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Synapsing with NG2 cells(polydendrocytes),unappreciated barrier to axon regeneration? 被引量:2

Synapsing with NG2 cells(polydendrocytes),unappreciated barrier to axon regeneration?
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摘要 Have you heard of NG2 cells or NG2 glia or polydendro- cytes~. These are new names for the precursor cells that used to be referred to as oligodendrocyte precursor cells (OPCs), which become the oligodendrocytes that myelinate central nervous system (CNS) axons. Evidence suggests, however, that they have other functions, besides differentiating into oligodendrocytes. Most notably, the OPCs/NG2 cells are uni- formly distributed in grey matter as well as in white matter, which matches poorly with the distribution of myelinating oligodendrocytes. Furthermore, not every NG2 cell is fated to become an oligodendrocyte. Hence the term OPC can be fairly applied only when discussing the role of these cells in the oligodendrocyte lineage. Have you heard of NG2 cells or NG2 glia or polydendro- cytes~. These are new names for the precursor cells that used to be referred to as oligodendrocyte precursor cells (OPCs), which become the oligodendrocytes that myelinate central nervous system (CNS) axons. Evidence suggests, however, that they have other functions, besides differentiating into oligodendrocytes. Most notably, the OPCs/NG2 cells are uni- formly distributed in grey matter as well as in white matter, which matches poorly with the distribution of myelinating oligodendrocytes. Furthermore, not every NG2 cell is fated to become an oligodendrocyte. Hence the term OPC can be fairly applied only when discussing the role of these cells in the oligodendrocyte lineage.
作者 Young-Jin Son
出处 《Neural Regeneration Research》 SCIE CAS CSCD 2015年第3期346-348,共3页 中国神经再生研究(英文版)
基金 supported by NIH NS079631,Shriners Hospitals for Children and Craig H.Neilsen Foundation
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  • 1Abbadie C, Skinner K, Mitrovic I, Basbaum AI (1999) Neurons in the dorsal column white matter of the spinal cord: complex neuropil in an unexpected location. Proc Natl Acad Sci U S A 96:260-265.
  • 2Bergles DE, Jabs R, Steinhauser C (2010) Neuron-gila synapses in the brain. Brain Res Rev 63:130-137.
  • 3Boda E, Buftb A (2014) Beyond cell replacement: unresolved roles of NG2-expressing progenitors. Front Neurosci 8:122.
  • 4Busch SA, Horn KP, Cuascut FX, Hawthorne AL, Bai E, Miller RH, Silver J (2010) Adult NG2+ cells are permissive to neurite outgrowth and sta- bilize sensory axons during macrophage-induced axonal dieback after spinal cord injury. 1 Neurosci 30:255-265.
  • 5Carlstedt T (1985) Regenerating axons form nerve terminals at astro- cytes. Brain Res 347:188-191.
  • 6Di Maio A, Skuba A, Himes BT, Bhagat SL, Hyun JK, Tessler A, Bishop D, Son YJ (2011) In vivo imaging of dorsal root regeneration: rapid im- mobilization and presynaptic differentiation at the CNS/PNS border. J Neurosci 31:4569-4582.
  • 7Filous AR, Tran A, Howell CJ, Busch SA, Evans TA, Stallcup WB, Kang SH, Bergles DE, Lee SI, Levine IM, Silver J (2014) Entrapment via syn- aptic-like connections between NG2 proteoglycan+ cells and dystro- phic axons in the lesion plays a role in regeneration failure after spinal cord injury. J Neurosci 34:16369-16384.
  • 8Han S, Kim H, Skuba A, Tessler A, Ferguson TA, Son YJ (2012) Sensory axon regeneration: A review from an in vivo imaging perspective. Exp Neurobiol 21:83-93.
  • 9Liuzzi FJ, Lasek RJ (1987) Astrocytes block axonal regeneration in mam- mals by activating the physiological stop pathway. Science 237:642-645.
  • 10McTigue DM, Tripathi R, Wei P (2006) NG2 colocalizes with axons and is expressed by a mixed cell population in spinal cord lesions. J Neuro- pathol Exp Neuro165:406-420.

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