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Investigations on Alterations of Hippocampal Circuit Function Following Mild Traumatic Brain Injury
Published on: November 19, 2012
Structural plasticity of the axon initial segment in hippocampal granule cells after entorhinal denervation
Anne-Jessica Schneider1, Fran Bozic2, Mario Zelic2
1Goethe University Frankfurt, Institute for Clinical Neuroanatomy, Theodor-Stern-Kai 7, Frankfurt/Main 60590, Germany.
Abstract:
Entorhinal cortex lesion (ECL) results in a layer-specific denervation of dentate gyrus granule cells, depriving them of their main excitatory input. Granule cells respond to this challenge with structural and functional adaptations of their dendrites and spines. In the present study we tested whether the axon initial segment (AIS) of granule cells and its cisternal organelle (CO) participate in this adaptive response, as both can undergo structural plasticity following changes in afferent drive. To this end, we performed in vivo unilateral ECL in C57BL/6 mice, perfused them at 1, 3, 7, 14, or 28 days post-lesion, and stained their brain sections for the AIS marker βIV-spectrin and for Synaptopodin (Synpo), an essential protein and marker of the CO. AIS length and Synpo cluster number and size were evaluated in granule cells from the ipsi- and contralateral hemispheres. We found that the lesioned hemisphere reacts to denervation with a shortening of the AIS and an increase in Synpo cluster density and size at different post-lesion time points. Thus, we provide first evidence for changes occurring in the AIS and CO following entorhinal denervation, indicating that the output compartment of neurons participates in the adaptive response of neurons to denervation.

