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监测啮齿动物模型中的血流动力学变化以更好地指导安全药理学:来自……的新见解

Monitoring haemodynamic changes in rodent models to better inform safety pharmacology: Novel insights from .

作者信息

Van Daele Marieke, Cooper Samantha L, Pannucci Patrizia, Wragg Edward S, March Julie, de Jong Iwan, Woolard Jeanette

机构信息

Division of Physiology, Pharmacology and Neuroscience, School of Life Sciences, Queen's Medical Centre, University of Nottingham, Nottingham, UK.

Centre of Membrane Proteins and Receptors, University of Birmingham and University of Nottingham, Midlands, UK.

出版信息

JRSM Cardiovasc Dis. 2022 May 23;11:20480040221092893. doi: 10.1177/20480040221092893. eCollection 2022 Jan-Dec.

Abstract

Animal models are essential for assessing cardiovascular responses to novel therapeutics. Cardiovascular safety liabilities represent a leading cause of drug attrition and better preclinical measurements are essential to predict drug-related toxicities. Presently, radiotelemetric approaches recording blood pressure are routinely used in preclinical haemodynamic assessments, providing valuable information on therapy-associated cardiovascular effects. Nonetheless, this technique is chiefly limited to the monitoring of blood pressure and heart rate alone. Alongside these measurements, Doppler flowmetry can provide additional information on the vasculature by simultaneously measuring changes in blood flow in multiple different regional vascular beds. However, due to the time-consuming and expensive nature of this approach, it is not widely used in the industry. Currently, analysis of waveform data obtained from telemetry and Doppler flowmetry typically examines averages or peak values of waveforms. Subtle changes in the morphology and variability of physiological waveforms have previously been shown to be early markers of toxicity and pathology. Therefore, a detailed analysis of pressure and flowmetry waveforms could enhance the understanding of toxicological mechanisms and the ability to translate these preclinical observations to clinical outcomes. In this review, we give an overview of the different approaches to monitor the effects of drugs on cardiovascular parameters (particularly regional blood flow, heart rate and blood pressure) and suggest that further development of waveform analysis could enhance our understanding of safety pharmacology, providing valuable information without increasing the number of studies needed.

摘要

动物模型对于评估心血管系统对新型疗法的反应至关重要。心血管安全性问题是药物研发失败的主要原因之一,更好的临床前测量对于预测药物相关毒性至关重要。目前,记录血压的无线电遥测方法常用于临床前血流动力学评估,可提供有关治疗相关心血管效应的有价值信息。尽管如此,该技术主要仅限于单独监测血压和心率。除了这些测量之外,多普勒血流仪可以通过同时测量多个不同区域血管床的血流变化,提供有关血管系统的额外信息。然而,由于这种方法耗时且昂贵,因此在该行业中并未广泛使用。目前,从遥测和多普勒血流仪获得的波形数据分析通常检查波形的平均值或峰值。先前已表明,生理波形形态和变异性的细微变化是毒性和病理学的早期标志物。因此,对压力和血流仪波形进行详细分析可以增强对毒理学机制的理解,以及将这些临床前观察结果转化为临床结果的能力。在本综述中,我们概述了监测药物对心血管参数(特别是局部血流、心率和血压)影响的不同方法,并建议进一步发展波形分析可以增强我们对安全药理学的理解,在不增加所需研究数量的情况下提供有价值的信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c66d/9133998/8cb20086a9f0/10.1177_20480040221092893-fig1.jpg

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