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首页> 外文期刊>Epilepsia: Journal of the International League against Epilepsy >The pharmacokinetics of antiepileptic drugs in rats: consequences for maintaining effective drug levels during prolonged drug administration in rat models of epilepsy.
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The pharmacokinetics of antiepileptic drugs in rats: consequences for maintaining effective drug levels during prolonged drug administration in rat models of epilepsy.

机译:抗癫痫药在大鼠中的药代动力学:在癫痫症的大鼠模型中延长药物施用期间维持有效药物水平的后果。

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摘要

Rodent models of chronic epilepsy with spontaneous recurrent seizures likely represent the closest parallel to the human condition. Such models may be best suited for therapy discovery for pharmacoresistant epilepsy and for antiepileptogenic or disease-modifying therapeutics. However, the use of such rodent models for therapy discovery creates problems with regard to maintaining effective drug levels throughout a prolonged testing period. This is particularly due to the fact that rodents such as rats and mice eliminate most drugs much more rapidly than humans. Thus, knowledge about elimination rate of a test drug in a laboratory species is essential for development of a treatment paradigm that allows maintaining adequate drug levels in the system over the period of treatment. Currently, the most popular models of epilepsy with spontaneous seizures are poststatus epilepticus models of temporal lobe epilepsy in rats. Such models are both used for studies on antiepileptogenesis and drug resistance. For validation of these models, current antiepileptic drugs (AEDs) have to be used. In this article, the elimination rates of these AEDs and their effective plasma levels in rats are reviewed as a guide for developing treatment protocols for chronic drug testing. The advantages and disadvantages of several technologies for drug delivery are discussed, and some examples for calculation of adequate treatment protocols are given. As shown in this review, because of the rapid elimination of most AEDs in rats, it is no trivial task to maintain effective steady-state AED levels in the plasma throughout the day over multiple days to ensure that there will be adequate levels in the system for the purpose of the experiment. However, the use of an adequate dosing regimen that is based on elimination rate is an absolute prerequisite when using rat models for discovery of new antiepileptogenic therapies or therapies for pharmacoresistant epilepsy, because otherwise such models may lead to erroneous conclusions about drug efficacy.
机译:具有自发性复发性癫痫发作的慢性癫痫的啮齿动物模型很可能与人类状况最接近。这样的模型可能最适合于药物耐药性癫痫的治疗发现以及抗癫痫药或疾病缓解疗法。然而,将这种啮齿动物模型用于治疗发现会在整个延长的测试期间维持有效药物水平方面产生问题。这尤其是由于这样的事实,即啮齿动物(例如大鼠和老鼠)比人类更快地消灭了大多数药物。因此,关于实验室物种中测试药物消除率的知识对于开发治疗范例至关重要,该范例允许在整个治疗期间维持系统中足够的药物水平。当前,具有自发性癫痫发作的最流行的癫痫模型是大鼠颞叶癫痫的状态后癫痫模型。这样的模型都用于抗癫痫发生和耐药性的研究。为了验证这些模型,必须使用当前的抗癫痫药(AED)。在本文中,对这些AED的消除率及其在大鼠中的有效血浆水平进行了综述,作为制定用于慢性药物测试的治疗方案的指南。讨论了几种药物输送技术的优缺点,并给出了一些计算适当治疗方案的例子。如该评论所示,由于大鼠中大多数AED的快速消除,在几天内全天保持血浆中有效稳态AED水平以确保系统中有足够水平并非易事。为了实验的目的。但是,在使用大鼠模型发现新的抗癫痫治疗方法或药物耐药性癫痫治疗方法时,使用基于消除率的适当剂量方案绝对是前提条件,因为否则这些模型可能会导致关于药物功效的错误结论。

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