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Cycle H: Molecular Medicine

Cycle H: Molecular Medicine H1: Molecular Medicine I – 22831 (2 hrs/week; 2 CP; Fall 2025) H2: Molecular Medicine II – 12424 (2 hrs/week; 2 CP; Spring 2026) H3: Molecular Control of Vertebrate Development and Organogenesis –…


A5: Infection Biology – From in vitro models to human patients

A5: Infection Biology – From in vitro models to human patients – 30638 (1 hrs/week; 1 CP; Fall 2025) Dirk Bumann , Christoph Dehio This introductory course to Systems Biology of Infection will focus on data and knowled…


Molecule-Scale Resolution and Dynamics in Fluorescence Microscopy

Molecule-Scale Resolution and Dynamics in Fluorescence Microscopy I will show how an in-depth description of the basic principles of diffraction-unlimited fluorescence microscopy has spawned MINFLUX [1-4], a recent…


D2: Biophysics of Molecules and Cells I

Structural dynamics of ordered and disordered systems D2: Biophysics of Molecules and Cells I – 13160 (2 hrs/week; 2 CP; Fall 2028) Roderick Lim , Sebastian Hiller "Structural dynamics of ordered and disordered systems" -…


Nuclear export of single large ribosomal subunits and mRNA particle

Nuclear export of single large ribosomal subunits and mRNA particle This talk focuses on RNA export studied in vivo by single particle tracking and super resolution microscopy. (1) We analysed the export kinetics of single…


H5: Translational Cancer Research

H5: Translational Cancer Research – 12420 (2 hrs/week; 2 CP; Spring 2026) Mohamed Bentires-Alj , Markus H. Heim, Jürg Schwaller, Matthias P. Wymann, Alfred Zippelius The aim of the course is to give students in the life…


Organellomics: AI-driven deep organellar phenotyping of human neurons

Organellomics: AI-driven deep organellar phenotyping of human neurons Systematic assessment of organelle architectures in cells, known as the organellome, could provide valuable insights into cellular states and disease…


E11: Physical principles of living systems

E11: Physical principles of living systems - 77750 (3hrs/week, 4 CP; Spring 2026, Lectures and Excercises) Knut Drescher , David Brückner Contents: This course presents an overview of how physical processes shape the…


Cycle D: Structure and Function of Macromolecules

Cycle D: Structural Biology and Biophysics: from Molecules to Cells Past Speakers: D1: Molecular and Cellular Structural Biology I – 12421 (2 hrs/week; 2 CP; Spring 2027) D2: Biophysics of Molecules and Cells I – 13160 (2…


Cycle G: Gene Expression and Epigenetics

Cycle G: Gene Expression and Epigenetics G1: Dynamics and maintenance of the Genome: DNA Replication, Repair, Recombination – 19520 (2 hrs/week; 2 CP; t.b.a.) G2: Transcription, Regulation and Gene Expression in Eukaryotes –…