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Feedback inhibition of action potential discharge by endogenous adenosine enhancement of the medium afterhyperpolarization

机译:超极化后内源性腺苷增强介质对动作电位放电的反馈抑制

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摘要

Phasic activity in supraoptic nucleus vasopressin neurones is characterized by alternating periods of activity (bursts) and silence. During bursts, activation of a medium afterhyperpolarization induces spike frequency adaptation. Antagonism of A1 adenosine receptors within the supraoptic nucleus decreases spike frequency adaptation and prolongs phasic bursts in vivo, indicating that endogenous adenosine contributes to spike frequency adaptation. Here we used sharp electrode intracellular recordings from supraoptic nucleus neurones in hypothalamic explants to show that endogenous adenosine increases medium afterhyperpolarization amplitude to enhance spike frequency adaptation during phasic bursts. Superfusion of the A1 receptor antagonist 8-cyclopentyl-1,3-dimethylxanthine (CPT, 10 μm) increased intraburst firing rate of phasic neurones (by 2.0 ± 0.7 spikes s−1, P= 0.03) and burst duration (by 141 ± 113 s, P= 0.03). The CPT-induced increase in intraburst firing rate developed over the first few seconds of firing and persisted thereafter. In a separate series of experiments, CPT reduced the amplitude of the medium afterhyperpolarization evoked by a 1 s 20 Hz spike train (by 0.8 ± 0.3 mV, P < 0.001) in supraoptic nucleus neurones; this inhibition was not prevented by 3 mm CsCl (0.8 ± 0.1 mV decrease, P < 0.01) to block the afterdepolarization (which overlaps temporally with the medium afterhyperpolarization). In the presence of apamin to block the medium afterhyperpolarization, CPT did not alter afterdepolarization amplitude. Taken together, these data show that endogenous adenosine enhances medium afterhyperpolarization amplitude to contribute to spike frequency adaptation in phasic supraoptic nucleus neurones.
机译:视上核加压素神经元的阶段性活动以活动(爆发)和沉默交替的时间段为特征。在突发过程中,中等超极化后的激活会引起尖峰频率适应。视上核内A1腺苷受体的拮抗作用会降低体内的尖峰频率适应性并延长相位突变,表明内源性腺苷有助于尖峰频率适应性。在这里,我们使用下丘脑外植体中视上核神经元的尖锐电极细胞内记录来显示,内源性腺苷增加了超极化后的中等幅度,从而增强了相脉冲期间的尖峰频率适应性。 A1受体拮抗剂8-环戊基-1,3-二甲基黄嘌呤(CPT,10μm)的灌注增加了相神经元的爆发内放电率(s -1 2.0±0.7峰值,P = 0.03)和突发持续时间(141±113 s,P = 0.03)。 CPT引起的爆发内射击速率的增加在射击的最初几秒钟内出现,此后持续存在。在另一系列实验中,CPT降低了视上核神经元中1 s 20 Hz尖峰序列引起的超极化后介质的振幅(降低了0.8±0.3 mV,P <0.001)。 3 mm CsCl(降低0.8±0.1 mV,P <0.01)不能阻止这种去抑制作用,以阻止后去极化(在时间上与介质的超极化重叠)。在存在芹菜素来阻止介质超极化后,CPT不会改变去极化后的振幅。综上所述,这些数据表明内源性腺苷增强了超极化后的中等幅度,从而有助于相位性视上核神经元的峰频率适应。

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