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为研究慢性应激相关精神障碍的发病机制,采用尼氏(Nissl)染色法、高尔基(Golgi)镀染法和透射电镜技术,探讨慢性应激对大鼠海马CA1、CA3区锥体细胞形态结构的效应.结果显示应激组大鼠海马CA1区锥体细胞形态结构较对照组无明显变化.应激组海马CA3区锥体细胞数(35.14±3.85)较对照组(38.74±3.54)显著减少(P<0.05);顶树突的总长度(155.67 μm±33.32 μm)较对照组(195.63 μm±34.61 μm)显著缩短(P<0.05);应激组大鼠海马CA3区锥体细胞出现超微结构的改变,包括细胞固缩、体积缩小、核膜皱缩、线粒体变性和粗面内质网模糊不清.这提示海马CA3区锥体细胞形态结构的改变,可能是慢性应激相关精神障碍的病理生理基础. 相似文献
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目的:探究人体海马CA1区神经元锥体细胞胞体发育的过程。方法:取19孕周(19GW)、20GW、26GW、35GW、38GW水囊引产胎儿和8岁(8Y)死亡儿童各1例,所有标本来源符合相关法律法规和伦理要求,采用Golgi染色技术,借助配备有"Neurolu-cida"软件的共聚焦显微镜观察CA1区锥体细胞胞体,分析细胞体的长度和面积。结果:19GW和20GW细胞体形态尚不明显。26Gw、35Gw、38Gw、8Y海马CA1区锥体神经元胞体长度分别为56.5±2.5(μm)、80.8±8.5(μm)、85.9±12.2(μm)、91.3±9.6(μm);胞体面积分别为254.5±13.7(μm^2)、362.5±15.5(μm^2)、380.5±22.8(μm^2)、460.8±25.7(μm^2)。26GW锥体细胞胞体长度和面积与35GW、38GW、8Y相比差异明显(P〈0.05);8岁胞体长度和面积与38GW相比有小幅度增大;细胞形态学:26GW、35GW、38GW锥体细胞胞体切面呈椭圆形或三角形,随胎龄增大,胞体长度和面积逐渐增长增大,特别是细胞基底部增宽。胞体形态由椭圆形逐渐转换为三角形;细胞底部的基树突数量也逐渐增加,到38GW时可以达到4—7个,8Y锥体细胞胞体在切面上基本上都呈三角形,细胞长度和面积与38GW相比稍微增大,相对趋于稳定。结论:人体在发育过程中,锥体细胞长度呈逐渐增长、面积呈逐渐增大趋势,26GW与35GW之间变化最大,38GW与8Y胞体面积差异不明显,整个变化趋势逐渐变慢并趋于稳定。 相似文献
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目的:探究人体海马CA1区神经元锥体细胞胞体发育的过程。方法:取19孕周(19GW)、20GW、26GW、35GW、38GW水囊引产胎儿和8岁(8Y)死亡儿童各1例,所有标本来源符合相关法律法规和伦理要求,采用Golgi染色技术,借助配备有\"Neurolu-cida\"软件的共聚焦显微镜观察CA1区锥体细胞胞体,分析细胞体的长度和面积。结果:19GW和20GW细胞体形态尚不明显,26GW、35GW、38GW、8Y海马CA1区锥体神经元胞体长度分别为56.5±2.5(μm)、80.8±8.5(μm)、85.9±12.2(μm)、91.3±9.6(μm);胞体面积分别为254.5±13.7(μm2)、362.5±15.5(μm2)、380.5±22.8(μm2)、460.8±25.7(μm2)。26GW锥体细胞胞体长度和面积与35GW、38GW、8Y相比差异明显(P<0.05);8岁胞体长度和面积与38GW相比有小幅度增大;细胞形态学:26GW、35GW、38GW锥体细胞胞体切面呈椭圆形或三角形,随胎龄增大,胞体长度和面积逐渐增长增大,特别是细胞基底部增宽,胞体形态由椭圆形逐渐转换为三角形;细胞底部的基树突数量也逐渐增加,到38GW时可以达到4-7个,8Y锥体细胞胞体在切面上基本上都呈三角形,细胞长度和面积与38GW相比稍微增大,相对趋于稳定。结论:人体在发育过程中,锥体细胞长度呈逐渐增长、面积呈逐渐增大趋势,26GW与35GW之间变化最大,38GW与8Y胞体面积差异不明显,整个变化趋势逐渐变慢并趋于稳定。 相似文献
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大鼠海马CA1区锥体细胞的急性分离和鉴定 总被引:9,自引:0,他引:9
目的:建立一种适用膜片钳技术的大鼠海马CA1区锥体细胞的急性分离方法,并对其进行鉴定。方法:采用酶加机械分离法制备7~10d鼠龄的大鼠海马CA1区锥体细胞,用免疫荧光技术鉴定神经元,其电生理学特性测定用全细胞膜片钳技术。结果:分离的锥体细胞是海马CA1区锥体细胞,且具有正常的电生理学特性,并保存了某些主要的电压依赖性和受体依赖性离子通道特性。结论:成功地建立了一种简单、快速、高产的适用于膜片钳技术的大鼠海马CA1区锥体细胞的急性分离方法。 相似文献
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研究主要探讨P物质(SP)对GABA-激活电流的调制。实验在培养的新生大鼠海马大锥体细胞上进行。应用全细胞膜片箝技术记录GABA激活的内向电流。在被检的大锥体细胞中,有72%(66/92)的神经元对GABA和SP同时敏感,预后SP后,GABA激活电流明显地被抑制,此抑制作用是呈剂量依赖性的。在预加10^-8,10^-7,10^-6,10^-5mol/LSP后,GABA的激活电流分别降低18%,24.8%,25.9%和28%,用SP的拮抗剂 spantide能阻断此种抑制作用,在电极中灌注H7(PKC抑制剂)能取消此抑制作用,上述结果提示:SP对GABA激活电流的抑制作用是SP作用于SP受体,通过胞内第二信使,使GABAA受体通道复合体胞内磷酸化所致。 相似文献
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本研究采用离体海马脑片电生理研究技术,细胞外记录海马锥体细胞群体锋电位(population spike,PS),观察羟基马桑毒素(tutin)对大鼠海马脑片CA1区锥体细胞电活动的影响,探讨tutin是否具有致痛作用及其致痫机制。结果如下:(1)用40、30和20μg/ml浓度的tutin灌流海马脑片,可显著增高由顺向刺激Schaffer侧支所诱发的PS的幅度,灌流tutin 30min时,PS第一个波的幅度分别为对照的(388.7±20.1)%、(317.2±19.1)%和(180.9±11.6)%(各组n=5,P<0.05)。(2)伴随PS波幅的增高,可出现成串痫样放电波,波数4~11个不等。(3)灌流tutin后的部分脑片(n=9/34),在未刺激Schaffer侧支时也出现自发的成串、高幅痫样放电。(4)灌流CNQX阻断非NMDA受体后,再灌流tutin,PS幅度和放电波数均无显著性变化,即CNQX可完全抑制tutin所致的痫样放电;灌流AP-5阻断NMDA受体后,tutin仍可使PS幅度增高但放电波数无显著性增加,即AP-5可部分抑制tutin所致的痫样放电。上述结果表明,tutin可使海马脑片锥体细胞兴奋活动增强,具有致痫作用;兴奋性谷氨酸受体尤其是非NMDA受体可能介导tutin的致痫作用。 相似文献
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Using electrophysiological techniques (a patch-clamp technique in the whole-cell configuration and intracellular perfusion of neurons), we studied the effect of cannabinoids on the characteristics of glycine-activated currents in freshly isolated pyramidal neurons of the rat hippocampus. We found that endocannabinoids (anandamide and 2-arachidonoyl glycerol), as well as a synthetic cannabinoid, WIN 55,212-2, when applied in physiological concentrations, decreased the amplitude of glycine-activated currents. The agents under study accelerated the kinetics of activation and desensitization of glycine-induced Cl− currents. The characteristics of the currents recovered after washout from cannabinoids. Changes in the kinetics of desensitization of glycine-activated currents depended noticeably on the holding potential; at positive potentials the sensitivity to cannabinoids was higher. These effects of cannabinoids were also observed in the presence of antagonists of CB1/CB3 receptors and an inhibitor of G proteins, GDPβS. These data indicate that under our experimental conditions cannabinoids exerted direct effects on glycine receptors. Neirofiziologiya/Neurophysiology, Vol. 39, No. 1, pp. 15–21, January–February, 2007. 相似文献
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Rivard B Li Y Lenck-Santini PP Poucet B Muller RU 《The Journal of general physiology》2004,124(1):9-25
Humans can recognize and navigate in a room when its contents have been rearranged. Rats also adapt rapidly to movements of objects in a familiar environment. We therefore set out to investigate the neural machinery that underlies this capacity by further investigating the place cell-based map of the surroundings found in the rat hippocampus. We recorded from single CA1 pyramidal cells as rats foraged for food in a cylindrical arena (the room) containing a tall barrier (the furniture). Our main finding is a new class of cells that signal proximity to the barrier. If the barrier is fixed in position, these cells appear to be ordinary place cells. When, however, the barrier is moved, their activity moves equally and thereby conveys information about the barrier's position relative to the arena. When the barrier is removed, such cells stop firing, further suggesting they represent the barrier. Finally, if the barrier is put into a different arena where place cell activity is changed beyond recognition ("remapping"), these cells continue to discharge at the barrier. We also saw, in addition to barrier cells and place cells, a small number of cells whose activity seemed to require the barrier to be in a specific place in the environment. We conclude that barrier cells represent the location of the barrier in an environment-specific, place cell framework. The combined place + barrier cell activity thus mimics the current arrangement of the environment in an unexpectedly realistic fashion. 相似文献
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V. P. Tsintsadze A. L. Fedorenko T. Sh. Tsintsadze M. Wright J. A. Tanner A. D. Miller N. A. Lozovaya 《Neurophysiology》2006,38(3):169-174
Using a patch-clamp technique under voltage clamp conditions, we studied the effect of a non-hydrolyzable analog of diadenosine
polyphosphates (AppCH2ppAs) on chemoactivated transmembrane currents through NMDA channels (NMDA currents) in isolated pyramidal neurons of the
rat hippocampal CA3 zone. In 55.7% of the cases, AppCH2ppAs caused an increase in the peak amplitude of the currents induced by application of aspartate. In 39.5% of the cases,
the agent exerted no effect, while in 4.8% these currents were suppressed. When studying the pharmacological effect of an
increase in the amplitude of NMDA currents, we found that potentiation of these currents is mediated, first of all, by activation
of P2 purinoceptors and is prevented by a blocker of tyrosine kinases, genistein. Receptor-channel NMDA complexes, due to their
ability to be blocked by divalent cations, also contribute to the above effect of AppCH2ppA. Based on the data obtained, we conclude that AppCH2ppA influences NMDA receptors via activation of the P2 receptors and subsequent activation of tyrosine kinases; this leads to the modification of receptor-channel NMDA complexes
and to the removal of their tonic blocking by zinc ions.
Neirofiziologiya/Neurophysiology, Vol. 38, No. 3, pp. 205–210, May–June, 2006. 相似文献
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The normal spontaneous bursting behavior of hippocampal pyramidal neurons was investigated. Bursting frequency was found to be membrane potential dependent, the frequency increasing with maintained depolarization and decreasing upon hyperpolarization. Short depolarizing-current pulses would trigger bursts which outlasted the stimulus, and bursting continued when synaptic transmission had been blocked. The spontaneous bursts of these neurons, in contrast to bursts induced by convulsive agents, appear to exhibit the classical behavior of endogenous bursts as observed in invertebrate neurons. The endogenous bursts in hippocampal neurons may result, also, from an interplay of intrinsic membrane currents. 相似文献
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H. H. Vink 《Antonie van Leeuwenhoek》1955,21(1):446-448
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Daniel Johnston 《Cellular and molecular neurobiology》1981,1(1):41-55
The passive electrical cable properties of CA3 pyramidal neurons from guinea pig hippocampal slices were investigated by applying current steps and recording the voltage transients from 25 CA3 neurons, using a single intracellular microelectrode and a 3-kHz time-share system. Two independent methods were used for estimating the equivalent electrotonic length of the dendrites, L, and the dendritic to somatic conductance ratio, . The first method is similar to that used by Gorman and Mirolli (1972) and gave an average L of 0.96; the average was 2.44. The second method is derived here for the first time and assumes a finite-length cable with lumped soma. It is an exact solution for L and , using the slopes and intercepts of the first two peeled exponentials. The average L was 0.94; the average was 1.51. The results, using both methods, are in close agreement. The average membrane time constant for all 25 CA3 neurons was 23.6 ms, suggesting a large (23,600 cm2) average membrane resistivity. It is concluded that CA3 neurons are electronically short.This work was supported by Grants NS 11535 and NS 15772 from the National Institute of Neurological and Communicative Disorders and Stroke, National Institutes of Health, U.S. Public Health Service. 相似文献
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The properties of specific cortical cell types enable greater understanding of how cortical microcircuits process and transmit sensory, motor, and cognitive information. Previous reports have characterized the intrinsic properties of the inverted pyramidal cell (IPC) where the most prominent dendrite is orientated towards the cortical white matter. Using whole cell patch clamp recordings from rat and mouse somatosensory cortex in conjunction with electric microstimulation of the white matter we characterized the synaptic inputs onto IPCs and the more common upright pyramidal cell (UPC) in the infragranular layers. Both classes of pyramidal cells received monosynaptic glutamatergic input following white matter stimulation, but varied on a number of parameters. Most prominently, UPCs displayed higher amplitude responses and showed greater rates of depression compared to IPCs. These data reinforce the view that IPCs are a separate functional class of cortical neuron. 相似文献
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The genetic apparatus of an eukaryotic cell is surrounded by two membranes of the nuclear envelope that forms a half-permeable
barrier for the movement of molecules and ions. Using a patch-clamp technique in experiments on isolated nuclei of pyramidal
neurons from the hippocampal CA1 area, we describe the biophysical properties of spontaneously active ion channels in the nuclear membranes of these cells.
In the external nuclear membrane, we found anion channels with a unitary conductance of 156 pS and with very rapid kinetics
of fluctuation, while in the inner membrane we recorded cationic channels with a unitary conductance of 248 pS and very slow
kinetics. Channels of both types demonstrated clear voltage dependences. We hypothesize that the physiological importance
of these channels is related to the function of the intermembrane space of the nuclear envelope of these cells forming a considerable
calcium store. It seems possible that such channels in the nuclear membranes are necessary for the maintenance of the ion
balance between the cytoplasm and perinuclear space and between the latter and karyoplasm, and also for neutralization of
voltage shifts in the course of Ca2+ release.
Neirofiziologiya/Neurophysiology, Vol. 39, No. 1, pp. 3–8, January–February, 2007. 相似文献
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目的 :急性强直电刺激右侧后背HPC诱导双侧HPC癫痫电网络形成的细胞机制。方法 :强直电刺激 (6 0Hz,2s,0 .4~ 0 .6mA)大鼠右后背HPCCA1基树突区 ,每隔 10min刺激一次 ,施加 10个刺激串。结果 :①分别抑制双侧CA1神经元单位放电频率 ,对侧的抑制效应更明显 (对侧 :6 2 .94 %± 3.6 8% ;同侧 :36 .6 1%± 3.14 % ,P <0 .0 1) ,出现抑制后爆发式放电。随着刺激串数的增加 ,抑制作用逐渐减弱。②同步原发性网络和单位后放电 ,以同侧CA1多见 (P<0 .0 1)。③ 90Hz或 12 0Hz原发性或继发性网络后放电仅仅累及同侧CA1。④对侧CA3基树突区网络与下托神经元单位放电出现同步继发性后放电 ,反复发作 ,持续约数小时。结论 :电刺激诱导的对侧HPC抑制后爆发式放电和长时程、反复发作的网络与单个神经元同步继发性后放电可能是跨半球癫痫网络形成的重要表现形式。 相似文献