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基于 Au/Ag 纳米棒和基于 IRMOF-3@Au 的柔性 PDMS 膜的高灵敏 SERS 适体传感器用于组胺检测。

Sensitive SERS aptasensor for histamine detection based on Au/Ag nanorods and IRMOF-3@Au based flexible PDMS membrane.

机构信息

State Key Laboratory of Food Science and Resources, Jiangnan University, Wuxi, 214122, China; School of Food Science and Technology, Jiangnan University, Wuxi, 214122, China; International Joint Laboratory on Food Safety, Jiangnan University, Wuxi, 214122, China; Collaborative Innovation Center of Food Safety and Quality Control in Jiangsu Province, Jiangnan University, Wuxi, 214122, China.

Department of Health, Jiangsu Engineering and Research Center of Food Safety, Jiangsu Vocational Institute of Commerce, Nanjing, 211168, China.

出版信息

Anal Chim Acta. 2024 Feb 1;1288:342147. doi: 10.1016/j.aca.2023.342147. Epub 2023 Dec 19.

Abstract

BACKGROUND

Histamine is a kind of biogenic amine with strong toxicity and potential carcinogenicity. Many traditional methods of detecting histamine have the disadvantages of cumbersome detection steps, expensive equipment, and high professional requirements for staff. In contrast, SERS has become the preferred method for quantitative analysis of histamine because of rich fingerprint information, rapidity and economy. However, most of SERS substrates still have technical problems, such as poor stability, low sample collection rate, and detection efficiency. Therefore, there is a great need for new strategies to develop high-performance SERS substrates based sensors.

RESULTS

In our study, a sensitive SERS aptasensor for the detection of histamine was synthesized. The assembly was formed between IRMOF-3@Au/PDMS (flexible SERS substrate) and AuNR-DTNB@Ag-HA apt (Raman signal probe with both the target capture ability) via π-π stacking interaction from HA aptamer and IRMOF-3. Consequently, the SERS signal of the assembly derived from DTNB reached highest due to the synergistic enhancement effect by AuNR@Ag and IRMOF-3@Au. Meanwhile, HA aptamer can specifically capture histamine, therefore histamine addition competitively bound to the probe, leading to a corresponding decrease in the DTNB signal value on the SERS substrate. The SERS intensity at 1331 cm presented a good linear relationship towards the logarithmic value of histamine concentrations ranging from 0.0001 mg/L to 400 mg/L (R = 0.990) with the LOD of 3.6 × 10 mg/L. Furthermore, the application in wine samples demonstrated the accuracy and applicability of the developed sensor.

SIGNIFICANCE

This method effectively improves substrate stability, detection sensitivity and signal response immediacy to amplify the SERS sensor, thus satisfying the histamine detection requirements of various systems. According to this aptasensor design, our strategy can be extended to create other MOF-based SERS substrates for accurately detecting relative targets to ensure food safety.

摘要

背景

组氨酸是一种具有强毒性和潜在致癌性的生物胺。许多传统的组氨酸检测方法存在检测步骤繁琐、设备昂贵、对人员专业要求高等缺点。相比之下,由于具有丰富的指纹信息、快速性和经济性,SERS 已成为组氨酸定量分析的首选方法。然而,大多数 SERS 基底仍存在技术问题,例如稳定性差、样品收集率低、检测效率低等。因此,需要开发新的策略来制备基于高性能 SERS 基底的传感器。

结果

在本研究中,我们合成了一种用于检测组氨酸的灵敏 SERS 适体传感器。该组装体是通过 HA 适体与 IRMOF-3 之间的π-π堆积相互作用形成的,IRMOF-3@Au/PDMS(柔性 SERS 基底)和 AuNR-DTNB@Ag-HA apt(具有目标捕获能力的拉曼信号探针)。因此,由于 AuNR@Ag 和 IRMOF-3@Au 的协同增强效应,组装体的 SERS 信号来自 DTNB 达到最高。同时,HA 适体可以特异性地捕获组氨酸,因此组氨酸的加入会竞争性地结合到探针上,导致 SERS 基底上 DTNB 信号值相应降低。在 1331 cm 处的 SERS 强度与组氨酸浓度的对数呈良好的线性关系,范围为 0.0001 mg/L 至 400 mg/L(R = 0.990),检出限为 3.6×10 mg/L。此外,该传感器在葡萄酒样品中的应用证明了该传感器的准确性和适用性。

意义

该方法有效提高了基底的稳定性、检测灵敏度和信号响应的即时性,从而满足了各种系统对组氨酸检测的要求。根据该适体传感器的设计,我们的策略可以扩展到创建其他基于 MOF 的 SERS 基底,以准确检测相对目标,从而确保食品安全。

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