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Plateau potentials and membrane oscillations in parasympathetic preganglionic neurones and intermediolateral neurones in the rat lumbosacral spinal cord

机译:大鼠腰s脊髓副交感神经节前神经元和中间外侧神经元的平台电位和膜振荡

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摘要

Whole-cell patch recordings were made from parasympathetic preganglionic neurones (P-PGNs) and unidentified intermediolateral (IML) neurones in thick slices of the lower lumbar and sacral spinal cord of 14- to 21-day-old rats. The P-PGNs and IML neurones examined were similar in terms of soma sizes, input resistance and capacitance, and displayed a sag conductance as well as rebound firing. In the absence of drugs, the neurones responded with either tonic or adapting firing to depolarizing current steps. However, in the presence of the group I metabotropic glutamate receptor agonist (RS)-3,5-dihydroxyphenylglycine (DHPG), almost half of the neurones displayed accelerating firing rates during the constant current injection, followed by a sustained after-discharge. In the presence of TTX, plateau potentials were observed. The firing changes and plateaux were blocked by nifedipine, an L-type Ca2+ channel blocker, and (S)-(−)-Bay K8644 was able to produce these firing changes and plateaux in the absence of DHPG, demonstrating the involvement of an L-type Ca2+ conductance. Ca2+-activated nonspecific cationic conductances also appear to contribute to the firing changes. A few neurones displayed membrane oscillations and burst firing in the presence of DHPG. The results suggest that the firing characteristics of both P-PGNs and other neurones likely to be involved in caudal spinal reflex control are not static but, rather, quite dynamic and under metabotropic glutamate receptor modulatory control. Such changes in firing patterns may be involved in normal pelvic parasympathetic reflex function during micturition, defaecation and sexual reflexes, and may contribute to the abnormal output patterns seen with loss of descending brainstem input and visceral or perineal sensory disturbances.
机译:全细胞膜片记录是由14至21天大的大鼠的下腰和spin骨脊髓厚切片中的副交感神经节前神经元(P-PGNs)和身份不明的中间外侧(IML)神经元制成的。所检查的P-PGN和IML神经元在躯体大小,输入电阻和电容方面相似,并表现出下垂电导和反弹击发。在没有药物的情况下,神经元以补药或使放电适应当前的去极化反应。但是,在存在第I组代谢型谷氨酸受体激动剂(RS)-3,5-二羟基苯基甘氨酸(DHPG)的情况下,几乎一半的神经元在恒流注射过程中显示出加速的放电速率,然后持续放电。在存在TTX的情况下,观察到了平台电位。硝苯地平(一种L型Ca2 +通道阻滞剂)阻断了射击改变和高原反应,并且在没有DHPG的情况下,(S)-(-)-Bay K8644能够产生这些射击改变和高原反应,证明了L的参与型Ca2 +电导。 Ca 2+活化的非特异性阳离子电导也似乎有助于焙烧变化。在DHPG存在下,一些神经元显示出膜振动和爆发放电。结果表明,P-PGNs和其他可能参与尾椎反射控制的神经元的放电特性不是静态的,而是相当动态的,并且在代谢型谷氨酸受体调节控制下。排尿模式的这种变化可能与排尿,排便和性反射过程中的正常盆腔副交感神经反射功能有关,并可能导致脑干输入下降和内脏或会阴感觉障碍而导致的异常输出模式。

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