Signal amplification surface-enhanced Raman scattering immunosorbent assay of human chorionic gonadotrophin based on repeated enzyme biocatalytic precipitation.

Cuicui Fu, Li Zhang, Meiqi Bao, Yue Zhang, Ya-li Li, Yan Wu, Young Mee Jung
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Abstract

A novel surface-enhanced Raman scattering (SERS) immunoassay method based on tyramine signal amplification (TSA) technology triggering the formation of enzyme repeats on an enzyme-linked immunosorbent assay (ELISA) was designed for highly sensitive detection of human chorionic gonadotropin (hCG) using enzymatic biocatalytic precipitation toward o-phenylenediamine (OPD). Initially, a horseradish peroxidase (HRP)-labeled hCG antibody was fixed by the double antibody sandwich method, and then a tyramine-HRP conjugate was used to form HRP repeats by triggering the immobilized HRP on ELISA with the aid of H2O2. In the presence of the target hCG, the HRP repeats carried by the sandwich immune complex catalyzed the oxidation of OPD to produce product molecules with different structures, resulting in changes in the SERS fingerprint spectrum. The analytical performance of the SERS immunoassay was studied in detail using SERS spectral characterization. Under the optimum conditions, the immunosensor displayed a working range from 1 IU L-1 to 16 IU L-1 with a detection limit (LOD) of 0.17 IU L-1 relative to the target hCG. Compared to the traditional SERS immunosensor, a higher detection sensitivity can be obtained. Therefore, this work provides a new strategy for hCG detection and inspiration for the construction of sensitive and efficient immunosensors.
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基于重复酶生物催化沉淀的人绒毛膜促性腺激素的信号放大表面增强拉曼散射免疫吸附测定。
设计了一种基于酪胺信号放大(TSA)技术的表面增强拉曼散射(SERS)免疫分析方法,该方法在酶联免疫吸附试验(ELISA)上触发酶重复序列的形成,用于酶促生物催化沉淀对邻苯二胺(OPD)的高灵敏度检测人绒毛膜促性腺激素(hCG)。首先用双抗体夹心法固定辣根过氧化物酶(HRP)标记的hCG抗体,然后用酪胺-HRP偶联物在ELISA上用H2O2触发固定的HRP形成HRP重复序列。在靶hCG存在的情况下,夹心免疫复合体携带的HRP重复序列催化OPD氧化产生不同结构的产物分子,导致SERS指纹图谱发生变化。利用SERS光谱表征对SERS免疫分析法的分析性能进行了详细的研究。在最佳条件下,免疫传感器的工作范围为1 ~ 16 IU L-1,相对于目标hCG的检出限为0.17 IU L-1。与传统的SERS免疫传感器相比,可以获得更高的检测灵敏度。因此,本工作为hCG检测提供了新的策略,并为构建灵敏高效的免疫传感器提供了启示。
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