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LABEL-FREE DETECTION OF ANTIGENS USING IMPLANTABLE SERS NANOSENSORS

机译:使用可植入SERS纳米调传料无标记的抗原检测

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Monitoring the presence, production and transport of proteins inside individual living cells can provide vital information about cellular signaling pathways and the overall biological response of an organism. For example, cellular response to external stimuli, such as biological warfare (BW) agents, can be monitored by measuring interleukin-II (IL-2) expression inside T-cells as well as other chemical species associated with T-cell activation. By monitoring such species, pre-symptomatic detection of exposure to BW agents can be achieved, leading to significantly increased post-exposure survival rates. To accomplish such monitoring, we have developed and optimized implantable nanosphere-based nanosensors for the intracellular analysis of specific proteins in a label-free fashion. These sensors consist of 300-520 nm diameter silica spheres that have been coated with silver and antibodies to allow for trace protein detection via surface enhanced Raman spectroscopy (SERS). They have been optimized for SERS response by evaluating the size of the nanospheres best suited to 632.8 nm laser excitation, as well as the various nanosensor fabrication steps (i.e., silver deposition process, antibody binding, etc.). During usage, the presence of the specific protein of interest is monitored by either directly measuring SERS signals associated with the protein and/or changes in the SERS spectrum of the antibodies resulting from conformational changes after antigen binding. In this work, human insulin was used as a model compound for initial studies into the sensitivity of these optimized nanosensors.
机译:监测各种活细胞内蛋白质的存在,生产和运输可以提供有关细胞信号通路和生物体的整体生物反应的重要信息。例如,通过测量T细胞内的白细胞介素-II(IL-2)表达以及与T细胞活化相关的其他化学物质,可以监测对外部刺激的细胞响应,例如生物刺激(BW)试剂。通过监测这些物种,可以实现暴露于BW试剂的前症状检测,导致暴露后的存活率显着增加。为了实现这种监测,我们已经开发和优化了可植入的纳米纳米纳米传感器,用于以无标记的方式分析特异性蛋白质的细胞内分析。这些传感器由300-520nm直径的硅球组成,涂有银和抗体,以允许通过表面增强拉曼光谱(SERS)进行痕量蛋白质检测。通过评估最适合于632.8nm激光激发的纳米球的尺寸以及各种纳米传感器制造步骤(即,银沉积工艺,抗体结合等),它们已经针对SERS响应进行了优化。在使用过程中,通过直接测量与蛋白质相关的蛋白质相关的SERs信号和/或由抗原结合后的构象变化产生的抗体的SERS光谱的变化来监测特定目的蛋白的存在。在这项工作中,使用人胰岛素用作模型化合物,用于初始研究成于这些优化纳米调传料的敏感性。

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