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Material- und Polymerwissenschaften / Einzelmolekül-TIRF Mikroskopie
Publikationsliste und Zitationsindex auf Google-Scholar
- Morphology remodeling and membrane channel formation in synthetic cells via reconfigurable DNA nanorafts. Fan, S.*, Wang, S.*, Ding, L.J.*, Speck, T., Yan, H., Nussberger, S. & Liu, N. Nature Materials: in press (2024) *These authors contributed equally.
- New insights into the structure and dynamics of the TOM complex in mitochondria. Nussberger, S., Ghosh, R. & Wang, S. Biochemical Society Transactions 52:911-922, doi: 10.1042/BST20231236 (2024) (Journal cover)
- Tracking the activity and position of mitochondrial beta-barrel proteins. Wang S. & Nussberger S. In: Membrane beta-barrel proteins: Methods and Protocols, Ieva, R. ed., Methods Mol. Biol. 2778: 221-236 (2024) (Journal cover)
- Single-molecule imaging of lateral mobility and ion channel activity in lipid bilayers using total internal reflection fluorescence (TIRF) microscopy. Wang, S. & Nussberger, S. JoVE 192: 1-21 e64970 (2023)
- Optical single-channel recordings reveal correlation between lateral protein diffusion and channel activity of TOM Nussberger, S. & Wang, S. Nature Bioengineering Community Blog (2022)
- Spatiotemporal stop-and-go dynamics of the mitochondrial TOM core complex correlates with three-state channel activity. Wang, S., Findeisen, L., Leptihn, S., Wallace, M.I., Hörning, M. & Nussberger, S. Communications Biology doi: 10.1038/s42003-022-03419-4 (2022)
- Correlation of mitochondrial TOM core complex stop-and-go and open-closed channel dynamics. Wang, S., Findeisen, L., Leptihn, S., Wallace, M.I., Hörning, M. & Nussberger, S. bioRxiv, 1-30 doi: 10.1101/2021.09.28.462098 (2021) preprint
- Multifunctional magnetic hairbot for untethered osteogenesis, ultrasound contrast imaging and drug delivery. Singh A.V., Dad Ansari, M.H., Dayan, C.B., Giltinan, J., Wang, S., Y,u Y., Kishore, V., Laux, P., Luch, A. & Sitti, M. Biomaterials 219, 119394 (2019)
- Anisotropic Gold Nanostructures: Optimization via in Silico Modeling for Hyperthermia. Vikram Singh, A., Jahnke, T. Wang, S., Xiao, Y., Alapan, Y., Kharratian, S., Cengiz Onbasli, M., Kozielski, K., David, H., Richter, G., Bill, J., Laux, P., Luch, A. & Sitti, M. ACS Appl. Nano Mater. 1, 6205–6216 (2018)
- The Adoption of Three-Dimensional Additive Manufacturing from Biomedical Material Design to 3D Organ Printing. Vikram Singh, A., Dad Ansari, M.H., Wang, S., Laux, P., Luch, A., Kumar, A., Patil, R. & Nussberger, S. Appl. Sci. 9, 811 (2019)
- Peptide-Induced Biomineralization of Tin Oxide (SnO₂) Nanoparticles for Antibacterial Applications. Singh, A.V., Jahnke, T., Xiao, Y., Wang, S., Yu, Y., David, H., Richter, G., Laux, P., Luch, A., Srivastava, A., Saxena, P.S., Bill, J. & Sitti M. J. Nanosci. Nanotechnol. 9, 5674-5686 (2019)
- Postdoc, Cees Dekker Lab, Delft University of Technology, Faculty of Applied Sciences, Kavli Institute of NanoScience, Department of Bionanoscience, The Netherlands (seit 2023)
- Doktorandin, Biophysik Department, IBBS UNiversität Stuttgart (2019-2023)
- Wissenschaftliche Mitarbeiterin, Max Planck Institut für Intelligente Systeme, Stuttgart, Germany (2017-2018)
- Master of Science, Material Science, University of Stuttgart, Germany (2018)
- Bachelor of Engineering, Polymer Material and Engineering, Zhengzhou University of Light Industry, China (2014)