首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到20条相似文献,搜索用时 156 毫秒
1.
目的:观察大鼠脊髓匀浆上清诱导骨髓间充质干细胞(mesenchymal stem cells,MSCs)形成的神经元样细胞形态特征.方法:通过贴壁法培养分离大鼠骨髓MSCs,体外扩增纯化后加入正常大鼠脊髓匀浆上清诱导72h,倒置显微镜下观察诱导前后细胞的形态结构.激光共聚焦显微镜观测钙离子细胞形态和荧光强度变化,免疫细胞化学方法鉴定诱导后细胞的表型特征.结果:倒置显微镜下可见MSCs呈纺锤形和多角形,核居中,有1-2个核仁,诱导后细胞呈神经元样,细胞伸出较长的轴突样和树突样突起.免疫细胞化学法显示NSE(神经元特异性烯醇化酶)、NF(神经丝蛋白)阳性,GFAP(神经胶质细胞酸性蛋白)阴性.共聚焦显微镜扫描脊髓匀浆上清诱导前细胞形态呈细长的梭形,细胞核不明显,胞体染色强,突起染色弱,荧光像素值低;诱导后,细胞呈现神经元样形态,胞体大,有多个突起,胞体及各突起染色强,荧光像素值高.结论:大鼠脊髓匀浆上清液可在体外诱导骨髓间充质干细胞分化为神经元样细胞.  相似文献   

2.
目的研究新生大鼠大脑皮层神经干细胞定向分化为神经元过程中肌动蛋白(actin)的时空表达变化及其与纽蛋白(vinculin)的关系.方法采用神经干细胞培养、免疫细胞化学技术对神经干细胞定向分化为神经元的过程中actin的时空表达进行研究;采用免疫荧光双标术及共聚焦激光扫描显微术对定向分化神经元过程中,actin与vinculin关系进行探讨.结果在神经干细胞向神经元定向分化过程中, actin在胞体与突起中有表达,且与日渐增,核周表达逐渐增强,分化成熟时胞体与突起中可见丝状细胞骨架随着突起伸展而延伸.免疫荧光双标actin、vinculin在CLSM下观察,分化早期,胞体和突起内均有分布,actin明显强于vinculin,而vinculin于核周及一侧突起较强.分化近成熟期,vinculin反应增强,随着细胞突起生长,在突起中两蛋白共存处可见节段状分布的黄色融合光,直达突起的末端.结论本研究揭示在大脑皮层神经干细胞定向分化为神经元过程中,actin表达变化与神经元发育成熟呈正相关,且actin与vinculin共存.  相似文献   

3.
人酸性成纤维细胞生长因子神经营养作用的初步研究   总被引:1,自引:0,他引:1  
本实验研究了人酸性成纤维细胞生长因子(haFGF)的体外神经营养作用。结果表明,haFGF在体外能明显促进鸡胚(E-8)脊髓组织神经突起的生长,并能明显改变新生大鼠脑星形胶质细胞的形态,使扁平、多角形紧密联接的细胞转化为具有纤维样突起的胶质细胞,同时对胶质细胞DNA合成也有一定促进作用。实验还证明,haFGF可增加体外培养新生大鼠海马神经元的存活,且大大增加神经元胞体体积及突起长度。  相似文献   

4.
神经干细胞定向分化过程中溶酶体表达变化的研究   总被引:1,自引:1,他引:0  
目的对神经干细胞向神经元定向分化过程中溶酶体的表达变化进行观察研究。方法采用细胞培养技术、荧光免疫细胞化学技术以及光电镜酶细胞化学技术对神经干细胞向神经元定向分化过程中溶酶体的表达变化进行观察。结果在神经干细胞向神经元定向分化的过程中,随着细胞分化的不断成熟,溶酶体的表达亦发生着变化。分化初期主要以核周附近表达明显,至神经元分化成熟则散在分布于胞质中及突起内,且表现有圆形、线状两种形态。结论在神经干细胞向神经元定向分化过程中溶酶体发生表达分布的变化,说明其参与了细胞的代谢和细胞内物质的运输。  相似文献   

5.
目的对神经干细胞向神经元定向分化过程中微管蛋白的表达变化进行光、电镜观察研究。方法采用细胞培养技术、免疫荧光技术以及免疫电镜技术对神经干细胞向神经元定向分化过程中微管蛋白的表达变化进行观察。结果在神经干细胞向神经元定向分化的不同时期,存在微管蛋白的表达变化,在分化初期以核周附近分布明显,随神经元的成熟散在分布于胞质中及突起内,形成细网状,构成细胞骨架,维持细胞形态。结论在神经干细胞向神经元定向分化过程中伴随有微管蛋白的表达变化,随神经元的成熟而构成细胞骨架,维持细胞形态。  相似文献   

6.
目的探索神经妥乐平(NT)体外诱导大鼠骨髓基质细胞(bone marrow stromal cells,rMSCs)分化为神经元样细胞的可行性,以期为临床应用MSCs治疗神经系统疾病奠定基础。方法取一月龄SD大鼠骨髓,分离出MSCs进行培养、扩增、纯化。用NT诱导MSCs分化为神经元样细胞。用神经元特异性烯醇化酶(NSE)、神经胶质纤维酸性蛋白(GFAP)免疫细胞化学染色鉴定阳性细胞。结果MSCs经诱导后胞体变圆,伸出细长突起,呈神经元样形态。免疫组化鉴定显示(31.50±7.32)%的细胞表达NSE阳性,(45.30±9.38)%的细胞表达GFAP阳性。结论MSCs在体外可被NT诱导分化为神经元样细胞。  相似文献   

7.
目的探讨纽蛋白(vinculin)在新生大鼠大脑皮层神经干细胞定向分化神经元过程中的表达变化及其与辅肌动蛋白(α-actinin)的关系.方法将神经干细胞分离、培养、分化及鉴定后,采用免疫组化技术对新生大鼠皮层神经干细胞向神经元定向分化过程中,纽蛋白的时空表达进行研究,并采用免疫荧光双标技术及共聚焦激光扫描显微术对神经元定向分化过程中,纽蛋白与辅肌动蛋白关系进行探讨,利用图像分析技术对不同时段分化的神经元中vinculin平均积分光密度进行定量测定.结果在神经干细胞定向分化为神经元的过程中,vinculin由核周淡染分布逐渐至在胞体与突起中密集均匀分布,随着突起伸展而不断地延伸.图像分析结果表示,随神经元的分化成熟,vinculin的表达量呈逐渐增加趋势.在共聚焦激光扫描显微镜下观察免疫荧光双标vinculin/α-actinin在分化早期胞体和突起内均有分布,可见核周和突起两者融合两蛋白共存.近成熟期,随突起生长,两蛋白渐伸入突起,直至末端共存.结论本研究揭示大脑皮质神经干细胞定向分化为神经元过程中,vinculin表达变化与神经元发育成熟呈正相关,并且vinculin与α-actinin共存.  相似文献   

8.
目的:获得能持续干扰neuronatin(nnat)基因表达的细胞,观察nnat基因沉默对神经细胞发育与分化的影响,为研究基因功能奠定基础。方法:构建含nnat基因短发夹RNA(shRNA)表达质粒,将质粒转染大鼠肾上腺嗜铬细胞瘤细胞PC12,RT-PCR方法筛选出最有效干扰质粒,稳定转染PC12细胞后观察细胞表型变化,免疫荧光检测nnat蛋白表达,NGF诱导观察nnat表达下调对细胞分化的影响。结果:成功构建并筛选出有效的靶向nnat基因的shRNA真核表达载体;载体稳定转染PC12细胞之后能特异性沉默nnat基因的表达,PC12细胞长出突起,向神经元方向分化,加入诱导因子NGF后能促进突起生长。结论:nnat可能是作为神经分化抑制因子在神经发育与成熟过程中发挥作用。  相似文献   

9.
孟宪芳  郑瑶  许强  沈洁  施静  彭彬 《遗传》2006,28(7):778-782
[摘要] 目的 探讨位于Down综合征关键位点的Sim2基因对PC12细胞分化的影响及其机制。 方法 以pcDNA3-mSim2真核表达载体稳定转染PC12细胞,以倒置相差显微镜镜观察PC12细胞神经突起的变化;以RT-PCR方法检测神经元分化相关基因GAP43和Synapsin I mRNA表达水平的变化;流式细胞仪检测GAP43蛋白的表达。 结果 RT-PCR结果显示, pcDNA3-mSim2转染后,mSim2 mRNA表达明显上调;与对照组相比,转染mSim2的PC12细胞突起数量显著减少,长度明显变短;GAP43和Synapsin I mRNA表达水平明显降低(P<0.05);流式细胞仪检测发现,转染mSim2的PC12细胞GAP43蛋白表达水平显著降低(P<0.05)。 结论 Sim2基因可通过影响神经元的分化参与Down综合征的发生。  相似文献   

10.
Lin QX  Que HP  Lu SH  Liu SJ 《生理学报》2004,56(2):130-136
为探讨神经干细胞分化成熟的神经元是否能够分裂。实验取材于成年哺乳动物,将神经干细胞体外培养8d后,诱导分化为神经元,然后进一步诱导其分裂。采用连续摄影与NF-160免疫细胞化学方法检测神经元的分裂过程,同时运用PCNA NF-160(或Chat、GABA、GAD)的免疫双标记证明分裂神经元是否为成熟神经元。将神经干细胞体外诱导分化培养8d,直至分化神经元外形成熟,进而加入EGF与bFGF诱导分裂。诱导分裂2d后,观察到有神经元样细胞分裂;同一区域内神经元样细胞的数量不断增加,表现为NF-160阳性。连续拍摄了神经元样细胞的分裂过程,分裂完成后的细胞同样表现为NF-160抗体反应阳性。PCNA NF-160(或Chat、GABA、GAD)的免疫双标记结果显示,一些细胞的胞浆显示为棕色的同时细胞核显示为黑色。结果提示,在一定的条件下,先前所认为的终末分化神经元可以重新进入细胞周期,成熟神经元仍然可以进行分裂增殖和自我更新。  相似文献   

11.
目的和方法:采用全细胞膜片钳技术观察神经生长因子(NGF)分化后的PC12细胞对乙酰胆碱(ACh)的敏感性,并对ACh诱发电流(IACh)的特性进行分析。结果:NGF处理后的PC12乐仅形态上向交感神经元分化,而且具有电学兴奋性,它对ACh敏感性比未分化前显著提高。药理学鉴定表明PC12上的IACh是由烟碱受体(nAChR)引起的,具有明显的失敏特性。宏观IACh呈内向整流和浓度依赖性。结论:PC12细胞培养方便,同源性好,加入NGF后向交感神经元分化,且其具有神经元烟碱受体,可以作为交感神经元烟碱受体研究的很好的模型系统。  相似文献   

12.
Activated mouse N-ras gene transfected into PC12 rat pheochromocytoma cells suppressed proliferation and promoted neuronal differentiation. Normal mouse N-ras in a LTR-containing vector caused differentiation with a reduced efficiency, but normal N-ras in a vector lacking LTR sequences failed to alter the PC12 phenotype. Cultures of NGF-resistant PC12 variant subline U7 also showed outgrowth of neurites and cessation of cell division following transfection with the mutated ras gene. The present findings suggest that ras genes can, in certain cells, play a role in promoting differentiation and suppressing proliferation, in contrast to their established oncogenic neoplasia-promoting activity in other cells.  相似文献   

13.
Astroglial cells and various types of non-neuronal cells in the peripheral nervous system, such as epithelial, Schwann and fibroblast cells synthesize and secrete nerve growth factor (NGF) in culture. NGFmRNA contents are well-correlated with the density of axonal projection from NGF-sensitive neurons, suggesting that NGF synthesis in vivo tissues is regulated by neuronal environments. We investigated neuronal regulations of NGF synthesis using cultured mouse astroglial cells and rat pheochromocytoma PC12 cells. It was found that astroglial NGF synthesis was enhanced by the addition of catecholamine into the cultured medium or the co-culture with differentiated PC12 cells. These results suggest that NGF synthesis in the in vivo tissues is increased by the release of catecholamine as neurotransmitters and/or the contact of NGF-producing cells with differentiated cell bodies and neurites of NGF-sensitive neurons.  相似文献   

14.
The rat adrenal pheochromocytoma PC12 cell line is one of the traditional models for the study of neurite outgrowth and growth cone behavior. To clarify to what extent PC12 neurite terminals can be compared to neuronal growth cones, we have analyzed their morphology and protein distribution in fixed PC12 cells by immunocytochemistry. Our results show that that PC12 cells display a special kind of neurite terminal that includes a varicosity in close association with a growth cone. This hybrid terminal, or “varicone”, is characterized by the expression of specific markers not typically present in neuronal growth cones. For example, we show that calpain-2 is a specific marker of varicones and can be detected even before the neurite develops. Our data also shows that a fraction of PC12 neurites end in regular growth cones, which we have compared to hippocampal neurites as a control. We also report the extraordinary incidence of varicones in the literature referred to as “growth cones”. In summary, we provide evidence of two different kinds of neurite terminals in PC12 cells, including a PC12-specific terminal, which implies that care must be taken when using them as a model for neuronal growth cones or neurite outgrowth.  相似文献   

15.
Primary cultures of rat dorsal root ganglion Schwann cells were used to assay the efficacy of PC12 cells in stimulating Schwann cell proliferation. Co-cultures of PC12 cells and Schwann cells assayed by [3H]thymidine labeling followed by autoradiography showed proliferation of Schwann cells only where contact occurred between PC12 neurites and Schwann cells. Membranes derived from PC12 cells were shown to have many characteristics similar to membranes derived from sensory neurons; both could mimic whole cells in stimulating Schwann cell division; both were inactivated by mild heat treatment and by trypsinization, and both elevated intracellular cyclic AMP concentrations in Schwann cells 16 h after addition of membranes. We conclude that PC12 cells will be a valuable source for the isolation of the neuronal cell surface component which controls proliferation of Schwann cells during development of the peripheral nervous system.  相似文献   

16.
Localization of pp60c-src in growth cone of PC12 cell   总被引:2,自引:0,他引:2  
By immunocytochemical and biochemical techniques, we observed the localization and expression of pp60c-src in nerve growth factor (NGF)-treated PC12 cells. Immunostaining of pp60c-src is detected in the neuronal soma and the tips of neurites (growth cones). Immunofluorescence in the neurites is less significant. High-resolution microscopy reveals that the location of pp60c-src in growth cone is in good agreement with the adhesive site of growth cone to the substratum. The pp60c-src kinase activity and the pp60c-src protein level increase 3.1- to 3.5-fold and 2.0-fold during differentiation of PC12 cells, respectively. The pp60c-src levels in the neurite fraction are also higher than those in the neuronal soma fraction. These results support the immunocytochemical finding that pp60c-src is localized in growth cones of differentiated PC12 cells. Furthermore, we discuss the possible role of pp60c-src in growth cone.  相似文献   

17.
18.
Localization and movement of peroxisomes have been investigated in neurites of a subline of PC12 pheochromocytoma cells (PC12D cells). The cells were transfected with a construct encoding the green fluorescent protein and bearing the C-terminal peroxisomal targeting signal 1 SKL motif (-Ser-Lys-Leu-COOH). Peroxisomes were detected as green punctate fluorescent signals. Many peroxisomes were observed in neurites of PC12D cells, especially in neural terminal-like structures, growth cones, varicosities, and branch points. Growth cones containing many peroxisomes were active, since they extended several long filopodias. Existence of peroxisomes in growth cones and neuronal terminal-like structures suggests that peroxisomes might have some role in neuronal extension and nerve terminal functioning. Peroxisomal motility was analyzed by time-lapse imaging using a fluorescence microscope at 25 degrees C. Peroxisomes were transported bidirectionally in neurites, i.e., through anterograde and retrograde transport. This result suggests that peroxisomes move to growth cones and neural terminals from the PC12D cell body, play some role in these parts, and go back to cell body.  相似文献   

19.
20.
Adenosine inhibits cell division and promotes neurite extension in PC12 cells   总被引:12,自引:0,他引:12  
Low concentrations (10-50 microM) of adenosine (EC50 = 17 microM) or chloroadenosine (EC50 = 23 microM) prevent the division of PC12 cells. This inhibition is not mimicked by guanosine, inosine, 3',5' dideoxyadenosine, phenylisopropyladenosine, or adenylylimidodiphosphate. The growth inhibition is not relieved by addition of uridine or deoxycytidine, nor is it potentiated by homocysteine thiolactone. Inhibition of adenosine uptake does not inhibit adenosine-dependent growth arrest. PC12 variants that are deficient in adenosine kinase are as sensitive as wild-type cells to the growth-inhibitory effects of adenosine. These experiments suggest that adenosine prevents cell division at an adenosine receptor rather than acting after being metabolically altered. The adenosine receptor that inhibits cell division does not appear to be the adenosine receptor that stimulates adenylate cyclase for these reasons: (1) phenylisopropyladenosine, which is a potent agonist of this receptor, does not inhibit cell division; (2) 3',5' dideoxyadenosine does not antagonize the effect of adenosine on cell division; and (3) theophylline does not affect growth inhibition by adenosine. Thus, these experiments suggest the existence of a second adenosine receptor that can inhibit cell division. Adenosine also promotes the morphological differentiation of PC12 cells. In the presence of the adenosine deaminase inhibitor, erythro-9-(2-hydroxy-3-nonyl)adenosine (EHNA), adenosine causes the formation of short neurites (one-half to one and one-half cell diameters in length). Adenosine also increases the rate of neurite formation of both long and short neurites in response to NGF.  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号