Ten Years of Lateral Flow Immunoassay Technique Applications: Trends, Challenges and Future Perspectives

被引:256
作者
Di Nardo, Fabio [1 ]
Chiarello, Matteo [1 ]
Cavalera, Simone [1 ]
Baggiani, Claudio [1 ]
Anfossi, Laura [1 ]
机构
[1] Univ Torino, Dept Chem, I-10125 Turin, Italy
关键词
lateral flow immunoassay; lateral flow assay applications; paper-based biosensor; immunochromatographic strip test; rapid diagnostic test; point-of-care testing; RAPID QUANTITATIVE DETECTION; IMMUNOCHROMATOGRAPHIC ASSAY; MONOCLONAL-ANTIBODY; SENSITIVE DETECTION; ISOTHERMAL AMPLIFICATION; MULTIPLEXED DETECTION; STRIP ASSAY; PAPER STRIP; VALIDATION; DIAGNOSIS;
D O I
10.3390/s21155185
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
The Lateral Flow Immunoassay (LFIA) is by far one of the most successful analytical platforms to perform the on-site detection of target substances. LFIA can be considered as a sort of lab-in-a-hand and, together with other point-of-need tests, has represented a paradigm shift from sample-to-lab to lab-to-sample aiming to improve decision making and turnaround time. The features of LFIAs made them a very attractive tool in clinical diagnostic where they can improve patient care by enabling more prompt diagnosis and treatment decisions. The rapidity, simplicity, relative cost-effectiveness, and the possibility to be used by nonskilled personnel contributed to the wide acceptance of LFIAs. As a consequence, from the detection of molecules, organisms, and (bio)markers for clinical purposes, the LFIA application has been rapidly extended to other fields, including food and feed safety, veterinary medicine, environmental control, and many others. This review aims to provide readers with a 10-years overview of applications, outlining the trends for the main application fields and the relative compounded annual growth rates. Moreover, future perspectives and challenges are discussed.
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页数:33
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共 294 条
[31]   Recent Advancements in Enzyme-Based Lateral Flow Immunoassays [J].
Calabria, Donato ;
Calabretta, Maria Maddalena ;
Zangheri, Martina ;
Marchegiani, Elisa ;
Trozzi, Ilaria ;
Guardigli, Massimo ;
Michelini, Elisa ;
Di Nardo, Fabio ;
Anfossi, Laura ;
Baggiani, Claudio ;
Mirasoli, Mara .
SENSORS, 2021, 21 (10)
[32]   Point-of-Need Diagnostics for Foodborne Pathogen Screening [J].
Campbell, Veronica R. ;
Carson, Mariam S. ;
Lao, Amelia ;
Maran, Kajal ;
Yang, Eric J. ;
Kamei, Daniel T. .
SLAS TECHNOLOGY, 2021, 26 (01) :55-79
[33]   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
[34]   Lateral flow microarrays: a novel platform for rapid nucleic acid detection based on miniaturized lateral flow chromatography [J].
Carter, Darren J. ;
Cary, R. Bruce .
NUCLEIC ACIDS RESEARCH, 2007, 35 (10)
[35]   A multi-target lateral flow immunoassay enabling the specific and sensitive detection of total antibodies to SARS COV-2 [J].
Cavalera, Simone ;
Colitti, Barbara ;
Rosati, Sergio ;
Ferrara, Gianmarco ;
Bertolotti, Luigi ;
Nogarol, Chiara ;
Guiotto, Cristina ;
Cagnazzo, Celeste ;
Denina, Marco ;
Fagioli, Franca ;
Di Nardo, Fabio ;
Chiarello, Matteo ;
Baggiani, Claudio ;
Anfossi, Laura .
TALANTA, 2021, 223
[36]   Monoclonal antibodies with subnanomolar affinity to tenofovir for monitoring adherence to antiretroviral therapies: from hapten synthesis to prototype development [J].
Cavalera, Simone ;
Agullo, Consuelo ;
Mercader, Josep, V ;
Di Nardo, Fabio ;
Chiarello, Matteo ;
Anfossi, Laura ;
Baggiani, Claudio ;
D'Avolio, Antonio ;
Abad-Somovilla, Antonio ;
Abad-Fuentes, Antonio .
JOURNAL OF MATERIALS CHEMISTRY B, 2020, 8 (45) :10439-10449
[37]   Switching from Multiplex to Multimodal Colorimetric Lateral Flow Immunosensor [J].
Cavalera, Simone ;
Di Nardo, Fabio ;
Forte, Luca ;
Marinoni, Francesca ;
Chiarello, Matteo ;
Baggiani, Claudio ;
Anfossi, Laura .
SENSORS, 2020, 20 (22) :1-14
[38]   Enzyme and lateral flow monoclonal antibody-based immunoassays to simultaneously determine spirotetramat and spirotetramat-enol in foodstuffs [J].
Cevallos-Cedeno, Ramon E. ;
Agullo, Consuelo ;
Abad-Fuentes, Antonio ;
Abad-Somovilla, Antonio ;
Mercader, Josep V. .
SCIENTIFIC REPORTS, 2021, 11 (01)
[39]   Upconverting nanoparticle clustering based rapid quantitative detection of tetrahydrocannabinol (THC) on lateral-flow immunoassay [J].
Chand, Rohit ;
Mittal, Neha ;
Srinivasan, Seshasai ;
Rajabzadeh, Amin Reza .
ANALYST, 2021, 146 (02) :574-580
[40]   Combining Chemometrics and Sensors: Toward New Applications in Monitoring and Environmental Analysis [J].
Chapman, James ;
Vi Khanh Truong ;
Elbourne, Aaron ;
Gangadoo, Sheeana ;
Cheeseman, Samuel ;
Rajapaksha, Piumie ;
Latham, Kay ;
Crawford, Russell J. ;
Cozzolino, Daniel .
CHEMICAL REVIEWS, 2020, 120 (13) :6048-6069