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An Immunosensor Based on Au-Ag Bimetallic NPs Patterned on a Thermal Resistant Flexible Polymer Substrate for In-Vitro Protein Detection

机译:基于AU-AG双金属NPS的免疫传感器,其在热抗性柔性聚合物基材上进行耐热蛋白质检测

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摘要

Nanosensors based on flexible polymers have emerged as powerful tools for next generation smart devices in the recent years. Here, we report a facile protocol to fabricate an immunosensor supported by a thermally resistant flexible polymer substrate (polyarylene ether nitrile, PEN). The immunosensor is a localized surface plasmon resonance (LSPR) optical sensor for in-vitro protein detection based on anti-body coated gold-silver bimetallic nanoparticles (Au-Ag NPs) immobilized on a PEN substrate. Plasmonic spectroscopy and morphological characterization show that the Au-Ag NPs essentially exhibit a more uniform size distribution and higher quality factors than those from single-component Au NPs. Furthermore, it should be noted that the robust PEN substrate in this nanosensor acts a flexible substrate to support Au-Ag NPs and immobilize the nanoparticles via quick thermal annealing at 290 °C. Thanks to these merits, a prostate-specific antigen (PSA) concentration as low as 1 ng/mL can be specifically discriminated via the prepared PEN/Au-Au NPs, which confirms that the protocol reported in this work can be readily adapted for the construction of various flexible immunosensors for different applications.
机译:基于柔性聚合物的纳米传感器已经出现了近年来下一代智能设备的强大工具。这里,我们报告了一种容易方案,用于制造由耐热柔性聚合物基材(聚甲醚丁腈,笔)支撑的免疫传感器。免疫传感器是用于基于固定在笔基材上的抗体涂覆的金银双金属纳米颗粒(Au-Ag NP)的体外蛋白质检测的局部表面等离子体共振(LSPR)光学传感器。等离子体光谱和形态学表征表明,AU-AG NP基本上表现出比单组分Au NPS更均匀的尺寸分布和更高的质量因子。此外,应该注意的是,该纳米传感器中的鲁棒笔基板作用柔性基板以支持Au-Ag nps并通过在290℃下通过快速热退火固定纳米颗粒。由于这些优点,可以通过准备好的笔/ Au-au nps具体地区分前列腺特异性抗原(PSA)浓度,这证实了这项工作中报告的议定书可以容易地适应针对不同应用的各种柔性免疫传感器的构建。

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