Chen Zhenna, Chen Beibei, He Man, Wang Han, Hu Bin
Department of Chemistry, Key Laboratory of Analytical Chemistry for Biology and Medicine (Ministry of Education), Wuhan University, Wuhan, 430072, China.
Mikrochim Acta. 2019 Jan 14;186(2):107. doi: 10.1007/s00604-018-3139-1.
A chip-based array is described for magnetic solid-phase microextraction (MSPME) of the ions of Pt, Au and Bi. Magnetic porous organic polymers (MOPs) prepared from magnetite nanoparticles and 1,3,5-tris(4-aminophenyl)benzene are introduced as a novel adsorbent. Eight solid phase extraction columns packed with MOPs were integrated in parallel on a microfluidic chip for array microextraction. After elution with a 12% (m/v) solution of cysteamine hydrochloride (pH 8.0), the eluent is introduced into an ICP-MS instrument for quantification. Under the optimized conditions, the limits of detection for Pt, Au and Bi are 8.6, 4.4 and 3.4 ng L, respectively. The sample throughput is 7 h, and the adsorption capacities are 32, 24 and 24 μg mg for Pt, Au and Bi, respectively. The method was validated by the determination of Bi in a certified reference material (GSH-1A; human hair), and the values obtained coincided with the certified value. This method was also applied to the determination of Pt, Au and Bi in (spiked) urine and cell samples, and good recoveries (85.8-113%) were achieved. The method is highly sensitive and has a high throughput and a low sample/reagent consumption (with 500 HeLa cells consumed). Graphical abstract Schematic presentation of the magnetic packed column, microfluidic chip, and online chip-based MSPME-ICPMS system. Design sketch of the online system: microextraction unit (blue lines), microvalves (black lines), outlet channels (yellow lines), permanent magnets (red), urine and cell samples.
本文描述了一种用于铂、金和铋离子磁固相微萃取(MSPME)的基于芯片的阵列。介绍了由磁铁矿纳米颗粒和1,3,5-三(4-氨基苯基)苯制备的磁性多孔有机聚合物(MOPs)作为新型吸附剂。八个填充有MOPs的固相萃取柱并联集成在微流控芯片上用于阵列微萃取。用12%(m/v)盐酸半胱胺溶液(pH 8.0)洗脱后,将洗脱液引入电感耦合等离子体质谱仪进行定量分析。在优化条件下,铂、金和铋的检测限分别为8.6、4.4和3.4 ng L。样品通量为7 h,铂、金和铋的吸附容量分别为32、24和24 μg mg。通过测定有证标准物质(GSH-1A;人发)中的铋对该方法进行了验证,所得值与认定值一致。该方法还应用于(加标)尿液和细胞样品中铂、金和铋的测定,回收率良好(85.8-113%)。该方法灵敏度高、通量高且样品/试剂消耗低(仅消耗500个HeLa细胞)。图形摘要 磁性填充柱、微流控芯片和基于芯片的在线MSPME-ICPMS系统的示意图。在线系统设计草图:微萃取单元(蓝色线条)、微阀(黑色线条)、出口通道(黄色线条)、永磁体(红色)、尿液和细胞样品。