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基于结构导向适配体的双模式侧向流动分析法用于地沟油中辣椒素检测的研究进展

Development of a dual-mode lateral flow assay based on structure-guided aptamers for the detection of capsaicin in gutter oils.

作者信息

Qin Mingwei, Ding Ning, Ma Pengfei, Jiang Hongtao, Li Yu, Chen Peifang, Wang Zhouping, Yang Junsong

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.

Textile Industrial Products Testing Center of Nanjing Customs District, Wuxi Customs District PR China, Wuxi, 214100, China.

出版信息

Biosens Bioelectron. 2025 Mar 1;271:117100. doi: 10.1016/j.bios.2024.117100. Epub 2024 Dec 25.

Abstract

The construction of structure-guided aptamers and the ultra-sensitive aptamer-based lateral flow assays (Apt-LFA) integrated detection method hold significant potential for food analysis. Using an engineered modified sequence strategy, we successfully developed the aptamer Cap-1-2M4, significantly enhancing its affinity for capsaicin (CAP) to 0.6197 ± 0.0689 nM. We developed a highly sensitive method for CAP detection based on Vap@AuNFs, leveraging their superior colorimetric and photothermal signals and high aptamer coupling performance. The Vap@AuNFs-based Apt-LFA (Vap@AuNFs-Apt-LFA) achieve signal amplification through catalytic hairpin assembly (CHA) and exonuclease III (Exo III). Additionally, dual-mode (colorimetric and photothermal) quantitative detection via lateral flow test strips was achieved by capturing the nucleic acid effect of Vap@AuNFs. The limit of detection (LOD) of Vap@AuNFs-Apt-LFA by colorimetric/photothermal method was 0.043 ng mL and 0.011 ng mL, with linear ranges of 0.1-500 ng mL and 0.05-500 ng mL, respectively. This aptamer engineering strategy and the developed Vap@AuNFs-Apt-LFA offer new directions for food safety and provide a reference for feasible portable detection methods.

摘要

基于结构导向的适体构建以及基于超灵敏适体的侧向流动分析(Apt-LFA)集成检测方法在食品分析中具有巨大潜力。通过工程化修饰序列策略,我们成功开发了适体Cap-1-2M4,显著提高了其对辣椒素(CAP)的亲和力至0.6197±0.0689 nM。我们基于Vap@AuNFs开发了一种用于CAP检测的高灵敏方法,利用其优异的比色和光热信号以及高适体偶联性能。基于Vap@AuNFs的Apt-LFA(Vap@AuNFs-Apt-LFA)通过催化发夹组装(CHA)和核酸外切酶III(Exo III)实现信号放大。此外,通过捕获Vap@AuNFs的核酸效应,实现了通过侧向流动试纸条的双模式(比色和光热)定量检测。Vap@AuNFs-Apt-LFA比色/光热法的检测限分别为0.043 ng mL和0.011 ng mL,线性范围分别为0.1 - 500 ng mL和0.05 - 500 ng mL。这种适体工程策略以及所开发的Vap@AuNFs-Apt-LFA为食品安全提供了新方向,并为可行的便携式检测方法提供了参考。

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