Department of Applied Chemistry and Institute of Molecular Science, National Chiao Tung University , Hsinchu 300, Taiwan.
Anal Chem. 2014 Feb 18;86(4):2213-20. doi: 10.1021/ac403877h. Epub 2014 Feb 5.
Given the high mortality in patients with cardiovascular diseases and the life-threatening consequences of drugs with unforeseen adverse effects on hearts, a critical evaluation of the pharmacological response of cardiovascular function on model animals is important especially in the early stages of drug development. We report a proof-of-principle study to demonstrate the utility of zebrafish as an analytical platform to predict the cardiac response of new drugs or chemicals on human beings. With pseudodynamic 3D imaging, we derive individual parameters that are central to the cardiac function of zebrafish, including the ventricular stroke volume, ejection fraction, cardiac output, heart rate, diastolic filling function, and ventricular mass. We evaluate both inotropic and chronotropic responses of the heart of zebrafish treated with drugs that are commonly prescribed and possess varied known cardiac activities. We reveal deranged cardiac function of a zebrafish model of cardiomyopathy induced with a cardiotoxic drug. The cardiac function of zebrafish exhibits a pharmacological response similar to that of human beings. We compare also cardiac parameters obtained in this work with those derived with conventional 2D approximation and show that the latter tends to overestimate the cardiac parameters and produces results of greater variation. In view of the growing interest of using zebrafish in both fundamental and translational biomedical research, we envisage that our approach should benefit not only contemporary pharmaceutical development but also exploratory research such as gene, stem cell, or regenerative therapies targeting congenital or acquired heart diseases.
鉴于心血管疾病患者的高死亡率和药物对心脏产生意想不到的副作用而危及生命的后果,在药物开发的早期阶段,对模型动物的心血管功能的药理反应进行严格评估非常重要。我们报告了一项原理验证研究,以证明斑马鱼作为分析平台在预测新药物或化学物质对人类的心脏反应方面的效用。通过拟动力 3D 成像,我们得出了对斑马鱼心脏功能至关重要的个体参数,包括心室搏出量、射血分数、心输出量、心率、舒张充盈功能和心室质量。我们评估了常用药物和具有不同已知心脏活性的药物对斑马鱼心脏的变力和变时反应。我们揭示了用心脏毒性药物诱导的心肌病斑马鱼模型的心脏功能紊乱。斑马鱼的心脏功能表现出与人类相似的药理反应。我们还比较了这项工作中获得的心脏参数与传统 2D 近似法获得的参数,并表明后者往往会高估心脏参数并产生更大变化的结果。鉴于使用斑马鱼进行基础和转化生物医学研究的兴趣日益浓厚,我们设想我们的方法不仅应该有益于当代药物开发,而且还应该有益于探索性研究,例如针对先天性或获得性心脏病的基因、干细胞或再生疗法。