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大鼠新皮层锥体神经元中单个反向传播动作电位诱发的树突状钙瞬变。

Dendritic calcium transients evoked by single back-propagating action potentials in rat neocortical pyramidal neurons.

作者信息

Markram H, Helm P J, Sakmann B

机构信息

Max-Planck-Institut für medizinische Forschung, Heidelberg, Germany.

出版信息

J Physiol. 1995 May 15;485 ( Pt 1)(Pt 1):1-20. doi: 10.1113/jphysiol.1995.sp020708.

Abstract
  1. Dendrites of rat neocortical layer V pyramidal neurons were loaded with the Ca2+ indicator dye Calcium Green-1 (CG-1) or fluo-3, and the mechanisms which govern action potential (AP)-evoked transient changes in dendritic cytosolic Ca2+ concentration ([Ca2+]i) were examined. APs were initiated either by synaptic stimulation or by depolarizing the soma or dendrite by current injection, and changes in fluorescence of the indicator dye were measured in the proximal 170 microns of the apical dendrite. 2. Simultaneous two-pipette recordings of APs from the soma and apical dendrite, and dendritic fluorescence imaging indicated that a single AP propagating from the soma into the apical dendrite evokes a rapid transient increase in fluorescence indicating a transient increase in [Ca2+]i. At 35-37 degrees C the decay time constant of the fluorescence transient following an AP was around 80 ms. 3. Voltage-activated Ca2+ channels (VACCs) of several subtypes mediated the AP-evoked fluorescence transient in the proximal (100-170 microns) apical dendrite. The AP-evoked fluorescence transient resulted from Ca2+ entry through L-type (nifedipine sensitive; 25%), N-type (omega-conotoxin GVIA sensitive; 28%) and P-type (omega-agatoxin IVA sensitive; 10%) Ca2+ channels and through Ca2+ channels (R-type) not sensitive to L-, N- and P-type Ca2+ channel blockers (cadmium ion sensitive; 37%). 4. The decay time course of the dendritic fluorescence transient was prolonged by the blockers of endoplasmic reticulum (ER) Ca(2+)-ATPase, cyclopiazonic acid and thapsigargin, suggesting that uptake of Ca2+ into the ER in dendrites governs clearance of dendritic Ca2+. 5. The decay time course of the fluorescence transient was slightly prolonged by benzamil, a blocker of plasma membrane Na(+)-Ca2+ exchange and by calmidazolium, a blocker of the calmodulin-dependent plasma membrane Ca(2+)-ATPase, suggesting that these pathways are less important for dendrite Ca2+ clearance following a single AP. Neither the mitochondrial uncoupler carbonyl cyanide p-(trifluoromethoxy)phenylhydrazone (FCCP) nor the blocker of Ca2+ uptake into mitochondria, Ruthenium Red, had any measurable effect on the decay time course of the fluorescence transient. 6. Dendritic fluorescence transients measured during trains of dendritic APs began to summate at impulse frequencies of 5 APs s-1. At higher frequencies APs caused a concerted and maintained elevation of dendritic fluorescence during the train.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 用钙离子指示剂钙绿-1(CG-1)或荧光素-3对大鼠新皮质第V层锥体神经元的树突进行加载,然后研究控制动作电位(AP)诱发的树突胞质钙离子浓度([Ca2+]i)瞬时变化的机制。通过突触刺激或通过电流注入使胞体或树突去极化来引发动作电位,并在顶端树突近端170微米处测量指示剂染料的荧光变化。2. 对胞体和顶端树突的动作电位进行同步双微电极记录,以及树突荧光成像表明,从胞体向顶端树突传播的单个动作电位会引发荧光的快速瞬时增加,表明[Ca2+]i出现瞬时增加。在35 - 37摄氏度时,动作电位后荧光瞬时变化的衰减时间常数约为80毫秒。3. 几种亚型的电压门控性钙离子通道(VACCs)介导了近端(100 - 170微米)顶端树突中动作电位诱发的荧光瞬时变化。动作电位诱发的荧光瞬时变化是由于钙离子通过L型(硝苯地平敏感;25%)、N型(ω-芋螺毒素GVIA敏感;28%)和P型(ω-阿加毒素IVA敏感;10%)钙离子通道以及通过对L型、N型和P型钙离子通道阻滞剂不敏感的钙离子通道(R型;镉离子敏感;37%)内流所致。4. 内质网(ER)钙ATP酶的阻滞剂环匹阿尼酸和毒胡萝卜素延长了树突荧光瞬时变化的衰减时间进程,这表明树突中钙离子摄取到内质网中控制着树突钙离子的清除。5. 质膜钠钙交换体的阻滞剂苯甲酰米和钙调蛋白依赖性质膜钙ATP酶的阻滞剂 calmidazolium 略微延长了荧光瞬时变化的衰减时间进程,这表明这些途径在单个动作电位后对树突钙离子清除不太重要。线粒体解偶联剂羰基氰化物对-(三氟甲氧基)苯腙(FCCP)和线粒体钙离子摄取阻滞剂钌红对荧光瞬时变化的衰减时间进程均无任何可测量的影响。6. 在一连串树突动作电位期间测量的树突荧光瞬时变化在冲动频率为5次动作电位/秒时开始总和。在更高频率时,动作电位在一连串刺激期间导致树突荧光协同且持续升高。(摘要截短至400字)
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2e68/1157968/0356d7711c71/jphysiol00318-0011-a.jpg

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