Smartphone-Based Dual-Modality Imaging System for Quantitative Detection of Color or Fluorescent Lateral Flow Immunochromatographic Strips

被引:0
作者
Yafei Hou
Kan Wang
Kun Xiao
Weijian Qin
Wenting Lu
Wei Tao
Daxiang Cui
机构
[1] School of Electronic Information and Electrical Engineering,Department of Instrument Science and Engineering
[2] Shanghai Jiao Tong University,Zhujiang Hospital
[3] Shanghai Engineering Research Center for Intelligent Diagnosis and Treatment Instrument,undefined
[4] Southern Medical University,undefined
来源
Nanoscale Research Letters | 2017年 / 12卷
关键词
Smartphone; Dual-modality imaging; Lateral flow strip; Quantitative detection;
D O I
暂无
中图分类号
学科分类号
摘要
Nowadays, lateral flow immunochromatographic assays are increasingly popular as a diagnostic tool for point-of-care (POC) test based on their simplicity, specificity, and sensitivity. Hence, quantitative detection and pluralistic popular application are urgently needed in medical examination. In this study, a smartphone-based dual-modality imaging system was developed for quantitative detection of color or fluorescent lateral flow test strips, which can be operated anywhere at any time. In this system, the white and ultra-violet (UV) light of optical device was designed, which was tunable with different strips, and the Sobel operator algorithm was used in the software, which could enhance the identification ability to recognize the test area from the background boundary information. Moreover, this technology based on extraction of the components from RGB format (red, green, and blue) of color strips or only red format of the fluorescent strips can obviously improve the high-signal intensity and sensitivity. Fifty samples were used to evaluate the accuracy of this system, and the ideal detection limit was calculated separately from detection of human chorionic gonadotropin (HCG) and carcinoembryonic antigen (CEA). The results indicated that smartphone-controlled dual-modality imaging system could provide various POC diagnoses, which becomes a potential technology for developing the next-generation of portable system in the near future.
引用
收藏
相关论文
共 33 条
[21]   Performance Improvement of the One-Dot Lateral Flow Immunoassay for Aflatoxin B1 by Using a Smartphone-Based Reading System [J].
Lee, Sangdae ;
Kim, Giyoung ;
Moon, Jihea .
SENSORS, 2013, 13 (04) :5109-5116
[22]   Automated Low-Cost Smartphone-Based Lateral Flow Saliva Test Reader for Drugs-of-Abuse Detection [J].
Carrio, Adrian ;
Sampedro, Carlos ;
Luis Sanchez-Lopez, Jose ;
Pimienta, Miguel ;
Campoy, Pascual .
SENSORS, 2015, 15 (11) :29569-29593
[23]   Development of a smartphone-based rapid dual fluorescent diagnostic system for the simultaneous detection of influenza A and H5 subtype in avian influenza A-infected patients [J].
Yeo, Seon-Ju ;
Kang, Homan ;
Tung Duy Dao ;
Bui Thi Cuc ;
Anh Thi Viet Nguyen ;
Trinh Thi Thuy Tien ;
Nguyen Le Khanh Hang ;
Hoang Vu Mai Phuong ;
Le Thi Thanh ;
Le Quynh Mai ;
Rah, Yoonhyuk ;
Yu, Kyoungsik ;
Shin, Ho-Joon ;
Chong, Chom-Kyu ;
Choi, Hak Soo ;
Park, Hyun .
THERANOSTICS, 2018, 8 (22) :6132-6148
[24]   A simple and compact smartphone accessory for quantitative chemiluminescence-based lateral flow immunoassay for salivary cortisol detection [J].
Zangheri, Martina ;
Cevenini, Luca ;
Anfossi, Laura ;
Baggiani, Claudio ;
Simoni, Patrizia ;
Di Nardo, Fabio ;
Roda, Aldo .
BIOSENSORS & BIOELECTRONICS, 2015, 64 :63-68
[25]   Household Fluorescent Lateral Flow Strip Platform for Sensitive and Quantitative Prognosis of Heart Failure Using Dual-Color Upconversion Nanoparticles [J].
You, MinLi ;
Lin, Min ;
Gong, Yan ;
Wang, Shurui ;
Li, Ang ;
Ji, Lingyu ;
Zhao, Haoxiang ;
Ling, Kai ;
Wen, Ting ;
Huang, Yuan ;
Gao, Dengfeng ;
Ma, Qiong ;
Wang, Tingzhong ;
Ma, Aiqun ;
Li, Xiaoling ;
Xu, Feng .
ACS NANO, 2017, 11 (06) :6261-6270
[26]   Luminescent/magnetic PLGA-based hybrid nanocomposites: a smart nanocarrier system for targeted codelivery and dual-modality imaging in cancer theranostics [J].
Shen, Xue ;
Li, Tingting ;
Chen, Zhongyuan ;
Geng, Yue ;
Xie, Xiaoxue ;
Li, Shun ;
Yang, Hong ;
Wu, Chunhui ;
Liu, Yiyao .
INTERNATIONAL JOURNAL OF NANOMEDICINE, 2017, 12 :4299-4322
[27]   Smartphone-based portable electrochemical-colorimetric dual-mode biosensor for glucose detection in a co-reaction system [J].
Xu, Jiaqi ;
Shen, Jianing ;
Zhang, Bo ;
Zhang, Yao ;
Lv, Xiaoqing ;
Zhu, Guixian .
ELECTROCHIMICA ACTA, 2024, 481
[28]   Development of a smartphone-based quantum dot lateral flow immunoassay strip for ultrasensitive detection of anti-SARS-CoV-2 IgG and neutralizing antibodies [J].
Li, Jinfeng ;
Liu, Bochao ;
Tang, Xi ;
Wu, Ze ;
Lu, Jinhui ;
Liang, Chaolan ;
Hou, Shuiping ;
Zhang, Ling ;
Li, Tingting ;
Zhao, Wei ;
Fu, Yongshui ;
Ke, Yuebin ;
Li, Chengyao .
INTERNATIONAL JOURNAL OF INFECTIOUS DISEASES, 2022, 121 :58-65
[29]   Rational design of MoS2 QDs and Eu3+ as a ratiometric fluorescent probe for point-of-care visual quantitative detection of tetracycline via smartphone-based portable platform [J].
Zhang, Jingfei ;
Shi, Guoyue .
ANALYTICA CHIMICA ACTA, 2022, 1198
[30]   A Lateral Flow Assay Based on Streptavidin-biotin Amplification System with Recombinase Polymerase Amplification for Rapid and Quantitative Detection of Salmonella enteritidis [J].
Feng, Fan ;
Fu, Qiang ;
Cao, Fengrong ;
Yuan, Yun ;
Kong, Ruixue ;
Ji, Dandan ;
Liu, Haiyun .
CHEMBIOCHEM, 2024, 25 (03)