David H. Rowitch

Affiliations: 
2006-2016 Department of Neonatology University of California, San Francisco, San Francisco, CA 
 2016- Department of Pediatrics University of Cambridge, Cambridge, England, United Kingdom 
Area:
oligodendrocyte, glioblastoma, stem cells
Website:
http://paediatrics.medschl.cam.ac.uk/about-us/people/senior-academic-staff/professor-david-h-rowitch/
Google:
"David Rowitch"
Mean distance: 16.29 (cluster 11)
 

Children

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Nathan A. Billings research assistant 2002-2004
Jose Javier Otero grad student
Brian P. Hafler grad student 2007 Harvard
Abraham Langseth grad student 2011 UCSF
Emily P. Harrington grad student 2003-2012 UCSF
Omer Ali A. Bayraktar post-doc UCSF
Stephen P. J. Fancy post-doc UCSF
Emmanuelle Huillard post-doc UCSF
Staffan Holmqvist post-doc 2016- Cambridge University UK
Magdalena A. Petryniak post-doc 2008-2011 UCSF
Gregory B. Potter post-doc 2008-2011 UCSF
Anna V. Molofsky post-doc 2009-2015 UCSF
Alexander P Y Brown post-doc 2017-2019 Cambridge

Collaborators

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Topun Austin collaborator
BETA: Related publications

Publications

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Bayraktar OA, Bartels T, Holmqvist S, et al. (2020) Astrocyte layers in the mammalian cerebral cortex revealed by a single-cell in situ transcriptomic map. Nature Neuroscience
de Majo M, Koontz M, Rowitch D, et al. (2020) An update on human astrocytes and their role in development and disease. Glia
Smith HL, Freeman OJ, Butcher AJ, et al. (2020) Astrocyte Unfolded Protein Response Induces a Specific Reactivity State that Causes Non-Cell-Autonomous Neuronal Degeneration. Neuron
Nobuta H, Yang N, Ng YH, et al. (2019) Oligodendrocyte Death in Pelizaeus-Merzbacher Disease Is Rescued by Iron Chelation. Cell Stem Cell. 25: 531-541.e6
Segel M, Neumann B, Hill MFE, et al. (2019) Author Correction: Niche stiffness underlies the ageing of central nervous system progenitor cells. Nature
Segel M, Neumann B, Hill MFE, et al. (2019) Niche stiffness underlies the ageing of central nervous system progenitor cells. Nature
Schirmer L, Velmeshev D, Holmqvist S, et al. (2019) Neuronal vulnerability and multilineage diversity in multiple sclerosis. Nature
Schirmer L, Möbius W, Zhao C, et al. (2018) Oligodendrocyte-encoded Kir4.1 function is required for axonal integrity. Elife. 7
Griveau A, Seano G, Shelton SJ, et al. (2018) A Glial Signature and Wnt7 Signaling Regulate Glioma-Vascular Interactions and Tumor Microenvironment. Cancer Cell
Kelley KW, Ben Haim L, Schirmer L, et al. (2018) Kir4.1-Dependent Astrocyte-Fast Motor Neuron Interactions Are Required for Peak Strength. Neuron
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