81
views
0
recommends
+1 Recommend
2 collections
    1
    shares
      • Record: found
      • Abstract: found
      • Article: found
      Is Open Access

      Development of multiplexed reverse-transcription loop-mediated isothermal amplification for detection of SARS-CoV-2 and influenza viral RNA

      brief-report

      Read this article at

      ScienceOpenPublisherPMC
      Bookmark
          There is no author summary for this article yet. Authors can add summaries to their articles on ScienceOpen to make them more accessible to a non-specialist audience.

          Abstract

          The ongoing pandemic has demonstrated the utility of widespread surveillance and diagnostic detection of the novel SARS-CoV-2. Reverse-transcription loop-mediated isothermal amplification (RT-LAMP) has enabled broader testing, but current LAMP tests only detect single targets and require separate reactions for controls. With flu season in the Northern Hemisphere, the ability to screen for multiple targets will be increasingly important, and the ability to include internal controls in RT-LAMP allows for improved efficiency. Here we describe multiplexed RT-LAMP with four targets (SARS-CoV-2, influenza A, influenza B, human RNA) in a single reaction using real-time and end point fluorescence detection. Such increased functionality of RT-LAMP will enable even broader adoption of this molecular testing approach and aid in the fight against this public health threat.

          METHOD SUMMARY

          This study describes enhancing loop-mediated isothermal amplification through multiplexed real-time and end point detection of SARS-CoV-2 combined with influenza and control targets. By enabling multiple target detection, loop-mediated isothermal amplification can be even more widely used for diagnostics in settings where multiple viral targets are potential infectious agents and where higher-throughput testing is advantageous.

          Related collections

          Most cited references32

          • Record: found
          • Abstract: found
          • Article: not found

          Loop-mediated isothermal amplification of DNA.

          T. Notomi (2000)
          We have developed a novel method, termed loop-mediated isothermal amplification (LAMP), that amplifies DNA with high specificity, efficiency and rapidity under isothermal conditions. This method employs a DNA polymerase and a set of four specially designed primers that recognize a total of six distinct sequences on the target DNA. An inner primer containing sequences of the sense and antisense strands of the target DNA initiates LAMP. The following strand displacement DNA synthesis primed by an outer primer releases a single-stranded DNA. This serves as template for DNA synthesis primed by the second inner and outer primers that hybridize to the other end of the target, which produces a stem-loop DNA structure. In subsequent LAMP cycling one inner primer hybridizes to the loop on the product and initiates displacement DNA synthesis, yielding the original stem-loop DNA and a new stem-loop DNA with a stem twice as long. The cycling reaction continues with accumulation of 10(9) copies of target in less than an hour. The final products are stem-loop DNAs with several inverted repeats of the target and cauliflower-like structures with multiple loops formed by annealing between alternately inverted repeats of the target in the same strand. Because LAMP recognizes the target by six distinct sequences initially and by four distinct sequences afterwards, it is expected to amplify the target sequence with high selectivity.
            Bookmark
            • Record: found
            • Abstract: found
            • Article: not found

            CRISPR-Cas12–based detection of SARS-CoV-2

            An outbreak of betacoronavirus SARS-CoV-2 began in Wuhan, China in December 2019. COVID-19, the disease associated with infection, rapidly spread to produce a global pandemic. We report development of a rapid (<40 min), easy-to-implement and accurate CRISPR-Cas12-based lateral flow assay for detection of SARS-CoV-2 from respiratory swab RNA extracts. We validated our method using contrived reference samples and clinical samples from US patients, including 36 patients with COVID-19 infection and 42 patients with other viral respiratory infections. Our CRISPR-based DETECTR assay provides a visual and faster alternative to the US CDC SARS-CoV-2 real-time RT-PCR assay, with 95% positive predictive agreement and 100% negative predictive agreement.. SARS-CoV-2 in patient samples is detected in under an hour using a CRISPR-based lateral flow assay.
              Bookmark
              • Record: found
              • Abstract: found
              • Article: found
              Is Open Access

              A colorimetric RT-LAMP assay and LAMP-sequencing for detecting SARS-CoV-2 RNA in clinical samples

              A colorimetric isothermal RNA amplification method was shown to detect SARS-CoV-2 RNA in clinical samples with excellent sensitivity and specificity.
                Bookmark

                Author and article information

                Journal
                Biotechniques
                Biotechniques
                BTN
                Biotechniques
                Future Science Ltd (London, UK )
                0736-6205
                1940-9818
                04 February 2021
                January 2021
                04 February 2021
                : 10.2144/btn-2020-0157
                Affiliations
                1Nucleic Acid Replication Division, Research Department, New England Biolabs, 240 County Road, Ipswich, MA 01938, USA
                Author notes
                [* ]Author for correspondence: tanner@ 123456neb.com
                Article
                10.2144/btn-2020-0157
                7860930
                33535813
                4a872f7d-705c-49ea-8c76-06034ec18b6a
                © 2021 New England Biolabs

                This work is licensed under the Attribution-NonCommercial-NoDerivatives 4.0 Unported License

                History
                : 17 November 2020
                : 15 January 2021
                : 04 February 2021
                Page count
                Pages: 8
                Funding
                Funded by: New England Biolabs, FundRef http://dx.doi.org/10.13039/100004774;
                Categories
                Benchmark

                covid-19 detection,fluorescence,lamp,molecular diagnostics,multiplexing,sensors and probes

                Comments

                Comment on this article

                scite_

                Similar content256

                Cited by18

                Most referenced authors892