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Phenytoin sodium
本产品不向个人销售,仅用作科学研究,不用于任何人体实验及非科研性质的动物实验。
Phenytoin sodium图片
CAS NO:630-93-3
包装与价格:
包装价格(元)
10mM (in 1mL DMSO)电议
50mg电议

产品介绍
苯妥英钠(5,5-二苯基乙内酰脲钠盐)是一种有效的电压门控 Na+ 通道 (VGSCs) 阻滞剂。
Cas No.630-93-3
别名苯妥英钠; 5,5-Diphenylhydantoin sodium salt
化学名sodium;5-oxo-4,4-diphenyl-1H-imidazol-2-olate
Canonical SMILESC1=CC=C(C=C1)C2(C(=O)NC(=N2)[O-])C3=CC=CC=C3.[Na+]
分子式C15H11N2NaO2
分子量274.25
溶解度≥ 11.55mg/mL in DMSO
储存条件Store at RT
General tipsFor obtaining a higher solubility , please warm the tube at 37 ℃ and shake it in the ultrasonic bath for a while.
Shipping ConditionEvaluation sample solution : ship with blue ice
All other available size: ship with RT , or blue ice upon request
产品描述

Phenytoin sodium is an inactive voltage-gated sodium channel stabilizer.Target: Sodium ChannelPhenytoin sodium is an antiepileptic drug. It is useful to treat partial seizures and generalized tonic-clonic seizures but not primary generalized seizures such as absence seizures or myoclonic seizures. Phenytoin is believed to protect against seizures by causing voltage-dependent block of voltage-gated sodium channels [1]. Phenytoin has low affinity for resting sodium channels at hyperpolarized membrane potentials [2]. When neurons are depolarized and the channels transition into the open and inactivated states, greater binding and block occur. The inhibitory potency is strongly use dependent, so that block accumulates with prolonged or repetitive activation, such as occurs during a seizure discharge. The blocking of sodium channels by phenytoin is of slow onset. The time course of fast sodium currents is therefore not altered in the presence of the drug and action potentials evoked by synaptic depolarizations of ordinary duration are not blocked. Thus phenytoin is able to selectively inhibit pathological hyperexcitability in epilepsy without unduly impairing ongoing activity. Phenytoin also blocks persistent sodium current and this may be of particular importance in seizure control. Phenytoin is a class 1b antiarrhythmic [3].

References:
[1]. Rogawski, M.A. and W. Loscher, The neurobiology of antiepileptic drugs. Nat Rev Neurosci, 2004. 5(7): p. 553-64.
[2]. Porter, R.J., et al., Mechanisms of action of antiseizure drugs. Handb Clin Neurol, 2012. 108: p. 663-81.
[3]. Balaji, S., Medical therapy for sudden death. Pediatr Clin North Am, 2004. 51(5): p. 1379-87.