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SERS based aptasensor for ochratoxin A by combining Fe3O4@Au magnetic nanoparticles and Au-DTNB@Ag nanoprobes with multiple signal enhancement
Microchimica Acta ( IF 5.7 ) Pub Date : 2018-10-01 , DOI: 10.1007/s00604-018-3020-2
Dan Song , Rong Yang , Shunyan Fang , Yanping Liu , Feng Long , Anna Zhu

AbstractA SERS-based aptasensor for ochratoxin A (OTA) is described. It is making use of Fe3O4@Au magnetic nanoparticles (MGNPs) and of Au@Ag nanoprobes modified with the Raman reporter 5,5-dithiobis-(2-nitrobenzoic acid; DTNB). Au-DTNB@Ag NPs were modified with the OTA aptamer (aptamer-GSNPs) and used as Raman signal probes. The SERS peak of DTNB at 1331 cm−1 was used for quantitative analysis. MGNPs modified with cDNA (cDNA-MGNPs) were used as capture probes and reinforced substrates. When the Au-DTNB@Ag-Fe3O4@Au complexes are formed through oligonucleotide hybridization, the Raman signal intensity of the Raman probe is significantly enhanced. If the OTA concentration in samples increases, more Raman signal probes (aptamer-GSNPs) will dissociate from the cDNA-MGNPs because more OTA aptamer is bound by OTA. This leads to a lower Raman signal after magnetic separation. Under the optimal conditions, the detection limit for OTA is 0.48 pg·mL−1 based on 3σ criterion. This is attributed to the multiple Raman signal enhancement and the good performance of the OTA aptamer. The good recovery and accuracy of the assay was confirmed by evaluating spiked samples of wine and coffee. Graphical abstractSchematic of an aptamer based SERS assay for OTA by integrating Fe3O4@AuNPs (MGNPs) with Au-DTNB@Ag NPs with multiple signal enhancement. Aptamer modified Au-DTNB@Ag NPs are used as Raman probes, and MGNPs modified with cDNA are used as capture probes and reinforced substrates.

中文翻译:

通过结合 Fe3O4@Au 磁性纳米粒子和 Au-DTNB@Ag 纳米探针与多重信号增强,基于 SERS 的赭曲霉毒素 A 适体传感器

摘要描述了一种基于 SERS 的赭曲霉毒素 A (OTA) 适体传感器。它利用 Fe3O4@Au 磁性纳米粒子 (MGNP) 和用拉曼报告基因 5,5-二硫双-(2-硝基苯甲酸;DTNB)修饰的 Au@Ag 纳米探针。Au-DTNB@Ag NPs 用 OTA 适体 (aptamer-GSNPs) 修饰并用作拉曼信号探针。DTNB 在 1331 cm-1 处的 SERS 峰用于定量分析。用 cDNA 修饰的 MGNP(cDNA-MGNP)用作捕获探针和增强底物。当通过寡核苷酸杂交形成Au-DTNB@Ag-Fe3O4@Au复合物时,拉曼探针的拉曼信号强度显着增强。如果样品中的 OTA 浓度增加,更多的拉曼信号探针(适体-GSNPs)将从 cDNA-MGNPs 分离,因为更多的 OTA 适体被 OTA 结合。这导致磁分离后较低的拉曼信号。在最佳条件下,基于 3σ 准则的 OTA 检测限为 0.48 pg·mL-1。这归因于多拉曼信号增强和OTA适体的良好性能。通过评估葡萄酒和咖啡的加标样品,证实了该测定的良好回收率和准确性。通过将 Fe3O4@AuNPs (MGNPs) 与具有多重信号增强功能的 Au-DTNB@Ag NPs 相结合,基于适配体的 OTA 的 SERS 测定的图形摘要示意图。适体修饰的 Au-DTNB@Ag NPs 用作拉曼探针,用 cDNA 修饰的 MGNPs 用作捕获探针和增强底物。这归因于多拉曼信号增强和OTA适体的良好性能。通过评估葡萄酒和咖啡的加标样品,证实了该测定的良好回收率和准确性。通过将 Fe3O4@AuNPs (MGNPs) 与具有多重信号增强功能的 Au-DTNB@Ag NPs 相结合,基于适配体的 OTA 的 SERS 测定的图形摘要示意图。适体修饰的 Au-DTNB@Ag NPs 用作拉曼探针,用 cDNA 修饰的 MGNPs 用作捕获探针和增强底物。这归因于多拉曼信号增强和OTA适体的良好性能。通过评估葡萄酒和咖啡的加标样品,证实了该测定的良好回收率和准确性。通过将 Fe3O4@AuNPs (MGNPs) 与具有多重信号增强功能的 Au-DTNB@Ag NPs 相结合,基于适配体的 OTA 的 SERS 测定的图形摘要示意图。适体修饰的 Au-DTNB@Ag NPs 用作拉曼探针,用 cDNA 修饰的 MGNPs 用作捕获探针和增强底物。
更新日期:2018-10-01
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