Lenkowski Paul W, Batts Timothy W, Smith Misty D, Ko Seong-Hoon, Jones Paulianda J, Taylor Catherine H, McCusker Ashley K, Davis Gary C, Hartmann Hali A, White H Steve, Brown Milton L, Patel Manoj K
Department of Anesthesiology, University of Virginia Health System, 1 Hospital Drive, Box 800710, Charlottesville, VA 22908-0710, USA.
Neuropharmacology. 2007 Mar;52(3):1044-54. doi: 10.1016/j.neuropharm.2006.11.001. Epub 2006 Dec 14.
Phenytoin (DPH) is a clinically useful sodium (Na) channel blocker with efficacy against partial and generalized seizures. We have developed a novel hydantoin compound (HA) using comparative molecular field analysis (CoMFA) and evaluated its effects on hNa(v)1.2 channels. Both DPH and HA demonstrated affinity for resting (K(r)=13.9microM for HA, K(r)=464microM for DPH) and slow inactivated channels (K(I)=975nM for HA, K(I)=20.6microM for DPH). However, HA also exhibited an affinity for fast inactivated channels (K(I)=2.5microM) and shifted the V(1/2) for activation in the depolarizing direction. Furthermore, HA exhibited profound use dependent block at both 5 and 10Hz stimulation frequencies. In the 6Hz seizure model (32mA) HA had an ED(50) of 47.1mg/kg and a TD(50) of 131mg/kg (protective index (PI)=2.8). In comparison, the ED(50) for DPH was approximately 27.5mg/kg with a TD(50) of 35.6mg/kg (PI approximately 1.3). These findings provide evidence for the utility of CoMFA in the design of novel anticonvulsants and support the hypothesis that states selectivity plays an important role in achieving optimal protection with minimal side effects.
苯妥英(DPH)是一种临床上有用的钠(Na)通道阻滞剂,对部分性和全身性癫痫发作有效。我们利用比较分子场分析(CoMFA)开发了一种新型乙内酰脲化合物(HA),并评估了其对hNa(v)1.2通道的作用。DPH和HA对静息通道(HA的K(r)=13.9μM,DPH的K(r)=464μM)和缓慢失活通道(HA的K(I)=975nM,DPH的K(I)=20.6μM)均表现出亲和力。然而,HA对快速失活通道也表现出亲和力(K(I)=2.5μM),并使激活的V(1/2)向去极化方向移动。此外,HA在5和10Hz刺激频率下均表现出显著的使用依赖性阻滞。在6Hz癫痫模型(32mA)中,HA的ED(50)为47.1mg/kg,TD(50)为131mg/kg(保护指数(PI)=2.8)。相比之下,DPH的ED(50)约为27.5mg/kg,TD(50)为35.6mg/kg(PI约为1.3)。这些发现为CoMFA在新型抗惊厥药物设计中的实用性提供了证据,并支持了这样一种假说,即状态选择性在以最小副作用实现最佳保护方面起着重要作用。