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Exosome-Based Delivery of miR-124 in a Huntington’s Disease Model
Soon-Tae Lee, Wooseok Im, Jae-Jun Ban, Mijung Lee, Keun-Hwa Jung, Sang Kun Lee, Kon Chu, Manho Kim
JMD. 2017;10(1):45-52.   Published online 2017 January 18    DOI: https://doi.org/10.14802/jmd.16054

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Exosome-Based Delivery of miR-124 in a Huntington’s Disease Model
Journal of Movement Disorders. 2017;10(1):45-52   Crossref logo
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545. Attenuation of Functional Deficits in the QA Model of Huntington's Disease Following AAV Therapeutic Delivery
Molecular Therapy. 2007;15:S209   Crossref logo
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Adenovirus vector-based in vitro neuronal cell model for Huntington's disease with human disease-like differential aggregation and degeneration
The Journal of Gene Medicine. 2012;14(7):468-481   Crossref logo
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Exosome-based delivery of glucocerebrosidase lysosomal enzyme for treatment of Gaucher disease
Molecular Genetics and Metabolism. 2018;123(2):S31-S32   Crossref logo
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507. Allele-Specific Silencing of Mutant Huntingtin in a Lentiviral-Based Rat Model of Huntington's Disease
Molecular Therapy. 2009;17:S194-S195   Crossref logo
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Huntington's Disease: An Animal Model
Science News. 1976;110(17):263   Crossref logo
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Exosome Mediated Delivery of miR-124 Promotes Neurogenesis after Ischemia
Molecular Therapy - Nucleic Acids. 2017;7:278-287   Crossref logo
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224. Adenoviral Co-Delivery of BDNF and Noggin Induces Striatal Neuronal Replacement and Delays Motor Impairment in a Transgenic Model of Huntington's Disease
Molecular Therapy. 2004;9:S86-S87   Crossref logo
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Cellular Delivery of CNTF but not NT-4/5 Prevents Degeneration of Striatal Neurons in a Rodent Model of Huntington's Disease
Cell Transplantation. 1998;7(2):213-225   Crossref logo
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Cellular delivery of human CNTF prevents motor and cognitive dysfunction in a rodent model of Huntington's disease
Cell Transplantation. 1997;6(3):249-266   Crossref logo
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