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Experimental Neurology|January 21, 2014
Neonatal immune-tolerance in mice does not prevent xenograft rejectionVirginia B Mattis, Dustin R Wakeman, Colton Tom, et al.Nature Neuroscience|March 30, 2016
Modeling ALS with motor neurons derived from human induced pluripotent stem cellsSamuel Sances, Lucie I Bruijn, Siddharthan Chandran, et al.Cell Reports|December 29, 2021
Human iPSC-derived fallopian tube organoids with BRCA1 mutation recapitulate early-stage carcinogenesisNur Yucer, Rodney Ahdoot, Michael J Workman, et al.Neuron|July 17, 2020
G4C2 Repeat RNA Initiates a POM121-Mediated Reduction in Specific Nucleoporins in C9orf72 ALS/FTDAlyssa N Coyne, Benjamin L Zaepfel, Lindsey Hayes, et al.Stem Cell Reports|May 1, 2018
Inducible Expression of GDNF in Transplanted iPSC-Derived Neural Progenitor CellsAslam Abbasi Akhtar, Genevieve Gowing, Naomi Kobritz, et al.Trials|November 19, 2016
Integrating technology into complex intervention trial processes: a case studyCheney J G Drew, Vincent Poile, Rob Trubey, et al.Stem Cell Reports|April 21, 2023
Human iPSC-derived neural progenitor cells secreting GDNF provide protection in rodent models of ALS and retinal degenerationAlexander H Laperle, V Alexandra Moser, Pablo Avalos, et al.Stem Cell Research|March 12, 2013
EZ spheres: a stable and expandable culture system for the generation of pre-rosette multipotent stem cells from human ESCs and iPSCsAllison D Ebert, Brandon C Shelley, Amanda M Hurley, et al.Brain : a Journal of Neurology|May 28, 2011
Human neural stem cells enhance structural plasticity and axonal transport in the ischaemic brainRobert H Andres, Nobutaka Horie, William Slikker, et al.NPJ Microgravity|October 14, 2024
Surface tension enables induced pluripotent stem cell culture in commercially available hardware during spaceflightMaedeh Mozneb, Madelyn Arzt, Pinar Mesci, et al.Pageof 24