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Electrophysiological differences between oxytocin and vasopressin neurones recorded from female rats in vitro.

机译:雌性大鼠体外记录的催产素和加压素神经元之间的电生理差异。

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摘要

1. Intracellular recordings in vitro from immunochemically identified oxytocin (OT) and vasopressin (VP) neurones in the supraoptic nucleus (SON) of virgin or lactating female rats revealed no differences between neurone types in membrane potential (Vm), input resistance and current-voltage relationships (I-V), when taken at resting membrane potentials. 2. When OT (94%), but not VP, neurones (93%) were current clamped at depolarized voltages (above -50 mV), small hyperpolarizing pulses revealed a time- and voltage-dependent outward rectification that was present above -75 mV and that decreased in amplitude as Vm approached the equilibrium potential for potassium (EK). The rectification was more pronounced when the neurones were held at a more depolarized membrane potential, and was larger the longer the neurone was held depolarized, reaching a maximum at 0.6-0.9 s. 3. A rebound depolarization followed the offset of hyperpolarizing pulses that were associated with the rectification. The peak amplitude of the rebound showed a time and a voltage dependence. It followed a bell-shaped curve as the hyperpolarizing commands were made larger, attaining a peak at -65 +/- 1.5 mV. The rebound amplitude increased with pulse duration, achieving a half-maximal amplitude at 0.5 +/- 0.1 s. 4. The expression of the sustained outward rectification and the rebound in OT neurones was similar in virgin and lactating female rats. 5. These results indicate the presence of significant differences in the intrinsic membrane properties, probably K+ currents, between OT and VP neurones in both lactating and virgin female rats.
机译:1.原始或泌乳雌性大鼠视上视核(SON)免疫化学鉴定的催产素(OT)和加压素(VP)神经元的体外细胞内记录显示,神经元类型在膜电位(Vm),输入阻力和电流-之间无差异。静态膜电位时的电压关系(IV)。 2.当OT(94%)而不是VP神经元(93%)被钳位在去极化电压(-50 mV以上)时,小的超极化脉冲显示出时间和电压相关的向外整流,高于-75 mV,随着Vm接近钾的平衡电位(EK),幅度减小。当神经元保持在更去极化的膜电位时,整流作用更加明显,而神经元保持去极化的时间越长,整流作用越大,在0.6-0.9 s达到最大值。 3.在与整流相关的超极化脉冲偏移之后,出现了反弹式去极化。回弹的峰值幅度显示出时间和电压依赖性。随着超极化命令变大,它遵循了钟形曲线,在-65 +/- 1.5 mV处达到峰值。回弹幅度随脉冲持续时间的增加而增加,在0.5 +/- 0.1 s处达到最大幅度的一半。 4.处女和哺乳期雌性大鼠的持续向外矫正和OT神经元反弹的表达相似。 5.这些结果表明,在哺乳期和初生雌性大鼠中,OT和VP神经元之间的固有膜特性(可能为K +电流)存在显着差异。

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