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抗心律失常药物的临床前评估。

Preclinical assessment of antiarrhythmic drugs.

作者信息

Lucchesi B R, Lynch J J

出版信息

Fed Proc. 1986 Jul;45(8):2197-205.

PMID:3720962
Abstract

The morbidity statistics for the United States alone would suggest that there are 400,000 victims each year who succumb to sudden coronary death, which suggests that there is a need for the development of pharmacological interventions capable of preventing ventricular fibrillation (VF) in patients identified as being at high risk. A major deficiency in this area of experimental investigation is the lack of an animal model that would permit preclinical studies to identify potentially useful therapeutic agents. We have developed an experimental canine model of sudden coronary death in which VF occurs in the chronically injured heart that is subjected to a period of transient ischemia in a coronary region remote from the site of a previous myocardial infarction. The experimental model is subject to the induction of ventricular tachyarrhythmias in response to programmed electrical stimulation, thereby permitting the investigator to correlate the effectiveness of a pharmacological agent in preventing electrically induced arrhythmias with its potential to prevent the development of VF in response to ischemia at a site remote from a previous infarct. Thus, acute myocardial ischemia at a site distant from a previous myocardial infarction enhances the likelihood of primary VF in the conscious dog. This model of sudden coronary death may stimulate more closely the clinical state in humans and might serve as an appropriate model for the study of electrophysiological mechanisms associated with the development of VF and for the evaluation of potential antifibrillatory drugs.

摘要

仅美国的发病率统计数据就表明,每年有40万受害者死于心脏性猝死,这表明有必要开发能够预防高危患者室颤(VF)的药物干预措施。该实验研究领域的一个主要缺陷是缺乏一种动物模型,以便进行临床前研究来确定潜在有用的治疗药物。我们已经开发出一种心脏性猝死的实验犬模型,在远离先前心肌梗死部位的冠状动脉区域,对长期受损的心脏进行短暂缺血,会引发室颤。该实验模型可通过程控电刺激诱发室性快速心律失常,从而使研究人员能够将药物预防电诱发心律失常的有效性与其预防远离先前梗死部位缺血引发室颤的潜力联系起来。因此,远离先前心肌梗死部位的急性心肌缺血会增加清醒犬原发性室颤的可能性。这种心脏性猝死模型可能更接近人类的临床状态,可作为研究与室颤发生相关的电生理机制以及评估潜在抗纤颤药物的合适模型。

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