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用于药理学筛选的体外收缩心肌细胞和体内搏动心脏心律的光学评估。

Optical assessment of the cardiac rhythm of contracting cardiomyocytes in vitro and a pulsating heart in vivo for pharmacological screening.

作者信息

Lai Yu-Cheng, Chang Wei-Tien, Lin Kuen-You, Liau Ian

机构信息

Department of Applied Chemistry and Institute of Molecular Science, National Chiao Tung University, Hsinchu 300, Taiwan ; Equal contribution.

National Taiwan University Hospital and College of Medicine, Taipei 100, Taiwan ; Equal contribution.

出版信息

Biomed Opt Express. 2014 Apr 23;5(5):1616-25. doi: 10.1364/BOE.5.001616. eCollection 2014 May 1.

Abstract

Our quest in the pathogenesis and therapies targeting human heart diseases requires assessment of the contractile dynamics of cardiac models of varied complexity, such as isolated cardiomyocytes and the heart of a model animal. It is hence beneficial to have an integral means that can interrogate both cardiomyocytes in vitro and a heart in vivo. Herein we report an application of dual-beam optical reflectometry to determine noninvasively the rhythm of two representative cardiac models-chick embryonic cardiomyocytes and the heart of zebrafish. We probed self-beating cardiomyocytes and revealed the temporally varying contractile frequency with a short-time Fourier transform. Our unique dual-beam setup uniquely records the atrial and ventricular pulsations of zebrafish simultaneously. To minimize the cross talk between signals associated with atrial and ventricular chambers, we particularly modulated the two probe beams at distinct frequencies and extracted the signals specific to individual cardiac chambers with phase-sensitive detection. With this setup, we determined the atrio-ventricular interval, a parameter that is manifested by the electrical conduction from the atrium to the ventricle. To demonstrate pharmacological applications, we characterized zebrafish treated with various cardioactive and cardiotoxic drugs, and identified abnormal cardiac rhythms and atrioventricular (AV) blocks of varied degree. In light of its potential capability to assess cardiac models both in vitro and in vivo and to screen drugs with cardioactivity or toxicity, we expect this approach to have broad applications ranging from cardiopharmacology to developmental biology.

摘要

我们在针对人类心脏病的发病机制和治疗方法方面的探索,需要评估各种复杂程度的心脏模型的收缩动力学,例如分离的心肌细胞和模型动物的心脏。因此,拥有一种能够同时检测体外心肌细胞和体内心脏的综合方法是有益的。在此,我们报告了双光束光学反射测量法的一种应用,用于无创确定两种代表性心脏模型——鸡胚心肌细胞和斑马鱼心脏的节律。我们探测了自主搏动的心肌细胞,并通过短时傅里叶变换揭示了随时间变化的收缩频率。我们独特的双光束设置能够独特地同时记录斑马鱼的心房和心室搏动。为了最小化与心房和心室腔相关信号之间的串扰,我们特别以不同频率调制两束探测光束,并通过相敏检测提取特定于心腔的信号。利用这种设置,我们确定了房室间期,这是一个由心房到心室的电传导所表现出的参数。为了展示药理学应用,我们对用各种具有心脏活性和心脏毒性的药物处理过的斑马鱼进行了表征,并识别出不同程度的异常心律和房室传导阻滞。鉴于其在体外和体内评估心脏模型以及筛选具有心脏活性或毒性药物的潜在能力,我们期望这种方法在从心脏药理学到发育生物学等广泛领域具有应用价值。

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