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Current Opinion in Cell Biology|July 21, 2004
Microtubule-dependent transport in neurons: steps towards an understanding of regulation, function and dysfunctionBrian W Guzik, Lawrence S B Goldstein
Human Molecular Genetics|August 7, 2012
Alzheimer's disease in a dish: promises and challenges of human stem cell modelsJessica E Young, Lawrence S B Goldstein
Annual Review of Biochemistry|June 8, 2006
Axonal transport and Alzheimer's diseaseGorazd B Stokin, Lawrence S B Goldstein
Plos Genetics|October 3, 2006
The genetics of axonal transport and axonal transport disordersJason E Duncan, Lawrence S B Goldstein
Seminars in Liver Disease|February 12, 2013
Using human-induced pluripotent stem cells to model monogenic metabolic disorders of the liverMaria Paulina Ordonez, Lawrence S B Goldstein
Methods in Molecular Biology (Clifton, N.J.)|November 18, 2022
Human-Induced Pluripotent Stem Cell (hiPSC)-Derived Neurons and Glia for the Elucidation of Pathogenic Mechanisms in Alzheimer's DiseaseJessica E Young, Lawrence S B Goldstein
The Journal of Neuroscience : the Official Journal of the Society for Neuroscience|December 17, 2008
Enhanced sensitivity of striatal neurons to axonal transport defects induced by mutant huntingtinLu-Shiun Her, Lawrence S B Goldstein
Annual Review of Biophysics|April 8, 2014
Biophysical challenges to axonal transport: motor-cargo deficiencies and neurodegenerationSandra E Encalada, Lawrence S B Goldstein
Journal of Physiology, Paris|February 7, 2006
Linking molecular motors to Alzheimer's diseaseGorazd B Stokin, Lawrence S B Goldstein
Human Molecular Genetics|May 28, 2013
Presenilin controls kinesin-1 and dynein function during APP-vesicle transport in vivoShermali Gunawardena, Ge Yang, Lawrence S B Goldstein
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