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1.
Cell Stem Cell ; 12(4): 426-39, 2013 Apr 04.
Article in English | MEDLINE | ID: mdl-23561443

ABSTRACT

As a result of brain injury, astrocytes become activated and start to proliferate in the vicinity of the injury site. Recently, we had demonstrated that these reactive astrocytes, or glia, can form self-renewing and multipotent neurospheres in vitro. In the present study, we demonstrate that it is only invasive injury, such as stab wounding or cerebral ischemia, and not noninvasive injury conditions, such as chronic amyloidosis or induced neuronal death, that can elicit this increase in plasticity. Furthermore, we find that Sonic hedgehog (SHH) is the signal that acts directly on the astrocytes and is necessary and sufficient to elicit the stem cell response both in vitro and in vivo. These findings provide a molecular basis for how cells with neural stem cell lineage emerge at sites of brain injury and imply that the high levels of SHH known to enter the brain from extraneural sources after invasive injury can trigger this response.


Subject(s)
Brain Injuries/pathology , Hedgehog Proteins/metabolism , Neural Stem Cells/metabolism , Neural Stem Cells/pathology , Neuroglia/metabolism , Neuroglia/pathology , Animals , Astrocytes/metabolism , Astrocytes/pathology , Brain Injuries/complications , Brain Injuries/metabolism , Cell Death , Cell Proliferation , Cell Separation , Cerebral Cortex/pathology , Disease Models, Animal , Gliosis/complications , Gliosis/pathology , Male , Mice , Mice, Inbred C57BL , Mice, Mutant Strains , Nerve Tissue Proteins/metabolism , Neurons/metabolism , Neurons/pathology , Signal Transduction , Spheroids, Cellular/metabolism , Spheroids, Cellular/pathology
2.
Glia ; 61(2): 273-86, 2013 Feb.
Article in English | MEDLINE | ID: mdl-23090919

ABSTRACT

Myelin loss is frequently observed in human Alzheimer's disease (AD) and may constitute to AD-related cognitive decline. A potential source to repair myelin defects are the oligodendrocyte progenitor cells (OPCs) present in an adult brain. However, until now, little is known about the reaction of these cells toward amyloid plaque deposition neither in human AD patients nor in the appropriate mouse models. Therefore, we analyzed cells of the oligodendrocyte lineage in a mouse model with chronic plaque deposition (APPPS1 mice) and samples from human patients. In APPPS1 mice defects in myelin integrity and myelin amount were prevalent at 6 months of age but normalized to control levels in 9-month-old mice. Concomitantly, we observed an increase in the proliferation and differentiation of OPCs in the APPPS1 mice at this specific time window (6-8 months) implying that improvements in myelin aberrations may result from repair mechanisms mediated by OPCs. However, while we observed a higher number of cells of the oligodendrocyte lineage (Olig2+ cells) in APPPS1 mice, OLIG2+ cells were decreased in number in postmortem human AD cortex. Our data demonstrate that oligodendrocyte progenitors specifically react to amyloid plaque deposition in an AD-related mouse model as well as in human AD pathology, although with distinct outcomes. Strikingly, possible repair mechanisms from newly generated oligodendrocytes are evident in APPPS1 mice, whereas a similar reaction of oligodendrocyte progenitors seems to be strongly limited in final stages of human AD pathology.


Subject(s)
Amyloidosis/pathology , Amyloidosis/physiopathology , Brain/metabolism , Cell Proliferation , Myelin Sheath/pathology , Oligodendroglia/pathology , Adult , Age Factors , Aged , Aged, 80 and over , Alzheimer Disease/genetics , Alzheimer Disease/pathology , Amyloid beta-Protein Precursor/genetics , Amyloidosis/genetics , Animals , Basic Helix-Loop-Helix Transcription Factors/metabolism , Brain/pathology , Cell Differentiation/physiology , Disease Models, Animal , Female , Gene Expression Regulation/genetics , Humans , Male , Mice , Mice, Inbred C57BL , Mice, Transgenic , Middle Aged , Nerve Tissue Proteins/metabolism , Nonlinear Dynamics , Oligodendrocyte Transcription Factor 2 , Postmortem Changes , Presenilin-1/genetics
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