Gottfried Schatz Research Center, Division of Cell Biology, Histology and Embryology, Medical University of Graz, 8010 Graz, Austria.
Gottfried Schatz Research Center, Division of Macroscopic and Clinical Anatomy, Medical University of Graz, 8010 Graz, Austria.
Int J Mol Sci. 2021 Nov 18;22(22):12470. doi: 10.3390/ijms222212470.
Recent research has provided strong evidence that neurodegeneration may develop from an imbalance between synaptic structural components in the brain. Lately, inhibitory synapses communicating via the neurotransmitters GABA or glycine have come to the center of attention. Increasing evidence suggests that imbalance in the structural composition of inhibitory synapses affect deeply the ability of neurons to communicate effectively over synaptic connections. Progressive failure of synaptic plasticity and memory are thus hallmarks of neurodegenerative diseases. In order to prove that structural changes at synapses contribute to neurodegeneration, we need to visualize single-molecule interactions at synaptic sites in an exact spatial and time frame. This visualization has been restricted in terms of spatial and temporal resolution. New developments in electron microscopy and super-resolution microscopy have improved spatial and time resolution tremendously, opening up numerous possibilities. Here we critically review current and recently developed methods for high-resolution visualization of inhibitory synapses in the context of neurodegenerative diseases. We present advantages, strengths, weaknesses, and current limitations for selected methods in research, as well as present a future perspective. A range of new options has become available that will soon help understand the involvement of inhibitory synapses in neurodegenerative disorders.
最近的研究提供了强有力的证据,表明神经退行性变可能是由于大脑中突触结构成分之间的失衡引起的。最近,通过神经递质 GABA 或甘氨酸进行通讯的抑制性突触成为关注的焦点。越来越多的证据表明,抑制性突触结构组成的失衡会深刻影响神经元通过突触连接进行有效通讯的能力。因此,突触可塑性和记忆的逐渐丧失是神经退行性疾病的特征。为了证明突触结构变化导致神经退行性变,我们需要在精确的时空框架内可视化突触部位的单分子相互作用。这种可视化在时空分辨率方面受到限制。电子显微镜和超分辨率显微镜的新发展极大地提高了空间和时间分辨率,开辟了许多可能性。在这里,我们批判性地回顾了目前和最近开发的用于在神经退行性疾病背景下高分辨率可视化抑制性突触的方法。我们介绍了所选方法在研究中的优点、优势、弱点和当前限制,并提出了未来展望。一系列新的选择已经出现,这将有助于我们理解抑制性突触在神经退行性疾病中的作用。