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Suppressive Effects of Cooling Compounds Icilin on Penicillin G-Induced Epileptiform Discharges in Anesthetized Rats

机译:降温化合物伊西林对青霉素G诱导的麻醉大鼠癫痫样放电的抑制作用

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摘要

More than 30% of patients with epilepsy are refractory and have inadequate seizure control. Focal cortical cooling (FCC) suppresses epileptiform discharges (EDs) in patients with refractory focal cortical epilepsy. However, little is known about the mechanism by which FCC inhibits seizures at 15°C, and FCC treatment is highly invasive. Therefore, new antiepileptic drugs are needed that produce the same effects as FCC but with different mechanisms of action. To address this need, we focused on transient receptor potential melastatin 8 (TRPM8), an ion channel that detects cold, which is activated at 15°C. We examined whether TRPM8 activation suppresses penicillin G (PG)-induced EDs in anesthetized rats. Icilin, a TRPM8 and TRP Ankyrin 1 agonist, was administered after PG injection, and a focal electrocorticogram (ECoG) and cortical temperature were recorded for 4 h. We measured spike amplitude, duration, firing rate, and power density in each band to evaluate the effects of icilin. PG-induced EDs and increased delta, theta, alpha, and beta power spectra were observed in the ECoG. Icilin suppressed EDs while maintaining cortical temperature. In particular, 3.0-mM icilin significantly suppressed PG-induced spike amplitude, duration, and firing rate and improved the increased power density of each band in the EDs to the level of basal activity in the ECoG. These suppressive effects of 3.0-mM icilin on EDs were antagonized by administering N-(3-aminopropyl)-2-[(3-methylphenyl) methoxy]-N-(2-thienylmethyl)-benzamide hydrochloride (AMTB), a selective TRPM8 inhibitor. Our results suggest that TRPM8 activation in epileptic brain regions may be a new therapeutic approach for patients with epilepsy.
机译:超过30%的癫痫患者难治,癫痫发作控制不充分。局灶性皮质冷却(FCC)可抑制难治性局灶性皮质癫痫患者的癫痫样放电(EDs)。但是,关于FCC在15°C抑制癫痫发作的机制还知之甚少,而且FCC治疗具有高度的侵入性。因此,需要产生与FCC相同的作用但具有不同作用机理的新的抗癫痫药。为了满足这一需求,我们专注于瞬时受体电位褪黑素8(TRPM8),这是一种检测冷的离子通道,该通道在15°C时被激活。我们检查了TRPM8激活是否抑制了麻醉大鼠中青霉素G(PG)诱导的EDs。 PG注射后给予Icilin(TRPM8和TRP锚蛋白1激动剂),并记录局灶性皮质电图(ECoG)和皮质温度4小时。我们测量了每个频段的尖峰幅度,持续时间,发射速率和功率密度,以评估艾奇林的影响。在ECoG中观察到PG诱导的EDs和增加的delta,θ,α和β功率谱。 Icilin抑制EDs,同时保持皮层温度。特别是,3.0 mM icilin可显着抑制PG诱导的尖峰幅度,持续时间和发射速率,并将ED中每个谱带的功率密度提高到ECoG中的基础活性水平。通过给予N-(3-氨基丙基)-2-[(3-甲基苯基)甲氧基] -N-(2-噻吩甲基)-苯甲酰胺盐酸盐(AMTB),选择性TRPM8来拮抗3.0-mM icilin对ED的这些抑制作用。抑制剂。我们的结果表明,癫痫脑区域的TRPM8激活可能是癫痫患者的一种新的治疗方法。

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