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zadetkov: 102
1.
  • Dysfunction in endoplasmic ... Dysfunction in endoplasmic reticulum-mitochondria crosstalk underlies SIGMAR1 loss of function mediated motor neuron degeneration
    Bernard-Marissal, Nathalie; Médard, Jean-Jacques; Azzedine, Hamid ... Brain (London, England : 1878), 04/2015, Letnik: 138, Številka: Pt 4
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    Mutations in Sigma 1 receptor (SIGMAR1) have been previously identified in patients with amyotrophic lateral sclerosis and disruption of Sigmar1 in mouse leads to locomotor deficits. However, ...
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2.
  • Novel pathogenic pathways i... Novel pathogenic pathways in diabetic neuropathy
    Zenker, Jennifer; Ziegler, Dan; Chrast, Roman Trends in neurosciences (Regular ed.), 08/2013, Letnik: 36, Številka: 8
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    Highlights • Glial cells play a critical role in maintenance of axonal integrity and function. • Diabetes mellitus modifies axon–glia interactions at nodal areas of PNS nerves. • Axonal energy ...
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  • Metabolic Interaction Betwe... Metabolic Interaction Between Schwann Cells and Axons Under Physiological and Disease Conditions
    Bouçanova, Filipa; Chrast, Roman Frontiers in cellular neuroscience, 05/2020, Letnik: 14
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    Recent research into axon-glial interactions in the nervous system have made a compelling case that Schwann cells (SC) have a relevant role in the metabolic support of axons, and that this role is ...
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4.
  • Endoplasmic reticulum and m... Endoplasmic reticulum and mitochondria in diseases of motor and sensory neurons: a broken relationship?
    Bernard-Marissal, Nathalie; Chrast, Roman; Schneider, Bernard L Cell death & disease, 02/2018, Letnik: 9, Številka: 3
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    Recent progress in the understanding of neurodegenerative diseases revealed that multiple molecular mechanisms contribute to pathological changes in neurons. A large fraction of these alterations can ...
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5.
  • Oligodendroglial myelinatio... Oligodendroglial myelination requires astrocyte-derived lipids
    Camargo, Nutabi; Goudriaan, Andrea; van Deijk, Anne-Lieke F ... PLoS biology, 05/2017, Letnik: 15, Številka: 5
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    In the vertebrate nervous system, myelination of axons for rapid impulse propagation requires the synthesis of large amounts of lipids and proteins by oligodendrocytes and Schwann cells. Myelin ...
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6.
  • Akt Regulates Axon Wrapping... Akt Regulates Axon Wrapping and Myelin Sheath Thickness in the PNS
    Domènech-Estévez, Enric; Baloui, Hasna; Meng, Xiaosong ... The Journal of neuroscience, 04/2016, Letnik: 36, Številka: 16
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    The signaling pathways that regulate myelination in the PNS remain poorly understood. Phosphatidylinositol-4,5-bisphosphate 3-kinase 1A, activated in Schwann cells by neuregulin and the extracellular ...
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7.
  • Lipid metabolism in myelina... Lipid metabolism in myelinating glial cells: lessons from human inherited disorders and mouse models
    Chrast, Roman; Saher, Gesine; Nave, Klaus-Armin ... Journal of lipid research, 03/2011, Letnik: 52, Številka: 3
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    The integrity of central and peripheral nervous system myelin is affected in numerous lipid metabolism disorders. This vulnerability was so far mostly attributed to the extraordinarily high level of ...
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8.
  • Altered interplay between e... Altered interplay between endoplasmic reticulum and mitochondria in Charcot–Marie–Tooth type 2A neuropathy
    Bernard-Marissal, Nathalie; van Hameren, Gerben; Juneja, Manisha ... Proceedings of the National Academy of Sciences - PNAS, 02/2019, Letnik: 116, Številka: 6
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    Mutations in the MFN2 gene encoding Mitofusin 2 lead to the development of Charcot–Marie–Tooth type 2A (CMT2A), a dominant axonal form of peripheral neuropathy. Mitofusin 2 is localized at both the ...
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9.
  • Distribution of monocarboxy... Distribution of monocarboxylate transporters in the peripheral nervous system suggests putative roles in lactate shuttling and myelination
    Domènech-Estévez, Enric; Baloui, Hasna; Repond, Cendrine ... The Journal of neuroscience, 03/2015, Letnik: 35, Številka: 10
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    Lactate, a product of glycolysis, has been shown to play a key role in the metabolic support of neurons/axons in the CNS by both astrocytes and oligodendrocytes through monocarboxylate transporters ...
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10.
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zadetkov: 102

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