Lisak Grzegorz, Arnebrant Thomas, Ruzgas Tautgirdas, Bobacka Johan
Åbo Akademi University, Johan Gadolin Process Chemistry Centre, c/o Laboratory of Analytical Chemistry, FIN-20500 Åbo-Turku, Finland.
Department of Biomedical Science, Faculty of Health and Society, Malmö University, SE-205 06 Malmö, Sweden; Biofilms - Research Center for Biointerfaces, Malmö University, SE-205 06 Malmö, Sweden.
Anal Chim Acta. 2015 Jun 2;877:71-9. doi: 10.1016/j.aca.2015.03.045. Epub 2015 Mar 28.
Potentiometric sensing utilizing textile-based micro-volume sampling was applied and evaluated for the determination of clinically (Na(+), K(+), Cl(-)) and environmentally (Cd(2+), Pb(2+) and pH) relevant analytes. In this technological design, calibration solutions and samples were absorbed into textiles while the potentiometric cells (ion-selective electrodes and reference electrode) were pressed against the textile. Once the liquid, by wicking action, reached the place where the potentiometric cell was pressed onto the textile, hence closing the electric circuit, the potentiometric response was obtained. Cotton, polyamide, polyester and their blends with elastane were applied for micro-volume sampling. The textiles were found to influence the determination of pH in environmental samples with pH close to neutral and Pb(2+) at low analyte concentrations. On the other hand, textile-based micro-volume sampling was successfully applied in measurements of Na(+) using solid-contact sodium-selective electrodes utilizing all the investigated textiles for sampling. It was found that in order to extend the application of textile-based sampling toward environmental analysis of ions it will be necessary to tailor the physio-chemical properties of the textile materials. In general, textile-based sampling opens new possibilities for direct chemical analysis of small-volume samples and provide a simple and low-cost method to screen various textiles for their effects on samples to identify which textiles are the most suitable for on-body sensing.
利用基于纺织品的微量采样进行电位传感,并对临床相关分析物(Na⁺、K⁺、Cl⁻)和环境相关分析物(Cd²⁺、Pb²⁺和pH)的测定进行了应用和评估。在这种技术设计中,校准溶液和样品被吸收到纺织品中,同时将电位测量池(离子选择性电极和参比电极)压在纺织品上。一旦液体通过毛细作用到达电位测量池压在纺织品上的位置,从而闭合电路,就会获得电位响应。棉、聚酰胺、聚酯及其与氨纶的混纺织物被用于微量采样。研究发现,这些纺织品会影响pH接近中性的环境样品中pH的测定以及低分析物浓度下Pb²⁺的测定。另一方面,基于纺织品的微量采样成功应用于使用固体接触式钠选择性电极测定Na⁺,所有研究的纺织品都用于采样。研究发现,为了将基于纺织品的采样应用扩展到离子的环境分析中,有必要调整纺织材料的物理化学性质。总的来说,基于纺织品的采样为小体积样品的直接化学分析开辟了新的可能性,并提供了一种简单且低成本的方法来筛选各种纺织品对样品的影响,以确定哪些纺织品最适合用于人体传感。