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胶质细胞瘤

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The expression level of metabolitic enzyme (CYP1A1, CYP1B1) and its correlation with cell differentiation /apoptosis were studied as well. The influence of resveratrol in cell cycle was determined with FCM. Results 1 Resveratrol not only suppresses the growth of medulloblastoma cells in a dose and time related fashion but also induces cell differentiation and apoptosis. Resveratrol promotes differention of UW228-1,-2 cells to forward glia, UW228-3 and Med-3 cells to neuron. A treatment of resveratrol in the concentration of 100μM for 48hrs comit most of cells die of apoptosis. 2 Among the four cell lines Fas and Caspase-3 were constantly expessed, whereas FasL was absent irrespective to the drug treatment. 3 ICC, RT-PCR, Western-blot hybridization and EROD enzymatic activity assay demonstrated that expression of CYP1A1 is different after treatment with resveratrol in four cell lines, up-regulated in three UW228 cell lines in a dose dependent manner but down-regulated in Med-3 cells. Suppressive effect of resveratrol on CYP1B1 expression is the same among four medulloblatoma cell lines. 4 Cell cycle distribution of UW228-3 was greatly changed after treatment.

结果:1、白藜芦醇以时间和剂量依赖性方式抑制髓母细胞瘤细胞生长,同时促进细胞的分化和凋亡:白藜芦醇促使UW228-1、-2靶细胞向神经胶质细胞方向成熟分化,UW228-3、Med-3细胞向神经元细胞方向成熟分化,以100μM作用48小时效果显著;2、四个细胞系均有Fas和Caspase-3表达,但无Fas-L基因表达和蛋白活性产生,因此难以形成Fas相关性死亡通路;3、白藜芦醇处理前后CYP1A1基因的表达在各细胞系略有不同:UW228-1,-2,-3三个细胞系白藜芦醇以剂量相关性方式上调CYP1A1的表达,而Med-3细胞系,白藜芦醇却抑制CYP1A1的表达;四个细胞系在白藜芦醇处理后CYP1B1的表达均受到抑制;4、UW228-3细胞系经白藜芦醇作用后细胞周期有较大改变,表现在G0/G1期在整个细胞周期中所占的比例增加,而其它时期则相应减少。

Neuroectoderm; neural crest; neural plate; floor plate; neural tube; neuraxis; neurulation; neuroblasts; neural stem cells; neuroprogenitor cells; stem cells; differentiation; ontogeny; morphogenesis; histogenesis; organogenesis; synaptogenesis; gangliogenesis; embryogenesis; axonogenesis; retinogenesis; gliogenesis; glial progenitor cells; oligodendrocyte progenitor cells; retinal progenitor cells; nerve growth factor; neurotrophic factors; trophic factors; growth factors; neural tube defects; anencephaly; spina bifida; neuroblastoma cells; neurogenesis; development; developmental stages

神经外胚层;神经脊;神经板;底板;神经管;轴索;神经胚形成;成神经细胞;神经干细胞;神经母细胞;干细胞;分化;个体发生;形态发生;组织发生;器官发生;突触发生;gangliogenesis;胚胎发生;axonogenesis;retinogenesis;gliogenesis;神经胶质祖细胞;少突神经胶质细胞祖细胞;视网膜祖细胞;神经生长因子;神经营养因子;营养因子;生长因素;神经管故障;无脑;脊柱裂;成神经细胞瘤细胞;神经发生;发展;发展进程

Neuroectoderm; neural plate; floor plate; neural tube; neuraxis; neuroblasts; neural stem cells; neuroprogenitor cells; stem cells; differentiation; ontogeny; morphogenesis; histogenesis; organogenesis; synaptogenesis; gangliogenesis; embryogenesis; axonogenesis; retinogenesis; gliogenesis; glial progenitor cells; oligodendrocyte progenitor cells; retinal progenitor cells; nerve growth factor; neurotrophic factors; trophic factors; growth factors; neural tube defects; anencephaly; spina bifida; neuroblastoma cells; cell migration; neurogenesis; development; developmental stages

神经外胚层;神经板;底板;神经管;轴索成神经细胞神经干细胞;神经母细胞;干细胞分化;个体发生;形态发生;组织发生;器官发生;突触发生;神经节发生;胚胎发生;轴突发生;视网膜发生;神经胶质发生;神经胶质祖细胞;少突神经胶质细胞祖细胞;视网膜祖细胞;神经生长因子;神经营养因子;营养因子;生长因素;神经管缺陷;无脑;脊柱裂;成神经细胞瘤细胞;细胞迁移;神经发生;发展;发育阶段

Neuroectoderm; neural crest; neural plate; floor plate; neural tube; neuraxis; neurulation; neuroblasts; stem cells; differentiation; ontogeny; morphogenesis; histogenesis; organogenesis; synaptogenesis; gangliogenesis; embryogenesis; axonogenesis; retinogenesis; gliogenesis; glial progenitor cells; oligodendrocyte progenitor cells; retinal progenitor cells; nerve growth factor; neurotrophic factors; trophic factors; growth factors; neural tube defects; anencephaly; spina bifida; neuroblastoma cells; cell migration; neurogenesis; development; developmental stages

神经外胚层;神经脊;神经板;底板;神经管;轴索;神经胚形成;成神经细胞;干细胞;分化;个体发生;形态发生;组织发生;器官发生;突触发生;gangliogenesis;胚胎发生;axonogenesis;retinogenesis;gliogenesis;神经胶质祖细胞;少突神经胶质细胞祖细胞;视网膜祖细胞;神经生长因子;神经营养因子;营养因子;生长因素;神经管故障;无脑;脊柱裂;成神经细胞瘤细胞;细胞迁移;神经发生;发展;发展进程首页上一页下一页末页共有 22 条记录,本页从第 11 到第 20 条。

Schwannoma; glial cells; glia; gliogenesis; glioma; peripheral nervous system; PNS; myelin sheath; saltatory impulse conduction; nodes of Ranvier; spinal cord

神经鞘瘤;胶质细胞;神经胶质;gliogenesis;神经胶质瘤;周围神经系统;PNS;髓鞘;跳跃冲动传导;郎飞氏结;脊髓

Neuroectoderm; neural crest; neural plate; floor plate; neural tube; neuraxis; neurulation; neuroblasts; neural stem cells; neuroprogenitor cells; stem cells; differentiation; ontogeny; morphogenesis; histogenesis; organogenesis; synaptogenesis; gangliogenesis; embryogenesis; axonogenesis; retinogenesis; gliogenesis; glial progenitor cells; oligodendrocyte progenitor cells; retinal progenitor cells; nerve growth factor; neurotrophic factors; trophic factors; growth factors; neural tube defects; anencephaly; spina bifida; neuroblastoma cells; neurogenesis; development; developmental stages

神经外胚层;神经脊;神经板;底板;神经管;轴索;神经胚形成;成神经细胞;神经干细胞;神经母细胞;干细胞;分化;个体发生;形态发生;组织发生;器官发生;突触发生;神经节发生;胚胎发生;轴突发生;视网膜发生;神经胶质发生;神经胶质祖细胞;少突神经胶质细胞祖细胞;视网膜祖细胞;神经生长因子;神经营养因子;营养因子;生长因素;神经管缺陷;无脑;脊柱裂;成神经细胞瘤细胞;神经发生;发展;发育阶段

Neuroectoderm; neural crest; neural plate; floor plate; neural tube; neuraxis; neurulation; neuroblasts; stem cells; differentiation; ontogeny; morphogenesis; histogenesis; organogenesis; synaptogenesis; gangliogenesis; embryogenesis; axonogenesis; retinogenesis; gliogenesis; glial progenitor cells; oligodendrocyte progenitor cells; retinal progenitor cells; nerve growth factor; neurotrophic factors; trophic factors; growth factors; neural tube defects; anencephaly; spina bifida; neuroblastoma cells; cell migration; neurogenesis; development; developmental stages

神经外胚层;神经脊;神经板;底板;神经管;轴索;神经胚形成;成神经细胞;干细胞;分化;个体发生;形态发生;组织发生;器官发生;突触发生;gangliogenesis;胚胎发生;axonogenesis;retinogenesis;gliogenesis;神经胶质祖细胞;少突神经胶质细胞祖细胞;视网膜祖细胞;神经生长因子;神经营养因子;营养因子;生长因素;神经管故障;无脑;脊柱裂;成神经细胞瘤细胞;细胞迁移;神经发生;发展;发展进程下一页末页共有 23 条记录,本页从第 1 到第 10 条。

The malignant growth of neuroepithelial cell will result in glioma with high invasiveness and rapid growth.

神经胶质细胞的恶性生长导致胶质瘤,胶质瘤侵袭性强、生长迅速。

Oligodenderocyte and oligodendroglioma cells in vitro were able to secret beta-trace protein and explained why the concentration of β-tp in CSF was higher than that in serum, it was suggested that the level of β-tp released depended on both of cell member and type.

胶质细胞和人脑胶质瘤细胞能分泌β-tp,细胞分泌β-tp水平的高低由细胞类型及细胞的多寡决定。

To study levels of beta-trace protein in the cerebrospinal fluid with oligodendroglioma patients and in the mediums of incubated rat oligodenderocyte.

蒋雨平 ,蔡振林,任惠民目的:探索神经胶质细胞及人脑胶质瘤细胞是否能分泌β-tp。

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