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Journal Article

Expansion microscopy in honeybee brains for high-resolution neuroanatomical analyses in social insects

Nadine Kraft; Thomas S. Muenz; Sebastian Reinhard; Christian Werner; Markus Sauer; Claudia Groh; Wolfgang Rössler
Cell and Tissue Research · Vol. 393, Issue 3 · pp. 489-506 · 2023

Abstract

The diffraction limit of light microscopy poses a problem that is frequently faced in structural analyses of social insect brains. With the introduction of expansion microscopy (ExM), a tool became available to overcome this limitation by isotropic physical expansion of preserved specimens. Our analyses focus on synaptic microcircuits (microglomeruli, MG) in the mushroom body (MB) of social insects, high-order brain centers for sensory integration, learning, and memory. MG undergo significant structural reorganizations with age, sensory experience, and during long-term memory formation. However, the changes in subcellular architecture involved in this plasticity have only partially been accessed yet. Using the western honeybee Apis mellifera as an experimental model, we established ExM for the first time in a social insect species and applied it to investigate plasticity in synaptic microcircuits within MG of the MB calyces. Using combinations of antibody staining and neuronal tracing, we demonstrate that this technique enables quantitative and qualitative analyses of structural neuronal plasticity at high resolution in a social insect brain.

Bibliographic Information

JournalCell and Tissue Research
PublisherSpringer
Publication Date2023-09-01
Publication Year2023
Volume393
Issue3
Pages489-506
Document TypeJournal Article
Print ISSN0302-766X
eISSN1432-0878
DOI10.1007/s00441-023-03803-4

Access Information

NARA Access Coverage1924-01-01~Current
Journal Homepagehttps://www.springer.com/journal/441
Publisher PageOpen Publisher Page
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