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Novel LTCC-potentiometric microfluidic device for biparametric analysis of organic compounds carrying plastic antibodies as ionophores: Application to sulfamethoxazole and trimethoprim

机译:用于携带塑料抗体作为离子载体的有机化合物的双参数分析的新型LTCC电位微流控装置:在磺胺甲恶唑和甲氧苄啶中的应用

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摘要

Monitoring organic environmental contaminants is of crucial importance to ensure public health. This requires simple, portable and robust devices to carry out on-site analysis. For this purpose, a low-temperature co-fired ceramics (LTCC) microfluidic potentiometric device (LTCC/μPOT) was developed for the first time for an organic compound: sulfamethoxazole (SMX).Sensory materials relied on newly designed plastic antibodies. Sol–gel, self-assembling monolayer and molecular-imprinting techniques were merged for this purpose. Silica beads were amine-modified and linked to SMX via glutaraldehyde modification. Condensation polymerization was conducted around SMX to fill the vacant spaces. SMX was removed after, leaving behind imprinted sites of complementary shape. The obtained particles were used as ionophores in plasticized PVC membranes. The most suitable membrane composition was selected in steady-state assays. Its suitability to flow analysis was verified in flow-injection studies with regular tubular electrodes.The LTCC/μPOT device integrated a bidimensional mixer, an embedded reference electrode based on Ag/AgCl and an Ag-based contact screen-printed under a micromachined cavity of 600 μm depth. The sensing membranes were deposited over this contact and acted as indicating electrodes. Under optimum conditions, the SMX sensor displayed slopes of about −58.7 mV/decade in a range from 12.7 to 250 μg/mL, providing a detection limit of 3.85 μg/mL and a sampling throughput of 36 samples/h with a reagent consumption of 3.3 mL per sample.The system was adjusted later to multiple analyte detection by including a second potentiometric cell on the LTCC/μPOT device. No additional reference electrode was required. This concept was applied to Trimethoprim (TMP), always administered concomitantly with sulphonamide drugs, and tested in fish-farming waters. The biparametric microanalyzer displayed Nernstian behaviour, with average slopes −54.7 (SMX) and +57.8 (TMP) mV/decade. To demonstrate the microanalyzer capabilities for real applications, it was successfully applied to single and simultaneous determination of SMX and TMP in aquaculture waters.
机译:监测有机环境污染物对于确保公众健康至关重要。这就需要简单,便携式和坚固的设备来进行现场分析。为此,首次开发了低温共烧陶瓷(LTCC)微流体电位计(LTCC /μPOT),用于有机化合物磺胺甲恶唑(SMX),传感材料依赖于新设计的塑料抗体。为此,将溶胶凝胶,自组装单分子层和分子印迹技术进行了合并。硅珠经过胺改性,并通过戊二醛改性与SMX连接。围绕SMX进行缩聚以填充空位。之后去除SMX,留下形状互补的印迹部位。所得颗粒用作增塑PVC膜中的离子载体。在稳态测定中选择最合适的膜组成。 LTCC /μPOT装置集成了二维混合器,基于Ag / AgCl的嵌入式参比电极和在微机械腔内丝网印刷的基于Ag的接触点,从而验证了其对流动分析的适用性。深度为600μm。传感膜沉积在该接触上方并充当指示电极。在最佳条件下,SMX传感器在12.7至250μg/ mL范围内显示大约-58.7 mV /十倍的斜率,检测限为3.85μg/ mL,样品通量为36个样品/小时,试剂消耗为每个样品3.3 mL。稍后通过在LTCC /μPOT设备上包括第二个电位计单元将系统调整为用于多种分析物检测。不需要额外的参比电极。该概念被应用于甲氧苄氨嘧啶(TMP),它总是与磺胺类药物同时给药,并在鱼类养殖用水中进行了测试。双参数微量分析仪显示Nernstian行为,平均斜率-54.7(SMX)和+57.8(TMP)mV /十倍。为了证明微分析仪在实际应用中的功能,它已成功应用于水产养殖水域中SMX和TMP的一次和同时测定。

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