Department of Electrical Engineering and Computer Science, UC Irvine, Irvine, CA, 92697, USA.
Department of Biomedical Engineering, UC Irvine, Irvine, CA, 92697, USA.
Biosens Bioelectron. 2022 Feb 1;197:113808. doi: 10.1016/j.bios.2021.113808. Epub 2021 Nov 16.
Zebrafish and their mutant lines have been extensively used in cardiovascular studies. In the current study, the novel system, Zebra II, is presented for prolonged electrocardiogram (ECG) acquisition and analysis for multiple zebrafish within controllable working environments. The Zebra II is composed of a perfusion system, apparatuses, sensors, and an in-house electronic system. First, the Zebra II is validated in comparison with a benchmark system, namely iWORX, through various experiments. The validation displayed comparable results in terms of data quality and ECG changes in response to drug treatment. The effects of anesthetic drugs and temperature variation on zebrafish ECG were subsequently investigated in experiments that need real-time data assessment. The Zebra II's capability of continuous anesthetic administration enabled prolonged ECG acquisition up to 1 h compared to that of 5 min in existing systems. The novel, cloud-based, automated analysis with data obtained from four fish further provided a useful solution for combinatorial experiments and helped save significant time and effort. The system showed robust ECG acquisition and analytics for various applications including arrhythmia in sodium induced sinus arrest, temperature-induced heart rate variation, and drug-induced arrhythmia in Tg(SCN5A-D1275N) mutant and wildtype fish. The multiple channel acquisition also enabled the implementation of randomized controlled trials on zebrafish models. The developed ECG system holds promise and solves current drawbacks in order to greatly accelerate drug screening applications and other cardiovascular studies using zebrafish.
斑马鱼及其突变系已广泛应用于心血管研究。在本研究中,提出了一种新的系统,Zebra II,用于在可控工作环境中对多个斑马鱼进行长时间心电图(ECG)采集和分析。Zebra II 由灌注系统、仪器、传感器和内部电子系统组成。首先,通过各种实验将 Zebra II 与基准系统 iWORX 进行了验证。验证结果显示,在数据质量和对药物治疗的 ECG 变化方面,两者具有可比性。在需要实时数据评估的实验中,进一步研究了麻醉药物和温度变化对斑马鱼 ECG 的影响。与现有系统的 5 分钟相比,Zebra II 持续麻醉给药的能力能够实现长达 1 小时的 ECG 采集。新的、基于云的、自动化分析,以及从四条鱼获得的数据,为组合实验提供了一个有用的解决方案,节省了大量的时间和精力。该系统显示出了强大的 ECG 采集和分析能力,可用于各种应用,包括钠诱导窦房结阻滞的心律失常、温度诱导的心率变化以及 Tg(SCN5A-D1275N)突变体和野生型鱼的药物诱导心律失常。多通道采集还可以在斑马鱼模型上实施随机对照试验。该 ECG 系统具有广阔的应用前景,解决了当前的缺陷,极大地加速了使用斑马鱼进行药物筛选应用和其他心血管研究。