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首页> 外文期刊>Clinica chimica acta: International journal of clinical chemistry and applied molecular biology >Paper-based enzymatic platform coupled to screen printed graphene-modified electrode for the fast neonatal screening of phenylketonuria
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Paper-based enzymatic platform coupled to screen printed graphene-modified electrode for the fast neonatal screening of phenylketonuria

机译:基于纸的酶平台,耦合到筛网印刷石墨烯改性电极,用于苯酮尿的快速新生儿筛选

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IntroductionThe PKU is an inborn error of amino acid metabolism, in which phenylalanine (Phe) accumulated in the blood causing alterations at the central nervous system. We report a novel paper-based enzymatic platform coupled to screen printed graphene-modified electrode for the neonatal screening of phenylketonuria (PKU0. MethodsThe paper-based analytical device coupled to electrochemical detection (EPAD) is based on the use of paper microzones modified with phenylalanine dehydrogenase enzyme (PheDH). The modified PADs were placed on the surface of an electrode modified with electrochemically reduced graphene (ERGO). PheDH in the presence of NAD+catalyzes the reversible deamination of Phe to form phenylpyruvate, ammonia, and NADH. The electrochemical oxidation of NADH was monitored by differential pulse amperometry (DPA) at 0.6?V. The method was linear in the concentration range from 1 to 600?μmol/L of Phe with a LOQ of 1?μmol/L and LOD of 0.2?μmol/L. Within day precision was 5.7% across 3 levels of control samples. Between-day precision was 8.3%. The comparison with the standard Phe enzyme assay kit showed good agreement. The time required for the overall assay was <5?min. The non-sophisticated equipment required, the short assay time and the appropriate LOQ and LOD achieved by our EPAD make it an attractive and easy to use alternative compared to existing methods applied to the screening of PKU in neonatal samples.
机译:简介PKU是氨基酸代谢的原始错误,其中苯丙氨酸(PHE)积累在血液中导致中枢神经系统的改变。我们报告了一种基于纸的酶促平台,其耦合到筛网印刷石墨烯改性电极,用于苯基酮尿的新生儿筛选(PKU0.CholeSthe纸张的分析装置,耦合到电化学检测(EPAD)是基于用苯丙酮改性纸微酮的使用脱氢酶酶(噬孔)。将改性垫置于用电化学减少的石墨烯(ERGO)改性的电极表面上。在NAD +催化的噬菌体中的噬菌体催化PHE的可逆脱氨基形成苯吡合他样,氨和NADH。电化学通过差分脉冲安培测量(DPA)监测NADH的氧化在0.6〜V.该方法在浓度范围为1至600μmol/ L的PHE中,LOQ为1·μmol/ L和0.2Ω·μmol的LOD /升。在3级对照样品中,在白天的精度下为5.7%。白天的精度为8.3%。与标准PHE酶测定套件的比较表现出良好的协议。o的o Verall测定<5?min。所需的非复杂设备,短暂的测定时间和由我们的EPAD实现的适当的LOQ和LOD使其成为应用于新生儿样本中PKU筛查的现有方法的吸引力和易用的替代方法。

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