Familial hemiplegic migraine 2 is a pathology linked to mutation of the ATP1A2 gene producing loss of function of the α2 Na+/K+-ATPase (NKA). W887R/+ knock-in (KI) mice are used to model the familial hemiplegic migraine 2 condition and are characterized by 50% reduced NKA expression in the brain and reduced rate of K+ and glutamate clearance by astrocytes. These alterations might, in turn, produce synaptic changes in synaptic transmission and plasticity. Memory and learning deficits observed in familial hemiplegic migraine patients could be ascribed to a possible alteration of hippocampal neuronal plasticity and measuring possible changes of long-term potentiation in familial hemiplegic migraine 2 KI mice might provide insights to strengthen this link.

Differential effect of FHM2 mutation on synaptic plasticity in distinct hippocampal regions / Iure, Antonio de; Mazzocchetti, Petra; Bastioli, Guendalina; Picconi, Barbara; Costa, Cinzia; Marchionni, Ivan; Casari, Giorgio; Tozzi, Alessandro; Pietrobon, Daniela; Calabresi, Paolo. - In: CEPHALALGIA. - ISSN 0333-1024. - (2019), p. 333102419839967. [10.1177/0333102419839967]

Differential effect of FHM2 mutation on synaptic plasticity in distinct hippocampal regions

Bastioli, Guendalina;Casari, Giorgio;
2019-01-01

Abstract

Familial hemiplegic migraine 2 is a pathology linked to mutation of the ATP1A2 gene producing loss of function of the α2 Na+/K+-ATPase (NKA). W887R/+ knock-in (KI) mice are used to model the familial hemiplegic migraine 2 condition and are characterized by 50% reduced NKA expression in the brain and reduced rate of K+ and glutamate clearance by astrocytes. These alterations might, in turn, produce synaptic changes in synaptic transmission and plasticity. Memory and learning deficits observed in familial hemiplegic migraine patients could be ascribed to a possible alteration of hippocampal neuronal plasticity and measuring possible changes of long-term potentiation in familial hemiplegic migraine 2 KI mice might provide insights to strengthen this link.
2019
Familial hemiplegic migraines; dentate gyrus; electrophysiology; glutamatergic neurotransmission; long-term potentiation
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.11768/91609
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