Dębosz Marek, Kozma József, Porada Radosław, Wieczorek Marcin, Paluch Justyna, Gyurcsányi Róbert E, Migdalski Jan, Kościelniak Paweł
Jagiellonian University in Krakow, Faculty of Chemistry, Department of Analytical Chemistry, Ul. Gronostajowa 2, Krakow, Poland.
Budapest University of Technology and Economics, Department of Inorganic and Analytical Chemistry, BME "Lendület" Chemical Nanosensors Research Group, Szt. Gellért Tér 4, H-1111, Budapest, Hungary.
Talanta. 2021 Sep 1;232:122491. doi: 10.1016/j.talanta.2021.122491. Epub 2021 May 4.
Urinalysis is a simple and non-invasive approach for the diagnosis and monitoring of various health disorders. While urinalysis is predominantly confined to clinical laboratories the non-invasive sample collection makes it applicable in wide range of settings outside of central laboratory confinements. In this respect, 3D printed devices integrating sensors for measuring multiple parameters may be one of the most viable approaches to ensure cost-effectiveness for widespread use. Here we evaluated such a system for the multiplexed determination of sodium, potassium and calcium ions in urine samples with ion-selective electrodes based on state of the art octadecylamine-functionalized multi-walled carbon nanotube (OD-MWCNT) solid contacts. The electrodes were tested in the clinically relevant concentration range, i.e. ca. 10 - 10 mol L and were proven to have Nernstian responses under flow injection conditions. The applicability of the 3D printed flow manifold was investigated through the analysis of synthetic samples and two certified reference materials. The obtained results confirm the suitability of the proposed system for multiplexed ion analysis in urine.
尿液分析是一种用于诊断和监测各种健康疾病的简单且非侵入性的方法。虽然尿液分析主要局限于临床实验室,但非侵入性的样本采集使其适用于中央实验室范围之外的广泛场景。在这方面,集成用于测量多个参数的传感器的3D打印设备可能是确保广泛使用的成本效益的最可行方法之一。在此,我们评估了这样一个系统,该系统基于最先进的十八烷基胺功能化多壁碳纳米管(OD-MWCNT)固体接触的离子选择性电极,用于尿液样本中钠、钾和钙离子的多重测定。这些电极在临床相关浓度范围内进行了测试,即约10⁻¹⁰ mol/L,并被证明在流动注射条件下具有能斯特响应。通过对合成样品和两种有证标准物质的分析,研究了3D打印流动池的适用性。所得结果证实了所提出的系统适用于尿液中的多重离子分析。