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首页> 外文期刊>Journal of nanoscience and nanotechnology >Label-Free Detection of Ovarian Cancer Antigen CA125 by Surface Enhanced Raman Scattering
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Label-Free Detection of Ovarian Cancer Antigen CA125 by Surface Enhanced Raman Scattering

机译:通过表面增强拉曼散射无标记无卵巢癌抗原CA125检测

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Surface-enhanced Raman spectroscopy (SERS) has drawn attention in recent years for imaging biological molecules as an analytical tool due to its label-free approach. The SERS approach can be used in tracking organic molecules and monitoring unique Raman spectra of the organic molecules bound to metal nanoparticles (NPs). In this paper, the molecular specifity of Raman Spectroscopy was used together with self-assembled monolayer of metallic AuNPs as a sensor platform in order to detect CA125 antibody-antigen probe molecules. Highly enhanced electromagnetic fields localized around neighboring AuNPs provide hot-spot construction due to the spatial distribution of SERS enhancement on the CA125 proteins at nM concentration level. Time resolved SERS mapping of CA125 antibody and antigen couples was recorded. Even though blinking behavior was observed for some cases, vast variety SERS signals from CA125 proteins were highly reproducible. Blinking behavior is attributed to single molecular detection. Distinguished feature of SERS mapping images of CA125 antibody and antigen with such a low concentration level is very promising for this technique to be used for diagnostic purposes.
机译:近年来,表面增强的拉曼光谱(SERS)引起了对成像生物分子作为分析工具的关注,由于其无标记方法。 SERS方法可用于跟踪有机分子并监测与金属纳米颗粒(NPS)结合的有机分子的独特拉曼光谱。在本文中,拉曼光谱的分子规格与作为传感器平台的自组装单层,以检测Ca125抗体 - 抗原分子。由于NM浓度水平的Ca125蛋白质上的SERs增强,高度增强的电磁场局部地定位了邻近的AUNPS提供热点施工。记录了Ca125抗体和抗原耦合的时间分辨sers映射。即使在某些情况下观察到闪烁的行为,Ca125蛋白的众多品种SERS信号也是高度可重复的。闪烁的行为归因于单分子检测。 SERS映射图像的分类特征是Ca125抗体和抗原具有如此低浓度水平的抗原对于该技术用于诊断目的非常有前途。

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