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斑马鱼幼鱼心跳过程中钙离子和收缩的同步成像。

Simultaneous imaging of calcium and contraction in the beating heart of zebrafish larvae.

机构信息

Physiology and Cell Dynamics, Centro Regional de Investigaciones Biomédicas (CRIB) and Facultad de Medicina de Albacete, Universidad de Castilla-La Mancha, C/Almansa 14, 02006 Albacete, Spain.

Sorbonne Université, CNRS, Biological Adaptation and Ageing, UMR 8256, F-75005 Paris, France.

出版信息

Theranostics. 2022 Jan 1;12(3):1012-1029. doi: 10.7150/thno.64734. eCollection 2022.

Abstract

models of cardiac function maintain the complex relationship of cardiomyocytes with other heart cells, as well as the paracrine and mechanoelectrical feedback mechanisms. We aimed at imaging calcium transients simultaneously with heart contraction in zebrafish larvae. To image calcium in beating hearts, we generated a zebrafish transgenic line expressing the FRET-based ratiometric biosensor Twitch-4. Since emission ratioing canceled out the motion artifacts, we did not use myosin inhibitors or morpholinos to uncouple contraction from changes in calcium levels. We wrote an analysis program to automatically calculate kinetic parameters of the calcium transients. In addition, the ventricular diameter was determined in the fluorescence images providing a real-time measurement of contraction correlated with calcium. Expression of Twitch-4 did not affect the force of contraction, the size of the heart nor the heart rate in 3- and 5-days post-fertilization (dpf) larvae. Comparison of 3 and 5 dpf larvae showed that calcium levels and transient amplitude were larger at 5 dpf, but the fractional shortening did not change. To validate the model, we evaluated the effect of drugs with known effects on cardiomyocytes. Calcium levels and the force of contraction decreased by the L-type calcium channel blocker nifedipine, whereas they increased with the activator Bay-K 8644. Caffeine induced bradycardia, markedly decreased ventricular diastolic calcium levels, increased the size of the calcium transients, and caused an escape rhythm in some larvae. The line provides a physiological approach to image systolic and diastolic calcium levels in the heart of zebrafish larvae. Since the heart is beating, calcium levels and contraction can be correlated. This line will be a useful tool to address pathophysiological mechanisms in diseases like heart failure and arrhythmia, in cardiotoxicity studies and for drug screening.

摘要

心脏功能模型维持着心肌细胞与其他心脏细胞的复杂关系,以及旁分泌和机电反馈机制。我们的目的是在斑马鱼幼虫中同时对钙离子瞬变和心脏收缩进行成像。为了对跳动的心脏中的钙离子进行成像,我们生成了一个表达基于 FRET 的比率型生物传感器 Twitch-4 的斑马鱼转基因系。由于发射比率消除了运动伪影,因此我们没有使用肌球蛋白抑制剂或 morpholinos 将收缩与钙水平的变化解耦。我们编写了一个分析程序,自动计算钙离子瞬变的动力学参数。此外,在荧光图像中确定心室直径,为与钙相关的收缩提供实时测量。 Twitch-4 的表达不会影响收缩力、心脏大小或 3 至 5 日龄(dpf)幼虫的心率。比较 3 和 5 dpf 幼虫表明,5 dpf 时钙离子水平和瞬变幅度较大,但分数缩短没有变化。为了验证该模型,我们评估了已知对心肌细胞有影响的药物的作用。L 型钙通道阻滞剂硝苯地平降低了钙离子水平和收缩力,而激活剂 Bay-K 8644 则增加了它们。咖啡因引起心动过缓,显著降低心室舒张期钙离子水平,增加钙离子瞬变幅度,并在一些幼虫中引起逸搏节律。该系为成像斑马鱼幼虫心脏的收缩和舒张钙离子水平提供了一种生理方法。由于心脏在跳动,因此可以将钙水平和收缩相关联。该系将成为研究心力衰竭和心律失常等疾病的病理生理机制、心脏毒性研究和药物筛选的有用工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2c53/8771564/41d0985e3ba5/thnov12p1012g001.jpg

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