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SKM 2023 – wissenschaftliches Programm

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CPP: Fachverband Chemische Physik und Polymerphysik

CPP 30: Biopolymers and Biomaterials I (joint session BP/CPP)

Mittwoch, 29. März 2023, 09:30–13:00, TOE 317

09:30 CPP 30.1 Interaction of laminin and brain cells with ion implanted titania nanotube scaffolds — •Jan Frenzel, Astrid Kupferer, and Stefan Mayr
09:45 CPP 30.2 Fiber-based femtosecond 3D printing — •Claudia Imiolczyk, Andy Steinmann, Moritz Flöß, Zhen Wang, Michael Heymann, Andrea Toulouse, and Harald Giessen
10:00 CPP 30.3 DNA-encoded viscoelastic matrices for cell and organoid culture — •Elisha Krieg
10:15 CPP 30.4 Hauptvortrag: Materials properties of bacterial biofilms. — •Cécile M. Bidan
10:45 CPP 30.5 The migration and search behavior of immune cellsReza Shaebani and •Franziska Lautenschläger
11:00 CPP 30.6 Molecular motors from a 3D perspective: how do kinesins organize microtubules? — •Laura Meißner, Jonas Bosche, Ludger Santen, and Stefan Diez
  11:15 15 min. break
11:30 CPP 30.7 3D stimulated Raman spectral imaging of water dynamics associated with pectin-glycocalyceal entanglement — •Moritz Floess, Tobias Steinle, Florian Werner, Yunshan Wang, Willi L. Wagner, Verena Steinle, Betty S. Liu, Yifan Zheng, Steven J. Mentzer, and Harald Giessen
11:45 CPP 30.8 Quantifying optomechanical properties of phase separated protein condensates — •Timon Beck, Lize van der Linden, Raimund Schlüßler, Kyoohyun Kim, Simon Alberti, and Jochen Guck
12:00 CPP 30.9 Confinement-induced fractionation and liquid-liquid phase separation of polymer mixtures — •Arash Nikoubashman and Miho Yanagisawa
12:15 CPP 30.10 Branching morphogenesis in the silica cell wall of diatoms — •Iaroslav Babenko, Benjamin M. Friedrich, and Nils Kröger
12:30 CPP 30.11 Reimplementing the formation and dispersal of transcriptional clusters with synthetic DNA-nanomotifs and Langevin-dynamics simulations — •Aaron Gadzekpo, Xenia Tschurikow, Mai Tran, Rakesh Chatterjee, Vasily Zaburdaev, Kerstin Göpfrich, and Lennart Hilbert
12:45 CPP 30.12 Partition complex structure can arise from sliding and bridging of ParB dimers — •Lara Connolley, Lucas Schnabel, Martin Thanbichler, and Sean Murray
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