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Low-temperature co-fired ceramic microchannels with individually addressable screen-printed gold electrodes on four walls for self-contained electrochemical immunoassays

机译:低温共烧陶瓷微通道,在四个壁上带有可单独寻址的丝网印刷金电极,用于独立的电化学免疫测定

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摘要

Microchannel devices were constructed from low-temperature co-fired ceramic (LTCC) materials with screen-printed gold (SPG) electrodes in three dimensions- on all four walls-for self-contained enzyme-linked immunosorbant assays with electrochemical detection. The microchannel confines the solution to a small volume, allowing concentration of electroactive enzymatically generated product and nearby electrodes provide high-speed and high-sensitivity detection: it also facilitates future integration with microfluidics. LTCC materials allow easy construction of three-dimensional structures compared with more traditional materials such as glass and polymer materials. Parallel processing of LTCC layers is more amenable to mass production and fast prototyping, compared with sequential processing for integrating multiple features into a single device. LTCC and SPG have not been reported previously as the basis for microchannel immunoassays, nor with integrated, individually addressable electrodes in three dimensions. A demonstration assay for mouse IgG at 5.0 ng/mL (3.3×10 ~(-11) M) with electrochemical detection was achieved within a 1.8 cm long×290 μm high×130 μm wide microchannel (approximately 680 nL). Two of four SPG electrodes span the top and bottom walls and serve as the auxiliary electrode and the assay site, respectively. The other two (0.7 cm long×97 μm wide) are centered lengthwise on the sidewalls of the channel. One serves as the working and the other as the pseudoreference electrode. The immunoassay components were immobilized at the bottom SPG region. Enzymatically generated paminophenol was detected at the internal working electrode within 15 s of introducing the enzyme substrate p-aminophenyl phosphate. A series of buffer rinses avoided nonspecific adsorption and false-positive signals.
机译:微通道设备是由低温共烧陶瓷(LTCC)材料和丝网印刷的金(SPG)电极在三个维度上(在所有四个壁上)构成的,用于通过电化学检测进行的自包含酶联免疫吸附测定。微通道将溶液限制在很小的体积内,从而允许浓缩酶促生成的电活性产物,并且附近的电极可提供高速和高灵敏度的检测:它还有助于将来与微流控技术集成。与更传统的材料(例如玻璃和聚合物材料)相比,LTCC材料允许轻松构建三维结构。与将多个功能集成到单个器件中的顺序处理相比,LTCC层的并行处理更适合批量生产和快速原型制作。以前尚未报道LTCC和SPG作为微通道免疫测定的基础,也没有集成的,可单独寻址的三维电极。在1.8 cm长×290μm高×130μm宽的微通道(约680 nL)内实现了通过电化学检测对5.0 ng / mL(3.3×10〜(-11)M)小鼠IgG进行的演示测定。四个SPG电极中的两个横跨顶壁和底壁,分别用作辅助电极和测定部位。其他两个(0.7厘米长×97微米宽)在通道的侧壁上纵向居中。一个用作工作电极,另一个用作伪参考电极。免疫测定成分固定在底部SPG区域。在引入酶底物对氨基苯基磷酸酯后15秒内,在内部工作电极上检测到了酶促生成的对氨基苯酚。一系列的缓冲液冲洗避免了非特异性吸附和假阳性信号。

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