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Mechanisms Shaping the Slow Nicotinic Synaptic Current at the Motoneuron–Renshaw Cell Synapse

机译:在动子隆-伦肖细胞突触形成缓慢的烟碱突触电流的机制。

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摘要

In spinal cord slices from newborn mice we have analyzed the kinetics of the EPSCs mediated by heteromeric nicotinic receptors at the motoneuron–Renshaw cell (MN-RC) synapse. The miniature EPSCs decay with a time constant of 13.0 ± 1.1 ms whereas the decay of the evoked EPSCs (eEPSCs) is biphasic, with time constants of 15.6 ± 0.8 and 124.8 ± 9.0 ms. The slow component becomes prominent during a repetitive stimulation, but its time constant is unchanged. It is selectively reduced by the addition of acetylcholinesterase (AChE), and thus appears to involve ACh spillover. The constancy of the slow time constant during a train is best explained by a local spillover activating high-affinity receptors. In many cells a fraction of the eEPSC originates in neighboring RCs and is transmitted by the low-pass filter of the gap junctions. The component transmitted electrically can be eliminated by meclofenamic acid, a blocker of gap junctions. The local spillover produced by a repetitive stimulation was compared with the long-range spillover produced by inactivation of AChE. The pharmacological inactivation of AChE by neostigmine caused the appearance of an ultra-slow (second range) decay component in eEPSCs and also a continuous inward current interpreted as resulting from a continuous ACh presence. In animals lacking functional AChE in the CNS (PRiMA−/− mice) the EPSCs resembled those observed in neostigmine but the steady inward current was much smaller, suggesting an adaptation to the absence of AChE.
机译:在新生小鼠的脊髓切片中,我们分析了由运动神经元-伦肖细胞(MN-RC)突触的异聚烟碱受体介导的EPSC的动力学。微型EPSC的衰减时间常数为13.0±1.1毫秒,而诱发的EPSC的衰减是双相的,时间常数为15.6±0.8和124.8±9.0毫秒。慢速分量在重复刺激期间变得突出,但其时间常数不变。通过添加乙酰胆碱酯酶(AChE)可以选择性地减少它,因此似乎涉及到ACh溢出。火车中慢速时间常数的恒定性最好通过激活高亲和力受体的局部溢出来解释。在许多单元中,eEPSC的一部分起源于相邻的RC,并由间隙连接的低通滤波器传输。电传递的成分可以通过甲氯芬那酸(一种间隙连接的阻滞剂)消除。将重复刺激产生的局部溢出与AChE失活产生的远程溢出进行了比较。新斯的明对AChE的药理失活导致eEPSC中出现超慢(第二范围)衰变成分,并且还解释为连续的内向电流是由连续的ACh存在引起的。在中枢神经系统中缺乏功能性AChE的动物(PRiMA -/-小鼠)中,EPSC与在新斯的明中观察到的相似,但稳定的内向电流要小得多,这表明可以适应缺乏AChE的情况。

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