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细胞

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Neuroectoderm; neural crest; neural 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;神经脊;神经板;神经管;轴索;成神经细胞;神经干细胞;neuroprogenitor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;成神经细胞细胞细胞迁移;神经发生;发展;发育阶段

Neuroectoderm; neural crest; 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;神经脊;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;成神经细胞细胞细胞迁移;神经发生;发展;发育阶段

Neuroectoderm; neural crest; neural plate; floor plate; 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; neuroblastoma cells; cell migration; neurogenesis; development; developmental stages

神经外胚层神经脊;神经板;底板;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;成神经细胞细胞细胞迁移神经发生;发展;发育阶段

Neural crest; 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

神经脊;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;成神经细胞细胞细胞迁移;神经发生;发展;发育阶段

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;成神经细胞细胞细胞迁移;神经发生;发展;发育阶段

The oogenesis of P. esculenta can be divided into the following phases in morphological characteristics of oogonium and oocyte development: the proliferative phase of oogonium (0μm in diameter), the initial growth phase of oocyte (10—20μm in diameter), the grand growth phase-Ⅰof oocyte (20—60μm in diameter), the grand growth phase-II of oocyte (60μm×70μm to 120μm×145μm in size), the mature phase of oocyte, and the declining phase, showing a dynamic changes in oogenesis of P. esculenta .

以卵原细胞与卵母细胞发育的形态学特征为依据,将可口革囊星虫的卵子发生过程划分为:卵原细胞增殖期(卵径0μm)、卵母细胞小生长期(卵径10—20μm)、卵母细胞大生长期Ⅰ(卵径20—60μm)、卵母细胞大生长期Ⅱ[大小为(60μm×70μm)—(120μm×145μm)]、卵母细胞成熟期及退化期6 个阶段,反映了可口革囊星虫卵子发生过程的动态变化。

Results: The proliferation of Kasumi-l cell was obviously inhibited by VPA on dose- and time-dependent manner. The IC50 was 2.33 mmol/L treated with VPA for 72 h. Incubation with VPA, the cell ratio at G0/C1 phase increased. VPA induced myeloid cell differentiation antigen CD11b to increase with a time-and dose-dependent way and caused apoptosis. Wright's staining and light microscope were used to show the morphology of partial differentiation and obvious apoptosis with 3 mmol/L VPA for 72 hours. The typical DNA ladder of apoptosis characteristic was observed with DNA gel electrophoresis.

结果:VPA能显著抑制Kasumi-1细胞的增殖,且呈剂量和时间依赖性,VPA处理Kasumi-1细胞72h时的半数抑制浓度(IC50)为2.33 mmol/L;VPA处理后,细胞周期检测G0/G1期细胞比例逐渐增高;VPA能诱导髓系分化抗原CD11b表达水平的阳性率升高,呈时间及剂量依赖性;VPA能诱导Kasumi-1细胞凋亡,Kasumi-l细胞经VPA3 mmol/L处理72h后,出现典型的凋亡细胞所具有的梯形DNA条带。

The paper described three different types mechanism of femtosecond laser surgery briefly,and then introduced achievements of the femtosecond laser surgery in cell biology,such as cytoskeletal dynamics,ablation of organelles in living cells,engineering of the cell membrane,photodynamics,biological experiments in vivo and the corresponding applications.

简述了3种不同类型的飞秒激光在细胞手术过程中的作用机理,介绍了飞秒激光手术在细胞生物学领域中的一些研究成果,如细胞骨架动力学、活细胞细胞器手术、细胞膜工程、光动力学、生物活体实验及相应的应用。标签飞秒激光细胞手术机理细胞生物学 femtosecond laser cell surgery mechanism cell biology

Results: the positive cells mostly included ependymal cells of myelocoele, glial cells, anterior horn motor neurons, and epithelial cells of spinal pia mater and their expressions were mainly located on cell membrane. interestingly, aqp4 distribution in glial cells and ependymal cells showed certain directivity, but the former was mainly in the membrane side contacting with capillary endothelial cells and the latter mostly in the basolateral membrane of ependymal cells.

结果: 免疫组织化学染色和原位杂交结果显示胶质细胞、前角运动神经元、中央管室管膜细胞、软脊膜上皮细胞均表达阳性,aqp4主要分布于细胞膜,其中,胶质细胞和中央管室管膜细胞表达存在极性,前者主要分布在与毛细血管内皮细胞接触的一侧,后者主要分布在中央管室管膜细胞的基底侧膜。

The results of immuhistochemistry show: compared with normal retina, more 3-NT-positive cells and iNOS-positive cells appear in inner nucleus layer of diabetic retina; less eNOS-positive cells appear in inner nucleus layer and vascular endoderm of diabetic retina; less nNOS -positive cells appear in inner nucleus layer of diabetic retina; more ET-positive cells, ETRA- positive cells, ETRB- positive cells appear in inner nucleus layer of diabetic retina; moreα- synuclein- positive cells appear in ocular cone and rod layer of diabetic retina. Conclusions 1. RFDD-PCR is an efficient technique for research diseases genomics as a mass screening to complete gene expression with the identifying of candidate gene related to disease.

免疫组织化学结果显示:13-NT和NOS:与正常视网膜相比,8周糖尿病大鼠视网膜中,INL的3-NT和iNOS免疫阳性细胞明显增多,INL和血管内皮层的eNOS阳性细胞明显减少,INL的nNOS阳性细胞也明显减少;2ET及ETR:与正常视网膜相比,8周糖尿病大鼠视网膜中,ET、ETRA、ETRB免疫阳性细胞明显增多,增多的阳性细胞主要集中于INL,而在血管内皮层增多不明显;3α-synuclein:与正常视网膜相比,8周糖尿病大鼠视网膜中,α-synuclein免疫阳性细胞明显增多,增多的阳性细胞主要集中于视网膜视锥视杆层。

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