Smartphone-based visualized microarray detection for multiplexed harmful substances in milk

文献类型: 外文期刊

第一作者: Li, Zhoumin

作者: Li, Zhoumin;Li, Zhonghui;Zhao, Dingyi;Xu, Danke;Li, Zhoumin;Wen, Fang;Jiang, Jindou;Zhao, Dingyi

作者机构:

关键词: Smartphone;Visual detection;Protein microarray;Silver enhancement;Antibiotic residues

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

ISSN:

年卷期:

页码:

收录情况: SCI

摘要: In this paper, we report a sensitive, simple and inexpensive analytical method for the immunoassay microarray based on a smartphone in which various harmful substances in milk could be assayed. Tetracyclines (TCs) and Quinolones (QNs) were selected as the model targets in this study. TCs and QNs antigens were immobilized in the microarray and then samples containing free of antibiotics and corresponding antibodies as well as AgNPs labeled secondary antibodies were added to the microarray. The signal of this competitive format was further amplified by silver enhancement technique based on the development reagents and achieved a visual dots in the array. The resulting microarray could be detected by the smartphone placed in the minicartridge. The limit of detection (LOD) of this novel detection platform was 1.51 ng mL(-1) (TCs) and 1.74 ng mL(-1) (QNs). To achieve one-well quantitative analysis, a series of gradient concentration mouse IgG was immobilized in the same well. As a result, an internal standard curve was plotted by the signal of different concentrations of mouse IgG. The results showed that a quantitative detection of TCs and QNs established were consistent with external standard curve. Compared to other methods, this method was superior in terms of detection limit, time saving, and one well quantitative detected with smartphone which were simple sample-preparation.

分类号: Q

  • 相关文献

[1]Occurrence of several main antibiotic residues in raw milk in 10 provinces of China. Zheng, Nan,Wang, Jiaqi,Han, Rongwei,Xu, Xiaomin,Zhen, Yunpeng,Qu, Xueyin,Sun, Peng,Li, Songli,Han, Rongwei,Yu, Zhongnuo. 2013

[2]Development and Application of Loop-Mediated Isothermal Amplification Assays for Rapid Visual Detection of cry2Ab and cry3A Genes in Genetically-Modified Crops. Li, Feiwu,Zhang, Shihong,Li, Feiwu,Yan, Wei,Long, Likun,Li, Congcong,Qi, Xing. 2014

[3]A powerless on-the-spot detection protocol for transgenic crops within 30 min, from leaf sampling up to results. Wang, Liu,Wang, Rui,Yu, Yonghua,Zhang, Fang,Ying, Yibin,Wu, Jian,Wang, Xiaofu,Xu, Junfeng.

[4]Simultaneous Determination of Malachite Green, Diethylstilbestrol, Medroxyprogesterone, and 3-Amino-2-Oxazolidone in Synbranchoid Eels by a Protein Microarray Method. Liu, Ying-Chun,Wang, Quan,Jiang, Wei,Chen, Yong-Jun,Zhao, Xin-Yu,Jing, Zhen-Yu,Zhang, Meng.

[5]Detection of antibodies against avian influenza virus by protein microarray using nucleoprotein expressed in insect cells. Zhao, Yuhui,Li, Guangxing,Wang, Xiurong,Chen, Pucheng,Zeng, Xianying,Bao, Hongmei,Wang, Yunhe,Xu, Xiaolong,Jiang, Yongping,Chen, Hualan.

[6]Establishment and Application of a Visual DNA Microarray for the Detection of Food-borne Pathogens. Li, Yongjin,Li, Yongjin.

[7]Image processing methods to evaluate tomato and zucchini damage in post-harvest stages. Antonio Alvarez-Bermejo, Jose,Giagnocavo, Cynthia,Ming, Li,Yang Xinting,Castillo Morales, Encarnacion,Morales Santos, Diego P.. 2017

[8]eFarm: A Tool for Better Observing Agricultural Land Systems. Yu, Qiangyi,Shi, Yun,Tang, Huajun,Yang, Peng,Xie, Ankun,Liu, Bin,Wu, Wenbin. 2017

[9]A smartphone colorimetric reader integrated with an ambient light sensor and a 3D printed attachment for on-site detection of zearalenone. Chen, Yuan,Fu, Qiangqiang,Xie, Jun,Song, Qifang,Tang, Yong,Wang, Hong,Li, Dagang,Ke, Dongxu.

[10]A crop trait information acquisition system with multitag-based identification technologies for breeding precision management. Wang, Kai-yi.

作者其他论文 更多>>