Now showing 1 - 3 of 3
  • 2020Journal Article Research Paper
    [["dc.bibliographiccitation.firstpage","47"],["dc.bibliographiccitation.issue","1"],["dc.bibliographiccitation.journal","Nature Neuroscience"],["dc.bibliographiccitation.lastpage","60"],["dc.bibliographiccitation.volume","24"],["dc.contributor.author","Berghoff, Stefan A."],["dc.contributor.author","Spieth, Lena"],["dc.contributor.author","Sun, Ting"],["dc.contributor.author","Hosang, Leon"],["dc.contributor.author","Schlaphoff, Lennart"],["dc.contributor.author","Depp, Constanze"],["dc.contributor.author","Düking, Tim"],["dc.contributor.author","Winchenbach, Jan"],["dc.contributor.author","Neuber, Jonathan"],["dc.contributor.author","Ewers, David"],["dc.contributor.author","Scholz, Patricia"],["dc.contributor.author","van der Meer, Franziska"],["dc.contributor.author","Cantuti-Castelvetri, Ludovico"],["dc.contributor.author","Sasmita, Andrew O."],["dc.contributor.author","Meschkat, Martin"],["dc.contributor.author","Ruhwedel, Torben"],["dc.contributor.author","Möbius, Wiebke"],["dc.contributor.author","Sankowski, Roman"],["dc.contributor.author","Prinz, Marco"],["dc.contributor.author","Huitinga, Inge"],["dc.contributor.author","Sereda, Michael W."],["dc.contributor.author","Odoardi, Francesca"],["dc.contributor.author","Ischebeck, Till"],["dc.contributor.author","Simons, Mikael"],["dc.contributor.author","Stadelmann-Nessler, Christine"],["dc.contributor.author","Edgar, Julia M."],["dc.contributor.author","Nave, Klaus-Armin"],["dc.contributor.author","Saher, Gesine"],["dc.date.accessioned","2021-04-14T08:27:05Z"],["dc.date.available","2021-04-14T08:27:05Z"],["dc.date.issued","2020"],["dc.identifier.doi","10.1038/s41593-020-00757-6"],["dc.identifier.pmid","33349711"],["dc.identifier.uri","https://resolver.sub.uni-goettingen.de/purl?gro-2/82162"],["dc.identifier.url","https://rdp.sfb274.de/literature/publications/11"],["dc.language.iso","en"],["dc.notes.intern","DOI Import GROB-399"],["dc.relation","TRR 274: Checkpoints of Central Nervous System Recovery"],["dc.relation","TRR 274 | A04: The role of the meninges in the resolution of acute autoimmune CNS lesions"],["dc.relation.eissn","1546-1726"],["dc.relation.issn","1097-6256"],["dc.relation.workinggroup","RG Cantuti"],["dc.relation.workinggroup","RG Nave (Neurogenetics)"],["dc.relation.workinggroup","RG Odoardi (Echtzeitdarstellung neuroimmunologischer Prozesse)"],["dc.relation.workinggroup","RG Simons (The Biology of Glia in Development and Disease)"],["dc.relation.workinggroup","RG Stadelmann-Nessler"],["dc.title","Microglia facilitate repair of demyelinated lesions via post-squalene sterol synthesis"],["dc.type","journal_article"],["dc.type.internalPublication","yes"],["dc.type.subtype","original_ja"],["dspace.entity.type","Publication"]]
    Details DOI PMID PMC
  • 2021Journal Article
    [["dc.bibliographiccitation.artnumber","S2211124721013590"],["dc.bibliographiccitation.firstpage","109889"],["dc.bibliographiccitation.issue","4"],["dc.bibliographiccitation.journal","Cell Reports"],["dc.bibliographiccitation.volume","37"],["dc.contributor.author","Berghoff, Stefan A."],["dc.contributor.author","Spieth, Lena"],["dc.contributor.author","Sun, Ting"],["dc.contributor.author","Hosang, Leon"],["dc.contributor.author","Depp, Constanze"],["dc.contributor.author","Sasmita, Andrew O."],["dc.contributor.author","Vasileva, Martina H."],["dc.contributor.author","Scholz, Patricia"],["dc.contributor.author","Zhao, Yu"],["dc.contributor.author","Krueger-Burg, Dilja"],["dc.contributor.author","Saher, Gesine"],["dc.date.accessioned","2021-12-01T09:23:54Z"],["dc.date.available","2021-12-01T09:23:54Z"],["dc.date.issued","2021"],["dc.identifier.doi","10.1016/j.celrep.2021.109889"],["dc.identifier.pii","S2211124721013590"],["dc.identifier.uri","https://resolver.sub.uni-goettingen.de/purl?gro-2/94788"],["dc.language.iso","en"],["dc.notes.intern","DOI-Import GROB-478"],["dc.relation.issn","2211-1247"],["dc.title","Neuronal cholesterol synthesis is essential for repair of chronically demyelinated lesions in mice"],["dc.type","journal_article"],["dc.type.internalPublication","yes"],["dspace.entity.type","Publication"]]
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  • 2022Journal Article
    [["dc.bibliographiccitation.artnumber","eabo7639"],["dc.bibliographiccitation.issue","37"],["dc.bibliographiccitation.journal","Science Advances"],["dc.bibliographiccitation.volume","8"],["dc.contributor.author","Düking, Tim"],["dc.contributor.author","Spieth, Lena"],["dc.contributor.author","Berghoff, Stefan A."],["dc.contributor.author","Piepkorn, Lars"],["dc.contributor.author","Schmidke, Annika M."],["dc.contributor.author","Mitkovski, Miso"],["dc.contributor.author","Kannaiyan, Nirmal"],["dc.contributor.author","Hosang, Leon"],["dc.contributor.author","Scholz, Patricia"],["dc.contributor.author","Shaib, Ali H."],["dc.contributor.author","Saher, Gesine"],["dc.date.accessioned","2022-10-04T10:21:32Z"],["dc.date.available","2022-10-04T10:21:32Z"],["dc.date.issued","2022"],["dc.description.abstract","To maintain homeostasis, the body, including the brain, reprograms its metabolism in response to altered nutrition or disease. However, the consequences of these challenges for the energy metabolism of the different brain cell types remain unknown. Here, we generated a proteome atlas of the major central nervous system (CNS) cell types from young and adult mice, after feeding the therapeutically relevant low-carbohydrate, high-fat ketogenic diet (KD) and during neuroinflammation. Under steady-state conditions, CNS cell types prefer distinct modes of energy metabolism. Unexpectedly, the comparison with KD revealed distinct cell type–specific strategies to manage the altered availability of energy metabolites. Astrocytes and neurons but not oligodendrocytes demonstrated metabolic plasticity. Moreover, inflammatory demyelinating disease changed the neuronal metabolic signature in a similar direction as KD. Together, these findings highlight the importance of the metabolic cross-talk between CNS cells and between the periphery and the brain to manage altered nutrition and neurological disease."],["dc.description.abstract","Differential metabolic flexibility of brain cells facilitates managing nutritional or pathologic challenges."],["dc.identifier.doi","10.1126/sciadv.abo7639"],["dc.identifier.uri","https://resolver.sub.uni-goettingen.de/purl?gro-2/114437"],["dc.language.iso","en"],["dc.notes.intern","DOI-Import GROB-600"],["dc.relation.eissn","2375-2548"],["dc.title","Ketogenic diet uncovers differential metabolic plasticity of brain cells"],["dc.type","journal_article"],["dc.type.internalPublication","yes"],["dspace.entity.type","Publication"]]
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