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Regulation of the sensitivity of acetylcholine receptors to nicotine in rat habenula neurons

机译:大鼠胆管神经元中乙酰胆碱受体对烟碱敏感性的调节

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摘要

class="enumerated" style="list-style-type:decimal">Time-dependent changes in nicotinic acetylcholine receptor (nAChR) function were studied in acutely isolated medial habenula neurons during whole-cell perfusion.The peak amplitude of inward currents induced by 1 s pulses of nicotinic agonists, applied at 30 s intervals, gradually increased over the first several minutes of whole-cell recording. The ratio of response amplitudes at 1 and 15 min (t15/t1) was 1.9. Run-up of responses occurred independently of channel activation and was specific to nAChRs.The channel blocker chlorisondamine (30 μM), co-applied with nicotine, was used to irreversibly block the majority (91 %) of the nAChRs that opened in the first 2 min of recording. Run-up in the remaining 9 % unblocked channels assessed at 15 min (t15/t2= 3.4) was similar to that in control cells not exposed to nicotine and chlorisondamine simultaneously, implying that run-up is not due to the incorporation of new receptors.A marked alteration in the sensitivity of nAChRs to extracellular Ca2+ was also observed during whole-cell perfusion. The ratio of current amplitudes obtained in 0.2 and 4.0 mM Ca2+ changed from 0.54 (t= 5 min) to 0.82 (t= 30 min).Inward rectification of nicotine-induced responses was reduced during internal dialysis. Voltages for half-maximal conductance were -23.0 and -13.8 mV at 2 and 15 min, respectively. Inclusion of either free Mg2+ (∼2 mM) or spermine (100 μM) in the internal solution counteracted the change in rectification, but did not prevent run-up.The period of run-up was followed by a use-dependent run-down phase. Little run-down in peak current amplitude was induced provided that agonist was applied infrequently (5 min intervals), whereas applications at 30 s intervals produced a loss of channel function after ∼15 min whole-cell perfusion. The time at which run-down began (∼5-30 min) was correlated with the initial rate of nAChR desensitization (∼200-4000 ms); slowly desensitizing nicotinic currents demonstrated delayed run-down.We suggest that run-up of nAChR-mediated responses does not require receptor activation and may result from a change in channel open probability. We also hypothesize that channel run-down reflects accumulation of nAChRs in long-lived desensitized/inactivated states.
机译:class =“ enumerated” style =“ list-style-type:decimal”> <!-list-behavior =枚举前缀-word = mark-type = decimal max-label-size = 0-> 研究了急性分离的内侧ha神经元全细胞灌注过程中烟碱样乙酰胆碱受体(nAChR)功能的时变变化。 1 s烟碱样激动剂脉冲诱导的内向电流的峰值幅度30 s间隔,在全细胞记录的最初几分钟内逐渐增加。 1和15分钟时的响应幅度之比(t15 / t1)为1.9。响应的发生与通道激活无关,并且特定于nAChRs。 与尼古丁共同应用的通道阻滞剂毒死胺(30μM)用于不可逆转地阻断大部分(91%)的尼古丁。在录制的前2分钟内打开的nAChR。在15分钟(t15 / t2 = 3.4)评估的剩余9%畅通通道中的启动类似于在未同时暴露于尼古丁和毒死d的对照细胞中,这表明启动不是由于新受体的结合。 在全细胞灌注过程中,nAChRs对细胞外Ca 2 + 的敏感性也发生了明显变化。在0.2和4.0 mM Ca 2 + 中获得的电流幅度之比从0.54(t = 5分钟)变为0.82(t = 30分钟)。 尼古丁的内向整流内部透析期间,诱导的反应减少。在2分钟和15分钟时,半最大电导的电压分别为-23.0和-13.8 mV。内部溶液中包含游离Mg 2 + (〜2 mM)或精胺(100μM)可以抵消精馏的变化,但并不能防止加速。 在试用期之后是依赖于使用的淘汰阶段。如果不频繁使用激动剂(间隔5分钟),则几乎不会引起峰值电流幅度的下降,而在间隔约15分钟进行全细胞灌注后,间隔30 s的应用会使通道功能丧失。流失开始的时间(约5-30分钟)与nAChR脱敏的初始速率(约200-4000 ms)相关。缓慢脱敏的烟碱电流表现出延迟的衰老。 我们建议nAChR介导的反应的增长不需要受体激活,并且可能是由通道开放概率的改变引起的。我们还假设通道减少会反映nAChRs在长期脱敏/灭活状态下的积累。

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