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zadetkov: 47
1.
  • CNS fibroblasts form a fibrotic scar in response to immune cell infiltration
    Dorrier, Cayce E; Aran, Dvir; Haenelt, Ezekiel A ... Nature neuroscience, 02/2021, Letnik: 24, Številka: 2
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    Fibrosis is a common pathological response to inflammation in many peripheral tissues and can prevent tissue regeneration and repair. Here, we identified persistent fibrotic scarring in the CNS ...
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2.
  • Regional Astrocyte Allocati... Regional Astrocyte Allocation Regulates CNS Synaptogenesis and Repair
    Tsai, Hui-Hsin; Li, Huiliang; Fuentealba, Luis C. ... Science (American Association for the Advancement of Science), 07/2012, Letnik: 337, Številka: 6092
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    Astrocytes, the most abundant cell population in the central nervous system (CNS), are essential for normal neurological function. We show that astrocytes are allocated to spatial domains in mouse ...
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3.
  • Oligodendrocyte-Encoded HIF... Oligodendrocyte-Encoded HIF Function Couples Postnatal Myelination and White Matter Angiogenesis
    Yuen, Tracy J.; Silbereis, John C.; Griveau, Amelie ... Cell, 07/2014, Letnik: 158, Številka: 2
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    Myelin sheaths provide critical functional and trophic support for axons in white matter tracts of the brain. Oligodendrocyte precursor cells (OPCs) have extraordinary metabolic requirements during ...
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4.
  • Micropillar arrays as a hig... Micropillar arrays as a high-throughput screening platform for therapeutics in multiple sclerosis
    Mei, Feng; Fancy, Stephen P J; Shen, Yun-An A ... Nature medicine, 08/2014, Letnik: 20, Številka: 8
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    Functional screening for compounds that promote remyelination represents a major hurdle in the development of rational therapeutics for multiple sclerosis. Screening for remyelination is problematic, ...
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5.
  • Aberrant oligodendroglial-vascular interactions disrupt the blood-brain barrier, triggering CNS inflammation
    Niu, Jianqin; Tsai, Hui-Hsin; Hoi, Kimberly K ... Nature neuroscience, 05/2019, Letnik: 22, Številka: 5
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    Disruption of the blood-brain barrier (BBB) is critical to initiation and perpetuation of disease in multiple sclerosis (MS). We report an interaction between oligodendroglia and vasculature in MS ...
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6.
  • Axin2 as regulatory and the... Axin2 as regulatory and therapeutic target in newborn brain injury and remyelination
    Rowitch, David H; Fancy, Stephen P J; Harrington, Emily P ... Nature neuroscience, 08/2011, Letnik: 14, Številka: 8
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    Permanent damage to white matter tracts, comprising axons and myelinating oligodendrocytes, is an important component of brain injuries of the newborn that cause cerebral palsy and cognitive ...
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7.
  • Oligodendrocyte precursors ... Oligodendrocyte precursors migrate along vasculature in the developing nervous system
    Tsai, Hui-Hsin; Niu, Jianqin; Munji, Roeben ... Science (American Association for the Advancement of Science), 01/2016, Letnik: 351, Številka: 6271
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    Oligodendrocytes myelinate axons in the central nervous system and develop from oligodndrocyte precursor cells (OPCs) that must first migrate extensively during brain and spinal cord development. We ...
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8.
  • CNS-Resident Glial Progenit... CNS-Resident Glial Progenitor/Stem Cells Produce Schwann Cells as well as Oligodendrocytes during Repair of CNS Demyelination
    Zawadzka, Malgorzata; Rivers, Leanne E.; Fancy, Stephen P.J. ... Cell stem cell, 06/2010, Letnik: 6, Številka: 6
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    After central nervous system (CNS) demyelination—such as occurs during multiple sclerosis—there is often spontaneous regeneration of myelin sheaths, mainly by oligodendrocytes but also by Schwann ...
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9.
  • Daam2-PIP5K Is a Regulatory... Daam2-PIP5K Is a Regulatory Pathway for Wnt Signaling and Therapeutic Target for Remyelination in the CNS
    Lee, Hyun Kyoung; Chaboub, Lesley S.; Zhu, Wenyi ... Neuron (Cambridge, Mass.), 03/2015, Letnik: 85, Številka: 6
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    Wnt signaling plays an essential role in developmental and regenerative myelination of the CNS; however, contributions of proximal regulators of the Wnt receptor complex to these processes remain ...
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10.
  • CRISPRi screens in human iPSC-derived astrocytes elucidate regulators of distinct inflammatory reactive states
    Leng, Kun; Rose, Indigo V L; Kim, Hyosung ... Nature neuroscience, 11/2022, Letnik: 25, Številka: 11
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    Astrocytes become reactive in response to insults to the central nervous system by adopting context-specific cellular signatures and outputs, but a systematic understanding of the underlying ...
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zadetkov: 47

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