首页> 美国卫生研究院文献>The Journal of Physiology >Serotonin-mediated inhibitory postsynaptic potential in guinea-pig prepositus hypoglossi and feedback inhibition by serotonin.
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Serotonin-mediated inhibitory postsynaptic potential in guinea-pig prepositus hypoglossi and feedback inhibition by serotonin.

机译:血清素介导的豚鼠垂体前突肌抑制突触后电位和血清素的反馈抑制作用。

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摘要

1. Intracellular recordings were made from neurones of the nucleus prepositus hypoglossi (PH) in slices of guinea-pig brain. Focal stimulation evoked an inhibitory postsynaptic potential (IPSP) that was typically 10-25 mV in amplitude and 1 s in duration. The IPSP reversal potential showed a Nernstian dependence on the external potassium concentration ([K+]o). 2. Spiperone blocked the IPSP with an IC50 of 40 nM, while ketanserin and (-)sulpiride had no effect. Cocaine (1 microM) prolonged the IPSP half-duration by 157%, and increased the amplitude by 28%. 3. 5-Hydroxytryptamine (5-HT, serotonin) hyperpolarized PH cells with an EC50 of 8.5 microM in control, and 135 nM in cocaine (10 microM). 8-Hydroxy-2-(di-n-propylamino)-tetralin (8-OH-DPAT) also hyperpolarized PH cells with an EC50 of 16 nM, although the maximal effect was only 81% of the maximum 5-HT hyperpolarization. Spiperone produced a parallel, right shift of the 5-HT concentration-response curve; Schild analysis gave a Kd of 10 nM. Application of 5-HT to neurones voltage-clamped near their resting potential (about -55 mV) caused an outward current and an increase in membrane conductance. 4. The amplitude of the IPSP was reversibly decreased by non-hyperpolarizing concentrations of 5-HT and by the 5-HT1 receptor agonists 1-(m-trifluoromethylphenyl)piperazine (TFMPP) and 1-(3-chlorophenyl)piperazine (mCPP). The IC50 values for the latter two compounds were 50 nM and 1.5 microM, respectively; the maximal effect was a 90% inhibition. Neither compound affected the membrane potential nor changed the hyperpolarization induced by 5-HT. Quipizine competitively antagonized TFMPP with an estimated Kd of 165 nM. 5. When trains of stimuli were applied, an inhibition of the IPSP was observed following the first stimulus. At a frequency of 1 Hz, the inhibition was approximately 75%. This frequency-dependent 'run-down' of the IPSP was markedly attenuated by pre-treatment with TFMPP (1 microM). 6. It is concluded that the IPSP in PH cells is caused by 5-HT acting on 5-HT1A receptors to activate a potassium conductance. The release of 5-HT can be inhibited by activation of a presynaptic 5-HT1D receptor. This presynaptic receptor appears to be at least partly responsible for the run-down phenomenon, and may be involved in the physiological regulation of 5-HT synaptic transmission.
机译:1.细胞内记录是从豚鼠脑切片中的垂体前核神经元(PH)的神经元进行的。局灶刺激引起抑制性突触后电位(IPSP),其幅度通常为10-25 mV,持续时间为1 s。 IPSP的逆转潜力显示出能斯对外部钾浓度([K +] o)的依赖性。 2. Spiperone以40 nM的IC50阻断IPSP,而酮色林和(-)舒必利则无作用。可卡因(1 microM)将IPSP的半衰期延长了157%,幅度增加了28%。 3. 5-羟色胺(5-HT,5-羟色胺)超极化PH细胞,对照中的EC50为8.5 microM,可卡因中的EC50为135 nM(10 microM)。 8-羟基-2-(二-正丙基氨基)-四氢化萘(8-OH-DPAT)也会使PH细胞超极化,EC50为16 nM,尽管最大作用仅为最大5-HT超极化的81%。 Spiperone产生了5-HT浓度-响应曲线的平行,右移; Schild分析得出的Kd为10 nM。对电压钳制在其静息电位(约-55 mV)附近的神经元施加5-HT会导致外向电流并增加膜电导。 4.通过非超极化浓度的5-HT和5-HT1受体激动剂1-(间三氟甲基苯基)哌嗪(TFMPP)和1-(3-氯苯基)哌嗪(mCPP),IPSP的振幅可逆地降低。后两种化合物的IC50值分别为50 nM和1.5 microM。最大作用是抑制90%。化合物均不会影响膜电位,也不会改变5-HT诱导的超极化。 Quipizine竞争性拮抗TFMPP,Kd估计为165 nM。 5.当施加一系列刺激时,在第一次刺激后观察到对IPSP的抑制。在1 Hz的频率下,抑制约为75%。通过使用TFMPP(1 microM)进行预处理,IPSP的这种频率依赖性“损耗”明显减弱。 6.结论是PH细胞中的IPSP是由作用于5-HT1A受体以激活钾电导的5-HT引起的。可以通过激活突触前的5-HT1D受体抑制5-HT的释放。这种突触前受体似乎至少部分负责减少现象,并且可能参与5-HT突触传递的生理调节。

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