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A-, T-, and H-type Currents Shape Intrinsic Firing of Developing Rat Abducens Motoneurons

机译:A,T和H型电流塑造发育中的大鼠外泌动子的内源性放电

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摘要

During postnatal development, profound changes take place in the excitability of nerve cells, including modification in the distribution and properties of receptor-operated channels and changes in the density and nature of voltage-gated channels. We studied here the firing properties of abducens motoneurons (aMns) in transverse brainstem slices from postnatal day (P) 1–13 rats. Recordings were made from aMNs in the whole-cell configuration of the patch-clamp technique. Two main types of aMn could be distinguished according to their firing profile during prolonged depolarizations. Both types were identified as aMns by their fluorescence following retrograde labelling with the lipophilic carbocyanine DiI in the rectus lateralis muscle. The first type (BaMns) exhibited a burst of action potentials (APs) followed by an adaptation of discharge and were encountered in ∼70 % of aMns. Their discharge profile resembled that of adult aMns and was encountered in all aMns after P9. BaMns exhibited a hyperpolarization-induced rebound potential that was blocked by low concentrations of Ni2+ or by Ca2+-free external solution. This current had the properties of the T-type current. Action potentials of BaMns showed a complex afterhyperpolarization (AHP). An inward rectification was evidenced following hyperpolarization and was blocked by external application of caesium or ZD7288, indicating the presence of the hyperpolarization-activated cationic current (IH). Blocking the IH current almost doubled the input resistance of BaMns. The second class of aMns (DaMns) displayed a delayed excitation that was mediated by A-type K+ currents and was observed only between P4 and P9. DaMns exhibited immature characteristics: an action potential with a simple AHP, a linear current-voltage relation and a large input resistance. The number of aMns remained unchanged when both types were present (P5–P6) and later in development when only BaMns were encountered (P19), suggesting that DaMns mature into BaMns during postnatal development. We conclude that aMns display profound reorganization in their intrinsic excitability during postnatal development.
机译:在产后发育过程中,神经细胞的兴奋性发生了深刻的变化,包括受体操纵通道的分布和特性的改变以及电压门控通道的密度和性质的变化。我们在这里研究了出生后第1-13天的大鼠横向脑干切片中外展运动神经元(aMns)的发射特性。在膜片钳技术的全细胞配置中从aMN进行记录。根据aMn的长时去极化过程中的发射曲线,可以区分出两种主要类型的aMn。这两种类型都通过在外侧直肌中用亲脂性花青素DiI逆行标记后的荧光鉴定为aMns。第一类(BaMns)表现出一连串的动作电位(APs),随后发生放电适应,并在约70%的aMns中遇到。它们的放电曲线类似于成年aMns的放电曲线,在P9之后的所有aMns中都遇到过。 BaMns表现出超极化诱导的反弹电位,该电位被低浓度的Ni2 +或无Ca2 +的外部溶液阻止。该电流具有T型电流的特性。 BaMns的动作电位表现出复杂的超极化后(AHP)。超极化后可发现向内整流,并被铯或ZD7288的外部施加所阻止,表明存在超极化激活的阳离子电流(IH)。阻止IH电流几乎使BaMns的输入电阻增加了一倍。第二类aMns(DaMns)表现出由A型K +电流介导的延迟激发,仅在P4和P9之间观察到。 DaMns表现出不成熟的特性:具有简单AHP,线性电流-电压关系和大输入电阻的动作电位。当两种类型都存在时,aMns的数量保持不变(P5-P6),而在后来的发育中,仅遇到BaMns(P19),这表明DaMns在产后发育过程中成熟为BaMns。我们得出的结论是,aMns在产后发育过程中表现出深刻的内在兴奋性重组。

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