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医用水蛭巨神经毡神经胶质细胞的光灭活:对神经元活动和突触传递的影响。

Photoinactivation of the giant neuropil glial cells in the leech Hirudo medicinalis: effects on neuronal activity and synaptic transmission.

作者信息

Schmidt J, Deitmer J W

机构信息

Abteilung für Allgemeine Zoologie, Universität Kaiserslautern, Germany.

出版信息

J Neurophysiol. 1996 Nov;76(5):2861-71. doi: 10.1152/jn.1996.76.5.2861.

Abstract
  1. We studied the effects of photoinactivation of neuropil glial (NG) cells of the leech Hirudo medicinalis on neuronal activity and synaptic transmission. Each segmental ganglion contains two of these giant glial cells, which are electrically and dye coupled. 2. One of the two NG cells in an isolated segmental ganglion was filled with the dye Lucifer yellow (LY). Subsequent irradiation of the ganglion with laser light (440 nm) to photolyze LY caused irreversible depolarization of both NG cells. The NG cells that were filled with LY depolarized from -73 +/- 1.1 (SE) mV to -22 +/- 2.4 mV within 25 +/- 2.8 min of continuous irradiation (n = 22). The other NG cell, which was not directly filled with LY, depolarized with some delay. 3. Photoinactivation of the NG cells caused an irreversible depolarization of Retzius neurons and noxious (N) sensory cells by a mean of 14 mV (n = 36) and 9 mV (n = 24), respectively. In addition, the input resistance was reduced by 54% in Retzius cells and by 34% in N cells. Spikes could not be evoked in Retzius cells after the inactivation of the NG cells, either by intracellular current injection or by electrical nerve stimulation. Similarly, anterior pagoda neurons, annulus erector neurons, and the excitor neurons of the ventrolateral circular muscles became inexcitable. However, N cells, heart interneurons, and most of the heart motor neurons, touch cells, and pressure cells could still generate spontaneous or evoked action potentials. 4. Photoinactivation of the NG cells impaired the electrical connection between the two Retzius neurons. The electrical coupling was completely eliminated in six of eight cell pairs and reduced by 66% in two others. 5. Photoinactivation of the NG cells in the 3rd and 4th segmental ganglion caused a complete block of the chemical synapse between reciprocal inhibitory heart interneurons in these ganglia; the bursting rhythm either stopped or changed to a tonic activity, whereas inhibitory postsynaptic potentials could not be recorded in either heart interneuron anymore. 6. Laser irradiation alone had no effect on neuronal activity and synaptic transmission. Addition of glutathione (10 mM) and ascorbic acid (10 mM) to the saline to bind extracellular radicals that might be produced by the irradiation did not suppress the effects caused by photoinactivation of NG cells. 7. Elevation of bath K+ concentration to 12 mM, acidification of the saline to pH 5.5, and alkalinization to pH 8.5 for 6 min each did not mimick the effects on membrane properties of Retzius cells as produced by inactivation of NG cells. The results suggest some role of glial cells in the maintenance of neuronal activity and electrical and chemical synaptic transmission.
摘要
  1. 我们研究了光灭活医用水蛭神经毡胶质(NG)细胞对神经元活动和突触传递的影响。每个节段神经节包含两个这种巨大的胶质细胞,它们通过电和染料相互耦联。2. 在分离的节段神经节中的两个NG细胞之一用染料鲁米诺黄(LY)填充。随后用激光(440nm)照射神经节以光解LY,导致两个NG细胞不可逆地去极化。在连续照射25±2.8分钟内,填充LY的NG细胞从-73±1.1(SE)mV去极化到-22±2.4mV(n = 22)。另一个未直接填充LY的NG细胞则有一定延迟地去极化。3. NG细胞的光灭活分别导致Retzius神经元和伤害性(N)感觉细胞不可逆地去极化,平均分别为14mV(n = 36)和9mV(n = 24)。此外,Retzius细胞的输入电阻降低了54%,N细胞降低了34%。在NG细胞失活后,无论是通过细胞内电流注入还是通过电神经刺激,都无法在Retzius细胞中诱发动作电位。同样,前塔神经元、环行竖肌神经元和腹外侧环行肌的兴奋性神经元变得不可兴奋。然而,N细胞、心脏中间神经元以及大多数心脏运动神经元、触觉细胞和压力细胞仍能产生自发或诱发的动作电位。4. NG细胞的光灭活损害了两个Retzius神经元之间的电连接。在八个细胞对中的六个中,电耦联被完全消除,另外两个中降低了66%。5. 第三和第四节段神经节中NG细胞的光灭活导致这些神经节中相互抑制的心脏中间神经元之间的化学突触完全阻断;爆发节律要么停止,要么转变为紧张性活动,而在任何一个心脏中间神经元中都不再能记录到抑制性突触后电位。6. 单独的激光照射对神经元活动和突触传递没有影响。向盐溶液中添加谷胱甘肽(10mM)和抗坏血酸(10mM)以结合可能由照射产生的细胞外自由基,并没有抑制NG细胞光灭活所引起的效应。7. 将浴液K+浓度提高到12mM、将盐溶液酸化至pH 5.5以及碱化至pH 8.5各6分钟,均未模拟出NG细胞失活对Retzius细胞膜特性的影响。结果表明胶质细胞在维持神经元活动以及电和化学突触传递中发挥了一定作用。

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