首页> 美国卫生研究院文献>The Journal of Physiology >5-HT-1A receptor-mediated modulation of medullary expiratory neurones in the cat.
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5-HT-1A receptor-mediated modulation of medullary expiratory neurones in the cat.

机译:5-HT-1A受体介导的猫髓样呼气神经元的调节。

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摘要

The involvement of the 5-HT-1A receptor in serotoninergic responses of stage 2 expiratory (E-2) neurones was investigated in pentobarbitone-anaesthetized, mechanically ventilated cats. The specific agonist of the 5-HT-1A receptor, 8-hydroxy-diproplaminotetralin (8-OH-DPAT), administered systemically or by ionophoresis directly on to the neurones, had a clear depressant effect. Administration of 8-OH-DPAT at doses of 10-50 micrograms kg-1 (I.V.) increased the membrane hyperpolarizations of E-2 neurones during the inspiratory and postinspiratory phases, and shortened their duration of activity in association with shortening of phrenic nerve activity. Discharges of E-2 neurones were also less intense. At doses of 50-90 micrograms kg-1, 8-OH-DPAT reduced or abolished inspiratory hyperpolarizations, and reduced expiratory depolarizations of membrane potential and discharge in parallel with inhibition of phrenic nerve discharges. The effects of the larger doses were reversed by I.V. injection of NAN-190, an antagonist at the 5-HT-1A receptor. Dose-dependent effects on the membrane potential and discharge of E-2 neurones, but not on phrenic nerve activity, were also seen by ionophoretic administration of 8-OH-DPAT on to E-2 neurones. At low currents, ejection of 8-OH-DPAT hyperpolarized the neurones without affecting the duration of inspiratory hyperpolarization and expiratory depolarization. This hyperpolarization depressed the intensity and the duration of expiratory discharges. Ejection with larger currents hyperpolarized the E-2 neurones further, and depressed expiratory depolarization leading to blockade of expiratory discharges. The effects on membrane potential were accompanied by decreased neuronal input resistance. This depressed the excitability of E-2 neurones as tested by discharge evoked by intracellular current injection. The amplitudes of action potentials decreased in parallel with the changes in input resistance. The effects were attributed to a postsynaptic effect of 8-OH-DPAT leading to a gradually developing inhibition by activation of 5-HT-1A receptors. Hyperventilatory apnoea depressed on-going synaptic activity and unmasked the effect of ionophoretically applied 8-OH-DPAT. The responses of the E-2 neurone were enhanced, as evidenced by increased membrane hyperpolarization and greater reduction of input resistance. Both responses faded appreciably, indicating receptor desensitization. The degree and rate of apparent desensitization depended on the dose/ejecting current. The greater sensitivity and faster desensitization to 8-OH-DPAT were attributed to the hyperventilatory alkalinization of the extracellular fluid, which might influence agonist binding to 5HT-1A receptors and/or receptor properties.
机译:在戊巴比妥麻醉的机械通气猫中研究了5-HT-1A受体参与2期呼气(E-2)神经元的5-羟色胺能反应的情况。全身或直接通过离子渗透法对神经元给药的5-HT-1A受体特异性激动剂8-羟基-二丙氨基四氢化萘(8-OH-DPAT)具有明显的抑制作用。以10-50微克kg-1(IV)的剂量施用8-OH-DPAT会增加吸气和吸气后阶段E-2神经元的膜超极化作用,并缩短其活动时间,并伴随神经活动的缩短。 E-2神经元的放电也较少。在50-90微克kg-1的剂量下,8-OH-DPAT可减少或消除吸气超极化,并减少膜电位和放电的呼气去极化,同时抑制phr神经放电。 I.V.逆转了大剂量的作用。注射5-HT-1A受体拮抗剂NAN-190。通过对E-2神经元进行离子导入8-OH-DPAT也可以观察到对E-2神经元的膜电位和放电的剂量依赖性作用,但对on神经活动没有影响。在低电流下,8-OH-DPAT的射出会使神经元超极化,而不会影响吸气超极化和呼气去极化的持续时间。这种超极化降低了呼气放电的强度和持续时间。较大电流的喷射进一步使E-2神经元超极化,并抑制了呼气去极化,从而导致呼气放电受阻。对膜电位的影响伴随着神经元输入阻力的降低。如通过细胞内电流注射引起的放电所测试的,这降低了E-2神经元的兴奋性。动作电位的幅度随着输入电阻的变化而平行减小。该作用归因于8-OH-DPAT的突触后作用,其通过激活5-HT-1A受体而导致逐渐发展的抑制作用。换气过度的呼吸暂停抑制了持续的突触活动,并掩盖了离子载体应用的8-OH-DPAT的作用。 E-2神经元的反应增强,如膜超极化增加和输入阻力降低更大所证明。两种反应均明显消失,表明受体脱敏。表观脱敏的程度和速率取决于剂量/喷射电流。对8-OH-DPAT的更高敏感性和更快脱敏归因于细胞外液过度换气的碱化,这可能会影响激动剂与5HT-1A受体的结合和/或受体特性。

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