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海马切片中星形胶质细胞和少突胶质细胞对电压激活离子通道的表达。

Expression of voltage-activated ion channels by astrocytes and oligodendrocytes in the hippocampal slice.

作者信息

Sontheimer H, Waxman S G

机构信息

Department of Neurology, Yale School of Medicine, New Haven, Connecticut 06510.

出版信息

J Neurophysiol. 1993 Nov;70(5):1863-73. doi: 10.1152/jn.1993.70.5.1863.

Abstract
  1. Using patch-clamp recordings, expression of voltage-activated ion channels by identified glial cells in situ was studied in hippocampal slices derived from 5- to 24-day-old rats. Glial cells were filled with Lucifer yellow during recording, and were identified by staining for glial fibrillary acidic protein (GFAP). Of 105 cells presumed to be glial cells from which recordings were obtained, 40 were identified as astrocytes and 22 as oligodendrocytes. 2. Astrocytes in the hippocampal slice express three types of K+ current, singly or in combination: delayed rectifying currents (Kd), transient "A"-type currents (Ka) and inward-rectifying currents (Kir). Kd-like currents were observed in 88% of astrocytes recorded; these currents activated rapidly with a threshold of -40 mV and did not inactivate during a 10- to 30-ms pulse. A-type transient K+ currents were identified in 43% of astrocytes and required a negative holding potential (-110 mV) for activation. These activated at about -50 mV, and their time constant of inactivation was close to 10 ms. In 20% of astrocytes recorded in slices from animals > 7 days old, inwardly rectifying K+ currents were observed in addition to Kd or Ka. 3. Voltage-activated Na+ currents were observed in 11 of the 105 cells, and 5 of these were identified as astrocytes by GFAP staining. These were located in either stratum oriens or close to the granule cell layer in CA3. Na+ current densities ranged from 1.5 to 90 pA/pF. Voltage steps more positive than -40 mV were required for activation, peaks were close to -10 mV, and time to peak was between 300 and 800 microseconds. Extrapolated current reversal potentials were close to the theoretical Na+ equilibrium potential. 4. Spontaneous action potentials were never observed in any of the hippocampal astrocytes recorded, including those astrocytes that expressed Na+ currents. Additionally, action potentials could not be induced by current injections. By contrast, 26 hippocampal neurons recorded in the same slices showed both spontaneous and elicited action potentials as well as synaptic currents. 5. Oligodendrocytes, identified by lack of GFAP staining and cell morphology, had resting potentials ranging between -25 and -82 mV in 5 mM KCl. In approximately 50% of oligodendrocytes, time-dependent currents were not observed and only time-independent currents with linear current-voltage curves were recorded. In the remaining 50% of oligodendrocytes, time- and voltage-dependent K+ currents characterized by inward rectification were present.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 采用膜片钳记录技术,对5至24日龄大鼠海马脑片中已鉴定的原位神经胶质细胞的电压激活离子通道表达进行了研究。在记录过程中,神经胶质细胞用荧光黄填充,并通过胶质纤维酸性蛋白(GFAP)染色进行鉴定。在105个被认为是获得记录的神经胶质细胞中,40个被鉴定为星形胶质细胞,22个为少突胶质细胞。2. 海马脑片中的星形胶质细胞单独或组合表达三种类型的钾电流:延迟整流电流(Kd)、瞬时“A”型电流(Ka)和内向整流电流(Kir)。在88%记录的星形胶质细胞中观察到Kd样电流;这些电流在-40 mV阈值时迅速激活,在10至30毫秒的脉冲期间不会失活。在43%的星形胶质细胞中鉴定出A型瞬时钾电流,其激活需要负的钳制电位(-110 mV)。这些电流在约-50 mV时激活,其失活时间常数接近10毫秒。在7日龄以上动物脑片记录的20%星形胶质细胞中,除了Kd或Ka外,还观察到内向整流钾电流。3. 在105个细胞中的11个中观察到电压激活的钠电流,其中5个通过GFAP染色被鉴定为星形胶质细胞。它们位于CA3区的原层或靠近颗粒细胞层。钠电流密度范围为1.5至90 pA/pF。激活需要比-40 mV更正的电压阶跃,峰值接近-10 mV,峰值时间在300至800微秒之间。外推的电流反转电位接近理论钠平衡电位。4. 在记录的任何海马星形胶质细胞中,包括那些表达钠电流的星形胶质细胞,从未观察到自发动作电位。此外,电流注入不能诱发出动作电位。相比之下,在同一片脑片中记录的26个海马神经元既显示出自发和诱发的动作电位,也显示出突触电流。5. 通过缺乏GFAP染色和细胞形态鉴定的少突胶质细胞,在5 mM KCl中的静息电位在-25至-82 mV之间。在大约50%的少突胶质细胞中,未观察到时间依赖性电流,仅记录到具有线性电流-电压曲线的非时间依赖性电流。在其余50%的少突胶质细胞中,存在以内向整流为特征的时间和电压依赖性钾电流。(摘要截断于400字)

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