Cooper Ann S, Cooper Robin L
Department of Biology, University of Kentucky, USA.
J Vis Exp. 2009 Nov 9(33):1595. doi: 10.3791/1595.
Here we present some of the key important discoveries made with the opener neuromuscular (NMJ) preparation of crustaceans and illustrate that there is still much to learn from this model preparation. In understanding the history one can appreciate why even today this NMJ still offers a rich playground to address questions regarding pre- and post-synaptic function and plasticity. The viability and ease of access to the terminal for intracellular as well as extracellular electrophysiology and imaging are significant advantages. The mechanisms behind the modulation of vesicular kinetics and fusion within the high- and low-output terminals are begging for investigation. The preparation also offers a testable model system for computational assessments and manipulations to examine key variables in theoretical models of synaptic function, for example calcium dynamics during short-term facilitation. The synaptic complexity of active zone and statistical nature of quantal release is also an open area for future investigation both experimentally and computationally.
在此,我们展示了利用甲壳类动物的开肌神经肌肉接头(NMJ)制备方法所取得的一些关键重要发现,并表明从这个模型制备中仍有许多有待学习之处。在了解其历史过程中,人们能够明白为何即使在今天,这个神经肌肉接头仍为解决有关突触前和突触后功能及可塑性的问题提供了一个丰富的研究领域。其存活能力以及便于进行细胞内和细胞外电生理学研究及成像的特点是显著优势。高输出和低输出终端内囊泡动力学和融合调节背后的机制亟待研究。该制备方法还为计算评估和操作提供了一个可测试的模型系统,以检验突触功能理论模型中的关键变量,例如短期易化过程中的钙动力学。活性区的突触复杂性和量子释放的统计性质在实验和计算方面也都是未来有待研究的开放领域。