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Comparison of surface-enhanced resonance Raman scattering and fluorescence for detection of a labeled antibody

机译:用于检测标记抗体的表面增强共振拉曼散射和荧光的比较

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A comparison is made of the quantitative detection of a labeled antibody by surface-enhanced resonance Raman scattering (SERRS) and by fluorescence using the same instrument with the same laser excitation source. The area under the curve for the fluorescence band is greater than for any single peak in the SERRS spectrum, but the broad fluorescence band is more difficult to discriminate from the background at low concentrations. Using the peak height of one SERRS band and the peak height at the fluorescence maximum, the detection limit for SERRS was lower (1.19 x 10(-11) mol.dm(-3)) than that obtained using fluorescence (3.46 x 10(-10) mol.dm(-3)). The SERRS detection limit is calculated for the concentration of the sample added, but compared to fluorescence, there is an additional dilution step due to the addition of the colloid and the extent of this dilution is dependent on assay format. For comparison with the detection limits found earlier with labeled oligonucleotides, SERRS was remeasured with a 10 s accumulation time, and the final concentration in the cuvette after colloid addition and before any adsorption to the silver was used to calculate a detection limit of 2.79 x 10(-13) mol-dm(-3). This is comparable to the detection limit found using a similar SERRS procedure for an oligonucleotide labeled with the same dye. This experiment is dependent on many parameters that could affect this result, including the nature of the SERRS substrate, the excitation wavelength, and the dye chosen. However, the result indicates that SERRS can give assay sensitivities comparable or better than fluorescence for quantitative direct assay determination, suggesting that the much greater potential for multiple analyte detection could be exploited.
机译:使用表面增强的共振拉曼散射(SERRS)和使用相同仪器,相同激光激发源的荧光定量检测标记的抗体。荧光带的曲线下面积大于SERRS光谱中任何单个峰的面积,但是在低浓度下较宽的荧光带更难与背景区分开。使用一个SERRS谱带的峰高和荧光最大值时的峰高,SERRS的检出限比使用荧光获得的检出限(1.16 x 10(-11)mol.dm(-3))低(3.46 x 10( -10)mol.dm(-3))。 SERRS检测极限是针对所添加样品的浓度计算的,但与荧光相比,由于添加了胶体,因此存在一个额外的稀释步骤,并且稀释的程度取决于测定形式。为了与先前使用标记的寡核苷酸发现的检测限进行比较,以10 s的累积时间重新测量SERRS,并且在添加胶体之后且在对银的任何吸附之前,比色皿中的最终浓度用于计算2.79 x 10的检测限。 (-13)mol-dm(-3)。这相当于使用相似的SERRS程序对用相同染料标记的寡核苷酸发现的检测极限。该实验取决于可能影响此结果的许多参数,包括SERRS底物的性质,激发波长和所选的染料。但是,结果表明SERRS可以为定量直接测定的测定提供与荧光相当或更好的测定灵敏度,这表明可以利用更大的潜力进行多种分析物检测。

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