Logo
Nazad
Ramesh Yelagandula, Aleksandr Bykov, A. Vogt, R. Heinen, Ezgi Özkan, M. Strobl, J. Baar, Kristina Uzunova, B. Hajdusits, D. Kordic, E. Suljić, A. Kurtovic-Kozaric, S. Izetbegovíc, J. Schaeffer, P. Hufnagl, A. Zoufaly, T. Seitz, Mariam Stefan Juliane Benedikt Nikolaus Katharina Wolfgan Al-Rawi Ameres Baar Bauer Beer Bergauer Binder Bla, Mariam Al-Rawi, Stefan L. Ameres, J. Baar, Benedikt W. Bauer, Nikolaus Beer, Katharina Bergauer, W. Binder, C. Blaukopf, Boril Bochev, J. Brennecke, Selina Brinnich, Aleksandra Bundalo, M. Busslinger, Tim Clausen, Geert M. de Vries, M. Dekens, David Drechsel, Z. Džupinková, Michaela Eckmann-Mader, Michaela Fellner, T. Fellner, Laura Fin, Bianca V. Gapp, Gerlinde Grabmann, I. Grishkovskaya, Astrid Hagelkruys, D. Handler, D. Haselbach, L. Hempel, Louisa Hill, David Hoffmann, S. Horer, Harald Isemann, Robert W. Kalis, Max J. Kellner, Juliane Kley, Thomas Köcher, A. Köhler, Christian Krauditsch, Sabina Kula, Sonja Lang, Richard Latham, Marie-Christin Leitner, T. Leonard, Dominik Lindenhofer, Raphael A Manzenreither, M. Mátl, K. Mechtler, Anton Meinhart, Stefan Mereiter, Thomas Micheler, Paul Moeseneder, Tobias Neumann, Simon Nimpf, Magnus Nordborg, E. Ogris, Michaela Pagani, A. Pauli, Jan-Michael Peters, Petra Pjevac, C. Plaschka, Martina Rath, Daniel Reumann, Sarah Rieser, Marianne Rocha-Hasler, Alan Rodriguez, Nathalie Ropek, James Julian Ross, H. Scheuch, Karina Schindler, Clara Schmidt, Hannes Schmidt, J. Schnabl, Stefan Schüchner, T. Schwickert, Andreas Sommer, Daniele Soldoroni, J. Stadlmann, P. Steinlein, M. Strobl, Simon Strobl, Qiong Sun, Wen Tang, Linda Trübestein, Johanna Trupke, Christian Umkehrer, Sandor Urmosi-Incze, Gijs A. Versteeg, Vivien Vogt, Michael Wagner, Martina Weissenboeck, B. Werner, Johannes Zuber, M. Födinger, F. Allerberger, A. Stark, L. Cochella, U. Elling
59 25. 5. 2021.

Multiplexed detection of SARS-CoV-2 and other respiratory infections in high throughput by SARSeq

The COVID-19 pandemic has demonstrated the need for massively-parallel, cost-effective tests monitoring viral spread. Here we present SARSeq, saliva analysis by RNA sequencing, a method to detect SARS-CoV-2 and other respiratory viruses on tens of thousands of samples in parallel. SARSeq relies on next generation sequencing of multiple amplicons generated in a multiplexed RT-PCR reaction. Two-dimensional, unique dual indexing, using four indices per sample, enables unambiguous and scalable assignment of reads to individual samples. We calibrate SARSeq on SARS-CoV-2 synthetic RNA, virions, and hundreds of human samples of various types. Robustness and sensitivity were virtually identical to quantitative RT-PCR. Double-blinded benchmarking to gold standard quantitative-RT-PCR performed by human diagnostics laboratories confirms this high sensitivity. SARSeq can be used to detect Influenza A and B viruses and human rhinovirus in parallel, and can be expanded for detection of other pathogens. Thus, SARSeq is ideally suited for differential diagnostic of infections during a pandemic. Massively parallel but cost-effective testing is essential to monitor the spread of pathogenic agents. Here the authors present SARSseq, which uses a dual indexing strategy in a multiplexed RT-PCR reaction to diagnose SARS-CoV-2 at scale.


Pretplatite se na novosti o BH Akademskom Imeniku

Ova stranica koristi kolačiće da bi vam pružila najbolje iskustvo

Saznaj više