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Role of Mitochondria in Neuron Apoptosis during Ischemia-Reperfusion Injury 被引量:3

Role of Mitochondria in Neuron Apoptosis during Ischemia-Reperfusion Injury
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摘要 To investigate the role of mitochondria in neuronal apoptosis, ischemia-reperfusion mediated neuronal cell injury model was established by depriving of glucose, serum and oxygen in media. DNA fragmentation, cell viability, cytochrome C releasing, caspase3 activity and mitochondrial transmembrane potential were observed after N2a cells suffered the insults. The results showed that N2a cells in ischemic territory exhibited survival damage, classical cell apoptosis change, DNA ladder and activation of caspase3. Apoptosis-related alterations in mitochondrial functions, including release of cytochrome C and depression of mitochondrial transmembrane potential (△Ψm) were testified in N2a cells after mimic ischemia-reperfusion. Moreover, activation of caspase3 occurred following the release of cytochrome C. However, the inhibitor of caspase3, Ac-DEVD-CHO, couldn't completely rescue N2a cells from apoptosis. Administration of cyclosporine A, an inhibitor of mitochondria permeability transition pore only partly inhibited caspase3 activity and reduced DNA damage. Interestingly, treatment of Z-IETD-FMK, an inhibitor of caspase8 could completely reverse DNA fragmentation, but can't completely inhibit caspase3 activity. It was concluded that there were caspase3 dependent and independent cellular apoptosis pathways in N2a cells suffering ischemia-reperfusion insults. Mitochondria dysfunction may early trigger apoptosis and amplify apoptosis signal. To investigate the role of mitochondria in neuronal apoptosis, ischemia-reperfusion mediated neuronal cell injury model was established by depriving of glucose, serum and oxygen in media. DNA fragmentation, cell viability, cytochrome C releasing, caspase3 activity and mitochondrial transmembrane potential were observed after N2a cells suffered the insults. The results showed that N2a cells in ischemic territory exhibited survival damage, classical cell apoptosis change, DNA ladder and activation of caspase3. Apoptosis-related alterations in mitochondrial functions, including release of cytochrome C and depression of mitochondrial transmembrane potential (△Ψm) were testified in N2a cells after mimic ischemia-reperfusion. Moreover, activation of caspase3 occurred following the release of cytochrome C. However, the inhibitor of caspase3, Ac-DEVD-CHO, couldn't completely rescue N2a cells from apoptosis. Administration of cyclosporine A, an inhibitor of mitochondria permeability transition pore only partly inhibited caspase3 activity and reduced DNA damage. Interestingly, treatment of Z-IETD-FMK, an inhibitor of caspase8 could completely reverse DNA fragmentation, but can't completely inhibit caspase3 activity. It was concluded that there were caspase3 dependent and independent cellular apoptosis pathways in N2a cells suffering ischemia-reperfusion insults. Mitochondria dysfunction may early trigger apoptosis and amplify apoptosis signal.
出处 《Journal of Huazhong University of Science and Technology(Medical Sciences)》 SCIE CAS 2004年第5期441-444,共4页 华中科技大学学报(医学英德文版)
基金 ThisprojectwassupportedbyagrantfromNaturalScienceFoundationofHygienicCommitteeofHubeiProvince (No .WJ0 1 5 1 0 ) .
关键词 MITOCHONDRIA ISCHEMIA-REPERFUSION APOPTOSIS NEURON cytochrome C mitochondria ischemia-reperfusion apoptosis neuron cytochrome C
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参考文献4

  • 1Putcha G V,Harris C A,Moulder K L et al.Intrinsic and extrinsic pathway signaling during neuronal apoptosis:lessons from the analysis of mutant mice[].The Journal of Cell Biology.2002
  • 2Skaper S D,Floreani M,Negro A et al.Neurotrophins rescue cerebellar granule neurons from oxidative stress-mediated apoptotic death: selective involvement of phosphatidylinositol 3-kinase and the mitogen activated protein kinase pathway[].Journal of Neurochemistry.1998
  • 3Budd S L,Tenneti L,Lishnak T et al.Mitochondrial and extramitochondrial apoptotic signaling pathways in cerebrocortical neurons[].Proceedings of the National Academy of Sciences of the United States of America.2000
  • 4Kroemer G,Reed J C.Mitochondrial control of cell death[].Nature Medicine.2000

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