所周知的格里斯试剂对亚硝酸盐的比色检测相结合来实现的。为了优化硝酸盐测定μPAD,研究了与装置设计和构建相关的几个变量。此外,还评估了尿液基质的干扰,并在不同条件下进行了稳定性研究。所开发的μPAD 使我们能够获得 0.04 mM 的检测限、0.14 mM 的定量限和 0.14-1.0 mM 的动态浓度范围。设计的 μPAD 在室温下空气或真空环境中储存 24 小时,在-20°C 下真空储存 60 天时证明是稳定的。通过分析四个用合成尿液制备的认证样本并使用尿液样本进行回收率研究,证实了硝酸盐 μPAD 测量的准确性。