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惊厥后大鼠海马神经再生与凋亡的动态变化 总被引:1,自引:0,他引:1
探讨惊厥持续状态(status convulsion,SC)后大鼠海马神经再生与凋亡的动态变化。建立成年Wistar鼠30minSC模型,在SC后1天至56天的6个时间点上处死动物,处死前1天均腹腔注射5-溴2-脱氧尿嘧啶核苷(5-bromo-2-deoxyuridine,BrdU);采用免疫组织化学方法动态检测BrdU、nestin的表达,确定神经干细胞增殖水平;双重荧光染色标记nestin/TUNEL,确定新生神经干细胞存活时间。与对照组相比,BrdU阳性细胞数目于SC后第7天在CA1区达增殖高峰,28天降至正常水平;于SC后第28天在齿状回达增殖高峰,56天降至正常水平;在SC后第7天,CA3区有大量的BrdU阳性细胞;BrdU和nestin阳性细胞数目无统计学差异。在SC后的前3天,CA1区新增殖的神经细胞呈TUNEL阳性;齿状回新增殖细胞始终表现TUNEL阴性。上述结果提示:SC后能激活自体神经干细胞原位增殖,并且部分新生细胞向损伤区域迁移。 相似文献
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目的:探讨颅脑损伤后miR-9表达的变化和对神经干细胞分化和增值的影响,为颅脑损伤后神经功能修复治疗提出新的思路。方法:通过RT-PCR技术检测miR-9在挫裂伤脑组织中的表达情况;培养胚胎来源神经干细胞,并通过免疫荧光鉴定神经干细胞及其分化;转染miR-9后,通过MTT测定神经干细胞的增殖情况,和流式细胞仪检测分化神经元所占比例。结果:miR-9在挫裂伤脑组织中表达显著上升。对神经干细胞过表达miR-9可显著促进细胞增殖,并诱导分化成神经元。结论:脑挫裂伤时miR-9显著升高,并具有着促进神经干细胞增值和诱导分化的作用,可为伤后神经功能修复提供新的治疗方法。 相似文献
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通过Alamarblue、BrdU掺入免疫荧光双标法、流式细胞术检测了抑制性神经递质GABA(γ-aminobutyricacid)对成年小鼠脑室下区(sub ventricular zone,SVZ)来源的神经干细胞(neu—ral stem cell,NSC)增殖的影响。结果表明,成体NSCs被不同浓度的GABA和BICC干预后,GABA组增殖较空白对照组明显增强。BICC组的增殖则减弱;GABA组作用后增殖活跃期的NSCs比例明显高于空白对照组,BICC组增殖活跃期的NSCs比例明显降低沪〈O.05);GABA作用组的处于s—G2期的细胞比例较对照组显著增加(P〈0.05)。该研究表明,GABA能促进成年小鼠SVZ区来源的NSCs进入增殖活跃期从而促进其增殖。 相似文献
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为鉴定大鼠胚胎海马神经干细胞(NSCs)是否表达功能性的L-型钙通道,L-型钙通道是否参与了对大鼠胚胎NSCs增殖和分化调控.分离孕15天Wistar大鼠胚胎海马组织,制成单细胞悬液,利用无血清培养技术,在添加bFGF、EGF、N-2和B27 supplement的DMEM/F12培养液中进行培养.采用细胞免疫荧光法对原代至第5代细胞进行鉴定,均有巢蛋白(nestin)的表达,第3代nestin阳性细胞比例达97%.把培养的细胞诱导分化5天后,这些细胞表现为神经元和星形胶质细胞的形态,且分别呈Ⅲ型β-微管蛋白(Tuj1)阳性和胶质纤维酸性蛋白(GFAP)阳性;细胞免疫印迹结果显示,NSCs表达L-型钙通道的Cav1.2α1C亚单位,而无Cav1.3α1D亚单位的表达;利用全细胞膜片钳技术在NSCs上记录到了L-型钙电流,证明了NSCs所表达的L-型钙通道具有功能.进一步对细胞进行药理学干预,发现L-型钙通道的激活不仅可以促进胚胎NSCs的增殖,而且使增殖的NSCs向神经元分化的比例显著增加.以上结果表明,Wistar大鼠胚胎海马NSCs表达功能性的L-型钙通道;L-型钙通道参与了胚胎NSCs增殖和分化的调控. 相似文献
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钠通道在各类神经元上高表达,参与细胞多种生理功能的调节,是神经元实现功能活动的基本单位.未成熟神经元上钠/钙通道所诱发和自发的电位活动对后期的发育成熟至关重要.然而,发育中的钠通道是否参与神经干细胞(neural stem cells, NSCs)分化的调控尚不清楚.本研究证明,未成熟的钠通道参与NSCs分化调控.Western印迹结果显示,在分化第1,3,5,7 d的NSCs上钠通道和胞外信号调节激酶(ERK)的蛋白表达与分化时间正相关.免疫组化结果发现,与对照组比较,加入电压门控钠通道阻断剂TTX可明显下调NeuN、GFAP和Gal-c在NSCs中的表达(P<0.05),提示钠通道参与NSCs分化的调控.当采用veratridine激动钠通道后,激光共聚焦检测到细胞内Ca2+浓度明显升高,免疫组化和Western印迹结果显示细胞内Ca2+浓度明显升高,p-ERK表达量明显上调;相反,TTX可明显阻断Veratridine所引起的细胞内Ca2+浓度上调,并使p-ERK峰值明显降低和延后(P<0.05).研究结果表明,未成熟钠通道可通过激活ERK信号途径促进NSCs的分化.钠通道的这种作用可能是由钙离子介导的,其详尽机制有待进一步研究. 相似文献
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神经干细胞作为一种具有自我更新能力和多向分化潜能的细胞,它的增殖和分化受到多种源于自身或外在、邻近或远程细胞信号通路的调控,各种细胞因子及胞间通讯在神经干细胞的增殖和分化中发挥着重要的作用。近年来的多种研究表明,Notch信号通路正是这样一种可以通过相邻细胞的配体与受体相互作用,从而传递信号,进一步发挥其生物学功能的重要信号通路。该通路参与了神经干细胞维持自我形态及向多种具有不同功能的神经细胞分化的过程.对于研究神经干细胞的增殖和分化具有巨大的意义。该文将就当前Notch信号通路对神经干细胞增殖分化影响的相关研究进行简要综述。 相似文献
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Recent work demonstrates that central nervous system (CNS) regeneration and tumorigenesis involves populations of stem cells (SCs) resident within the adult brain. However, the mechanisms these normally quiescent cells employ to ensure proper functioning of neural networks, as well as their role in recovery from injury and mitigation of neurodegenerative processes are little understood. These cells reside in regions referred to as "niches" that provide a sustaining environment involving modulatory signals from both the vascular and immune systems. The isolation, maintenance, and differentiation of CNS SCs under defined culture conditions which exclude unknown factors, makes them accessible to treatment by pharmacological or genetic means, thus providing insight into their in vivo behavior. Here we offer detailed information on the methods for generating cultures of CNS SCs from distinct regions of the adult brain and approaches to assess their differentiation potential into neurons, astrocytes, and oligodendrocytes in vitro. This technique yields a homogeneous cell population as a monolayer culture that can be visualized to study individual SCs and their progeny. Furthermore, it can be applied across different animal model systems and clinical samples, being used previously to predict regenerative responses in the damaged adult nervous system. 相似文献
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The adult brain was thought to be a slowly decaying organ, a sophisticated but flawed machine condemned to inevitable decline. Today we know that the brain is more plastic than previously assumed, as most prominently demonstrated by the constitutive birth of new neurons that occurs in selected regions of the adult brain, even in humans. However, the overall modest capacity for endogenous repair of the central nervous system (CNS) has sparked interest in understanding the barriers to neuronal regeneration and in developing novel approaches to enable neuronal and circuit repair for therapeutic benefit in neurodegenerative disorders and traumatic injuries. Scientists recently assembled in Baeza, a picturesque town in the south of Spain, to discuss aspects of CNS regeneration. The picture that emerged shows how an integrated view of developmental and adult neurogenesis may inform the manipulation of neural progenitors, differentiated cells, and pluripotent stem cells for therapeutic benefit and foster new understanding of the inner limits of brain plasticity. 相似文献
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目的:探讨颅脑损伤后miR-9表达的变化和对神经干细胞分化和增值的影响,为颅脑损伤后神经功能修复治疗提出新的思路。方法:通过RT-PCR技术检测miR-9在挫裂伤脑组织中的表达情况;培养胚胎来源神经干细胞,并通过免疫荧光鉴定神经干细胞及其分化;转染miR-9后,通过MTT测定神经干细胞的增殖情况,和流式细胞仪检测分化神经元所占比例。结果:miR-9在挫裂伤脑组织中表达显著上升。对神经干细胞过表达miR-9可显著促进细胞增殖,并诱导分化成神经元。结论:脑挫裂伤时miR-9显著升高,并具有着促进神经干细胞增值和诱导分化的作用,可为伤后神经功能修复提供新的治疗方法。 相似文献
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探讨海马神经干细胞(neuralstemcells,NSCs)在体外分离扩增和诱导分化的可行性。无菌条件下分离新生(24h)SD大鼠海马神经干细胞,采用无血清培养和胎牛血清诱导分化。免疫荧光染色技术分别检测诱导前细胞巢蛋白(Nestin)的表达,以及分化细胞的神经元特异性烯醇化酶(neuron specific enolase,NSE)、胶质纤维酸性蛋白(glialfibrillaryacidicprotein,GFAP)的表达,以鉴定细胞类型。流式细胞仪检测神经干细胞分化前后增殖能力的变化。结果显示:从乳鼠海马分离培养的细胞生长状态良好,具有克隆增殖能力,并呈Nestin表达阳性,分化后可出现NSE及GFAP表达阳性的细胞。流式细胞仪检测显示:诱导前,细胞增殖活跃,S+G2/M期细胞为(36.27±1.99)%,而分化各阶段(3,7,10d)S+G2/M期细胞比例与诱导前(Ctrl)相比则明显下降(尸〈0.05),分别为(26.39±1.10)%、(26.33±1.33)%和(24.54±1.12)%。这些结果表明乳鼠海马存在神经干细胞,并具有自我更新和多向分化的潜能,可用于基础和临床的相关研究。 相似文献
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目的:通过比较添加不同浓度的无血清培养添加剂N2、B27对神经干细胞增殖的影响,探讨一种最优的体外培养大鼠胚胎神经干细胞的方法。方法:分离培养胚胎13.5dSD大鼠的神经干细胞,采用CCK-8细胞计数、BrdU掺入、测量神经球直径的方法,比较不同浓度N2、B27对神经干细胞增殖的影响。结果:N2与B27合用对神经干细胞增殖和成球的作用最为明显,单独添加2%B27的作用优于1%B27和N2组。结论:1%N2和1%B27同时添加更有利于神经干细胞的增殖和自我更新,此方法为神经干细胞的应用提供了实验依据。 相似文献
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Pradeep Kota Ginka Buchner Hirak Chakraborty Yan L. Dang Hong He Guilherme J. M. Garcia Jan Kubelka Martina Gentzsch M. Jackson Stutts Nikolay V. Dokholyan 《The Journal of biological chemistry》2014,289(33):23029-23042
The epithelial sodium channel (ENaC) is activated upon endoproteolytic cleavage of specific segments in the extracellular domains of the α- and γ-subunits. Cleavage is accomplished by intracellular proteases prior to membrane insertion and by surface-expressed or extracellular soluble proteases once ENaC resides at the cell surface. These cleavage events are partially regulated by intracellular signaling through an unknown allosteric mechanism. Here, using a combination of computational and experimental techniques, we show that the intracellular N terminus of γ-ENaC undergoes secondary structural transitions upon interaction with phosphoinositides. From ab initio folding simulations of the N termini in the presence and absence of phosphatidylinositol 4,5-bisphosphate (PIP2), we found that PIP2 increases α-helical propensity in the N terminus of γ-ENaC. Electrophysiology and mutation experiments revealed that a highly conserved cluster of lysines in the γ-ENaC N terminus regulates accessibility of extracellular cleavage sites in γ-ENaC. We also show that conditions that decrease PIP2 or enhance ubiquitination sharply limit access of the γ-ENaC extracellular domain to proteases. Further, the efficiency of allosteric control of ENaC proteolysis is dependent on Tyr370 in γ-ENaC. Our findings provide an allosteric mechanism for ENaC activation regulated by the N termini and sheds light on a potential general mechanism of channel and receptor activation. 相似文献
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神经干细胞是指一类具有自我更新能力和多向分化潜能的细胞,能分化成为神经元、星形胶质细胞、少突胶质细胞等众多神经细胞。成年哺乳动物内源性神经再生能力有限,无法弥补因神经疾病而导致的神经细胞缺失,因而,人们开始寻求外源性神经干细胞移植治疗中枢神经系统疾病的可能,在动物模型上开展了大量研究,并建立了多种移植方法。该文就神经干细胞的特性、来源、移植方式、在中枢神经系统疾病中的实验研究进展等作一综述。 相似文献