Item request has been placed! ×
Item request cannot be made. ×
loading  Processing Request

Wildtype motoneurons, ALS‐Linked SOD1 mutation and glutamate profoundly modify astrocyte metabolism and lactate shuttling

Item request has been placed! ×
Item request cannot be made. ×
loading   Processing Request
  • Additional Information
    • Contributors:
      Imaging, Brain & Neuropsychiatry (iBraiN); Université de Tours (UT)-Institut National de la Santé et de la Recherche Médicale (INSERM); Centre Hospitalier Régional Universitaire de Tours (CHRU Tours); Institut des Neurosciences de Montpellier (INM); Institut National de la Santé et de la Recherche Médicale (INSERM)-Université de Montpellier (UM); Hôpital Saint Eloi CHU Montpellier; Centre Hospitalier Régional Universitaire Montpellier (CHRU Montpellier); Institut National de la Santé et de la Recherche Médicale (INSERM), the Association Française pour la Recherche sur la SLA (ARSLA), ANR-14-RARE-0006 E-RARE ‘FasSMALS’, Association Française contre les Myopathies (AFM; E.C; Ph.D. fellowship) and La Région Centre (B.M; Ph.D graduate grant 2013-10); ANR-14-RARE-0006,FaSMALS,Common Pathogenic Pathways and Therapeutics for SMA and ALS motoneuron diseases(2014)
    • Publication Information:
      CCSD
      Wiley
    • Publication Date:
      2017
    • Collection:
      Université François-Rabelais de Tours: HAL
    • Abstract:
      International audience ; The selective degeneration of motoneuron that typifies amyotrophic lateral sclerosis (ALS) implicates non-cell-autonomous effects of astrocytes. However, mechanisms underlying astrocyte-mediated neurotoxicity remain largely unknown. According to the determinant role of astrocyte metabolism in supporting neuronal function, we propose to explore the metabolic status of astrocytes exposed to ALS-associated conditions. We found a significant metabolic dysregulation including purine, pyrimidine, lysine, and glycerophospholipid metabolism pathways in astrocytes expressing an ALS-causing mutated superoxide dismutase-1 (SOD1) when co-cultured with motoneurons. SOD1 astrocytes exposed to glutamate revealed a significant modification of the astrocyte metabolic fingerprint. More importantly, we observed that SOD1 mutation and glutamate impact the cellular shuttling of lactate between astrocytes and motoneurons with a decreased in extra-and intra-cellular lactate levels in astrocytes. Based on the emergent strategy of metabolomics, this work provides novel insight for understanding metabolic dysfunction of astrocytes in ALS conditions and opens the perspective of therapeutics targets through focusing on these metabolic pathways.
    • Relation:
      info:eu-repo/semantics/altIdentifier/pmid/28139855; PUBMED: 28139855
    • Accession Number:
      10.1002/glia.23114
    • Online Access:
      https://hal.science/hal-04767249
      https://hal.science/hal-04767249v1/document
      https://hal.science/hal-04767249v1/file/Glia%202017.pdf
      https://doi.org/10.1002/glia.23114
    • Rights:
      info:eu-repo/semantics/OpenAccess
    • Accession Number:
      edsbas.5396D8C7