Gabriella L. Boulting, Ph.D.

2011 Harvard University, Cambridge, MA, United States 
Stem Cell, Neurodegenerative diseases
"Gabriella Boulting"
Mean distance: 14.31 (cluster 11)


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James U. Bowie research assistant 2004-2006 UCLA (Chemistry Tree)
Kevin C. Eggan grad student 2011 Harvard
 (Exploring the Potential of Human Pluripotent Stem Cells as a Platform for New ALS Disease Models.)
Michael E. Greenberg post-doc 2012- Harvard Medical School
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Ataman B, Boulting GL, Harmin DA, et al. (2016) Evolution of Osteocrin as an activity-regulated factor in the primate brain. Nature. 539: 242-247
Hochbaum DR, Zhao Y, Farhi SL, et al. (2014) All-optical electrophysiology in mammalian neurons using engineered microbial rhodopsins. Nature Methods. 11: 825-33
Kiskinis E, Sandoe J, Williams LA, et al. (2014) Pathways disrupted in human ALS motor neurons identified through genetic correction of mutant SOD1. Cell Stem Cell. 14: 781-95
Wainger BJ, Kiskinis E, Mellin C, et al. (2014) Intrinsic membrane hyperexcitability of amyotrophic lateral sclerosis patient-derived motor neurons. Cell Reports. 7: 1-11
Boulting GL, Eggan KC. (2013) Patient-Specific Pluripotent Stem Cells Genomic and Personalized Medicine. 1: 381-390
Hester ME, Murtha MJ, Song S, et al. (2011) Rapid and efficient generation of functional motor neurons from human pluripotent stem cells using gene delivered transcription factor codes. Molecular Therapy : the Journal of the American Society of Gene Therapy. 19: 1905-12
Bock C, Kiskinis E, Verstappen G, et al. (2011) Reference Maps of human ES and iPS cell variation enable high-throughput characterization of pluripotent cell lines. Cell. 144: 439-52
Boulting GL, Kiskinis E, Croft GF, et al. (2011) A functionally characterized test set of human induced pluripotent stem cells. Nature Biotechnology. 29: 279-86
Massey-Gendel E, Zhao A, Boulting G, et al. (2009) Genetic selection system for improving recombinant membrane protein expression in E. coli Protein Science. 18: 372-383
Di Giorgio FP, Boulting GL, Bobrowicz S, et al. (2008) Human embryonic stem cell-derived motor neurons are sensitive to the toxic effect of glial cells carrying an ALS-causing mutation. Cell Stem Cell. 3: 637-48
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