CD133(+) cells from human umbilical cord blood reduce cortical damage and promote axonal growth in neonatal rat organ co-cultures exposed to hypoxia

International Journal of Developmental Neuroscience 28 巻 7 号 581-587 頁 2010-11 発行
アクセス数 : 1013
ダウンロード数 : 239

今月のアクセス数 : 3
今月のダウンロード数 : 3
ファイル情報(添付)
IntJDevNeurosci_28_581.pdf 1.92 MB 種類 : 全文
タイトル ( eng )
CD133(+) cells from human umbilical cord blood reduce cortical damage and promote axonal growth in neonatal rat organ co-cultures exposed to hypoxia
作成者
Nakamae Toshio
Yamamoto Risako
Fujiwara Hisaya
Asahara Takayuki
収録物名
International Journal of Developmental Neuroscience
28
7
開始ページ 581
終了ページ 587
抄録
To evaluate the effect of CD133(+) cells (endothelial progenitor cells) on the hypoxia-induced suppression of axonal growth of cortical neurons and the destruction of blood vessels (endothelial cells), we used anterograde axonal tracing and immunofluorescence in organ co-cultures of the cortex and the spinal cord from 3-day-old neonatal rats. CD133(+) cells prepared from human umbilical cord blood were added to the organ co-cultures after hypoxic insult, and axonal growth, vascular damage and apoptosis were evaluated. Anterograde axonal tracing with 1,1'-dioctadecyl-3,3,3',3'-tetramethylindocarbocyanine perchlorate was used to analyze axonal projections from the cortex to the spinal cord. Immunolabeling co-cultured tissues of the cortex and the spinal cord were used to investigate the effect of CD133(+). cells on the survival of blood vessels and apoptosis in the brain cortex. Hypoxia remarkably suppressed axonal growth in organ co-cultures of the cortex and the spinal cord, and this suppression was significantly restored by the addition of CD133(+). cells. CD133(+) cells also reduced the hypoxia-induced destruction of the cortical blood vessels and apoptosis. CD133(+) cells had protective effects on hypoxia-induced injury of neurons and blood vessels of the brain cortex in vitro. These results suggest that CD133(+) cell transplantation may be a possible therapeutic intervention for perinatal hypoxia-induced brain injury.
著者キーワード
Brain damage
CD133
Hypoxia
Neonatal rat
Slice culture
NDC分類
医学 [ 490 ]
言語
英語
資源タイプ 学術雑誌論文
出版者
Pergamon Elsevier Science Ltd
発行日 2010-11
権利情報
Copyright (c) 2010 ISDN Published by Elsevier Ltd.
出版タイプ Author’s Original(十分な品質であるとして、著者から正式な査読に提出される版)
アクセス権 オープンアクセス
収録物識別子
[ISSN] 0736-5748
[DOI] 10.1016/j.ijdevneu.2010.07.232
[NCID] AA10637655
[DOI] http://dx.doi.org/10.1016/j.ijdevneu.2010.07.232