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Publication : The actin binding protein drebrin helps to protect against the development of seizure-like events in the entorhinal cortex.

First Author  Klemz A Year  2021
Journal  Sci Rep Volume  11
Issue  1 Pages  8662
PubMed ID  33883605 Mgi Jnum  J:313775
Mgi Id  MGI:6707364 Doi  10.1038/s41598-021-87967-5
Citation  Klemz A, et al. (2021) The actin binding protein drebrin helps to protect against the development of seizure-like events in the entorhinal cortex. Sci Rep 11(1):8662
abstractText  The actin binding protein drebrin plays a key role in dendritic spine formation and synaptic plasticity. Decreased drebrin protein levels have been observed in temporal lobe epilepsy, suggesting the involvement of drebrin in the disease. Here we investigated the effect of drebrin knockout on physiological and pathophysiological neuronal network activities in mice by inducing gamma oscillations, involved in higher cognitive functions, and by analyzing pathophysiological epileptiform activity. We found that loss of drebrin increased the emergence of spontaneous gamma oscillations suggesting an increase in neuronal excitability when drebrin is absent. Further analysis showed that although the kainate-induced hippocampal gamma oscillations were unchanged in drebrin deficient mice, seizure like events measured in the entorhinal cortex appeared earlier and more frequently. The results suggest that while drebrin is not essential for normal physiological network activity, it helps to protect against the formation of seizure like activities during pathological conditions. The data indicate that targeting drebrin function could potentially be a preventive or therapeutic strategy for epilepsy treatment.
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