Reduced inflammation accompanies diminished myelin damage and repair in the NG2 null mouse spinal cord

<p>Abstract</p> <p>Background</p> <p>Multiple sclerosis (MS) is a demyelinating disease in which blood-derived immune cells and activated microglia damage myelin in the central nervous system. While oligodendrocyte progenitor cells (OPCs) are essential for generating ol...

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Main Authors: Kucharova Karolina, Chang Yunchao, Boor Andrej, Yong Voon, Stallcup William B
Format: Article
Language:English
Published: BMC 2011-11-01
Series:Journal of Neuroinflammation
Subjects:
Online Access:http://www.jneuroinflammation.com/content/8/1/158
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spelling doaj-9910ac31cf234c9d8ed63d416d0c4e162020-11-24T21:39:43ZengBMCJournal of Neuroinflammation1742-20942011-11-018115810.1186/1742-2094-8-158Reduced inflammation accompanies diminished myelin damage and repair in the NG2 null mouse spinal cordKucharova KarolinaChang YunchaoBoor AndrejYong VoonStallcup William B<p>Abstract</p> <p>Background</p> <p>Multiple sclerosis (MS) is a demyelinating disease in which blood-derived immune cells and activated microglia damage myelin in the central nervous system. While oligodendrocyte progenitor cells (OPCs) are essential for generating oligodendrocytes for myelin repair, other cell types also participate in the damage and repair processes. The NG2 proteoglycan is expressed by OPCs, pericytes, and macrophages/microglia. In this report we investigate the effects of NG2 on these cell types during spinal cord demyelination/remyelination.</p> <p>Methods</p> <p>Demyelinated lesions were created by microinjecting 1% lysolecithin into the lumbar spinal cord. Following demyelination, NG2 expression patterns in wild type mice were studied via immunostaining. Immunolabeling was also used in wild type and NG2 null mice to compare the extent of myelin damage, the kinetics of myelin repair, and the respective responses of OPCs, pericytes, and macrophages/microglia. Cell proliferation was quantified by studies of BrdU incorporation, and cytokine expression levels were evaluated using qRT-PCR.</p> <p>Results</p> <p>The initial volume of spinal cord demyelination in wild type mice is twice as large as in NG2 null mice. However, over the ensuing 5 weeks there is a 6-fold improvement in myelination in wild type mice, versus only a 2-fold improvement in NG2 null mice. NG2 ablation also results in reduced numbers of each of the three affected cell types. BrdU incorporation studies reveal that reduced cell proliferation is an important factor underlying NG2-dependent decreases in each of the three key cell populations. In addition, NG2 ablation reduces macrophage/microglial cell migration and shifts cytokine expression from a pro-inflammatory to anti-inflammatory phenotype.</p> <p>Conclusions</p> <p>Loss of NG2 expression leads to decreased proliferation of OPCs, pericytes, and macrophages/microglia, reducing the abundance of all three cell types in demyelinated spinal cord lesions. As a result of these NG2-dependent changes, the course of demyelination and remyelination in NG2 null mice differs from that seen in wild type mice, with both myelin damage and repair being reduced in the NG2 null mouse. These studies identify NG2 as an important factor in regulating myelin processing, suggesting that therapeutic targeting of the proteoglycan might offer a means of manipulating cell behavior in demyelinating diseases.</p> http://www.jneuroinflammation.com/content/8/1/158Inflammationmyelin repairNG2 ablationoligodendrocyte progenitorspericytesmacrophages
collection DOAJ
language English
format Article
sources DOAJ
author Kucharova Karolina
Chang Yunchao
Boor Andrej
Yong Voon
Stallcup William B
spellingShingle Kucharova Karolina
Chang Yunchao
Boor Andrej
Yong Voon
Stallcup William B
Reduced inflammation accompanies diminished myelin damage and repair in the NG2 null mouse spinal cord
Journal of Neuroinflammation
Inflammation
myelin repair
NG2 ablation
oligodendrocyte progenitors
pericytes
macrophages
author_facet Kucharova Karolina
Chang Yunchao
Boor Andrej
Yong Voon
Stallcup William B
author_sort Kucharova Karolina
title Reduced inflammation accompanies diminished myelin damage and repair in the NG2 null mouse spinal cord
title_short Reduced inflammation accompanies diminished myelin damage and repair in the NG2 null mouse spinal cord
title_full Reduced inflammation accompanies diminished myelin damage and repair in the NG2 null mouse spinal cord
title_fullStr Reduced inflammation accompanies diminished myelin damage and repair in the NG2 null mouse spinal cord
title_full_unstemmed Reduced inflammation accompanies diminished myelin damage and repair in the NG2 null mouse spinal cord
title_sort reduced inflammation accompanies diminished myelin damage and repair in the ng2 null mouse spinal cord
publisher BMC
series Journal of Neuroinflammation
issn 1742-2094
publishDate 2011-11-01
description <p>Abstract</p> <p>Background</p> <p>Multiple sclerosis (MS) is a demyelinating disease in which blood-derived immune cells and activated microglia damage myelin in the central nervous system. While oligodendrocyte progenitor cells (OPCs) are essential for generating oligodendrocytes for myelin repair, other cell types also participate in the damage and repair processes. The NG2 proteoglycan is expressed by OPCs, pericytes, and macrophages/microglia. In this report we investigate the effects of NG2 on these cell types during spinal cord demyelination/remyelination.</p> <p>Methods</p> <p>Demyelinated lesions were created by microinjecting 1% lysolecithin into the lumbar spinal cord. Following demyelination, NG2 expression patterns in wild type mice were studied via immunostaining. Immunolabeling was also used in wild type and NG2 null mice to compare the extent of myelin damage, the kinetics of myelin repair, and the respective responses of OPCs, pericytes, and macrophages/microglia. Cell proliferation was quantified by studies of BrdU incorporation, and cytokine expression levels were evaluated using qRT-PCR.</p> <p>Results</p> <p>The initial volume of spinal cord demyelination in wild type mice is twice as large as in NG2 null mice. However, over the ensuing 5 weeks there is a 6-fold improvement in myelination in wild type mice, versus only a 2-fold improvement in NG2 null mice. NG2 ablation also results in reduced numbers of each of the three affected cell types. BrdU incorporation studies reveal that reduced cell proliferation is an important factor underlying NG2-dependent decreases in each of the three key cell populations. In addition, NG2 ablation reduces macrophage/microglial cell migration and shifts cytokine expression from a pro-inflammatory to anti-inflammatory phenotype.</p> <p>Conclusions</p> <p>Loss of NG2 expression leads to decreased proliferation of OPCs, pericytes, and macrophages/microglia, reducing the abundance of all three cell types in demyelinated spinal cord lesions. As a result of these NG2-dependent changes, the course of demyelination and remyelination in NG2 null mice differs from that seen in wild type mice, with both myelin damage and repair being reduced in the NG2 null mouse. These studies identify NG2 as an important factor in regulating myelin processing, suggesting that therapeutic targeting of the proteoglycan might offer a means of manipulating cell behavior in demyelinating diseases.</p>
topic Inflammation
myelin repair
NG2 ablation
oligodendrocyte progenitors
pericytes
macrophages
url http://www.jneuroinflammation.com/content/8/1/158
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