Transplanted bone marrow stem cells relocate to infarct penumbra and co-express endogenous proliferative and immature neuronal markers in a mouse model of ischemic cerebral stroke

<p>Abstract</p> <p>Background</p> <p>Several studies demonstrate that neurogenesis may be induced or activated following vascular insults, which may be important for neuronal regeneration and functional recovery. Understanding the cellular mechanism underlying stroke-as...

Full description

Bibliographic Details
Main Authors: Liu Wei, Huang Xiang-nan, Yu Chun-jiang, Yang Dan, Du Fang, Zhang Xue-mei, Fu Jin
Format: Article
Language:English
Published: BMC 2010-10-01
Series:BMC Neuroscience
Online Access:http://www.biomedcentral.com/1471-2202/11/138
id doaj-92c35dcaa68a456585a0fbbf6b406899
record_format Article
spelling doaj-92c35dcaa68a456585a0fbbf6b4068992020-11-24T22:19:02ZengBMCBMC Neuroscience1471-22022010-10-0111113810.1186/1471-2202-11-138Transplanted bone marrow stem cells relocate to infarct penumbra and co-express endogenous proliferative and immature neuronal markers in a mouse model of ischemic cerebral strokeLiu WeiHuang Xiang-nanYu Chun-jiangYang DanDu FangZhang Xue-meiFu Jin<p>Abstract</p> <p>Background</p> <p>Several studies demonstrate that neurogenesis may be induced or activated following vascular insults, which may be important for neuronal regeneration and functional recovery. Understanding the cellular mechanism underlying stroke-associated neurogenesis is of neurobiological as well as neurological/clinical relevance. The present study attempted to explore potential homing and early development of transplanted bone marrow stem cells in mouse forebrain after focal occlusion of the middle cerebral artery, an experimental model of ischemic stroke.</p> <p>Results</p> <p>Bone marrow stem cells isolated from donor mice were confirmed by analysis of surface antigen profile, and were pre-labeled with a lipophilic fluorescent dye PKH26, and subsequently transfused into recipient mice with middle cerebral artery coagulation. A large number of PKH26-labeled cells were detected surrounding the infarct site, most of which colocalized with immunolabelings for the proliferating cell nuclear antigen (PCNA) and some also colocalized with the immature neuronal marker doublecortin (DCX) during 1-2 weeks after the bone marrow cells transfusion.</p> <p>Conclusions</p> <p>The present study shows that transplanted bone morrow cells largely relocate to the infarct penumbra in ischemic mouse cerebrum. These transplanted bone marrow cells appear to undergo a process of in situ proliferation and develop into putative cortical interneurons during the early phase of experimental vascular injury.</p> http://www.biomedcentral.com/1471-2202/11/138
collection DOAJ
language English
format Article
sources DOAJ
author Liu Wei
Huang Xiang-nan
Yu Chun-jiang
Yang Dan
Du Fang
Zhang Xue-mei
Fu Jin
spellingShingle Liu Wei
Huang Xiang-nan
Yu Chun-jiang
Yang Dan
Du Fang
Zhang Xue-mei
Fu Jin
Transplanted bone marrow stem cells relocate to infarct penumbra and co-express endogenous proliferative and immature neuronal markers in a mouse model of ischemic cerebral stroke
BMC Neuroscience
author_facet Liu Wei
Huang Xiang-nan
Yu Chun-jiang
Yang Dan
Du Fang
Zhang Xue-mei
Fu Jin
author_sort Liu Wei
title Transplanted bone marrow stem cells relocate to infarct penumbra and co-express endogenous proliferative and immature neuronal markers in a mouse model of ischemic cerebral stroke
title_short Transplanted bone marrow stem cells relocate to infarct penumbra and co-express endogenous proliferative and immature neuronal markers in a mouse model of ischemic cerebral stroke
title_full Transplanted bone marrow stem cells relocate to infarct penumbra and co-express endogenous proliferative and immature neuronal markers in a mouse model of ischemic cerebral stroke
title_fullStr Transplanted bone marrow stem cells relocate to infarct penumbra and co-express endogenous proliferative and immature neuronal markers in a mouse model of ischemic cerebral stroke
title_full_unstemmed Transplanted bone marrow stem cells relocate to infarct penumbra and co-express endogenous proliferative and immature neuronal markers in a mouse model of ischemic cerebral stroke
title_sort transplanted bone marrow stem cells relocate to infarct penumbra and co-express endogenous proliferative and immature neuronal markers in a mouse model of ischemic cerebral stroke
publisher BMC
series BMC Neuroscience
issn 1471-2202
publishDate 2010-10-01
description <p>Abstract</p> <p>Background</p> <p>Several studies demonstrate that neurogenesis may be induced or activated following vascular insults, which may be important for neuronal regeneration and functional recovery. Understanding the cellular mechanism underlying stroke-associated neurogenesis is of neurobiological as well as neurological/clinical relevance. The present study attempted to explore potential homing and early development of transplanted bone marrow stem cells in mouse forebrain after focal occlusion of the middle cerebral artery, an experimental model of ischemic stroke.</p> <p>Results</p> <p>Bone marrow stem cells isolated from donor mice were confirmed by analysis of surface antigen profile, and were pre-labeled with a lipophilic fluorescent dye PKH26, and subsequently transfused into recipient mice with middle cerebral artery coagulation. A large number of PKH26-labeled cells were detected surrounding the infarct site, most of which colocalized with immunolabelings for the proliferating cell nuclear antigen (PCNA) and some also colocalized with the immature neuronal marker doublecortin (DCX) during 1-2 weeks after the bone marrow cells transfusion.</p> <p>Conclusions</p> <p>The present study shows that transplanted bone morrow cells largely relocate to the infarct penumbra in ischemic mouse cerebrum. These transplanted bone marrow cells appear to undergo a process of in situ proliferation and develop into putative cortical interneurons during the early phase of experimental vascular injury.</p>
url http://www.biomedcentral.com/1471-2202/11/138
work_keys_str_mv AT liuwei transplantedbonemarrowstemcellsrelocatetoinfarctpenumbraandcoexpressendogenousproliferativeandimmatureneuronalmarkersinamousemodelofischemiccerebralstroke
AT huangxiangnan transplantedbonemarrowstemcellsrelocatetoinfarctpenumbraandcoexpressendogenousproliferativeandimmatureneuronalmarkersinamousemodelofischemiccerebralstroke
AT yuchunjiang transplantedbonemarrowstemcellsrelocatetoinfarctpenumbraandcoexpressendogenousproliferativeandimmatureneuronalmarkersinamousemodelofischemiccerebralstroke
AT yangdan transplantedbonemarrowstemcellsrelocatetoinfarctpenumbraandcoexpressendogenousproliferativeandimmatureneuronalmarkersinamousemodelofischemiccerebralstroke
AT dufang transplantedbonemarrowstemcellsrelocatetoinfarctpenumbraandcoexpressendogenousproliferativeandimmatureneuronalmarkersinamousemodelofischemiccerebralstroke
AT zhangxuemei transplantedbonemarrowstemcellsrelocatetoinfarctpenumbraandcoexpressendogenousproliferativeandimmatureneuronalmarkersinamousemodelofischemiccerebralstroke
AT fujin transplantedbonemarrowstemcellsrelocatetoinfarctpenumbraandcoexpressendogenousproliferativeandimmatureneuronalmarkersinamousemodelofischemiccerebralstroke
_version_ 1725780415488196608