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dc.contributor.author Beltrán, Felipe A.
dc.contributor.author Torres-Díaz L., Leandro
dc.contributor.author Troncoso-Escudero, Paulina
dc.contributor.author Villalobos-González, Juan
dc.contributor.author Mayorga-Weber, Gonzalo
dc.contributor.author Lara, Marcelo
dc.contributor.author Covarrubias-Pinto, Adriana
dc.contributor.author Valdivia, Sharin
dc.contributor.author Vicencio, Isidora
dc.contributor.author Papic, Eduardo
dc.contributor.author Paredes-Martínez, Carolina
dc.contributor.author Silva-Januàrio, Mara E.
dc.contributor.author Rojas, Alejandro
dc.contributor.author daSilva, Luis L.P.
dc.contributor.author Court, Felipe
dc.contributor.author Rosas-Arellano, Abraham
dc.contributor.author Bátiz, Luis Federico
dc.contributor.author Rojas, Patricio
dc.contributor.author Rivera, Francisco J.
dc.contributor.author Castro, Maite A.
dc.date.accessioned 2026-02-08T03:26:36Z
dc.date.available 2026-02-08T03:26:36Z
dc.date.issued 2025-02-01
dc.identifier.issn 0891-5849
dc.identifier.other Mendeley: fa0d442c-79a9-34be-b70d-582bfff19f68
dc.identifier.uri https://repositorio.uss.cl/handle/uss/20352
dc.description Publisher Copyright: © 2024 The Authors
dc.description.abstract Huntington's disease (HD) is a neurodegenerative disorder caused by a CAG trinucleotide repeat expansion in the first exon of the huntingtin gene. The huntingtin protein (Htt) is ubiquitously expressed and localized in several organelles, including endosomes, where it plays an essential role in intracellular trafficking. Presymptomatic HD is associated with a failure in energy metabolism and oxidative stress. Ascorbic acid is a potent antioxidant that plays a key role in modulating neuronal metabolism and is highly concentrated in the brain. During synaptic activity, neurons take up ascorbic acid released by glial cells; however, this process is disrupted in HD. In this study, we aim to elucidate the molecular and cellular mechanisms underlying this dysfunction. Using an electrophysiological approach in presymptomatic YAC128 HD slices, we observed decreased ascorbic acid flux from astrocytes to neurons, which altered neuronal metabolic substrate preferences. Ascorbic acid efflux and recycling were also decreased in cultured astrocytes from YAC128 HD mice. We confirmed our findings using GFAP-HD160Q, an HD mice model expressing mutant N-terminal Htt mainly in astrocytes. For the first time, we demonstrated that ascorbic acid is released from astrocytes via extracellular vesicles (EVs). Decreased number of particles and exosomal markers were observed in EV fractions from cultured YAC128 HD astrocytes and Htt-KD cells. We observed reduced number of multivesicular bodies (MVBs) in YAC128 HD striatum via electron microscopy, suggesting mutant Htt alters MVB biogenesis. EVs containing ascorbic acid effectively reduced reactive oxygen species, whereas “free” ascorbic acid played a role in modulating neuronal metabolic substrate preferences. These findings suggest that the early redox imbalance observed in HD arises from a reduced release of ascorbic acid-containing EVs by astrocytes. Meanwhile, a decrease in “free” ascorbic acid likely contributes to presymptomatic metabolic impairment. en
dc.language.iso eng
dc.relation.ispartof vol. 227 Issue: Pages: 521-535
dc.source Free Radical Biology and Medicine
dc.title Distinct roles of ascorbic acid in extracellular vesicles and free form : Implications for metabolism and oxidative stress in presymptomatic Huntington's disease: Ascorbic acid in early Huntington's disease en
dc.type Artículo
dc.identifier.doi 10.1016/j.freeradbiomed.2024.12.001
dc.publisher.department Facultad de Ciencias


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