数字农科院2.0

Smartphone-assisted antifouling colorimetric aptasensor for ultrasensitive ochratoxin A detection in coffee

文献类型: 外文期刊

作者: Meng Xu;Yimeng Li;Xiaopeng Hu;Shuai Zhang;Yiwei Liu

作者机构:

关键词: Aptamer;Colorimetric;Nanohybrid;OTA;Smartphone-assisted

期刊名称: Microchemical Journal

ISSN: 0026-265X

年卷期: 2025 年 218 卷

页码:

收录情况: SCIE(2025版)

摘要: A smartphone-assisted colorimetric aptasensor was constructed for the detection of ochratoxin A (OTA) utilizing Au/CeO₂/rGO nanohybrid. The sensor integrates aptamer-functionalized Au/Fe3O4 (Apt/Au/Fe3O4) as recognition elements. The complementary-chain-modified Au/CeO₂/rGO (cDNA/Au/CeO₂/rGO) act as nanozyme catalyst for signal amplification through the oxidation of 3,3′,5,5′-tetramethylbenzidine (TMB) to blue-colored ox-TMB. The detection mechanism relies on competitive binding between OTA and cDNA/Au/CeO2/rGO to Apt/Au/Fe3O4. Upon OTA introduction, OTA preferentially binds to Apt/Au/Fe3O4. These Apt/Au/Fe3O4 are magnetically separated and introduced into the cDNA/Au/CeO2/rGO suspension. Unbound Apt/Au/Fe3O4 interacts with cDNA/Au/CeO2/rGO. After magnetic separation, the residual cDNA/Au/CeO2/rGO concentration in supernatant exhibits a correlation with the OTA concentration. This design effectively eliminates potential interference from the intrinsic color of coffee, significantly improving the accuracy of colorimetric detection. The aptasensor demonstrated superior selectivity towards OTA with a detection limit of 27.3 pg mL−1. This specificity was validated against interference, with recovery rates of 102.1–117.4 % in coffee, as confirmed by ELISA.

分类号:

  • 相关文献

[1]An Alkyne-Mediated SERS Aptasensor for Anti-Interference Ochratoxin A Detection in Real Samples. Wang, Hao,Chen, Lu,Li, Min,She, Yongxin,Zhu, Chao,Yan, Mengmeng. 2022

[2]Dual-mode fluorescence/colorimetric aptasensor based on Zn,Ce-MOF nanocomposite for sensitive detection of isocarbophos. Yimeng Li,Jiayao Wang,Yi Ran,Yiwei Liu,Xiaopeng Hu. 2025

[3]制粉和分层研磨对小麦中赭曲霉毒素A的去除效果. 彭春红,王丽,安凤平,李淑荣,罗红霞,王强. 2016

[4]Nanohybrid SERS substrates intended for food supply chain safety. Bingzhi Li,Sijie Liu,Lunjie Huang,Maojun Jin,Jianlong Wang. 2023

[5]Impact of environmental factors on ochratoxin A: From natural occurrence to control strategy. Wang G.,Li E.,Gallo A.,Perrone G.,Varga E.,Ma J.,Yang B.,Tai B.,Xing F.. 2023

[6]Metarhizium spp. encode an ochratoxin cluster and a high efficiency ochratoxin-degrading amidohydrolase revealed by genomic analysis. Wang, Gang,Wu, Wenqing,Keller, Nancy P.,Guo, Xu,Li, Erfeng,Ma, Junning,Xing, Fuguo. 2025

[7]Lysinibacillus macroides 38352 isolated from traditional Chinese fermented foods: a dual effect on ochratoxin A detoxification and immune suppression alleviation. Wang, Jiaqing,Duan, Haoyuan,Zhang, Wenzhi,Li, Hai,Yang, Zaixing,Zhang, Chuankun,Zhang, Shuhe,Guo, Junjie,Ge, Junwei,Wang, Fang,Gao, Mingchun. 2026

[8]Colorimetric Detection of Cr3+ in Aqueous Solution Based on Cofunctionalized Silver Nanoparticles Modified with 4-Nitrobenzenethiol and 4-Mercaptobenzoic Acid. Zhang, Zhikun,Zhou, Ying,Yang, Jing-Kui,Zhao, Hong,He, Yujian,Wang, Peilong,He, Yujian,Cao, Zhiqin,Luo, Maoqiang.

[9]Colorimetric detection of ractopamine and salbutamol using gold nanoparticles functionalized with melamine as a probe. Wang, Peilong,Su, Xiaoou,Zhou, Ying,Zhao, Hong,He, Yujian,He, Yujian.

[10]Dual-mode detection of organophosphate pesticides in pear and Chinese cabbage based on fluorescence and AuNPs colorimetric assays. He Yu,Miao Wang,Jing Cao,Yongxin She,Yongan Zhu,Jiaming Ye,A. M. Abd El-Aty,Ahmet Hacımüftüoğlu,Jing Wang,Shuibing Lao. 2021

[11]A versatile nanozyme integrated colorimetric and photothermal lateral flow immunoassay for highly sensitive and reliable Aspergillus flavus detection. Meijuan Liang,Xinfa Cai,Yaoyao Gao,Honglin Yan,Jiayun Fu,Xiaoqian Tang,Qi Zhang,Peiwu Li. 2022

[12]Oxidase-like nanozymes-driven colorimetric, fluorescence and electrochemiluminescence assays for pesticide residues. Sha Liu,Chao Nie,Fengjiao He,Guojian Wu,Heng Wang,Si Li,Chenxing Du,Zhi Zheng,Jieshun Cheng,Yizhong Shen,Jie Cheng. 2024

[13]Dual inner filter effect-driven ultrasensitive LFIA via Au@Pd core-shell nanoparticles for furazolidone detection. Jing Zhou,Yuanyuan Cheng,Runting Han,Weijie Gong,Lei Zhao,Leina Dou,Xinjie Wang,Ibrahim A. Darwish,Daohong Zhang. 2026

[14]An enzyme-encapsulated nanoliposomes based colorimetric immunosensor for the sensitive detection of clothianidin. He Chen,Juan Zhou,Li An,Huan Ma,Meng Li,Haixia Lei,Lei Wang,Lufei Zheng,Zenglong Chen,Xujin Wu. 2025

[15]A simple aptamer-based fluorescent assay for the detection of Aflatoxin B-1 in infant rice cereal. Chen, Lu,Wen, Fang,Li, Ming,Guo, Xiaodong,Li, Songli,Zheng, Nan,Wang, Jiaqi,Chen, Lu,Chen, Lu,Wen, Fang,Li, Ming,Guo, Xiaodong,Li, Songli,Zheng, Nan,Wang, Jiaqi,Zheng, Nan,Wang, Jiaqi.

[16]Gold Nanoparticle-Aptamer Based Colorimetric Biosensing Assays. Liu Jin-chuan,Lu Zhen-zhen,Chen Ai-liang. 2014

[17]Modified capillary electrophoresis based measurement of the binding between DNA aptamers and an unknown concentration target. Zhang, Yue-Wei,Yan, Hai-Yu,Fu, Ping,Jiang, Fei,Zhang, Yao,Wu, Wen-Xue,Li, Jin-Xiang.

[18]A qPCR aptasensor for sensitive detection of aflatoxin M-1. Guo, Xiaodong,Wen, Fang,Zheng, Nan,Li, Songli,Wang, Jiaqi,Guo, Xiaodong,Fauconnier, Marie-Laure,Guo, Xiaodong,Wen, Fang,Zheng, Nan,Li, Songli,Wang, Jiaqi,Zheng, Nan,Wang, Jiaqi.

[19]Replacing antibodies with aptamers in lateral flow immunoassay. Chen, Ailiang,Yang, Shuming,Chen, Ailiang,Yang, Shuming.

[20]Split aptamers and their applications in sandwich aptasensors. Chen, Ailiang,Yan, Mengmeng,Yang, Shuming,Chen, Ailiang,Yan, Mengmeng,Yang, Shuming.

作者其他论文 更多>>