pregabalin

The ?2? Subunit and Absence Epilepsy: Beyond Calcium Channels ?

Spike-wave discharges, underlying absence seizures, are generated within a cortico-thalamo-cortical network that involves the somatosensory cortex, the reticular thalamic nucleus, and the ventrobasal thalamic nuclei. Activation of T-type voltage-sensitive calcium channels (VSCCs) contributes to the pathological oscillatory activity of this network, and some of the first-line drugs used in the treatment of absence epilepsy inhibit T-type calcium channels. The ?2?

Immediate and controlled-release pregabalin for the treatment of epilepsy.

Introduction. Epilepsy is a common neurological disease requiring complex therapies, which have been unable to achieve seizure control in 30% of patients. Poor adherence has been recognized as a possible determinant of drug-resistance. Prolonged-release formulations of anti-epileptic drugs might help increase adherence, minimize side effects and pharmacological interactions. Areas Covered. Pregabalin (PGB) has peculiar pharmacodynamics and almost ideal pharmacokinetics, except for a short half-life and therefore requiring multiple daily dosing.

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