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本文引用的文献

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The role of cellular adaptation to mechanical forces in atherosclerosis.细胞对机械力的适应性在动脉粥样硬化中的作用。
Arterioscler Thromb Vasc Biol. 2008 Dec;28(12):2101-7. doi: 10.1161/ATVBAHA.108.165951. Epub 2008 Sep 11.
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Zebrafish model for human long QT syndrome.人类长QT综合征的斑马鱼模型
Proc Natl Acad Sci U S A. 2007 Jul 3;104(27):11316-21. doi: 10.1073/pnas.0702724104. Epub 2007 Jun 25.
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Electrocardiographic characterization of embryonic zebrafish.胚胎斑马鱼的心电图特征
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The embryonic vertebrate heart tube is a dynamic suction pump.胚胎期脊椎动物的心脏管是一个动态的抽吸泵。
Science. 2006 May 5;312(5774):751-3. doi: 10.1126/science.1123775.
5
In vivo recording of adult zebrafish electrocardiogram and assessment of drug-induced QT prolongation.成年斑马鱼心电图的体内记录及药物诱导的QT间期延长评估。
Am J Physiol Heart Circ Physiol. 2006 Jul;291(1):H269-73. doi: 10.1152/ajpheart.00960.2005. Epub 2006 Feb 17.
6
Don't lose heart--therapeutic value of apoptosis prevention in the treatment of cardiovascular disease.不要灰心——细胞凋亡预防在心血管疾病治疗中的治疗价值。
J Cell Mol Med. 2005 Jul-Sep;9(3):609-22. doi: 10.1111/j.1582-4934.2005.tb00492.x.
7
Animal models for arrhythmias.心律失常的动物模型。
Cardiovasc Res. 2005 Aug 15;67(3):426-37. doi: 10.1016/j.cardiores.2005.06.012.
8
The zebrafish as a model of heart regeneration.斑马鱼作为心脏再生的模型。
Cloning Stem Cells. 2004;6(4):345-51. doi: 10.1089/clo.2004.6.345.
9
Functional and morphological evidence for a ventricular conduction system in zebrafish and Xenopus hearts.斑马鱼和非洲爪蟾心脏中存在心室传导系统的功能和形态学证据。
Am J Physiol Heart Circ Physiol. 2003 Apr;284(4):H1152-60. doi: 10.1152/ajpheart.00870.2002.
10
Intracardiac fluid forces are an essential epigenetic factor for embryonic cardiogenesis.心腔内流体力是胚胎心脏发生的一个重要表观遗传因素。
Nature. 2003 Jan 9;421(6919):172-7. doi: 10.1038/nature01282.

利用微心电图研究斑马鱼心脏心室切除术后情况。

Micro-electrocardiograms to study post-ventricular amputation of zebrafish heart.

作者信息

Sun Ping, Zhang Yolanda, Yu Fei, Parks Elizabeth, Lyman Althea, Wu Qiong, Ai Lisong, Hu Chang-Hong, Zhou Qifa, Shung Kirk, Lien Ching-Ling, Hsiai Tzung K

机构信息

Department of Biomedical Engineering and Division of Cardiovascular Medicine, University of Southern California, Los Angeles, CA, USA.

出版信息

Ann Biomed Eng. 2009 May;37(5):890-901. doi: 10.1007/s10439-009-9668-3. Epub 2009 Mar 12.

DOI:10.1007/s10439-009-9668-3
PMID:19280341
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6991467/
Abstract

The zebrafish (Danio rerio) is an emerging model for cardiovascular research. The zebrafish heart regenerates after 20% ventricular amputation. However, assessment of the physiological responses during heart regeneration has been hampered by the small size of the heart and the necessity of conducting experiments in an aqueous environment. We developed a methodology to monitor a real-time surface electrocardiogram (ECG) by the use of micro-electrodes, signal amplification, and a low pass-filter at a sampling rate of 1 kHz. Wavelet transform was used to further remove ambient noises. Rather than paralyzing the fish, we performed mild sedation by placing the fish in a water bath mixed with MS-222 (tricane methanesulfonate). We recorded distinct P waves for atrial contraction, QRS complexes for ventricular depolarization, and QT intervals for ventricular repolarization prior to, and 2 and 4 days post-amputation (dpa). Sedation reduced the mean fish heart rate from 149 +/- 18 to 90 +/- 17 beats/min. The PR and QRS intervals remained unchanged in response to ventricular apical amputation (n = 6, p > 0.05). Corrected QT intervals (QTc) were shortened 4 dpa (n = 6, p < 0.05). In a parallel study, histology revealed that apical thrombi were replaced with fibrin clots and collagen fibers. Atrial arrhythmia was noted in response to prolonged sedation. Unlike the human counterpart, ventricular tachycardia or fibrillation was not observed in response to ventricular amputation 2 and 4 dpa. Taken together, we demonstrated a minimally invasive methodology to monitor zebrafish heart function, electrical activities, and regeneration in real-time.

摘要

斑马鱼(Danio rerio)是心血管研究中一种新兴的模式生物。斑马鱼心脏在心室被切除20%后能够再生。然而,由于心脏体积小以及需要在水环境中进行实验,对心脏再生过程中的生理反应评估受到了阻碍。我们开发了一种方法,通过使用微电极、信号放大和低通滤波器,以1kHz的采样率实时监测体表心电图(ECG)。使用小波变换进一步去除环境噪声。我们没有使鱼瘫痪,而是将鱼置于与MS-222(三卡因甲磺酸盐)混合的水浴中进行轻度镇静。我们在截肢前、截肢后2天和4天记录了心房收缩的明显P波、心室去极化的QRS复合波以及心室复极化的QT间期。镇静使鱼的平均心率从149±18次/分钟降至90±17次/分钟。PR间期和QRS间期在心室顶端截肢后保持不变(n = 6,p > 0.05)。校正后的QT间期(QTc)在截肢后4天缩短(n = 6,p < 0.05)。在一项平行研究中,组织学显示顶端血栓被纤维蛋白凝块和胶原纤维取代。长时间镇静后出现了房性心律失常。与人类不同,在截肢后2天和4天未观察到心室性心动过速或颤动。综上所述,我们展示了一种微创方法,可实时监测斑马鱼的心脏功能、电活动和再生情况。