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Multiplex Immunoassay Using Fluorescent-Surface Enhanced Raman Spectroscopic Dots for the Detection of Bronchioalveolar Stem Cells in Murine Lung

机译:荧光表面增强拉曼光谱点多重免疫测定法检测鼠肺支气管肺泡干细胞

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Immunoassays using nanomaterials have been rapidly developed for the analysis of multiple biomolecules. Highly sensitive and biocompatible surface enhanced Raman spectroscopy-active nanomaterials have been used for biomolecule analysis by many research groups in order to overcome intrinsic problems of conventional immunoassays. We used fluorescent surface-enhanced Raman spectroscopic dots (F-SERS dots) to detect biomolecules in this study. The F-SERS dots are composed of silver nanoparticle-embedded silica nanospheres, organic Raman tagging materials, and fluorescent dyes. The F-SERS dots demonstrated highly sensitive, selective, and multi-functional characteristics for multiplex targeting, tracking, and imaging of cellular and molecular events in the living organism. We successfully applied F-SERS dots for the detection of three cellular proteins, including CD34, Sca-1, and SP-C. These proteins are simultaneously expressed in bronchioalveolar stem cells (BASCs) in the murine lung. We analyzed the relative expression ratios of each protein in BASCs since external standards were used to evaluate SERS intensity in tissue. Quantitative comparisons of multiple protein expression in tissue were first attempted using SERS-encoded nanoprobes. Our results suggested that immunoassays using F-SERS dots offered significant increases in sensitivity and selectivity. Such immunoassays may serve as the primary next-generation labeling technologies for the simultaneous analysis of multiple biomolecules.
机译:使用纳米材料的免疫分析已迅速发展,可用于多种生物分子的分析。许多研究小组已将高度灵敏且具有生物相容性的表面增强拉曼光谱活性纳米材料用于生物分子分析,以克服常规免疫测定的内在问题。在这项研究中,我们使用了荧光表面增强拉曼光谱点(F-SERS点)来检测生物分子。 F-SERS点由嵌入银纳米粒子的二氧化硅纳米球,有机拉曼标记材料和荧光染料组成。 F-SERS点对活生物体中的细胞和分子事件进行多重靶向,跟踪和成像展示了高度灵敏,选择性和多功能的特征。我们成功地将F-SERS点应用于三个细胞蛋白的检测,包括CD34,Sca-1和SP-C。这些蛋白在鼠肺中的支气管肺泡干细胞(BASC)中同时表达。由于外部标准用于评估组织中的SERS强度,因此我们分析了BASC中每种蛋白质的相对表达比率。首先尝试使用SERS编码的纳米探针对组织中多种蛋白质表达进行定量比较。我们的结果表明,使用F-SERS点的免疫测定可显着提高灵敏度和选择性。此类免疫测定法可作为主要的下一代标记技术,用于同时分析多种生物分子。

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