Walmsley B, Alvarez F J, Fyffe R E
Neuroscience Division, John Curtin School of Medical Research, Australian National University, Canberra, ACT.
Trends Neurosci. 1998 Feb;21(2):81-8. doi: 10.1016/s0166-2236(97)01170-3.
Our appreciation of the relationship between synaptic structure and function, and in particular our understanding of quantal synaptic transmission, is derived from classical studies on the neuromuscular junction. However, physiological studies of quantal transmission at mammalian CNS synapses have produced a variety of results, and thus no consensus of opinion has emerged. This variability could be due, in part, to experimental and analytical limitations or to differences in the structural and functional features of central synapses, or both. Some of the experimental limitations have recently been overcome by the use of novel preparations that permit direct measurement of quantal synaptic events in the CNS. Although these studies reveal similarities between the synaptic mechanisms of the neuromuscular junction and CNS synapses, important differences and specializations are also evident. The purpose of this review is to highlight the structural and functional diversity of synapses in the mammalian CNS, and to discuss the potential relevance of structural features to synaptic function.
我们对突触结构与功能之间关系的认识,尤其是对量子化突触传递的理解,源自对神经肌肉接头的经典研究。然而,对哺乳动物中枢神经系统(CNS)突触处量子化传递的生理学研究产生了各种各样的结果,因此尚未形成一致的观点。这种变异性可能部分归因于实验和分析的局限性,或者中枢突触结构和功能特征的差异,或者两者皆有。最近,通过使用允许直接测量中枢神经系统中量子化突触事件的新型制剂,一些实验局限性已被克服。尽管这些研究揭示了神经肌肉接头和中枢神经系统突触的突触机制之间的相似性,但重要的差异和特殊性也很明显。这篇综述的目的是强调哺乳动物中枢神经系统中突触的结构和功能多样性,并讨论结构特征与突触功能的潜在相关性。