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Annals of Clinical and Translational Neurology|September 30, 2025
Growth Differentiation Factor 15 Elevation in the Central Nervous System Is Associated With Failure to Thrive in Alexander DiseaseTracy L Hagemann, Michelle M Sonsalla, Cora Luzinski, et al.
Journal of Neuropathology and Experimental Neurology|May 8, 2010
Alexander disease mutant glial fibrillary acidic protein compromises glutamate transport in astrocytesRujin Tian, Xiaoping Wu, Tracy L Hagemann, et al.
Antioxidants & Redox Signaling|August 18, 2010
Inhibition of Na+/H+ exchanger isoform 1 is neuroprotective in neonatal hypoxic ischemic brain injuryPelin Cengiz, Neil Kleman, Kutluay Uluc, et al.
Human Molecular Genetics|February 16, 2008
Autophagy induced by Alexander disease-mutant GFAP accumulation is regulated by p38/MAPK and mTOR signaling pathwaysGuomei Tang, Zhenyu Yue, Zsolt Talloczy, et al.
Cancer Cell|August 16, 2005
Early inactivation of p53 tumor suppressor gene cooperating with NF1 loss induces malignant astrocytomaYuan Zhu, Frantz Guignard, Dawen Zhao, et al.
The Journal of Neuroscience : the Official Journal of the Society for Neuroscience|May 9, 2014
Astrocytic TDP-43 pathology in Alexander diseaseAdam K Walker, Christine M LaPash Daniels, James E Goldman, et al.
Neuroscience Letters|February 11, 2014
Role of GFAP in CNS injuriesMichael Brenner
Human Molecular Genetics|March 3, 2011
P0S63del impedes the arrival of wild-type P0 glycoprotein to myelin in CMT1B micePietro Fratta, Paola Saveri, Desiree Zambroni, et al.
Human Mutation|March 4, 2020
Type II Alexander disease caused by splicing errors and aberrant overexpression of an uncharacterized GFAP isoformGuy Helman, Asako Takanohashi, Tracy L Hagemann, et al.
Brain Research|July 29, 2014
Effects of traumatic brain injury on reactive astrogliosis and seizures in mouse models of Alexander diseaseMaria Luisa Cotrina, Michael Chen, Xiaoning Han, et al.
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