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Loop-Mediated Isothermal Amplification (LAMP) Method for Rapid Detection of Trypanosoma brucei rhodesiense

Loop-mediated isothermal amplification (LAMP) of DNA is a novel technique that rapidly amplifies target DNA under isothermal conditions. In the present study, a LAMP test was designed from the serum resistance-associated (SRA) gene of Trypanosoma brucei rhodesiense, the cause of the acute form of Af...

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Autores principales: Njiru, Zablon Kithinji, Mikosza, Andrew Stanislaw John, Armstrong, Tanya, Enyaru, John Charles, Ndung'u, Joseph Mathu, Thompson, Andrew Richard Christopher
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2008
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2238707/
https://www.ncbi.nlm.nih.gov/pubmed/18253475
http://dx.doi.org/10.1371/journal.pntd.0000147
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author Njiru, Zablon Kithinji
Mikosza, Andrew Stanislaw John
Armstrong, Tanya
Enyaru, John Charles
Ndung'u, Joseph Mathu
Thompson, Andrew Richard Christopher
author_facet Njiru, Zablon Kithinji
Mikosza, Andrew Stanislaw John
Armstrong, Tanya
Enyaru, John Charles
Ndung'u, Joseph Mathu
Thompson, Andrew Richard Christopher
author_sort Njiru, Zablon Kithinji
collection PubMed
description Loop-mediated isothermal amplification (LAMP) of DNA is a novel technique that rapidly amplifies target DNA under isothermal conditions. In the present study, a LAMP test was designed from the serum resistance-associated (SRA) gene of Trypanosoma brucei rhodesiense, the cause of the acute form of African sleeping sickness, and used to detect parasite DNA from processed and heat-treated infected blood samples. The SRA gene is specific to T. b. rhodesiense and has been shown to confer resistance to lysis by normal human serum. The assay was performed at 62°C for 1 h, using six primers that recognised eight targets. The template was varying concentrations of trypanosome DNA and supernatant from heat-treated infected blood samples. The resulting amplicons were detected using SYTO-9 fluorescence dye in a real-time thermocycler, visual observation after the addition of SYBR Green I, and gel electrophoresis. DNA amplification was detected within 35 min. The SRA LAMP test had an unequivocal detection limit of one pg of purified DNA (equivalent to 10 trypanosomes/ml) and 0.1 pg (1 trypanosome/ml) using heat-treated buffy coat, while the detection limit for conventional SRA PCR was ∼1,000 trypanosomes/ml. The expected LAMP amplicon was confirmed through restriction enzyme RsaI digestion, identical melt curves, and sequence analysis. The reproducibility of the SRA LAMP assay using water bath and heat-processed template, and the ease in results readout show great potential for the diagnosis of T. b. rhodesiense in endemic regions.
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spelling pubmed-22387072008-02-12 Loop-Mediated Isothermal Amplification (LAMP) Method for Rapid Detection of Trypanosoma brucei rhodesiense Njiru, Zablon Kithinji Mikosza, Andrew Stanislaw John Armstrong, Tanya Enyaru, John Charles Ndung'u, Joseph Mathu Thompson, Andrew Richard Christopher PLoS Negl Trop Dis Research Article Loop-mediated isothermal amplification (LAMP) of DNA is a novel technique that rapidly amplifies target DNA under isothermal conditions. In the present study, a LAMP test was designed from the serum resistance-associated (SRA) gene of Trypanosoma brucei rhodesiense, the cause of the acute form of African sleeping sickness, and used to detect parasite DNA from processed and heat-treated infected blood samples. The SRA gene is specific to T. b. rhodesiense and has been shown to confer resistance to lysis by normal human serum. The assay was performed at 62°C for 1 h, using six primers that recognised eight targets. The template was varying concentrations of trypanosome DNA and supernatant from heat-treated infected blood samples. The resulting amplicons were detected using SYTO-9 fluorescence dye in a real-time thermocycler, visual observation after the addition of SYBR Green I, and gel electrophoresis. DNA amplification was detected within 35 min. The SRA LAMP test had an unequivocal detection limit of one pg of purified DNA (equivalent to 10 trypanosomes/ml) and 0.1 pg (1 trypanosome/ml) using heat-treated buffy coat, while the detection limit for conventional SRA PCR was ∼1,000 trypanosomes/ml. The expected LAMP amplicon was confirmed through restriction enzyme RsaI digestion, identical melt curves, and sequence analysis. The reproducibility of the SRA LAMP assay using water bath and heat-processed template, and the ease in results readout show great potential for the diagnosis of T. b. rhodesiense in endemic regions. Public Library of Science 2008-02-06 /pmc/articles/PMC2238707/ /pubmed/18253475 http://dx.doi.org/10.1371/journal.pntd.0000147 Text en Njiru et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Njiru, Zablon Kithinji
Mikosza, Andrew Stanislaw John
Armstrong, Tanya
Enyaru, John Charles
Ndung'u, Joseph Mathu
Thompson, Andrew Richard Christopher
Loop-Mediated Isothermal Amplification (LAMP) Method for Rapid Detection of Trypanosoma brucei rhodesiense
title Loop-Mediated Isothermal Amplification (LAMP) Method for Rapid Detection of Trypanosoma brucei rhodesiense
title_full Loop-Mediated Isothermal Amplification (LAMP) Method for Rapid Detection of Trypanosoma brucei rhodesiense
title_fullStr Loop-Mediated Isothermal Amplification (LAMP) Method for Rapid Detection of Trypanosoma brucei rhodesiense
title_full_unstemmed Loop-Mediated Isothermal Amplification (LAMP) Method for Rapid Detection of Trypanosoma brucei rhodesiense
title_short Loop-Mediated Isothermal Amplification (LAMP) Method for Rapid Detection of Trypanosoma brucei rhodesiense
title_sort loop-mediated isothermal amplification (lamp) method for rapid detection of trypanosoma brucei rhodesiense
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2238707/
https://www.ncbi.nlm.nih.gov/pubmed/18253475
http://dx.doi.org/10.1371/journal.pntd.0000147
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