Xie Lisiqi, Huang Xiao, Su Bin
Institute of Analytical Chemistry, Department of Chemistry, Zhejiang University , Hangzhou 310058, China.
ACS Sens. 2017 Jun 23;2(6):803-809. doi: 10.1021/acssensors.7b00166. Epub 2017 Apr 24.
A portable amperometric ion sensor was fabricated by integrating silica isoporous membrane (SIM) and organogel composed of polyvinyl chloride and 1,2-dichloroethane (PVC-DCE) on a 3D-printed polymer chip. The detection of ionic species in aqueous samples could be accomplished by adding a microliter of sample droplet to the sensor and by identifying the ion-transfer potential and current magnitude at the water/organogel interface array templated by SIM. Thanks to the ultrasmall channel size (2-3 nm in diameter), high channel density (4 × 10 μm), and ultrathin thickness (80 nm) of SIM, the ensemble of nanoscopic water/organogel (nano-W/Gel) interface array behaved like a microinterface with two back-to-back hemispherical mass diffusion zones. So, the heterogeneous ion-transfer across the nano-W/Gel interface array generated a steady-state sigmoidal current wave. The detection of choline (Ch) and its derivatives, including acetylcholine (ACh), benzoylcholine (BCh), and atropine (AP), in aqueous samples was examined with this portable sensor. Using differential pulse stripping voltammetry (DPSV), the quantification of these analytes was achieved with a limit of detection (LOD) down to 1 μM. Moreover, the portable ion sensor was insensitive to various potential interferents that might coexist in vivo, owing to size-/charge-based selectivity and antifouling capacity of SIM. With this priority, the portable ion sensor was able to quantitatively determine Ch and its derivatives in diluted urine and blood samples. The LODs for Ch, ACh, AP, and BCh in urine were 1.12, 1.30, 1.08, and 0.99 μM, and those for blood samples were 3.61, 3.38, 2.32, and 1.81 μM, respectively.
通过将二氧化硅等孔膜(SIM)与由聚氯乙烯和1,2 - 二氯乙烷组成的有机凝胶(PVC - DCE)集成在3D打印的聚合物芯片上,制备了一种便携式安培离子传感器。通过向传感器添加微升样品液滴,并识别由SIM模板化的水/有机凝胶界面阵列处的离子转移电位和电流大小,可以完成对水性样品中离子种类的检测。由于SIM的超小通道尺寸(直径2 - 3纳米)、高通道密度(4×10微米)和超薄厚度(80纳米),纳米级水/有机凝胶(nano - W/Gel)界面阵列整体表现得像一个具有两个背对背半球形质量扩散区的微界面。因此,跨纳米W/Gel界面阵列的异质离子转移产生了稳态S形电流波。使用该便携式传感器检测了水性样品中的胆碱(Ch)及其衍生物,包括乙酰胆碱(ACh)、苯甲酰胆碱(BCh)和阿托品(AP)。使用差分脉冲溶出伏安法(DPSV),实现了对这些分析物的定量,检测限低至1μM。此外,由于SIM基于尺寸/电荷的选择性和抗污染能力,该便携式离子传感器对体内可能共存的各种潜在干扰物不敏感。基于此优势,该便携式离子传感器能够定量测定稀释尿液和血液样品中的Ch及其衍生物。尿液中Ch、ACh、AP和BCh的检测限分别为1.12、1.30、1.08和0.99μM,血液样品中的检测限分别为3.61、3.38、2.32和1.81μM。