Andrea H. Brand

University of Cambridge, Cambridge, England, United Kingdom 
Drosophila nervous system development
"Andrea Brand"
Cross-listing: Neurotree


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Kim Nasmyth grad student MRC-LMB (Neurotree)
Norbert Perrimon post-doc Harvard
Mark Ptashne post-doc Harvard


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James Chell grad student Cambridge (Neurotree)
Leia Judge grad student
Julia A. Kaltschmidt grad student Cambridge (Neurotree)
Peter van Roessel grad student Cambridge (Neurotree)
Pao-Shu Wu grad student 2006-2011 Cambridge
Alex PA Donovan post-doc Cambridge (Neurotree)
Abhijit Das post-doc 2012- The Gurdon Institute
David A. Elliott post-doc 2003-2007 (Neurotree)
Boris Egger post-doc 2003-2011
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Contreras EG, Glavic Á, Brand AH, et al. (2021) The serine protease homologue, Scarface, is sensitive to nutrient availability and modulates the development of the blood brain barrier. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience
Díaz-Torres A, Rosales-Nieves AE, Pearson JR, et al. (2021) Stem cell niche organization in the Drosophila ovary requires the ECM component Perlecan. Current Biology : Cb
Gervais L, van den Beek M, Josserand M, et al. (2019) Stem Cell Proliferation Is Kept in Check by the Chromatin Regulators Kismet/CHD7/CHD8 and Trr/MLL3/4. Developmental Cell. 49: 556-573.e6
Jörg DJ, Caygill EE, Hakes AE, et al. (2019) The proneural wave in the optic lobe is driven by an excitable reaction-diffusion mechanism. Elife. 8
Jörg DJ, Caygill EE, Hakes AE, et al. (2019) Author response: The proneural wave in the Drosophila optic lobe is driven by an excitable reaction-diffusion mechanism Elife
Contreras EG, Egger B, Gold KS, et al. (2018) Dynamic Notch signalling regulates neural stem cell state progression in the Drosophila optic lobe. Neural Development. 13: 25
Doupé DP, Marshall OJ, Dayton H, et al. (2018) intestinal stem and progenitor cells are major sources and regulators of homeostatic niche signals. Proceedings of the National Academy of Sciences of the United States of America
Contreras EG, Palominos T, Glavic Á, et al. (2018) The transcription factor SoxD controls neuronal guidance in the Drosophila visual system. Scientific Reports. 8: 13332
Cheetham SW, Gruhn WH, van den Ameele J, et al. (2018) Targeted DamID reveals differential binding of mammalian pluripotency factors. Development (Cambridge, England)
Marshall OJ, Brand AH. (2017) Chromatin state changes during neural development revealed by in vivo cell-type specific profiling. Nature Communications. 8: 2271
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