Publication: Loss of glutamate transporter eaat2a leads to aberrant neuronal excitability, recurrent epileptic seizures, and basal hypoactivity
Loss of glutamate transporter eaat2a leads to aberrant neuronal excitability, recurrent epileptic seizures, and basal hypoactivity
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Hotz, A. L., Jamali, A., Rieser, N. N., Niklaus, S., Aydin, E., Myren‐Svelstad, S., Lalla, L., Jurisch‐Yaksi, N., Yaksi, E., & Neuhauss, S. C. F. (2022). Loss of glutamate transporter eaat2a leads to aberrant neuronal excitability, recurrent epileptic seizures, and basal hypoactivity. Glia, 70, 196–214. https://doi.org/10.1002/glia.24106
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Astroglial excitatory amino acid transporter 2 (EAAT2, GLT-1, and SLC1A2) regulates the duration and extent of neuronal excitation by removing glutamate from the synaptic cleft. Hence, an impairment in EAAT2 function could lead to an imbalanced brain network excitability. Here, we investigated the functional alterations of neuronal and astroglial networks associated with the loss of function in the astroglia predominant eaat2a gene in zebrafish. We observed that eaat2a-/- mutant zebrafish larvae display recurrent spontaneous and light
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Hotz, A. L., Jamali, A., Rieser, N. N., Niklaus, S., Aydin, E., Myren‐Svelstad, S., Lalla, L., Jurisch‐Yaksi, N., Yaksi, E., & Neuhauss, S. C. F. (2022). Loss of glutamate transporter eaat2a leads to aberrant neuronal excitability, recurrent epileptic seizures, and basal hypoactivity. Glia, 70, 196–214. https://doi.org/10.1002/glia.24106