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Biomolecules Detection Using a Silver-Enhanced Gold Nanoparticle-Based Biochip

机译:使用基于银的金纳米颗粒生物芯片的生物分子检测

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摘要

Silver-enhanced labeling method has been employed in immunochromatographic assays for improving the sensitivity of detecting pathogens. In this paper, we apply the silver enhancement technique for biomolecular signal amplification in a gold nanoparticle-based conductimetric biochip. We show that the response of the silver-enhanced biochip comprises two distinct regions namely: (a) a sub-threshold region where conduction occurs due to electron hopping between silver islands and the electrolyte and (b) an above-threshold region where the conduction is due to a direct flow of electrons. These two regions are characterized by different conduction slopes, and we show that combining the information from both these regions can improve the sensitivity of the biochip. Results from fabricated prototypes show a dynamic range of more than 40 dB and with a detection limit less than 240 pg/mL. The fabrication of the biochip is compatible with standard complementary metal–oxide–semiconductor (CMOS) processes making it ideal for integration in next-generation CMOS biosensors.
机译:银增强标记法已用于免疫色谱分析中,以提高检测病原体的敏感性。在本文中,我们将银增强技术应用于基于金纳米粒子的电导生物芯片中的生物分子信号放大。我们表明,银增强生物芯片的响应包括两个不同的区域,即:(a)亚阈值区域,其中由于银岛和电解质之间的电子跳跃而发生传导;以及(b)阈值上方的区域,其中传导是由于电子的直接流动。这两个区域的特征在于不同的传导斜率,并且我们证明了结合来自这两个区域的信息可以提高生物芯片的灵敏度。预制原型的结果显示动态范围大于40 dB,检测极限小于240 pg / mL。生物芯片的制造与标准的互补金属氧化物半导体(CMOS)工艺兼容,使其非常适合集成在下一代CMOS生物传感器中。

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