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小型微型猪作为评估药物诱导的心血管反应用于非临床毒性和/或安全药理学研究模型的药理学特性。

Pharmacological characterization of microminipig as a model to assess the drug-induced cardiovascular responses for non-clinical toxicity and/or safety pharmacology studies.

作者信息

Yokoyama Hirofumi, Nakamura Yuji, Saito Hiroyuki, Nagayama Yukitoshi, Hoshiai Kiyotaka, Wada Takeshi, Izumi-Nakaseko Hiroko, Ando Kentaro, Akie Yasuki, Sugiyama Atsushi

机构信息

Department of Pharmacology, Faculty of Medicine, Toho University.

出版信息

J Toxicol Sci. 2017;42(1):93-101. doi: 10.2131/jts.42.93.

Abstract

We tried to establish the halothane-anesthetized microminipigs as an alternative animal model for non-clinical toxicity and/or safety pharmacology studies. In order to characterize the halothane-anesthetized microminipigs, we firstly clarified the effects of halothane anesthesia on their cardiovascular system (n = 5). Then, we examined the cardiovascular effects of dl-sotalol in doses of 0.1, 0.3 and 1 mg/kg, i.v. on the halothane-anesthetized microminipigs (n = 6). Induction of the halothane anesthesia by itself prolonged the QT interval as well as QTcF, suggesting that the halothane anesthesia can reduce the cardiac repolarization reserve in microminipigs like in dogs. dl-Sotalol showed more potent negative chronotropic, dromotropic and hypotensive effects together with repolarization delay in microminipigs than in dogs, although each cardiovascular response to dl-sotalol was directionally similar between them, suggesting greater basal sympathetic tone and/or smaller volume of distribution of the drug in microminipigs than in dogs. Analyses of proarrhythmic surrogate markers indicate that T-T and short-term variability of QT interval may be more sensitive to detect the dl-sotalol-induced direct electrophysiological changes in microminipigs than in dogs, but its reverse will be true for J-Tc. Thus, these results may help better understand the drug-induced cardiovascular responses in microminipigs.

摘要

我们试图建立氟烷麻醉的微型猪作为非临床毒性和/或安全药理学研究的替代动物模型。为了表征氟烷麻醉的微型猪,我们首先阐明了氟烷麻醉对其心血管系统的影响(n = 5)。然后,我们研究了静脉注射剂量为0.1、0.3和1 mg/kg的dl-索他洛尔对氟烷麻醉的微型猪的心血管影响(n = 6)。氟烷麻醉本身延长了QT间期以及QTcF,这表明氟烷麻醉像在犬中一样会降低微型猪的心脏复极储备。dl-索他洛尔在微型猪中比在犬中表现出更强的负性变时性、负性传导性和降压作用以及复极延迟,尽管它们对dl-索他洛尔的每种心血管反应在方向上相似,这表明微型猪的基础交感神经张力更高和/或药物的分布容积比犬更小。对致心律失常替代标志物的分析表明,T-T间期和QT间期的短期变异性在检测dl-索他洛尔诱导的微型猪直接电生理变化方面可能比犬更敏感,但对于J-Tc则相反。因此,这些结果可能有助于更好地理解微型猪中药物诱导的心血管反应。

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