Showing results (41-50 of 60) with videos related to
Sort By:
Pageof 6
Molecular Neurobiology|May 2, 2020
Human Pluripotent Stem Cell-Derived Neurons Are Functionally Mature In Vitro and Integrate into the Mouse Striatum Following TransplantationAndrea Comella-Bolla, Javier G Orlandi, Andrés Miguez, et al.Human Molecular Genetics|May 31, 2013
A role of mitochondrial complex II defects in genetic models of Huntington's disease expressing N-terminal fragments of mutant huntingtinMaria Damiano, Elsa Diguet, Carole Malgorn, et al.Brain : a Journal of Neurology|March 9, 2022
Translating cell therapies for neurodegenerative diseases: Huntington's disease as a model disorderAnne E Rosser, Monica E Busse, William P Gray, et al.The Journal of Clinical Investigation|April 11, 2006
Cystamine and cysteamine increase brain levels of BDNF in Huntington disease via HSJ1b and transglutaminaseMaria Borrell-Pagès, Josep M Canals, Fabrice P Cordelières, et al.Pflugers Archiv : European Journal of Physiology|May 26, 2018
Kv7 channels are upregulated during striatal neuron development and promote maturation of human iPSC-derived neuronsVsevolod Telezhkin, Marco Straccia, Polina Yarova, et al.Development (Cambridge, England)|March 15, 2017
Helios expression coordinates the development of a subset of striatopallidal medium spiny neuronsRaquel Martín-Ibáñez, Mónica Pardo, Albert Giralt, et al.The Journal of Comparative Neurology|December 2, 2009
Ikaros-1 couples cell cycle arrest of late striatal precursors with neurogenesis of enkephalinergic neuronsRaquel Martín-Ibáñez, Empar Crespo, Noelia Urbán, et al.Molecular Therapy. Methods & Clinical Development|September 30, 2015
Quantitative high-throughput gene expression profiling of human striatal development to screen stem cell-derived medium spiny neuronsMarco Straccia, Gerardo Garcia-Diaz Barriga, Phil Sanders, et al.Cellular and Molecular Life Sciences : CMLS|August 3, 2023
Soluble mutant huntingtin drives early human pathogenesis in Huntington's diseaseAndrés Miguez, Cinta Gomis, Cristina Vila, et al.International Journal of Molecular Sciences|August 14, 2025
BDNF Overexpression Enhances Neuronal Activity and Axonal Growth in Human iPSC-Derived Neural CulturesAlba Ortega-Gasco, Francesca Percopo, Ares Font-Guixe, et al.Pageof 6