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- 2005-2009 PhD at the Biotechnology Center of TU Dresden in the research group of Daniel Müller
- 2010 research scientist at the Biotechnology Center of TU Dresden
- since 2011 research scientist at Leibniz Institute of Polymer Research Dresden
Fields of Work
- application of atomic force microscopy (imaging, force spectroscopy) to various fields of research
- main focus on quantification of mammalian and bacterial cell adhesion using single-cell force spectroscopy (SCFS)
- development of techniques to increase the throughput of SCFS experiments
- establishment of an AFM service platform
Publications
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Prewitz, M. ; Seib, P. ; Bonin, M. v. ; Friedrichs, J. ; Stißel, A. ; Niehage, C. ; Müller, K. ; Anastassiadis, K. ; Waskow, C. ; Hoflack, B. ; Bornhäuser, M. ; Werner, C.
Tightly anchored tissue-mimetic matrices as instructive stem cell microenvironments more
Nature Methods 10 (2013) 788-794
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Friedrichs, J. ; Müller, D. J. ; Werner, C.
Quantifying cellular adhesion to covalently immobilized extracellular matrix proteins by single-cell force spectroscopy more
Humana Press 3rd Editio (2013) 19-37
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Friedrichs, J. ; Legate, K. R. ; Schubert, R. ; Bharadwaj, M. ; Werner, C. ; Müller, D. J. ; Benoit, M.
A practical guide to quantify cell adhesion using single-cell force spectroscopy more
Methods : a companion to methods in enzymology 60 (2013) 169-178
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Arnold, G. ; Schuldt, S. ; Schneider, Y. ; Friedrichs, J. ; Babick, F. ; Werner, C. ; Rohm, H.
The impact of lecithin on rheology, sedimentation and particle interactions in oil-based dispersions more
Colloids and Surfaces A: Physicochemical and Engineering Aspects 418 (2013) 147-156
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Schöler, M. ; Föste, H. ; Helbig, M. ; Gottwald, A. ; Friedrichs, J. ; Werner, C. ; Augustin, W. ; Scholl, S. ; Majschak, J. P.
Local analysis of cleaning mechanisms in CIP processes more
Food and Bioproducts Processing 90 (2012) 858-866
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Friedrichs, J. ; Zieris, A. ; Prokoph, S. ; Werner, C.
Quantifying the effect of covalently immobilized enzymes on biofilm formation by atomic force microscopy-based single-cell force spectroscopy more
Macromolecular Rapid Communications 33 (2012) 1453-1458