首页> 美国卫生研究院文献>The Journal of Physiology >Effect of metabolic inhibition on K+ channels in pyramidal cells of the hippocampal CA1 region in rat brain slices.
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Effect of metabolic inhibition on K+ channels in pyramidal cells of the hippocampal CA1 region in rat brain slices.

机译:代谢抑制对大鼠脑切片海马CA1区锥体细胞K +通道的影响。

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摘要

1. The effect of metabolic inhibition on membrane potential and ionic conductances of K+ channels was studied with the patch-clamp technique in pyramidal cells in the CA1 region of the hippocampus. Individual cells were visualized in brain slices from rats aged between 9 and 19 days using infrared video microscopy. Excitability was inhibited by tetrodotoxin. 2. Dinitrophenol (DNP), carbonyl cyanide p-trifluoromethoxyphenylhydrazone (FCCP) and cyanide hyperpolarized the majority of the cells. The resting potential (V) was -55.3 +/- 0.23 mV (n = 147). In response to DNP the change in V was -3.9 +/- 0.76 mV (n = 59), with a normal distribution ranging between +9.0 and -16 mV. 3. Metabolic inhibition increased the resting conductance (grest) and the conductance related to the delayed outward current measured at V = -20 mV (g-20), and decreased the conductance of the early outward A-current (gA). The changes in grest and g-20 were transient and differed from the time-dependent changes seen in control cells. 4. Tolbutamide reversed the hyperpolarization and the increase in grest. Glibenclamide, apamin and charybdotoxin were ineffective. 5. The presence of ATP (2 mM) in the pipette solution did not influence the change in grest. ATP did, however, affect the time-dependent decline in gA and g-20, which demonstrated that cells had been perfused. 6. Cadmium (0.5 mM) reduced the increase in g-20 and grest obtained with DNP, although it did not prevent the effect of DNP on grest. This indicates that the action of DNP involves an elevation of intracellular [Ca2+]. 7. It is concluded that metabolic inhibition causes changes in the function of several types of K+ channels in CA1 cells. A transient opening of a tolbutamide-sensitive K+ channel could explain the increase in grest and the hyperpolarization observed in most cells.
机译:1.采用膜片钳技术研究了海马CA1区锥体细胞中代谢抑制对K +通道膜电位和离子电导的影响。使用红外视频显微镜在9至19天龄的大鼠脑切片中观察单个细胞。河豚毒素可抑制兴奋性。 2.二硝基苯酚(DNP),羰基氰化物对三氟甲氧基苯基hydr(FCCP)和氰化物使大多数细胞超极化。静息电位(V)为-55.3 +/- 0.23 mV(n = 147)。响应DNP,V的变化为-3.9 +/- 0.76 mV(n = 59),正态分布在+9.0到-16 mV之间。 3.代谢抑制增加了静息电导(grest)和与延迟向外电流相关的电导(在V = -20 mV(g-20)下测得),并降低了早期向外A电流的电导(gA)。 grest和g-20的变化是短暂的,不同于对照细胞中随时间变化的变化。 4. Tolbutamide逆转了超极化并增加了肌残。格列本脲,Apapamin和Charybdotoxin无效。 5.移液器中ATP(2 mM)的存在不影响残留物的变化。但是,ATP确实会影响gA和g-20的时间依赖性下降,这表明细胞已被灌注。 6.镉(0.5 mM)减少了DNP所获得的g-20和残rest的增加,尽管它并不能阻止DNP对残rest的影响。这表明DNP的作用涉及细胞内[Ca 2+]的升高。 7.结论是,代谢抑制导致CA1细胞中几种类型的K +通道功能改变。甲苯磺丁酰胺敏感的K +通道的短暂打开可能解释了大多数细胞中grest的增加和超极化现象。

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