Development of a chemiluminescence-based quantitative lateral flow immunoassay for on-field detection of 2,4,6-trinitrotoluene

被引:65
作者
Mirasoli, Mara [1 ]
Buragina, Angela [1 ]
Dolci, Luisa Stella [1 ]
Guardigli, Massimo [1 ]
Simoni, Patrizia [2 ]
Montoya, Angel [3 ]
Maiolini, Elisabetta [4 ]
Girotti, Stefano [4 ]
Roda, Aldo [1 ]
机构
[1] Alma Mater Studiorum Univ Bologna, Dept Pharmaceut Sci, I-40126 Bologna, Italy
[2] Alma Mater Studiorum Univ Bologna, Dept Clin Med, I-40138 Bologna, Italy
[3] Univ Politecn Valencia, Interuniv Res Inst Bioengn & Human Ctr Technol I3, Valencia 46022, Spain
[4] Alma Mater Studiorum Univ Bologna, Dept Met Sci Electrochem & Chem Tech, I-40127 Bologna, Italy
关键词
Biosensors; Chemiluminescence; Imaging; Lateral flow immunoassay; 2,4,6-Trinitrotoluene; EXPLOSIVES;
D O I
10.1016/j.aca.2012.01.036
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
Simple, rapid and highly sensitive assays, possibly allowing on-site analysis, are required in the security and forensic fields or to obtain early signs of environmental pollution. Several bioanalytical methods and biosensors based on portable devices have been developed for this purpose. Among them, Lateral Flow ImmunoAssays (LFIAs) offer the advantages of rapidity and ease of use and, thanks to the high specificity of antigen-antibody binding, allow greatly simplifying and reducing sample pre-analytical treatments. However, LFIAs usually employ colloidal gold or latex beads as labels and they rely on the formation of colored bands visible by the naked eye. With this assay format, only qualitative or semi-quantitative information can be obtained and low sensitivity is achieved. Recently, the use of enzyme-catalyzed chemiluminescence detection in LFIA has been proposed to overcome these problems. In this work, we describe the development of a quantitative CL-LFIA assay for the detection of 2,4,6-trinitrotoluene (TNT) in real samples. Thanks to the use of a portable imaging device for CL signal measurement based on a thermoelectrically cooled CCD camera, the analysis could be performed directly on-field. A limit of detection of 0.2 mu g mL(-1) TNT was obtained, which is five times lower than that obtained with a previously described colloidal gold-based LFIA developed employing the same immunoreagents. The dynamic range of the assay extended up to 5 mu g mL(-1) TNT and recoveries ranging from 97% to 111% were obtained in the analysis of real samples (post blast residues obtained from controlled explosion). (C) 2012 Elsevier B.V. All rights reserved.
引用
收藏
页码:167 / 172
页数:6
相关论文
共 22 条
[1]   A Hybrid Nanosensor for TNT Vapor Detection [J].
Aguilar, Alvaro Diaz ;
Forzani, Erica S. ;
Leright, Mathew ;
Tsow, Francis ;
Cagan, Avi ;
Iglesias, Rodrigo A. ;
Nagahara, Larry A. ;
Amlani, Islamshah ;
Tsui, Raymond ;
Tao, N. J. .
NANO LETTERS, 2010, 10 (02) :380-384
[2]   TNT detection using llama antibodies and a two-step competitive fluid array immunoassay [J].
Anderson, George P. ;
Goldman, Ellen R. .
JOURNAL OF IMMUNOLOGICAL METHODS, 2008, 339 (01) :47-54
[3]  
[Anonymous], SW846 US EPA
[4]   Polymer-Oligopeptide Composite Coating for Selective Detection of Explosives in Water [J].
Cerruti, Marta ;
Jaworski, Justyn ;
Raorane, Digvijay ;
Zueger, Chris ;
Varadarajan, John ;
Carraro, Carlo ;
Lee, Seung-Wuk ;
Maboudian, Roya ;
Majumdar, Arun .
ANALYTICAL CHEMISTRY, 2009, 81 (11) :4192-4199
[5]   Chemiluminometric enzyme-linked immunosorbent assays (ELISA)-on-a-chip biosensor based on cross-flow chromatography [J].
Cho, Il-Hoon ;
Paek, Eui-Hwan ;
Kim, Young-Kee ;
Kim, Joo-Ho ;
Paek, Se-Hwan .
ANALYTICA CHIMICA ACTA, 2009, 632 (02) :247-255
[6]   Plastic ELISA-on-a-chip based on sequential cross-flow chromatography [J].
Cho, JH ;
Han, SM ;
Paek, EH ;
Cho, IH ;
Paek, SH .
ANALYTICAL CHEMISTRY, 2006, 78 (03) :793-800
[7]   A case study of contaminants on military ranges: Camp Edwards, Massachusetts, USA [J].
Clausen, J ;
Robb, J ;
Curry, D ;
Korte, N .
ENVIRONMENTAL POLLUTION, 2004, 129 (01) :13-21
[8]   Development of a chemiluminescent ELISA and a colloidal gold-based LFIA for TNT detection [J].
Girotti, S. ;
Eremin, S. A. ;
Montoya, A. ;
Moreno, M. J. ;
Caputo, P. ;
D'Elia, M. ;
Ripani, L. ;
Romolo, F. S. ;
Maiolini, E. .
ANALYTICAL AND BIOANALYTICAL CHEMISTRY, 2010, 396 (02) :687-695
[9]  
Guardigli M, 2011, CHEMILUMINESCENCE AND BIOLUMINESCENCE: PAST, PRESENT AND FUTURE, P557
[10]   An integrated portable Raman sensor with nanofabricated gold bowtie array substrates for energetics detection [J].
Hatab, Nahla A. ;
Rouleau, C. M. ;
Retterer, Scott T. ;
Eres, Gyula ;
Hatzinger, Paul B. ;
Gu, Baohua .
ANALYST, 2011, 136 (08) :1697-1702