Department of Neuroscience and Brain Technologies, The Italian Institute of Technology Genova, Italy.
Front Cell Neurosci. 2011 Jun 22;5:6. doi: 10.3389/fncel.2011.00006. eCollection 2011.
The time course of synaptic currents is a crucial determinant of rapid signaling between neurons. Traditionally, the mechanisms underlying the shape of synaptic signals are classified as pre- and post-synaptic. Over the last two decades, an extensive body of evidence indicated that synaptic signals are critically shaped by the neurotransmitter time course which encompasses several phenomena including pre- and post-synaptic ones. The agonist transient depends on neurotransmitter release mechanisms, diffusion within the synaptic cleft, spill-over to the extra-synaptic space, uptake, and binding to post-synaptic receptors. Most estimates indicate that the neurotransmitter transient is very brief, lasting between one hundred up to several hundreds of microseconds, implying that post-synaptic activation is characterized by a high degree of non-equilibrium. Moreover, pharmacological studies provide evidence that the kinetics of agonist transient plays a crucial role in setting the susceptibility of synaptic currents to modulation by a variety of compounds of physiological or clinical relevance. More recently, the role of the neurotransmitter time course has been emphasized by studies carried out on brain slice models that revealed a striking, cell-dependent variability of synaptic agonist waveforms ranging from rapid pulses to slow volume transmission. In the present paper we review the advances on studies addressing the impact of synaptic neurotransmitter transient on kinetics and pharmacological modulation of synaptic currents at inhibitory synapses.
突触电流的时间进程是神经元之间快速信号传递的关键决定因素。传统上,突触信号形状的机制被分为突触前和突触后。在过去的二十年中,大量证据表明,突触信号受到神经递质时间进程的严格塑造,其中包括包括突触前和突触后的几种现象。激动剂瞬变取决于神经递质释放机制、突触间隙内的扩散、溢出到突触外空间、摄取以及与突触后受体的结合。大多数估计表明,神经递质瞬变非常短暂,持续 100 到几百微秒,这意味着突触后激活的特点是高度非平衡。此外,药理学研究提供的证据表明,激动剂瞬变的动力学在调节各种具有生理或临床相关性的化合物对突触电流的敏感性方面起着至关重要的作用。最近,在脑片模型上进行的研究强调了神经递质时间进程的作用,这些研究揭示了突触激动剂波形在从快速脉冲到缓慢容积传递的范围内具有惊人的、依赖于细胞的可变性。在本文中,我们综述了研究突触神经递质瞬变对抑制性突触电流动力学和药理学调节的影响的进展。