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zadetkov: 35
1.
  • Transplantation of specific... Transplantation of specific human astrocytes promotes functional recovery after spinal cord injury
    Davies, Stephen J A; Shih, Chung-Hsuan; Noble, Mark ... PloS one, 03/2011, Letnik: 6, Številka: 3
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    Repairing trauma to the central nervous system by replacement of glial support cells is an increasingly attractive therapeutic strategy. We have focused on the less-studied replacement of astrocytes, ...
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2.
  • Lysosomal Re-acidification ... Lysosomal Re-acidification Prevents Lysosphingolipid-Induced Lysosomal Impairment and Cellular Toxicity
    Folts, Christopher J; Scott-Hewitt, Nicole; Pröschel, Christoph ... PLoS biology, 12/2016, Letnik: 14, Številka: 12
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    Neurodegenerative lysosomal storage disorders (LSDs) are severe and untreatable, and mechanisms underlying cellular dysfunction are poorly understood. We found that toxic lipids relevant to three ...
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3.
  • Astrocytes derived from gli... Astrocytes derived from glial-restricted precursors promote spinal cord repair
    Davies, Jeannette E; Huang, Carol; Proschel, Christoph ... Journal of biology (London, England), 2006, Letnik: 5, Številka: 3
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    Transplantation of embryonic stem or neural progenitor cells is an attractive strategy for repair of the injured central nervous system. Transplantation of these cells alone to acute spinal cord ...
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4.
  • Loss of the fragile X syndr... Loss of the fragile X syndrome protein FMRP results in misregulation of nonsense-mediated mRNA decay
    Kurosaki, Tatsuaki; Imamachi, Naoto; Pröschel, Christoph ... Nature cell biology, 01/2021, Letnik: 23, Številka: 1
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    Loss of the fragile X protein FMRP is a leading cause of intellectual disability and autism , but the underlying mechanism remains poorly understood. We report that FMRP deficiency results in ...
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5.
  • Astroglial-derived periosti... Astroglial-derived periostin promotes axonal regeneration after spinal cord injury
    Shih, Chung-Hsuan; Lacagnina, Michelle; Leuer-Bisciotti, Kelly ... The Journal of neuroscience, 02/2014, Letnik: 34, Številka: 7
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    Traumatic spinal cord injury (SCI) results in a cascade of tissue responses leading to cell death, axonal degeneration, and glial scar formation, exacerbating the already hostile environment and ...
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6.
  • Expression of the human her... Expression of the human herpesvirus 6A latency-associated transcript U94A impairs cytoskeletal functions in human neural cells
    Hogestyn, Jessica M.; Salois, Garrick; Xie, Li ... Molecular and cellular neuroscience, 12/2022, Letnik: 123
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    Many neurodegenerative diseases have a multifactorial etiology and variable course of progression that cannot be explained by current models. Neurotropic viruses have long been suggested to play a ...
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7.
  • NMD abnormalities during br... NMD abnormalities during brain development in the Fmr1-knockout mouse model of fragile X syndrome
    Kurosaki, Tatsuaki; Sakano, Hitomi; Pröschel, Christoph ... Genome Biology, 11/2021, Letnik: 22, Številka: 1
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    Fragile X syndrome (FXS) is an intellectual disability attributable to loss of fragile X protein (FMRP). We previously demonstrated that FMRP binds mRNAs targeted for nonsense-mediated mRNA decay ...
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8.
  • AKT constitutes a signal-pr... AKT constitutes a signal-promoted alternative exon-junction complex that regulates nonsense-mediated mRNA decay
    Cho, Hana; Abshire, Elizabeth T.; Popp, Maximilian W. ... Molecular cell, 08/2022, Letnik: 82, Številka: 15
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    Despite a long appreciation for the role of nonsense-mediated mRNA decay (NMD) in destroying faulty, disease-causing mRNAs and maintaining normal, physiologic mRNA abundance, additional effectors ...
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9.
  • Expression of the Human Her... Expression of the Human Herpesvirus 6A Latency-Associated Transcript U94A Disrupts Human Oligodendrocyte Progenitor Migration
    Campbell, Andrew; Hogestyn, Jessica M; Folts, Christopher J ... Scientific reports, 06/2017, Letnik: 7, Številka: 1
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    Progression of demyelinating diseases is caused by an imbalance of two opposing processes: persistent destruction of myelin and myelin repair by differentiating oligodendrocyte progenitor cells ...
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10.
  • The many roles of C1q The many roles of C1q
    Noble, Mark; Pröschel, Christoph eLife, 09/2020, Letnik: 9
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    The ability of a well-known component of the complement cascade to bind to a variety of receptors has implications for signaling biology, spinal cord injury and, possibly, the evolution of the ...
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zadetkov: 35

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