E2730, an uncompetitive γ‐aminobutyric acid transporter‐1 inhibitor, suppresses epileptic seizures in a rat model of chronic mesial temporal lobe epilepsy

癫痫 癫痫持续状态 医学 红藻氨酸 麻醉 药理学 不利影响 药代动力学 癫痫发生 镇静 海马体 内科学 谷氨酸受体 精神科 受体
作者
Idrish Ali,Juliana C. Silva,Pablo M. Casillas‐Espinosa,Emma L. Braine,Glenn R. Yamakawa,Matthew R. Hudson,Rhys D. Brady,Brendan P. Major,Peravina Thergarajan,Mohammad B. Haskali,David Wright,Bianca Jupp,Lucy Vivash,Sandy R. Shultz,Richelle Mychasiuk,Patrick Kwan,Nigel C. Jones,Kazuyuki Fukushima,Perminder S. Sachdev,Jocelyn Y. Cheng,Terence J. O’Brien
出处
期刊:Epilepsia [Wiley]
卷期号:64 (10): 2806-2817 被引量:1
标识
DOI:10.1111/epi.17735
摘要

More than one third of mesial temporal lobe epilepsy (MTLE) patients are resistant to current antiseizure medications (ASMs), and half experience mild-to-moderate adverse effects of ASMs. There is therefore a strong need to develop and test novel ASMs. The objective of this work is to evaluate the pharmacokinetics and neurological toxicity of E2730, a novel uncompetitive inhibitor of γ-aminobutyric acid transporter-1, and to test its seizure suppression effects in a rat model of chronic MTLE.We first examined plasma levels and adverse neurological effects of E2730 in healthy Wistar rats. Adult male rats were implanted with osmotic pumps delivering either 10, 20, or 100 mg/kg/day of E2730 subcutaneously for 1 week. Blood sampling and behavioral assessments were performed at several timepoints. We next examined whether E2730 suppressed seizures in rats with chronic MTLE. These rats were exposed to kainic acid-induced status epilepticus, and 9 weeks later, when chronic epilepsy was established, were assigned to receive one of the three doses of E2730 or vehicle for 1 week in a randomized crossover design. Continuous video-electroencephalographic monitoring was acquired during the treatment period to evaluate epileptic seizures.Plasma levels following continuous infusion of E2730 showed a clear dose-related increase in concentration. The drug was well tolerated at all doses, and any sedation or neuromotor impairment was mild and transient, resolving within 48 h of treatment initiation. Remarkably, E2730 treatment in chronically epileptic rats led to seizure suppression in a dose-dependent manner, with 65% of rats becoming seizure-free at the highest dose tested. Mean seizure class did not differ between the treatment groups.This study shows that continuous subcutaneous infusion of E2730 over 7 days results in a marked, dose-dependent suppression of spontaneous recurrent seizures, with minimal adverse neurological effects, in a rat model of chronic MTLE. E2730 shows strong promise as an effective new ASM to be translated into clinical trials.

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