• español
    • English
    • español
    • English
  • Go to e-UCJC Home
View Item 
  •   e-UCJC Home
  • Investigación
  • View Item
  •   e-UCJC Home
  • Investigación
  • View Item
JavaScript is disabled for your browser. Some features of this site may not work without it.

Striatal activation by optogenetics induces dyskinesias in the 6-hydroxydopamine rat model of Parkinson disease

Identifiers
URI: http://hdl.handle.net/20.500.12020/1494
ISSN: 0885-3185
DOI: https://doi.org/10.1002/mds.26947
Author/s
Hernández, Ledia F.; Castela, Iván; Ruiz-deDiego, Irene; Obeso, José; Moratalla, Rosario
Date
2017
Document type
article
Área/s de conocimiento
Ciencias Biomédicas
Materia/s Unesco
32 Ciencias Médicas
Export
RIS
Share
Abstract
Background: Long-term levodopa (l-dopa) treatment is associated with the development of l-dopa-induced dyskinesias in the majority of patients with Parkinson disease (PD). The etiopathogonesis and mechanisms underlying l-dopa-induced dyskinesias are not well understood. Methods: We used striatal optogenetic stimulation to induce dyskinesias in a hemiparkinsonian model of PD in rats. Striatal dopamine depletion was induced unilaterally by 6-hydroxydopamine injection into the medial forebrain bundle. For the optogenetic manipulation, we injected adeno-associated virus particles expressing channelrhodopsin to stimulate striatal medium spiny neurons with a laser source. Results: Simultaneous optical activation of medium spiny neurons of the direct and indirect striatal pathways in the 6-hydroxydopamine lesion but l-dopa naïve rats induced involuntary movements similar to l-dopa-induced dyskinesias, labeled here as optodyskinesias. Noticeably, optodyskinesias were facilitated by l-dopa in animals that did not respond initially to the laser stimulation. In general, optodyskinesias lasted while the laser stimulus was applied, but in some instances remained ongoing for a few seconds after the laser was off. Postmortem tissue analysis revealed increased FosB expression, a molecular marker of l-dopa-induced dyskinesias, primarily in medium spiny neurons of the direct pathway in the dopamine-depleted hemisphere. Conclusion: Selective optogenetic activation of the dorsolateral striatum elicits dyskinesias in the 6-hydroxydopamine rat model of PD. This effect was associated with a preferential activation of the direct striato-nigral pathway. These results potentially open new avenues in the understanding of mechanisms involved in l-dopa-induced dyskinesias.
Collections
  • Investigación
Show full item record

Browse

CollectionsAuthorsTitlesKeywordsAreas of knowledgeAuthor profilesUnesco subjectsThis CollectionAuthorsTitlesKeywordsUnesco subjectsAreas of knowledge

My Account

LoginRegister

Statistics

View Usage Statistics

Of interest

About the repositoryHow to depositSpanish Legislation about Open AccessGlosaryOpen Access MovementOpen Access UCJC Policy

Links

SHERPA/RoMEODulcineaHéloïseCreative Commons Licence

La Universidad Camilo José Cela nace en Madrid en 2000. Forma parte de la Institución Educativa SEK, con más de un siglo de experiencia en educación. Desde nuestra fundación hemos creado un proyecto de calidad cuyo objetivo es formar universitarios globales preparados para la realidad laboral del siglo XXI.

LA UNIVERSIDAD

  • Conoce la universidad
  • International Advisory Board
  • Institución Educativa SEK
  • Fundación Felipe Segovia
  • Campus Villafranca
  • Campus Almagro
  • Deporte
  • Estructura Académica
  • Nuestros profesores
  • Empleo
  • Publicaciones
  • Calidad
  • Normativa
  • Contacto

FACULTADES

  • Escuela de Arquitectura y Tecnología
  • Facultad de Educación
  • Facultad de Salud
  • Facultad de Derecho y Economía
  • Facultad de Comunicación
  • Centros Adscritos

ESTUDIOS

  • Grados Oficiales
  • Adaptación al Grado
  • Dobles Titulaciones
  • Másteres Oficiales
  • Másteres Propios
  • Cursos de experto
  • Cursos de especialista
  • Secretaria de Alumnos

FORMACIÓN CORPORATIVA

PRENSA

  • Contacto

TRABAJA CON NOSOTROS

BUZÓN DE SUGERENCIAS

Universidad Camilo José Cela © 2017 · C/ Castillo de Alarcón, 49 · Urb. Villafranca del Castillo · 28692 Madrid · T. 91 815 31 31 · info@ucjc.edu

  • Contacto
  • Sugerencias