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体外绘制豚鼠小脑浦肯野细胞树突中的钙瞬变。

Mapping calcium transients in the dendrites of Purkinje cells from the guinea-pig cerebellum in vitro.

作者信息

Ross W N, Werman R

机构信息

Department of Physiology, New York Medical College, Valhalla 10595.

出版信息

J Physiol. 1987 Aug;389:319-36. doi: 10.1113/jphysiol.1987.sp016659.

Abstract
  1. A 10 X 10 photodiode array was used to detect stimulation-dependent absorbance changes simultaneously from many positions in the dendrite field of guinea-pig Purkinje cells which had been injected with the calcium indicator Arsenazo III in thin cerebellar slices. Signals from each element of the array were matched to positions on the cells by mapping them onto fluorescence photographs of Lucifer Yellow which had been co-injected into the cells with the Arsenazo III. 2. In response to intrasomatic stimulation the rising phase of the absorbance signals corresponded in time with the calcium spikes recorded with an intracellular electrode. There was no increase in absorbance during bursts of fast sodium spikes. Absorbance signals persisted after the sodium spikes were blocked by tetrodotoxin (TTX). In addition, the signals were largest at 660 nm and small signals of opposite polarity were found at 540 nm. These results indicate that the absorbance signals came from calcium entry into the cell resulting from the turning on of voltage-dependent calcium conductances. 3. In these experiments signals were usually seen all over the dendritic field and were weak or totally absent over the soma. In some cases signals were seen over a more restricted area. With a spatial resolution of 25 microns we were not able to see any evidence for highly localized sites of calcium entry. 4. Sometimes the rising phase of the calcium signals was separated by almost 13 ms in different parts of the dendritic field, too long to be explained by active propagation delay. This suggests that calcium spikes causing these signals can be evoked separately in different regions of the Purkinje cell dendritic field by long-lasting potentials which may reach local threshold at different times. 5. Calcium signals resulting from slow plateau after-potentials and the calcium spikes produced by them were also detected in all locations in the dendritic field. The relative distribution of amplitudes from these plateau signals was different from the distribution of evoked signals during current injection. 6. Climbing fibre synaptic activation produced calcium signals which were distributed over the dendritic arborization, but larger at the main dendritic tree where most of the synaptic contacts are located. 7. Calcium signals were also detected from the dendrites of other neurone types in the in vitro slice preparation. Thus, it is likely that these kind of measurements can be used to analyse the electroresponsiveness of many kinds of neurones in the mammalian brain.
摘要
  1. 使用一个10×10的光电二极管阵列,来同时检测豚鼠浦肯野细胞树突野中多个位置上,因刺激而产生的吸光度变化。这些细胞取自小脑薄片,已被注入钙指示剂偶氮胂III。通过将阵列中每个元件的信号映射到与偶氮胂III共同注入细胞的荧光黄的荧光照片上,将信号与细胞上的位置进行匹配。2. 对胞内刺激的反应中,吸光度信号的上升阶段在时间上与用细胞内电极记录的钙峰相对应。在快速钠峰爆发期间,吸光度没有增加。当钠峰被河豚毒素(TTX)阻断后,吸光度信号仍然持续。此外,信号在660纳米处最大,在540纳米处发现了极性相反的小信号。这些结果表明,吸光度信号来自于电压依赖性钙电导开启后钙进入细胞。3. 在这些实验中,信号通常在整个树突野中都能看到,而在胞体上较弱或完全没有。在某些情况下,信号出现在更局限的区域。由于空间分辨率为25微米,我们无法看到任何钙进入高度局部化位点的证据。4. 有时,钙信号的上升阶段在树突野的不同部位相隔近13毫秒,这一时间太长,无法用主动传播延迟来解释。这表明,引起这些信号的钙峰可以由不同的长时电位在浦肯野细胞树突野的不同区域分别诱发,这些长时电位可能在不同时间达到局部阈值。5. 在树突野的所有位置也检测到了由缓慢平台后电位产生的钙信号以及由它们产生的钙峰。这些平台信号的幅度相对分布与电流注入期间诱发信号的分布不同。6. 攀缘纤维突触激活产生的钙信号分布在树突分支上,但在大多数突触联系所在的主树突上更大。7. 在体外切片标本中,也从其他神经元类型的树突中检测到了钙信号。因此,很可能这些测量方法可用于分析哺乳动物脑中多种神经元的电反应性。
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2271/1192083/e231817e859a/jphysiol00528-0321-a.jpg

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