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01 奈良県立医科大学 >
012 大学院 >
0122 学位請求論文 >
01221 博士論文(医学) >
2014年度 >
このアイテムの引用には次の識別子を使用してください:
http://hdl.handle.net/10564/2750
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タイトル: | Primary cerebral and cerebellar astrocytes display differential sensitivity to extracellular sodium with significant effects on apoptosis. |
その他のタイトル: | 大脳由来と小脳由来の初代培養アストロサイトは、アポトーシスに関連する細胞外ナトリウム感受性が異なる |
著者: | Takeda, Tomohiko Makinodan, Manabu Fukami, Shin-ichi Toritsuka, Michihiro Ikawa, Daisuke Yamashita, Yasunori Kishimoto, Toshifumi |
キーワード: | astrocyte sodium ion apoptosis hyponatraemia central pontine myelinolysis schizophrenia |
発行日: | 2014年6月 |
出版者: | Wiley-Blackwell |
引用: | Cell biochemistry and function Vol.32 No.4 p.395-400 |
抄録: | Central pontine myelinolysis is one of the idiopathic or iatrogenic brain dysfunction, and the most common cause is excessively rapid correction of chronic hyponatraemia. While myelin disruption is the main pathology, as the diagnostic name indicates, a previous study has reported that astrocyte death precedes the destruction of the myelin sheath after the rapid correction of chronic low Na+ levels, and interestingly, certain brain regions (cerebral cortex, hippocampus, etc.) are specifically damaged but not cerebellum. Here, using primary astrocyte cultures derived from rat cerebral cortex and cerebellum, we examined how extracellular Na+ alterations affect astrocyte death and whether the response is different between the two populations of astrocytes. Twice the amount of extracellular [Na+] and voltage-gated Na+ channel opening induced substantial apoptosis in both populations of astrocytes, while, in contrast, one half [Na+] prevented apoptosis in cerebellar astrocytes, in which the Na+–Ca2+ exchanger, NCX2, was highly expressed but not in cerebral astrocytes. Strikingly, the rapid correction of chronic one half [Na+] exposure significantly increased apoptosis in cerebellar astrocytes but not in cerebral astrocytes. These results indicate that extracellular [Na+] affects astrocyte apoptosis, and the response to alterations in [Na+] is dependent on the brain region from which the astrocyte is derived. |
内容記述: | 博士(医学)・乙第1346号・平成26年12月3日 Copyright © 2014 John Wiley & Sons, Ltd. |
URI: | http://hdl.handle.net/10564/2750 |
ISSN: | 02636484 |
DOI: | http://dx.doi.org/10.1002/cbf.3030 |
学位授与番号: | 24601B1346 |
学位授与年月日: | 2014-12-03 |
学位名: | 博士(医学) |
学位授与機関: | 奈良県立医科大学 |
出現コレクション: | 2014年度
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