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培养的大鼠下丘脑神经元网络中突触机制的发育与特性

Development and properties of synaptic mechanisms in a network of rat hypothalamic neurons grown in culture.

作者信息

Swandulla D, Misgeld U

机构信息

Max-Planck-Institute for Psychiatry, Department of Neurophysiology, Planegg-Martinsried, Federal Republic of Germany.

出版信息

J Neurophysiol. 1990 Sep;64(3):715-26. doi: 10.1152/jn.1990.64.3.715.

Abstract
  1. Dissociated neurons from embryonic rat hypothalamus (E14-15) were cultured on a glial background monolayer for up to three months. Dendrites of cells 7-14 days in culture (DIC) intracellularly stained with the fluorescent dye Lucifer yellow were thin and smooth, and multiple growth cones could be observed. The length of the dendrites of older cells did not differ much, but dendrites were thicker and branched more profoundly, forming a complicated network. Growth cones were rare, but few spine-like protrusions could be observed. 2. Randomly occurring depolarizing potentials were recorded in 60% of the cells 7-14 DIC and in 90% of the cells 21 DIC. Activity became phasic when the gamma-aminobutyric acid (GABA) antagonists picrotoxin or bicuculline were applied. After 21 DIC the majority of the cells showed burst discharges, whereas only approximately 10% of the cells 7 DIC exhibited bursting. 3. With low [Cl] in the recording pipette, spontaneous activity consisted of hyperpolarizing and depolarizing potentials at -40-mV membrane potential. Some spontaneous activity persisted with Na channels blocked by tetrodotoxin (TTX, 0.3-1 microM), and when reducing the external [Ca]o from 5 to 0.3 mM. Picrotoxin blocked part of the activity, and the remaining activity was blocked by kynurenic acid. 4. Bursts of action potentials were superimposed on rhythmically occurring clusters of excitatory synaptic potentials (EPSPs), which had a steep rising phase and decayed within hundreds of milliseconds. Bursts of similar appearance could be triggered by brief (10 ms) depolarizing current injections, and a few cells had properties indicative for endogenous pacemakers. 5. From 7 DIC on, all cells responded to GABA and to the GABA agonist muscimol. Under voltage clamp, zero current potential depended on the Cl gradient across the membrane and corresponded to the zero current potential of picrotoxin-sensitive postsynaptic currents. 6. After 21 DIC all cells responded to glutamate and its agonist quisqualate. Under voltage clamp, nanomolar concentrations of quisqualate (100-500 nM) induced long-lasting inward currents, which did not decay substantially during prolonged drug application. Quisqualate concentrations greater than 1 microM induced a diphasic inward-current response consisting of an initial fast current transient followed by a maintained current component. With internal Cs replacing K and Na and external TTX (0.3 microM), both current components reversed sign at approximately 8 mV, as predicted by the Nernst equation for currents through channels that were permeable for monovalent cations. 7. Focal applications of GABA and muscimol elicited larger currents when applied near the soma than when applied to the dendrites.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 将来自胚胎大鼠下丘脑(E14 - 15)的解离神经元培养在胶质细胞背景单层上长达三个月。培养7 - 14天(DIC)的细胞,用荧光染料路西法黄进行细胞内染色后,其树突细且光滑,可观察到多个生长锥。较老细胞的树突长度差异不大,但树突更粗且分支更复杂,形成复杂的网络。生长锥很少见,但可观察到一些棘状突起。2. 在培养7 - 14天的细胞中,60%记录到随机出现的去极化电位,在培养21天的细胞中,90%记录到该电位。当应用γ - 氨基丁酸(GABA)拮抗剂印防己毒素或荷包牡丹碱时,活动变为相位性。培养21天后,大多数细胞出现爆发性放电,而培养7天的细胞中只有约10%表现出爆发性放电。3. 记录电极内[Cl]较低时,在 - 40 mV膜电位下,自发活动由超极化和去极化电位组成。当钠通道被河豚毒素(TTX,0.3 - 1 microM)阻断,以及细胞外[Ca]o从5 mM降至0.3 mM时,仍有一些自发活动。印防己毒素阻断部分活动,其余活动被犬尿喹啉酸阻断。4. 动作电位爆发叠加在节律性出现的兴奋性突触后电位(EPSP)簇上,EPSP有陡峭的上升相,并在数百毫秒内衰减。类似的爆发可由短暂(10 ms)去极化电流注入触发,少数细胞具有内源性起搏器的特征。5. 从培养7天起,所有细胞对GABA和GABA激动剂蝇蕈醇都有反应。在电压钳制下,零电流电位取决于跨膜Cl梯度,与印防己毒素敏感的突触后电流的零电流电位相对应。6. 培养21天后,所有细胞对谷氨酸及其激动剂quisqualate都有反应。在电压钳制下,纳摩尔浓度的quisqualate(100 - 500 nM)诱导持久的内向电流,在长时间应用药物期间电流基本不衰减。quisqualate浓度大于1 microM时诱导双相内向电流反应,包括初始的快速电流瞬变,随后是持续的电流成分。用内部Cs替代K和Na以及外部TTX(0.3 microM)时,两个电流成分在约8 mV处反转,正如通过对单价阳离子通透的通道的电流的能斯特方程所预测的那样。7. 在胞体附近局部应用GABA和蝇蕈醇比在树突上应用时引发更大的电流。(摘要截断于400字)

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