Development of an ultrasensitive aptasensor for the detection of aflatoxin B-1

文献类型: 外文期刊

第一作者: Guo, Xiaodong

作者: Guo, Xiaodong;Wen, Fang;Zheng, Nan;Wang, Haiwei;Wang, Hui;Li, Songli;Wang, Jiaqi;Guo, Xiaodong;Luo, Qiujiang;Guo, Xiaodong;Wen, Fang;Zheng, Nan;Wang, Haiwei;Wang, Hui;Li, Songli;Wang, Jiaqi;Zheng, Nan;Wang, Jiaqi

作者机构:

关键词: Aflatoxin B-1;Aptasensor;RT-qPCR;Feed and food safety

期刊名称:BIOSENSORS & BIOELECTRONICS ( 影响因子:10.618; 五年影响因子:9.323 )

ISSN: 0956-5663

年卷期: 2014 年 56 卷

页码:

收录情况: SCI

摘要: Contamination of feed and food by aflatoxin B-1 (AFB(1)), one of the most toxic of the mycotoxins, is a global concern. To prevent food safety scares, and avoid subsequent economic losses due to the recall of contaminated items, methods for the rapid, sensitive and specific detection of AFB(1) at trace levels are much in demand. In this work, a simple, ultrasensitive, and reliable aptasensor is described for the detection of AFB(1). An AFB(1) aptamer was used as a molecular recognition probe, while its complementary DNA played a role as a signal generator for amplification by real-time quantitative polymerase chain reaction (PCR). Under optimal conditions, a wide linear detection range (5.0 x 10(-5) to 5.0 ng mL(-1)) was achieved, with a high sensitivity (limit of detection (LOD)=25 fg mL(-1)). In addition, the proposed aptasensor exhibited excellent specificity for AFB(1) compared with eight other mycotoxins, with no obvious Ct value change. This aptasensor can also be used in quantifying AFB(1) levels in Chinese wildrye hay samples and infant rice cereal samples, demonstrating satisfactory recoveries in the range of 88-127% and 94-119%, respectively. This detection technique has a significant potential for high-throughput, quantitative determination of mycotoxin levels in a large range of feeds and foods. (C) 2014 Elsevier B.V. All rights reserved.

分类号:

  • 相关文献

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

[2]Aptamer based photometric assay for the antibiotic sulfadimethoxine based on the inhibition and reactivation of the peroxidase-like activity of gold nanoparticles. Yan, Jiao,Huang, Yafei,Zhang, Chenghui,Fang, Zongzhuang,Yan, Jiao,Huang, Yafei,Bai, Wenhui,Yan, Mengmeng,Zhu, Chao,Chen, Ailiang,Yan, Jiao,Huang, Yafei,Bai, Wenhui,Yan, Mengmeng,Zhu, Chao,Chen, Ailiang.

[3]Palladium Nanoparticles-Based Fluorescence Resonance Energy Transfer Aptasensor for Highly Sensitive Detection of Aflatoxin M-1 in Milk. Li, Hui,Yang, Daibin,Li, Peiwu,Zhang, Qi,Zhang, Wen,Ding, Xiaoxia,Mao, Jin,Wu, Jing,Li, Hui,Yang, Daibin,Li, Peiwu,Zhang, Qi,Zhang, Wen,Mao, Jin,Wu, Jing,Li, Hui,Li, Peiwu,Zhang, Qi,Ding, Xiaoxia,Mao, Jin,Wu, Jing,Li, Peiwu,Zhang, Qi,Zhang, Wen,Ding, Xiaoxia. 2017

[4]Application of DNA aptamers as sensing layers for detection of carbofuran by electrogenerated chemiluminescence energy transfer. Li, Shuhuai,Wu, Xuejin,Liu, Chunhua,Yin, Guihao,Luo, Jinhui,Xu, Zhi,Li, Shuhuai,Wu, Xuejin,Liu, Chunhua,Yin, Guihao,Luo, Jinhui,Xu, Zhi.

[5]An aptamer based assay for the beta-adrenergic agonist ractopamine based on aggregation of gold nanoparticles in combination with a molecularly imprinted polymer. Wang, Peilong,Su, Xiaoou,Shi, Lei,Yuan, Yuwei.

[6]Split aptamer-based sandwich fluorescence resonance energy transfer assay for 19-nortestosterone. Bai, Wenhui,Zhu, Chao,Liu, Jinchuan,Yan, Mengmeng,Yang, Shuming,Chen, Ailiang,Bai, Wenhui,Zhu, Chao,Liu, Jinchuan,Yan, Mengmeng,Yang, Shuming,Chen, Ailiang.

[7]Comprehensive evaluation of candidate reference genes for gene expression studies in Lysiphlebia japonica (Hymenoptera: Aphidiidae) using RT-qPCR. Xue-Ke Gao,Cui, Jin-Jie,Shuai Zhang,Jun-Yu Luo,Chun-Yi Wang,Li-Min Lü,Li-Juan Zhang,Xiang-Zhen Zhu,Li Wang,Hui Lu,Jin-Jie Cui.

[8]Assessment of reference gene stability in Rice stripe virus and Rice black streaked dwarf virus infection rice by quantitative Real-time PCR. Fang, Peng,Sun, Feng,Lan, Ying,Du, Linlin,Zhou, Yijun,Zhou, Tong,Fang, Peng,Sun, Feng,Lan, Ying,Du, Linlin,Zhou, Yijun,Zhou, Tong,Fang, Peng,Lu, Rongfei,Shen, Wenbiao. 2015

[9]MicroRNAs associated with drought response in the pulse crop common bean (Phaseolus vulgaris L.). Wu, Jing,Wang, Lanfen,Wang, Shumin. 2017

[10]Molecular cloning and expression pattern of oriental river prawn (Macrobrachium nipponense) nitric oxide synthase. Rahman, N. M. A.,Fu, H. T.,Jin, S.,Bai, H. K.,Liang, G. X.,Gong, Y. S.,Wu, Y.,Fu, H. T.,Sun, S. M.,Qiao, H.,Jin, S.,Zhang, W. Y.,Xiong, Y. W.,Rahman, N. M. A.. 2016

[11]Molecular cloning and expression analysis of Fem1b from oriental river prawn Macrobrachium nipponense. Rahman, N. M. A.,Fu, H.,Bai, H.,Jiang, F. W.,Liang, G.,Jiang, F. F.,Wu, Y.,Fu, H.,Qiao, H.,Jin, S.,Zhang, W.,Sun, S.,Gong, Y.,Xiong, Y.,Rahman, N. M. A.. 2016

[12]A duplex, SYBR Green I-based RT-qPCR assay for the simultaneous detection of Apple chlorotic leaf spot virus and Cherry green ring mottle virus in peach. Liang, Pengbo,Wang, Hongqing,Zhao, Zhe,Yu, Yun,Zhang, Zhixiang,Liang, Pengbo,Ma, Yuxin,Li, Shifang. 2013

[13]A one step real-time RT-PCR assay for the quantitation of Wheat yellow mosaic virus (WYMV). Liu, Wenwen,Zhao, Xiaojuan,Zhang, Peng,Thi Thi Mar,Liu, Yan,Wang, Xifeng,Zhang, Zongying,Han, Chenggui,Zhang, Zongying,Han, Chenggui. 2013

[14]Evaluation of putative internal reference genes for gene expression normalization in Nannochloropsis sp by quantitative real-time RT-PCR. Cao, Shaona,Zhang, Xiaowen,Ye, Naihao,Fan, Xiao,Xu, Dong,Cao, Shaona,Wang, Yitao,Wang, Wenqi,Liang, Chengwei. 2012

[15]RT-qPCR analysis of dexB and galE gene expression of Streptococcus alactolyticus in Astragalus membranaceus fermentation. Hao, Gui J.,Zhang, Kai,Zhang, Jing Y.,Wang, Xu R.,Qin, Zhe,Wang, Xue Z.,Wang, Lei,Meng, Jia R.,Yang, Zhi Q.,Li, Jian X.,Hao, Gui J.,Zhang, Kai,Zhang, Jing Y.,Wang, Xu R.,Qin, Zhe,Wang, Xue Z.,Wang, Lei,Meng, Jia R.,Yang, Zhi Q.,Li, Jian X..

[16]Identification and comparative analysis of the Pseudosciaena crocea microRNA transcriptome response to poly(I:C) infection using a deep sequencing approach. Qi, Pengzhi,Guo, Baoying,Zhu, Aiyi,Wu, Changwen,Liu, Changlin.

[17]Characterization, expression and silencing by RNAi of p53 from Penaeus monodon. Dai, Wenting,Qiu, Lihua,Zhao, Chao,Fu, Mingjun,Ma, Zhenhua,Zhou, Falin,Yang, Qibin,Qiu, Lihua,Zhao, Chao,Fu, Mingjun,Ma, Zhenhua,Zhou, Falin,Yang, Qibin,Dai, Wenting,Yang, Qibin.

[18]Cloning, expression and methylation analysis of piwil2 in half-smooth tongue sole (Cynoglossus semilaevis). Zhang, Liyan,Zhao, Wen,Zhang, Liyan,Liu, Wanjun,Shao, Changwei,Zhang, Ning,Li, Hailong,Liu, Kun,Dong, Zhongdian,Qi, Qian,Chen, Songlin,Liu, Wanjun,Dong, Zhongdian,Qi, Qian.

[19]Quantification of southern rice black streaked dwarf virus and rice black streaked dwarf virus in the organs of their vector and nonvector insect over time. Wang, Biao,Wang, Xifeng,Ren, Yingdang,Lu, Chuantao.

[20]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.

作者其他论文 更多>>