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Human motoneurone excitability is depressed by activation of serotonin 1A receptors with buspirone

机译:丁螺环酮激活血清素1A受体会抑制人运动神经元兴奋性

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Key points class="unordered" style="list-style-type:disc" id="tjp12117-list-0001">In the adult turtle spinal cord, action potential generation in motoneurones is inhibited by spillover of serotonin to extrasynaptic serotonin 1A (5‐HT1A) receptors at the axon initial segment. We explored whether ingestion of the 5‐HT1A receptor partial agonist, buspirone, decreases motoneurone excitability in humans.Following ingestion of buspirone, two tests of motoneurone excitability showed decreases. F‐wave areas and persistence in an intrinsic muscle of the hand were reduced, as was the area of cervicomedullary motor evoked potentials in biceps brachii.Our findings suggest that activation of 5‐HT1A receptors depresses human motoneurone excitability. Such a depression could contribute to decreased motoneurone output during fatiguing exercise if there is high serotonergic drive to the motoneurones.
机译:关键点 class =“ unordered” style =“ list-style-type:disc” id =“ tjp12117-list-0001”> <!-list-behavior = unordered prefix-word = mark-type = disc max- label-size = 0-> 在成年乌龟脊髓中,5-羟色胺在轴突初始部分溢出至突触外5-羟色胺1A(5-HT1A)受体,从而抑制了运动神经元中动作电位的产生。我们研究了摄入5‐HT1A受体部分激动剂丁螺环酮是否会降低人对运动神经元的兴奋性。 摄取丁螺环酮后,两项对运动神经元兴奋性的检测均降低了。 F波面积和手固有肌的持久性降低,肱二头肌中子宫颈髓核运动诱发电位的面积也降低。 我们的发现表明,5-HT1A受体的激活会抑制人运动神经元兴奋性。如果对运动神经元有较高的血清素能驱动力,那么这种疲劳可能会使疲劳运动中运动神经元的输出减少。

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