Apoptosis is not an invariable component of in vitro models of cortical cerebral ischaemia  被引量:3

Apoptosis is not an invariable component of in vitro models of cortical cerebral ischaemia

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作  者:Paul Alexander JONES Gillian Ruth MAY Joyce Ann MCLUCKIE Akinori IWASHITA John SHARKEY 

机构地区:[1]Fujisawa Institute of Neuroscience Division of Neuroscience,University of Edinburgh,1 George Square, Edinburgh,UK,Medical Information Eli Lilly and Company Ltd,Lilly House,Priestley Road,Basingstoke,RG24 9NL,UK,Fujisawa Institute of Neurosdence Division of Neuroscience,University of Edinburgh,1 George Square,Edinburgh,UK,Medicinal Biology Research Laboratories Fujisawa Pharmaceuticals Co.Ltd.,2-1-6 Kashima,Yodogawa-ku,Osaka,532-5814,Japan,Fujisawa Institute of Neuroscience Division of Neuroscience,University of Edinburgh,1 George Square,Edinburgh,UK

出  处:《Cell Research》2004年第3期241-250,共10页细胞研究(英文版)

摘  要:Characterising the mechanisms of cell death following focal cerebral ischaemia has been hampered by a lack of an in vitro assay emulating both the apoptotic and necrotic features observed in vivo. The present study systematically characterised oxygen-glucose-deprivation (OGD) in primary rat cortical neurones to establish a reproducible model with components of both cell-death endpoints. OGD induced a time-dependent reduction in cell viability, with 80% cell death occurring 24 h after 3 h exposure to 0% O2 and 0.5 mM glucose. Indicative of a necrotic component to OGDinduced cell death, N-methyl-D-aspartate (NMDA) receptor inhibition with MK-801 attenuated neuronal loss by 60%.The lack of protection by the caspase inhibitors DEVD-CHO and z-VAD-fmk suggested that under these conditions neurones did not die by an apoptotic mechanism. Moderating the severity of the insult by decreasing OGD exposure to 60 min did not reduce the amount of necrosis, but did induce a small degree of apoptosis (a slight reduction in cell death was observed in the presence of 10 μtM DEVD-CHO). In separate experiments purported to enhance the apoptotic component, cells were gradually deprived of O2, exposed to 4% O2 (as opposed to 0%) during the OGD period, or maintained in serum-containing media throughout. While NMDA receptor antagonism significantly reduced cortical cell death under all conditions, a caspase-inhibitor sensitive component of cell death was not uncovered. These studies suggest that OGD of cultured cortical cells models the excitotoxic, but not the apoptotic component of cell death observed in vivo.Characterising the mechanisms of cell death following focal cerebral ischaemia has been hampered by a lack of an in vitro assay emulating both the apoptotic and necrotic features observed in vivo. The present study systematically characterised oxygen-glucose-deprivation (OGD) in primary rat cortical neurones to establish a reproducible model with components of both cell-death endpoints. OGD induced a time-dependent reduction in cell viability, with 80% cell death occurring 24 h after 3 h exposure to 0% O2 and 0.5 mM glucose. Indicative of a necrotic component to OGD induced cell death, N-methyl-D-aspartate (NMDA) receptor inhibition with MK-801 attenuated neuronal loss by 60%. The lack of protection by the caspase inhibitors DEVD-CHO and z-VAD-fmk suggested that under these conditions neurones did not die by an apoptotic mechanism. Moderating the severity of the insult by decreasing OGD exposure to 60 min did not reduce the amount of necrosis, but did induce a small degree of apoptosis (a slight reduction in cell death was observed in the presence of 10 ℃M DEVD-CHO). In separate experiments purported to enhance the apoptotic component, cells were gradually deprived of O2, exposed to 4% O2 (as opposed to 0%) during the OGD period, or maintained in serum-containing media throughout. While NMDA receptor antagonism significantly reduced cortical cell death under all conditions, a caspase-inhibitor sensitive component of cell death was not uncovered. These studies suggest that OGD of cultured cortical cells models the excitotoxic, but not the apoptotic component of cell death observed in vivo.

关 键 词:局部缺血 大脑皮层 细胞凋亡 体外模型 坏死 

分 类 号:R743[医药卫生—神经病学与精神病学]

 

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