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Loop-mediated isothermal amplification (LAMP) is a power tool for the amplification of specific RNA and DNA targets. Much like PCR, LAMP requires primers that surround a target amplification region and generates exponential product through a unique highly specific daisy-chain single-temperature amplification reaction. However, until recently, attempts to amplify targets of greater than 200 base pairs (bp) have been mostly unsuccessful and limited to short amplicon targets of less than 150 bp. Although short amplicons have the benefit of a rapid detection (<40 min), they do not allow for the prediction of RNA integrity based on RNA length and possible intactness. In this study, 8 primer sets were developed using 2 LAMP primer-specific software packages against the severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) nucleocapsid gene with insert lengths ranging from 262 to 945 bp in order to amplify and infer the integrity of viral RNA. Because these amplification lengths are greater than the current methods that use an insert length of 130 or less, they require a longer incubation, modified primer and temperature strategies, and the addition of specific adjuncts to prevent nonspecific amplification. This proof of concept study resulted in successful reverse transcription LAMP reactions for amplicon targets of 262, 687, 693, and 945 bp using a clinical nasopharyngeal NP sample, purified SARS-CoV-2 RNA, and crude lysate containing inactivated virus.
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http://dx.doi.org/10.7171/jbt.21-3203-015 | DOI Listing |
Plant Dis
September 2025
Jiangsu Academy of Agricultural Sciences, Nanjing, Jiangsu, China;
Grape white rot, caused by Coniella vitis, is a devastating disease that affects grape production in China and worldwide, resulting in substantial yield and quality losses. Early and accurate detection of C. vitis is critical for effective disease management.
View Article and Find Full Text PDFAnalyst
September 2025
Department of Bioengineering, University of Washington, Seattle, WA 98105, USA.
Curable sexually transmitted infections (STIs) caused by the bacteria (CT) and (NG) are widespread globally. These infections are particularly dangerous for female patients, causing pelvic inflammatory disease, infertility, and increased risk of HIV acquisition. Vaginal self-swab sampling can improve access to STI screening but is still subject to treatment delays due to centralized processing.
View Article and Find Full Text PDFJ AOAC Int
September 2025
Office of Laboratory Operations and Applied Science, Human Foods Program, U.S. Food and Drug Administration, College Park, Maryland.
Background: As a leading cause of foodborne illness worldwide, detection of Salmonella enterica subsp. enterica serovar Typhimurium is essential for food safety and public health.
Objective: This study aimed to develop a loop-mediated isothermal amplification (LAMP) assay for the rapid and sensitive detection of Salmonella ser.
Anal Chim Acta
October 2025
Instituto de Química, Universidade Federal de Goiás, 74690-900, Goiânia, GO, Brazil. Electronic address:
Background: The increasing prevalence of methicillin-resistant Staphylococcus aureus (MRSA), particularly due to the presence of the mecA gene, emphasizes the need for decentralized, rapid, and accurate molecular diagnostics. While qPCR remains the gold standard method, its dependence on expensive equipment and centralized labs limits accessibility in field or point-of-care (POC) settings. To address this limitation, we developed an Electrochemical Loop-Mediated Isothermal Amplification (E-LAMP) platform for rapid, low-cost, and highly sensitive detection of the mecA gene, using 3D-printed electrodes and a smartphone-controlled potentiostat.
View Article and Find Full Text PDFJ Hazard Mater
August 2025
State Key Laboratory of Food Nutrition and Safety, Key Laboratory of Industrial Microbiology, Ministry of Education, Tianjin Key Laboratory of Industry Microbiology, National and Local United Engineering Lab of Metabolic Control Fermentation Technology, China International Science and Technology Coo
The emergence of diseases attributable to foodborne pathogens poses a significant threat to human health. Pyrococcus furiosus Argonaute (PfAgo), a novel member of programmable nucleases, is repurposed for molecular detection owing to its programmable and sequence-specific nucleic acid cleaving capabilities. In this work, a triple cascade amplification strategy termed as PASS was developed for pathogenic bacteria biosensing.
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