Heller, Janosch Peter ORCID: 0000-0002-8825-3787 and Aleksejenko, Natalija
(2021)
Super-resolution imaging to reveal the nanostructure of tripartite synapses.
Neuronal signaling, 5
.
ISSN 2059-6553
Abstract
Even though neurons are the main drivers of information processing in the brain and spinal cord, other cell types are important to mediate adequate flow of information. These include electrically passive glial cells such as microglia and astrocytes, which recently emerged as active partners facilitating proper signal transduction. In disease, these cells undergo pathophysiological changes that propel disease progression and change synaptic connections and signal transmission. In the healthy brain, astrocytic processes contact pre and postsynaptic structures. These processes can be nanoscopic, and therefore only electron microscopy has been able to reveal their structure and morphology. However, electron microscopy is not suitable in revealing dynamic changes, and it is labour and time-intensive. The dawn of super-resolution microscopy, techniques that ‘break’ the diffraction limit of conventional light microscopy, over the last decades has enabled researchers to reveal the nanoscopic synaptic environment. In this review, we highlight and discuss recent advances in our understanding of the nano-world of the so-called tripartite synapses, the relationship between pre and postsynapse as well as astrocytic processes. Overall, novel super-resolution microscopy methods are needed to fully illuminate the intimate relationship between glia and neuronal cells that underlies signal transduction in the brain and that might be affected in diseases such as Alzheimer’s disease and epilepsy.
Metadata
Item Type: | Article (Published) |
---|---|
Refereed: | Yes |
Uncontrolled Keywords: | Astrocytes; super-resolution microscopy; synapses; tripartite synapses |
Subjects: | Biological Sciences > Biotechnology Humanities > Biological Sciences > Biotechnology Biological Sciences > Neuroscience Humanities > Biological Sciences > Neuroscience |
DCU Faculties and Centres: | DCU Faculties and Schools > Faculty of Science and Health DCU Faculties and Schools > Faculty of Science and Health > School of Biotechnology Research Institutes and Centres > National Institute for Cellular Biotechnology (NICB) |
Publisher: | Portland Press Ltd. |
Official URL: | https://portlandpress.com/neuronalsignal/article/5... |
Copyright Information: | Authors |
ID Code: | 31128 |
Deposited On: | 10 Jun 2025 10:19 by Vidatum Academic . Last Modified 10 Jun 2025 10:19 |
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