Virginia Mattis

Affiliations: 
Cedars Sinai Medical Center 
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"Virginia Mattis"
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Machiela E, Jeloka R, Caron NS, et al. (2020) The Interaction of Aging and Cellular Stress Contributes to Pathogenesis in Mouse and Human Huntington Disease Neurons. Frontiers in Aging Neuroscience. 12: 524369
Mathkar PP, Suresh D, Dunn J, et al. (2019) Characterization of Neurodevelopmental Abnormalities in iPSC-Derived Striatal Cultures from Patients with Huntington's Disease. Journal of Huntington's Disease
Garcia VJ, Rushton DJ, Tom CM, et al. (2019) Huntington's Disease Patient-Derived Astrocytes Display Electrophysiological Impairments and Reduced Neuronal Support. Frontiers in Neuroscience. 13: 669
Kedaigle AJ, Fraenkel E, Atwal RS, et al. (2019) Bioenergetic deficits in Huntington's disease iPSC-derived neural cells and rescue with glycolytic metabolites. Human Molecular Genetics
Mehta SR, Tom CM, Wang Y, et al. (2018) Human Huntington's Disease iPSC-Derived Cortical Neurons Display Altered Transcriptomics, Morphology, and Maturation. Cell Reports. 25: 1081-1096.e6
Akhtar AA, Gowing G, Kobritz N, et al. (2018) Inducible Expression of GDNF in Transplanted iPSC-Derived Neural Progenitor Cells. Stem Cell Reports
Mattis VB, Svendsen CN. (2018) Huntington modeling improves with age. Nature Neuroscience
Rindt H, Tom CM, Lorson CL, et al. (2017) Optimization of trans-Splicing for Huntington's Disease RNA Therapy. Frontiers in Neuroscience. 11: 544
Tom CM, Younesi S, Meer E, et al. (2017) Survival of iPSC-derived grafts within the striatum of immunodeficient mice: Importance of developmental stage of both transplant and host recipient. Experimental Neurology. 297: 118-128
Mattis VB, Svendsen CN. (2015) Modeling Huntington׳s disease with patient-derived neurons. Brain Research
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