Stem Cell Center
Institute of Stem Cell Research
The Institute of Stem Cell Research (ISF) investigates the basic molecular and cellular mechanisms for stem cell maintenance and stem cell differentiation (Camargo et al., Nature, 2019, O'Neill et al., Science, 2022). On this basis, the ISF develops approaches for the replacement of degenerated cell types, either by activation of endogenous stem cells or by re-programming other endogenous cells for repair (Russo et al., Cell Stem Cell, 2021, Sonsala et al., Neuron, 2024, Pereira et al., Nature Neuroscience, 2024).
The Institute of Stem Cell Research (ISF) investigates the basic molecular and cellular mechanisms for stem cell maintenance and stem cell differentiation (Camargo et al., Nature, 2019, O'Neill et al., Science, 2022). On this basis, the ISF develops approaches for the replacement of degenerated cell types, either by activation of endogenous stem cells or by re-programming other endogenous cells for repair (Russo et al., Cell Stem Cell, 2021, Sonsala et al., Neuron, 2024, Pereira et al., Nature Neuroscience, 2024).
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Taverna, E. ; Götz, M. ; Huttner, A.B.
The cell biology of neurogenesis: Toward an understanding of the development and evolution of the neocortex.Heinrich, C. ; Bergami, M. ; Gascón, S. ; Lepier, A. ; Viganò, F. ; Dimou, L. ; Sutor, B. ; Berninger, B. ; Götz, M.
Sox2-mediated conversion of NG2 glia into induced neurons in the injured adult cerebral cortex.Schmid, M.-T. ; Weinandy, F. ; Wilsch-Bräuninger, M. ; Huttner, W.B. ; Cappello, S. ; Götz, M.
The role of α-E-catenin in cerebral cortex development: Radial glia specific effect on neuronal migration.Ninkovic, J. ; Götz, M.
A time and place for understanding neural stem cell specification.Dimou, L. ; Götz, M.
Glial cells as progenitors and stem cells: New roles in the healthy and diseased brain.Borrell, V. ; Götz, M.
Role of radial glial cells in cerebral cortex folding.Beckervordersandforth, R. ; Deshpande, A. ; Schäffner, I. ; Huttner, H.B. ; Lepier, A. ; Lie, D.C. ; Götz, M.
In vivo targeting of adult neural stem cells in the dentate gyrus by a split-cre approach.