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Effect of Cell Cycle Inhibitor Olomoucine on Astroglial Proliferation and Scar Formation after Focal Cerebral Infarction in Rats

Effect of Cell Cycle Inhibitor Olomoucine on Astroglial Proliferation and Scar Formation after Focal Cerebral Infarction in Rats
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摘要 Background:Astrocytes become reactive following many types of CNS injuries.Excessive astrogliosis is detrimental and contributes to neuronal damage.We sought to determine whether inhibition of cell cycle could decrease the proliferation of astroglial cells and therefore reduce excessive gliosis and glial scar formation after focal ischemia.Methods:Cerebral infarction model was induced by photothrombosis method.Rats were examined using MRI,and lesion volumes were estimated on day 3 post-infarction.The expression of glial fibrillary acidic protein(GFAP) and proliferating cell nuclear antigen(PCNA) was observed by immunofluorescence staining.Protein levels for GFAP,PCNA,Cyclin A and Cyclin B1 were determined by Western blot analysis from the ischemic and sham animals sacrificed at 3,7,30 days after operation.Results:Cell cycle inhibitor olomoucine significantly suppressed GFAP and PCNA expression and reduced lesion volume after cerebral ischemia.In parallel studies,we found dense astroglial scar in boundary zone of vehicle-treated rats at 7 and 30 days.Olomoucine can markedly attenuate astroglial scar formation.Western blot analysis showed increased protein levels of GFAP,PCNA,Cyclin A and Cyclin B1 after ischemia,which was reduced by olomoucine treatment.Conclusion: Our results suggested that astroglial activation,proliferation and subsequently astroglial scar formation could be partially inhibited by regulation of cell cycle.Cell cycle modulation thereby provides a potential promising strategy to treat cerebral ischemia. Background:Astrocytes become reactive following many types of CNS injuries.Excessive astrogliosis is detrimental and contributes to neuronal damage.We sought to determine whether inhibition of cell cycle could decrease the proliferation of astroglial cells and therefore reduce excessive gliosis and glial scar formation after focal ischemia.Methods:Cerebral infarction model was induced by photothrombosis method.Rats were examined using MRI,and lesion volumes were estimated on day 3 post-infarction.The expression of glial fibrillary acidic protein(GFAP) and proliferating cell nuclear antigen(PCNA) was observed by immunofluorescence staining.Protein levels for GFAP,PCNA,Cyclin A and Cyclin B1 were determined by Western blot analysis from the ischemic and sham animals sacrificed at 3,7,30 days after operation.Results:Cell cycle inhibitor olomoucine significantly suppressed GFAP and PCNA expression and reduced lesion volume after cerebral ischemia.In parallel studies,we found dense astroglial scar in boundary zone of vehicle-treated rats at 7 and 30 days.Olomoucine can markedly attenuate astroglial scar formation.Western blot analysis showed increased protein levels of GFAP,PCNA,Cyclin A and Cyclin B1 after ischemia,which was reduced by olomoucine treatment.Conclusion: Our results suggested that astroglial activation,proliferation and subsequently astroglial scar formation could be partially inhibited by regulation of cell cycle.Cell cycle modulation thereby provides a potential promising strategy to treat cerebral ischemia
出处 《神经损伤与功能重建》 2011年第5期328-335,共8页 Neural Injury and Functional Reconstruction
基金 This study was supported by a grant from the National Nature Science Foundation of China(No.30230140,30400142)
关键词 PROLIFERATION astrocytic scar cell cycle CYCLINS cyclin dependent kinase OLOMOUCINE cerebral infarction proliferation astrocytic scar cell cycle cyclins cyclin dependent kinase olomoucine cerebral infarction
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  • 1Stenevi U,Bjerre B,Bjorklund A et al.Effects of localized intracerebral injections of nerve growth factor on the regenerative growth of lesioned central noradrenergic neurons. Brain Res, 1974, 69:217
  • 2Norton W T, Aquino D A, Hozumi I et al. Quantitative aspects of reactive gliosis: a review. Neurochem Res, 1992, 17:877
  • 3Manthrope M, Adler R, Varon S et al. Development, reactivity and GFAP immunofluorescence of astroglia-containing monolayer cultures from rat cerebrum. J Neurocyto,1979, 8:605
  • 4Kornyei Z,Gzirok A,Vicsek T et al.Proliferative and migratory responses of astrocytes to in vitro injury. J Neurosci Res, 2000, 61:421
  • 5Mandell J M,Gocan N C,Vandenberg S R.Mechanical trauma induces rapid astroglial activation of ERK/MAP kinase: evidence for a paracrine signal. Glia, 2001, 34:283
  • 6YU A C, Lee Y L, Eng L F. Astrogliosis in culture: the model and the effect of antisense oligonucleotides on glial fibrillary acidid protein synthesis. J Neurosci Res, 1993, 34:303
  • 7Zhang Z G,Bower L,Zhang R L et al.Three-dimensional measurement of cerebral micro-vascular plasma perfusion, glial fibrillary acidic protein and microtubule associated protein-2 immunoreactivity after embolic stroke in rats: a double fluorescent labeled laser-scanning confocal microscope study. Brain Res, 1999, 844: 55
  • 8Lefrancois T,Fages C,Peschanski M et al.Neuritic outgrowth associated with astroglial phenotypic changes induced by antisense glial fibrillary acidic protein (GFAP) mRNA in injured neuron astrocyte cocultures. J Neurosci, 1997, 17:4121
  • 9Kruger S, Muller H. Correlation of morphometry, nuclear organizer regions, proliferation cell nuclear antigen and Ki-67 antigen expression with grading and staging in urinary bladder carcinomas. Br J Urol, 1995, 75:480
  • 10Teixeira A,Chaverot N,Strosberg A D et al.Differential regulation of cyclin D1 and D3 expression in the control of astrocyte proliferation inducd by endothelin-1. J Neurochem, 2000, 74:1034

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