The role of PKCε in neurogenesis
碩士 === 國防醫學院 === 生物及解剖學研究所 === 93 === In this study, we used anti-protein kinase C ε antibodies to investigate the distribution and expression of the PKC epsilon(PKCε)in neurosphere and the role of PKCε in neurogenesis. Neural precursor cells could self-renew and have the potential to differentiate...
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ndltd-TW-093NDMC05890112015-10-13T13:04:19Z http://ndltd.ncl.edu.tw/handle/54018611502833991376 The role of PKCε in neurogenesis 蛋白質激酶Cε在神經生成中的角色探討 WEN-HSI CHOU 周汶熹 碩士 國防醫學院 生物及解剖學研究所 93 In this study, we used anti-protein kinase C ε antibodies to investigate the distribution and expression of the PKC epsilon(PKCε)in neurosphere and the role of PKCε in neurogenesis. Neural precursor cells could self-renew and have the potential to differentiate into neurons or glia, indicating that they have characteristics of neural stem cells. In serum-free defined medium supplemented with epidermal growth factor(EGF), suspension cells dissociated from the postnatal rat brain cortex had ability to proliferate and form floating spherical colonies, called neurospheres. After replacement with defined medium contained fetal bovine serum, the neurospheres could attach, migrate and differentiate into neurons, astrocytes and oligodendrocytes. PKCε staining showed that PKCε was expressed abundantly in neurosphere. Double immunofluorescence showed that cells migrated out of the neurosphere differentiated into neural precursor, astrocyte, oligodendrocyte and neuron, and PKCε expressed in neuron and immature oligodendrocyte. Western blotting analysis confirmed the phenomenon by immunofluorescence that cells migrated out of the neurosphere had reduced PKCε expression gradually with increasing incubation time. Furthermore, the active form of PKCε had maximum expression in early differentiation, but downregulation after 1 day subculture. These data suggest that PKCε may involved in neurogenesis. JIANG-CHUAN LIU NIEN-HSIEN LIOU KUO-HSING MA 劉江川 劉念先 馬國興 2005 學位論文 ; thesis 40 zh-TW |
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碩士 === 國防醫學院 === 生物及解剖學研究所 === 93 === In this study, we used anti-protein kinase C ε antibodies to investigate the distribution and expression of the PKC epsilon(PKCε)in neurosphere and the role of PKCε in neurogenesis. Neural precursor cells could self-renew and have the potential to differentiate into neurons or glia, indicating that they have characteristics of neural stem cells. In serum-free defined medium supplemented with epidermal growth factor(EGF), suspension cells dissociated from the postnatal rat brain cortex had ability to proliferate and form floating spherical colonies, called neurospheres. After replacement with defined medium contained fetal bovine serum, the neurospheres could attach, migrate and differentiate into neurons, astrocytes and oligodendrocytes. PKCε staining showed that PKCε was expressed abundantly in neurosphere. Double immunofluorescence showed that cells migrated out of the neurosphere differentiated into neural precursor, astrocyte, oligodendrocyte and neuron, and PKCε expressed in neuron and immature oligodendrocyte. Western blotting analysis confirmed the phenomenon by immunofluorescence that cells migrated out of the neurosphere had reduced PKCε expression gradually with increasing incubation time. Furthermore, the active form of PKCε had maximum expression in early differentiation, but downregulation after 1 day subculture. These data suggest that PKCε may involved in neurogenesis.
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author2 |
JIANG-CHUAN LIU |
author_facet |
JIANG-CHUAN LIU WEN-HSI CHOU 周汶熹 |
author |
WEN-HSI CHOU 周汶熹 |
spellingShingle |
WEN-HSI CHOU 周汶熹 The role of PKCε in neurogenesis |
author_sort |
WEN-HSI CHOU |
title |
The role of PKCε in neurogenesis |
title_short |
The role of PKCε in neurogenesis |
title_full |
The role of PKCε in neurogenesis |
title_fullStr |
The role of PKCε in neurogenesis |
title_full_unstemmed |
The role of PKCε in neurogenesis |
title_sort |
role of pkcε in neurogenesis |
publishDate |
2005 |
url |
http://ndltd.ncl.edu.tw/handle/54018611502833991376 |
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