首页> 外文期刊>Journal of Pharmacological and Toxicological Methods >Power spectral analysis of heart rate variability in cynomolgus monkeys in safety pharmacology studies: Comparative study with beagle dogs
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Power spectral analysis of heart rate variability in cynomolgus monkeys in safety pharmacology studies: Comparative study with beagle dogs

机译:食蟹猴心率变异性的功率谱分析在安全药理研究中的应用:与比格犬的比较研究

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Introduction: Power spectral analysis of heart rate variability is a tool known to provide information of interest on the autonomic control of heart rate in human. However, its use and its conditions of application and interpretation for safety purposes are not well defined for cardiovascular safety pharmacology studies. Likewise, data of power spectral analysis of heart rate variability in cynomolgus monkeys, a species often appropriate for use as second non rodent species in preclinical safety programmes, are not available. This study was designed to evaluate the relevance of this biomarker in this non human primate species, and to compare results with those from beagle dogs under the conditions of safety evaluation studies. Methods: Power spectral analysis of heart rate variability was performed on data collected in both species by telemetry following a standard design for cardiovascular safety pharmacology studies. Various pharmacological agents were tested in order to compare the profile of responses in both species after modifying the autonomic nervous balance. Results: Heart rate variability in cynomolgus monkeys is mainly driven by the parasympathetic nervous system as in beagle dogs although vagal tone is less than in dogs. Power spectral analysis of heart rate variability allows detection of interaction with the autonomic nervous system in both species in all investigated situations, i.e. sympatholytic/sympathomimetic and parasympatholytic/parasympathomimetic drug induced effects. However, due to species difference in the autonomic control of heart rate, cynomolgus monkeys are likely to be more sensitive than beagle dogs for assessment of sympatholytic properties. Discussion: This study confirms that power spectral analysis of heart rate variability from data derived from ECG recordings in telemetry studies is applicable in cardiovascular safety pharmacology studies and may provide relevant information about possible interaction with the autonomic nervous system when new drug entities are evaluated in either species. However, interspecies differences in autonomic control must be taken into account when interpreting possible drug effects.
机译:简介:心率变异性的功率谱分析是一种已知的工具,可提供有关人类心律自主控制的信息。但是,出于安全目的,其用途,使用条件和解释以及心血管安全药理研究尚未明确定义。同样,没有食蟹猴心率变异性的功率谱分析数据,该物种通常适合在临床前安全计划中用作第二种非啮齿类动物。本研究旨在评估该生物标志物在该非人类灵长类动物物种中的相关性,并在安全性评估研究的条件下将其与比格犬的结果进行比较。方法:按照心血管安全药理学研究的标准设计,对通过遥测法在两个物种中收集的数据进行心率变异性的功率谱分析。测试了各种药理剂,以便在改变自主神经平衡后比较两种物种的反应情况。结果:食蟹猴的心率变异性主要由副交感神经系统驱动,就像比格犬一样,尽管迷走神经张力比狗小。通过对心率变异性进行功率谱分析,可以在所有调查情况下检测两种物种与自主神经系统的相互作用,即交感神经/拟交感神经药和副交感神经/副交感神经药引起的作用。但是,由于心律自主控制中的物种差异,食蟹猴在评估交感神经特性方面可能比比格犬更敏感。讨论:这项研究证实,遥测研究中源自心电图记录数据的心率变异性功率谱分析适用于心血管安全药理学研究,并且当在任一药物中评估新药物实体时,都可能提供有关与自主神经系统可能相互作用的相关信息。种类。但是,在解释可能的药物作用时,必须考虑到自主控制的种间差异。

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