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Featured researches published by Stefan Heldt.


Journal of Virological Methods | 2010

Real-time RT-qPCR assay for the analysis of human influenza A virus transcription and replication dynamics

Diana Vester; Antje Lagoda; Diana Hoffmann; C. Seitz; Stefan Heldt; Katja Bettenbrock; Yvonne Genzel; Udo Reichl

A quantitative real-time reverse transcriptase PCR (RT-qPCR) assay was developed for the analysis of influenza A virus transcription and replication dynamics in mammalian cell culture. The assay is based on a polarity- and sequence-specific reverse transcription used to distinguish specifically between viral genomes (vRNA(-)), replicative intermediates (cRNA(+)) and viral messenger RNAs (vmRNA(+)) of segments 4 (HA), 6 (NA), 7 (M) and 8 (NS) during the life cycle of influenza virus. Synthetic viral RNAs used as reference standards for validation and quantitation were prepared for each viral RNA type and segment. Assay validation demonstrated linearity over five orders of magnitude, sensitivity of 1.0 x 10(3) to 8.9 x 10(3) of viral RNA molecules, repeatability and reproducibility of less than 0.8-3.1% CV (coefficient of variation). Dynamics of influenza A virus infection in adherent MDCK cells, a substrate considered for human influenza vaccine manufacturing, were analyzed. In general, mainly vmRNA(+) were synthesized during early phases of infection at about 0.6 hpi, followed immediately by cRNA(+) synthesis and after a short delay of about 1.9 hpi viral genome replication could be detected. The vRNA(-)s were synthesized in equimolar amounts and similar dynamics whereas preferential synthesis of NS1 vmRNA(+) in early transcription phases and a delay for M1 vmRNA(+) was found.


Single Cell Technologies 2016 | 2016

Heterogeneity in Influenza A Virus Infection Unveiled by Single-Cell Analysis and Stochastic Mathemeatical Modeling

Sascha Young Kupke; Stefan Heldt; Timo Frensing; Udo Reichl


6th IFAC Conference on Foundations of Systems Biology in Engineering (FOSBE) | 2016

Stochastic multiscale modeling of influenza virus production in cell cultures. Poster presented at 6th IFAC Conference on Foundations of Systems Biology in Engineering

Daniel Rüdiger; Stefan Heldt; Sascha Young Kupke; Udo Reichl


26th Annual Meeting of the Society for Virology | 2016

Single-Cell Analysis of Influenza A Virus-Infected Cells

Sascha Young Kupke; Stefan Heldt; Timo Frensing; Udo Reichl


international conference on systems | 2014

A multiscale model of influenza A virus infection that elucidates the treatment with direct-acting antivirals

Stefan Heldt; Timo Frensing; Udo Reichl


The Joint Annual Meeting of the Japanese Society for Mathematical Biology and the Society for Mathematical Biology | 2014

The multiscale nature of influenza A virus infection and its implications for modeling antiviral therapy

Stefan Heldt; Timo Frensing; Udo Reichl


Chemie Ingenieur Technik | 2014

Continuous influenza vaccine production

Timo Frensing; Stefan Heldt; Mandy Bachmann; Yvonne Genzel; Ingo Jordan; Udo Reichl


4th International Influenza Meeting | 2014

Mathematical modeling of virus-host cell interactions during influenza A virus replication supports cell line development for vaccine production

Tanja Laske; Stefan Heldt; Timo Frensing; Udo Reichl


international conference on systems | 2013

Multiscale modeling of influenza virus infection supports the development of antiviral drugs

Stefan Heldt; Britta Peschel; Timo Frensing; Udo Reichl


23rd Annual Meeting of the Society for Virology | 2013

Influenza virus propagation in a continuous cell culture process using avian suspension cells

Timo Frensing; Stefan Heldt; Ilona Behrendt; Ingo Jordan; Yvonne Genzel; Udo Reichl

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Udo Reichl

Otto-von-Guericke University Magdeburg

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Antje Lagoda

Otto-von-Guericke University Magdeburg

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