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Label-Free Detection of Proteins Using SERS-Based Immuno-Nanosensors

机译:使用基于SERS的免疫纳米传感器对蛋白质进行无标签检测

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摘要

This paper describes the development and optimization of a novel class of SERS-based immuno-nanosensors for the label-free detection of specific proteins in complex environments (e.g., cell culture matrices and intracellular environments). These SERS-based nano-sphere sensors are fabricated by depositing multiple layers of silver on silica nanospheres, followed by binding of the antibody of interest to the silver surface via a short rigid crosslinker. In these studies, several different crosslinkers were characterized and evaluated for optimal nanosensor activity. The crosslinkers evaluated contained either thiol or ispthio-cyanate functionalities, which bind to the silver surface on one end, while the other end of the crosslinker contained either a carboxylic or primary amine group, which reacts readily with the antibodies. These SERS-based nanosensors were also optimized for underlying silica sphere diameters, silica sphere coating conditions during silver deposition, number of silver layers applied,and silver surface coverage with crosslinkers. Upon optimization, the nanosensors were evaluated by monitoring their response to various antigens (e.g., human insulin or interleukin II) in complex environments.
机译:本文介绍了用于在复杂环境(例如细胞培养基质和细胞内环境)中无标记检测特定蛋白质的新型基于SERS的免疫纳米传感器的开发和优化。这些基于SERS的纳米球传感器是通过在二氧化硅纳米球上沉积多层银,然后通过短的刚性交联剂将目标抗体结合到银表面上而制成的。在这些研究中,对几种不同的交联剂进行了表征并评估了其最佳纳​​米传感器活性。所评估的交联剂含有巯基或异硫氰酸氰酸酯官能团,该官能团与一端的银表面结合,而另一端含有羧基或伯胺基,该基团易于与抗体反应。这些基于SERS的纳米传感器还针对潜在的二氧化硅球直径,银沉积过程中的二氧化硅球涂层条件,所施加的银层数以及带有交联剂的银表面覆盖率进行了优化。在优化后,通过监测复杂环境中纳米传感器对各种抗原(例如人胰岛素或白介素II)的反应来评估它们。

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