首页> 外文期刊>The Journal of Physiology >Differential control of three after-hyperpolarizations in rat hippocampal neurones by intracellular calcium buffering.
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Differential control of three after-hyperpolarizations in rat hippocampal neurones by intracellular calcium buffering.

机译:通过细胞内钙缓冲差异控制大鼠海马神经元的三个超极化后。

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摘要

1. The whole-cell recording technique, combined with internal perfusion, was used to study the effects of intracellular Ca2+ buffering on fast, medium and slow after-hyperpolarizations (fAHP, mAHP and sAHP) in hippocampal CA1 pyramidal neurones in rat brain slices at room temperature. 2. The action potentials and the fAHP were unaffected by 100 microM to 3 mM concentrations of the internally applied fast Ca2+ chelator BAPTA. At higher (10-15 mM) concentrations, BAPTA inhibited the fAHP and prolonged the decay of the action potential, suggesting that the corresponding large-conductance Ca2+-activated K+ channels are located close to the sites of Ca2+ entry during an action potential. Addition of Ca2+ to the BAPTA-containing solution (at a ratio of 4.5 [Ca2+] : 10 [BAPTA]) to maintain the control level of [Ca2+]i did not prevent the effects of high concentrations of BAPTA. 3. The mAHP, activated by a train of action potentials, was inhibited by internally applied BAPTA within the range of concentrations used (100 microM to 15 mM), and this effect could not be reversed or prevented by addition of Ca2+ to the BAPTA-containing solution. The inhibition of the mAHP by BAPTA could also be observed after blockade of the hyperpolarization-activated IQ type mixed Na+-K+ current (also known as Ih) component of the mAHP by bath-applied 3-5 mM Cs+, suggesting that the inhibition of the mAHP by BAPTA is due to inhibition of the depolarization-activated IM (muscarinic) type K+ current. 4. The sAHP, activated by a train of action potentials, was potentiated by 100-300 microM internally applied BAPTA, both with and without added Ca2+. At 1-2 mM or higher concentrations, the potentiation of the sAHP by BAPTA without added Ca2+ was transient and was followed by a fast decrease. With added Ca2+, however, BAPTA caused a persistent potentiation of the sAHP with more than a 10-fold increase in duration for periods exceeding 1 h even at concentrations of the buffer as high as 10-15 mM. Earlier reports showing a blockade of the sAHP by BAPTA, based on experiments without added Ca2+, were apparently due to a sharp reduction in intracellular free [Ca2+] and to a high intracellular concentration of the free buffer. 5. Internally applied BAPTA caused a prolongation of the spike discharge during an 800 ms-long depolarizing current step. At 100-300 microM BAPTA, but not at 1-2 mM or higher concentrations, this effect could be reversed by addition of Ca2+. The effects of BAPTA on the spike discharge occurred in parallel with the changes in the sAHP time course, which was more prolonged at higher concentrations of the buffer. 6. The concentration-dependent differential control of the three types of AHP in hippocampal neurones by BAPTA is related to modulation of intracellular Ca2+ diffusion by a fast acting mobile Ca2+ buffer.
机译:1.采用全细胞记录技术,结合内部灌注,研究了细胞内Ca2 +缓冲液对大鼠脑切片海马CA1锥体神经元快速,中和慢速超极化后(fAHP,mAHP和sAHP)的影响。室内温度。 2.内部施加的快速Ca2 +螯合剂BAPTA的浓度为100 microM至3 mM,动作电位和fAHP不受影响。在较高浓度(10-15 mM)下,BAPTA抑制fAHP并延长了动作电位的衰减,表明相应的大电导Ca2 +激活的K +通道在动作电位期间位于Ca​​2 +进入位点附近。向含有BAPTA的溶液中添加Ca2 +(比例为4.5 [Ca2 +]:10 [BAPTA])以维持[Ca2 +] i的对照水平并不能防止高浓度BAPTA的影响。 3.由一系列动作电位激活的mAHP在所用浓度范围(100 microM至15 mM)内被内部应用的BAPTA抑制,通过向BAPTA-中添加Ca2 +不能逆转或阻止这种影响。包含解决方案。在浴液施加的3-5 mM Cs +阻断mAHP的超极化激活IQ型混合Na + -K +电流(也称为Ih)成分后,也可以观察到BAPTA对mAHP的抑制作用,表明对HPHP的抑制作用是通过抑制BAPTA抑制的。 BAPTA产生的mAHP是由于抑制了去极化激活的IM(毒蕈碱)K +型电流。 4.通过一系列动作电位激活的sAHP,可通过100-300 microM内部施加的BAPTA(加或不加Ca2 +)来增强。在1-2 mM或更高浓度下,不添加Ca2 +的BAPTA对sAHP的增强是短暂的,随后迅速降低。但是,添加Ca2 +时,即使在缓冲液浓度高达10-15 mM的情况下,BAPTA也会持续sAHP增强作用,持续时间超过1小时的时间增加10倍以上。较早的报道表明,基于不添加Ca2 +的实验,BAPTA阻断了sAHP,这显然是由于细胞内游离[Ca2 +]的急剧减少和细胞内游离缓冲液的浓度过高所致。 5.内部使用的BAPTA在800毫秒长的去极化电流阶跃期间导致尖峰放电的延长。在100-300 microM BAPTA,但不是在1-2 mM或更高浓度下,可以通过添加Ca2 +来逆转这种影响。 BAPTA对尖峰放电的影响与sAHP时间过程的变化同时发生,在较高浓度的缓冲液中,这种变化会更长。 6. BAPTA对海马神经元中三种类型的AHP的浓度依赖性差异控制与快速作用的移动Ca2 +缓冲液对细胞内Ca2 +扩散的调节有关。

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