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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Götz, M. ; Muthuswamy, S.K.
Editorial overview: Cell differentiation and development: New kids in the block - new tools and concepts opening new doors in development.Grade, S. ; Götz, M.
Neuronal replacement therapy: Previous achievements and challenges ahead.Götz, M. ; Jarriault, S.
Programming and reprogramming the brain: A meeting of minds in neural fate.Gascón, S. ; Masserdotti, G. ; Russo, G.L. ; Götz, M.
Direct neuronal reprogramming: Achievements, hurdles, and new roads to success.Heimann, G. ; Lange Canhos, L. ; Frik, J. ; Jaeger, G. ; Götz, M. ; Sirko, S.
Intrinsic changes in the proliferative program limit astrocyte homeostasis in the aged post-traumatic murine cerebral cortex.Mattugini, N. ; Ohlig, S. ; Merl-Pham, J. ; Kannaiyan, N. ; Hauck, S.M. ; Rossner, M.J. ; Götz, M.
Differences of grey and white matter astrocytes in the intact and injured cerebral cortex.Ohlig, S. ; Irmler, M. ; Lange Canhos, L. ; von Bernhardi, J.T.E. ; Dimou, L. ; Sirko, S. ; Beckers, J. ; Götz, M.
Proliferation and neural stem cell potential of diencephalic astrocytes revealed by genome-wide expression analysis is Smad4-dependent.Lange Canhos, L. ; Falk, S. ; Sirko, S. ; Götz, M.
Self-renewal and differentiation potential of reactive astrocytes in vivo.Obermann, J. ; Priglinger, C.S. ; Merl-Pham, J. ; Geerlof, A. ; Priglinger, S.G. ; Götz, M. ; Hauck, S.M.
Proteome-wide identification of glycosylation-dependent interactors of Galectin-1 and Galectin-3 on mesenchymal retinal pigment epithelial cells.Gascón, S. ; Ortega, F. ; Götz, M.
Transient CREB-mediated transcription is key in direct neuronal reprogramming.Heimann, G. ; Lange Canhos, L. ; Frik, J. ; Jäger, G. ; Lepko, T. ; Ninkovic, J. ; Götz, M. ; Sirko, S.
Changes in the proliferative program limit astrocyte Hhmeostasis in the aged post-traumatic murine cerebral cortex.Falk, S. ; Ninkovic, J. ; Pilz, G.A. ; Götz, M.
Time-specific effects of spindle positioning on embryonic progenitor pool composition and adult neural stem cell seeding.Supplie, L.M. ; Düking, T. ; Campbell, G. ; Díaz, F. ; Moraes, C.T. ; Götz, M. ; Hamprecht, B. ; Boretius, S. ; Mahad, D. ; Nave, K.A.
Respiration-deficient astrocytes survive as glycolytic cells in vivo.Torper, O. ; Götz, M.
Brain repair from intrinsic cell sources: Turning reactive glia into neurons.