Lunenfeld-Tanenbaum Research Institute, Toronto, ON, Canada.
Tanz Centre for Research in Neurodegenerative Diseases, Department of Physiology, University of Toronto, Toronto, ON, Canada.
Front Neural Circuits. 2020 Apr 2;14:9. doi: 10.3389/fncir.2020.00009. eCollection 2020.
Excitatory synapses in the mammalian cortex are highly diverse, both in terms of their structure and function. However, relationships between synaptic features indicate they are highly coordinated entities. Imaging techniques, that enable physiology at the resolution of individual synapses to be investigated, have allowed the presynaptic activity level of the synapse to be related to postsynaptic function. This approach has revealed that neuronal activity induces the pre- and post-synapse to be functionally correlated and that subsets of synapses are more susceptible to certain forms of synaptic plasticity. As presynaptic function is often examined in isolation from postsynaptic properties, the effect it has on the post-synapse is not fully understood. However, since postsynaptic receptors at excitatory synapses respond to release of glutamate, it follows that they may be differentially regulated depending on the frequency of its release. Therefore, examining postsynaptic properties in the context of presynaptic function may be a useful way to approach a broad range of questions on synaptic physiology. In this review, we focus on how optophysiology tools have been utilized to study relationships between the pre- and the post-synapse. Multiple imaging techniques have revealed correlations in synaptic properties from the submicron to the dendritic level. Optical tools together with advanced imaging techniques are ideally suited to illuminate this area further, due to the spatial resolution and control they allow.
哺乳动物皮层中的兴奋性突触在结构和功能上都具有多样性。然而,突触特征之间的关系表明它们是高度协调的实体。成像技术使能够以单个突触的分辨率研究生理学,从而使突触的突触前活动水平与突触后功能相关联。这种方法表明,神经元活动诱导突触前和突触后功能相关,并且子集的突触更容易受到某些形式的突触可塑性的影响。由于通常将突触前功能与突触后特性分开进行检查,因此不完全了解它对突触后特性的影响。然而,由于兴奋性突触后受体对谷氨酸的释放有反应,因此可以根据其释放的频率来对其进行差异调节。因此,在突触前功能的背景下检查突触后特性可能是研究突触生理学的广泛问题的一种有用方法。在这篇综述中,我们重点介绍了光生理工具如何用于研究突触前和突触后的关系。多种成像技术已经揭示了从亚微米到树突水平的突触特性的相关性。由于光工具具有较高的空间分辨率和控制能力,因此与先进的成像技术相结合,非常适合进一步阐明这一领域。