数字农科院2.0

Rolling Circle Amplification-Enabled Ultrasensitive Point-of-Care Test Method for Aflatoxin B1 in the Environment and Food

文献类型: 外文期刊

作者: Duan, Hongyu;Zhao, Yuan;Hu, Xiaofeng;Liang, Meijuan;Yang, Xianglong;Yu, Li;Oranj, Behrouz Tajdar;Romanovski, Valentin;Li, Peiwu;Zhang, Zhaowei

作者机构:

关键词: aflatoxin;rolling circle amplification;environmental monitoring;food safety

期刊名称: FOODS

ISSN:

年卷期: 2024 年 13 卷 19 期

页码:

收录情况: SCIE(2024版)

摘要: Aflatoxin B1 (AFB1) contamination poses a fatal risk to human beings and urgently needs highly sensitive detection for environmental monitoring and food safety. However, the existing challenges are the unsatisfied sensitivity of the immunoassay methods and the complex matrix effect. Rolling circle amplification (RCA) is a promising method for nucleic acid isothermal amplification due to its high specificity and sensitivity. Herein, we constructed a general RCA-based point-of-care test method (RCA-POCT). With biotinylated antibodies, streptavidin, and biotinylated RCA primers, we realized the signal transduction and preliminary signal amplification. In this way, the fluorescent signal of the immunocomplex on the microwells was greatly enhanced. Under optimal conditions, we recorded sensitive detection limits for aflatoxin B1 (AFB1) of 1.94, 16.3, and 37.7 fg/mL (femtogram per microliter), and wide linear ranges with 5 x 10-6 to 5, 5 x 10-5 to 5, and 5 x 10-5 to 5 ng/mL in the irrigation water, field soil, and peanut samples, respectively. Satisfactory recovery, specificity, repeatability, and reproducibility were observed. The RCA-POCT was validated by comparing it to the HPLC method. This work provides a general RCA-assisted detection method for AFB1 in the environment and food.

分类号:

  • 相关文献

[1]Z-scheme Bi2O3/CuBi2O4 heterojunction enabled sensitive photoelectrochemical detection of aflatoxin B1 for health care, the environment, and food. Xiao Chen,Wenqin Wu,Qi Zhang,Cheng Wang,Yingying Fan,Huimin Wu,Zhaowei Zhang. 2022

[2]Carnation-like Morphology of BiVO4-7 Enables Sensitive Photoelectrochemical Determination of Cr(VI) in the Food and Environment. Wenqin Wu,Zhao Tan,Xiao Chen,Xiaomei Chen,Ling Cheng,Huimin Wu,Peiwu Li,Zhaowei Zhang. 2022

[3]A smartphone-powered photoelectrochemical POCT via Z-scheme Cu2O/Cu3SnS4 for dibutyl phthalate in the environmental and food. Xiao Chen,Wenqin Wu,Jing Zeng,Elena Ibañez,Alejandro Cifuentes,Jin Mao,Li Yu,Huimin Wu,Peiwu Li,Zhaowei Zhang. 2023

[4]Aggregation-induced emission-enhanced point-of-care testing method for food safety and environmental monitoring. Liyuan Wang,Xiaofeng Hu,Shenling Wang,Wenqin Wu,Kaiming Wu,Li Yu,Peiwu Li,Zhaowei Zhang. 2025

[5]Early evaluation of aflatoxin occurrence risk using an ultra-sensitive immunoassay for pre-aflatoxin protein biomarker detection. Fu J.,Gu M.,Tang X.,Zhang Q.,Li P.. 2024

[6]花生对黄曲霉侵染抗性的AFLP标记. 雷永,廖伯寿,王圣玉,姜慧芳. 2004

[7]关注黄曲霉毒素国内外限量标准;完善食品安全保障措施. 范蓓,李庆鹏,哈益明. 2010

[8]Editorial: Environmental Monitoring and Remediation Using Microbiotechnology. Tian Li,Lean Zhou,Xiaojing Li,Li Yuan,Wei Zhi. 2022

[9]Aggregation-based analytical chemistry in point-of-care nanosensors. Li, Yuechun,Cui, Zhaowen,Huang, Lunjie,Zhang, Daohong,Shen, Yizhong,Cheng, Jie,Wang, Jianlong. 2024

[10]Aflatoxin contamination of peanuts at harvest in China from 2010 to 2013 and its relationship with climatic conditions. Wu, L. X.,Ding, X. X.,Li, P. W.,Du, X. H.,Zhou, H. Y.,Bai, Y. Zh,Zhang, L. X.,Wu, L. X.,Ding, X. X.,Li, P. W.,Du, X. H.,Wu, L. X.,Ding, X. X.,Li, P. W.,Du, X. H.,Zhang, L. X.,Ding, X. X.,Li, P. W.,Zhou, H. Y.,Bai, Y. Zh,Zhang, L. X.,Ding, X. X.,Li, P. W.,Zhou, H. Y.,Bai, Y. Zh,Zhang, L. X..

[11]Aflatoxin B-1 Degradation by a Pseudomonas Strain. Sangare, Lancine,Zhao, Yueju,Folly, Yawa Minnie Elodie,Chang, Jinghua,Li, Jinhan,Selvaraj, Jonathan Nimal,Xing, Fuguo,Zhou, Lu,Wang, Yan,Liu, Yang,Sangare, Lancine,Zhao, Yueju,Folly, Yawa Minnie Elodie,Chang, Jinghua,Li, Jinhan,Selvaraj, Jonathan Nimal,Xing, Fuguo,Zhou, Lu,Wang, Yan,Liu, Yang. 2014

[12]Assessment of genetic diversity among selected groundnut germplasm. I: RAPD analysis. Dwivedi, SL,Gurtu, S,Chandra, S,Yuejin, W,Nigam, SN. 2001

[13]Nutrient and Poisonous Composition in the Mixed Silage of Maize and Astragalus adsurgens Pall. with Varied Proportions. Feng, Peng,Sun, Qi-Zhong,Feng, Peng,Zheng, Hai-Yan,Ye, Sheng-Xing,Yu, Zhu,Xue, Jian-Guo. 2012

[14]Ethylene inhibited aflatoxin biosynthesis is due to oxidative stress alleviation and related to glutathione redox state changes in Aspergillus flavus. Liao, B. -S.. 2009

[15]Effect of water activity and temperature on the growth of Aspergillus flavus, the expression of aflatoxin biosynthetic genes and aflatoxin production in shelled peanuts. Liu, Xiao,Guan, Xuanli,Xing, Fuguo,Lv, Cong,Dai, Xiaofeng,Liu, Yang.

[16]Aflatoxin B-1 inhibition in Aspergillus flavus by Aspergillus niger through down-regulating expression of major biosynthetic genes and AFB(1) degradation by atoxigenic A. flavus. Xing, Fuguo,Wang, Limin,Liu, Xiao,Selvaraj, Jonathan Nimal,Wang, Yan,Zhao, Yueju,Liu, Yang.

[17]Survey of aflatoxin in dairy cow feed and raw milk in China. Han, R. W.,Zheng, N.,Wang, J. Q.,Zhen, Y. P.,Xu, X. M.,Li, S. L.,Han, R. W.,Zheng, N.,Wang, J. Q.,Zhen, Y. P.,Xu, X. M.,Li, S. L.,Han, R. W.,Zheng, N.,Wang, J. Q.,Zhen, Y. P.,Xu, X. M.,Li, S. L.,Han, R. W.. 2013

[18]A strain of Aspergillus flavus from China shows potential as a biocontrol agent for aflatoxin contamination. Zhou, Lu,Wei, Dan-Dan,Selvaraj, Jonathan Nimal,Shang, Bo,Zhang, Chu-Shu,Xing, Fu-Guo,Zhao, Yue-Ju,Wang, Yan,Liu, Yang.

[19]Inhibitory Effect of Cinnamaldehyde, Citral, and Eugenol on Aflatoxin Biosynthetic Gene Expression and Aflatoxin B-1 Biosynthesis in Aspergillus flavus. Liang, Dandan,Xing, Fuguo,Selvaraj, Jonathan Nimal,Liu, Xiao,Wang, Limin,Hua, Huijuan,Zhou, Lu,Zhao, Yueju,Wang, Yan,Liu, Yang.

[20]Current development of microfluidic immunosensing approaches for mycotoxin detection via capillary electromigration and lateral flow technology. Li, Peiwu,Zhang, Zhaowei,Zhang, Qi,Zhang, Ning,Zhang, Wen,Ding, Xiaoxia,Li, Ran,Li, Peiwu,Zhang, Zhaowei,Zhang, Qi,Li, Peiwu,Zhang, Zhaowei,Zhang, Ning,Li, Peiwu,Ding, Xiaoxia,Li, Peiwu,Zhang, Wen,Li, Ran.

作者其他论文 更多>>