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Cell Research|January 23, 2013
Unspliced XBP1 controls autophagy through FoxO1Rene L Vidal, Claudio Hetz
Frontiers in Neurology|November 22, 2018
Outside in: Unraveling the Role of Neuroinflammation in the Progression of Parkinson's DiseasePaulina Troncoso-Escudero, Alejandra Parra, Melissa Nassif, et al.
Biochemical and Biophysical Research Communications|March 27, 2012
AAV-mediated delivery of the transcription factor XBP1s into the striatum reduces mutant Huntingtin aggregation in a mouse model of Huntington's diseaseAmparo Zuleta, Rene L Vidal, Donna Armentano, et al.
Brain Research|May 3, 2016
ER chaperones in neurodegenerative disease: Folding and beyondPaula Garcia-Huerta, Leslie Bargsted, Alexis Rivas, et al.
Brain Research|March 20, 2016
The intersection between growth factors, autophagy and ER stress: A new target to treat neurodegenerative diseases?Paula Garcia-Huerta, Paulina Troncoso-Escudero, Carolina Jerez, et al.
Frontiers in Neuroscience|January 26, 2023
Small molecules to perform big roles: The search for Parkinson's and Huntington's disease therapeuticsRodrigo Pérez-Arancibia, Marisol Cisternas-Olmedo, Denisse Sepúlveda, et al.
Frontiers in Aging Neuroscience|October 26, 2020
On the Right Track to Treat Movement Disorders: Promising Therapeutic Approaches for Parkinson's and Huntington's DiseasePaulina Troncoso-Escudero, Denisse Sepulveda, Rodrigo Pérez-Arancibia, et al.
Scientific Reports|February 8, 2022
Insulin-like growth factor 2 and autophagy gene expression alteration arise as potential biomarkers in Parkinson's diseaseDenisse Sepúlveda, Felipe Grunenwald, Alvaro Vidal, et al.
Proceedings of the National Academy of Sciences of the United States of America|April 23, 2014
Control of dopaminergic neuron survival by the unfolded protein response transcription factor XBP1Pamela Valdés, Gabriela Mercado, Rene L Vidal, et al.
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